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TRANSCRIPT
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1 40 Ton Capacity Industrial and
Hazardous Duty Packaged HVAC
and Purge/Pressurization Units
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Specific Systems :: 7655 East 41st Street, Tulsa, OK 74145
Since 1974, Specific Systems,
LTD. has held strong to a
commitment of reliability, service
and design excellence in special
purpose environmental air-
conditioning, heating, ventilating
and pressurization systems.
This has been accomplished
through proven engineering
and design principles
combined with a dedication to
continued improvements in our
standard modular products.
With this strong engineering
focus, Specific Systems
leads the industry in modular
environmental control system
technology. You can always
depend on Specific Systems to
perform to full capacity.
Six reasons why
you can dependon us, and our
capacity to
perform:
Durability.Specific Systems is committed to building the best environmental control systems in the
industry. Our engineering expertise and experience gained over 35 years in business enables
us to design and build systems that will perform reliably in virtually any application. You can
always depend on Specific Systems equipment for durability, reliability, and performance.
Engineering Excellence.At Specific Systems, our team of engineers stands ready to work with you in evaluating and
designing an environmental system suited to your specific application. We assign an engineer
to oversee your project and serve as liaison between you and our specialists. Our team will work
with you to develop the most suitable product for your application. Custom HVAC engineering
capabilities are something you can always depend on at Specific Systems.
Minimal Down Time.With Specific Systems standard modular environmental control units, you can significantly
reduce costly down time. Our engineers have designed a modular product line that offers dual
redundancy, fast, easy, on-site or remote repair, and simplified parts replacement. You can
depend on Specific Systems modular concept to save substantial time and money.
Flexibility.Specific Systems is committed to meeting your needs. Our standard modular product line can be
configured to horizontal, vertical, slimline or split system arrangement using the same standard
modular components in each configuration. The most demanding custom needs can usually be
accomodated for your particular application. Whatever your requirements, you can depend on
Specific Systems to provide the best system for your unique needs.
Quality.Specific Systems takes pride in manufacturing top quality environmental control equipment.
From the initial stages of engineering, throughout production, and into the final stages of
assembly, our employees maintain a well-documented high standard of quality control. At
Specific Systems, you can depend on our quality every step of the way.
Service.Our goal is to work with you in a timely, professional manner to get the results you want. Well
always be available to answer your questions and provide you with the necessary technical
information. Our technicians will monitor the performance of your system following installation
to ensure maximum operating performance. You can depend on Specific Systems service before,
during and after the installation of your system.
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www.specificsystems.com :: (918) 663-9321 :: (918) 663-5498 fax
Table of Contents
Specific Systems History . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Four Things to Know When Choosing Your HVAC Unit. . . . . . . . . .
InPac Unit Applications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Standard Features . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
Optional Features & Accessories. . . . . . . . . . . . . . . . . . . . . . . . . 1
HVAC Request Form . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1
60 Series Units (1 3 ton capacities)
Overview . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14
Dimensional & Capacity Data . . . . . . . . . . . . . . . . . . . . 1
Electrical Data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1
600 16000 Series Units (2 40 ton capacities)
Physical Configurations . . . . . . . . . . . . . . . . . . . . . . . . . 1
Airflow Configurations . . . . . . . . . . . . . . . . . . . . . . . . . . 1
Dimensional & Capacity Data . . . . . . . . . . . . . . . . . . . . 2
Electrical Data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2
Fully Modular Systems. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3
Purge & Pressurization . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3
Overview . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3
PPU Physical Dimensions. . . . . . . . . . . . . . . . . . . . . . . . 3
PPU Electrical Data. . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3
InPac Purge & Pressurization Add-On Data. . . . . . . . . . 3
Detailed Options
Stack Package . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3
Alternating Panel (Multiplexer). . . . . . . . . . . . . . . . . . . . 3
Gas Monitors and Alarms. . . . . . . . . . . . . . . . . . . . . . . . 4
Spin Filter . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
Chemical Filtration. . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
Third Party Certifications . . . . . . . . . . . . . . . . . . . . . . . . 4
Corrosion Resistant Coil Coatings . . . . . . . . . . . . . . . . . 4
Carboline Coating. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
Nomenclature. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 46
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Specific Systems :: 7655 East 41st Street, Tulsa, OK 74145
Industry Proven ReliabilityMany environmental control units (ECUs) used in special
industrial applications are simply modified versions of
commercial-duty units. The very nature of a modified commercialunit requires compromises in features, quality control, and
supportability. Fully custom one-of-a-kind units are costly, can
take a very extended amount of lead time to design and fabricate,
and carry the associated risks with first run designs. Specific
Systems solves these problems with our modular InPac series
product line engineered specifically for heavy-duty industrial use
in petrochemical, process, and power industries. The Specific
Systems InPac Series is the most extensive line of industrial HVAC
units specifically designed for these applications.
Ranging from 1 to 40 tons, InPac units are designed to providesafe and effective environmental control under the most
difficult conditions. For over 35 years, Specific Systems has been
manufacturing ECUs that perform reliably in the most challenging
industrial applications including hazardous explosive areas. While
the standard InPac modular design is based on a wall-mount
configuration, pad, roof, and split system designs are available
using the same standard proven modular designs and components.
Record of InnovationSpecific Systems pioneered the use of redundant refrigeration
circuits as a standard design, and set an industry standard forcustom industrial wall-mounted units with its first InPac system.
That tradition of innovation continues today in each of Specific
Systems product lines. Our adoption of ozone-friendly R-410A
as our standard refrigerant and use of high quality materials
such as 16-gauge hot-dipped galvanized steel, stainless steel,
copper, etc, as well as industrial wiring methods improve theserviceability and service life of the units. Modern standard
cabinet design improvements have refined the fit, finish, and
service accessibility of the ECUs.
Customization is StandardWith our history of defining the benchmark for industrial
packaged HVAC and pressurization along with the skill of our
experienced engineers, we are able to provide a standardized
solution with many optional features to fit your individual
application. Using our modular design, a standard vertical wall-
mount unit design can be easily reconfigured to a fully-explosionproof rooftop, pad-mount, or split configuration, incorporating
optional features such as chemical filtration, steam or electric
heat, gas alarms, and fresh air stacks. Modular options like
these allow much shorter lead times than are available with fully
custom units. The standard InPac design packages all options in
a single, standard fixed-width enclosure (i.e. frame size) offering
ease of maintenance seldom found in custom industrial ECUs.
InPac wall-mount units can normally be fully serviced from
inside the conditioned area, with easy access to the systems
dual refrigeration circuits and controls. This through-the-wall
maintenance accessibility is very desirable when the units areinstalled onto a pier-mounted building
Dual redundant refrigeration circuits are standard on all units,
and are an extremely important asset in critical applications.
The inherent redundancy of two complete refrigeration
systems allows for a minimum 50% cooling system backup
in the event of a single circuit failure and extends the life
of the compressors and other components by alternating
cycles between the circuits. 100% complete redundancy is
also available with backup evaporator blowers, fans, and
isolated dual controls. InPac units can also serve to purge andpressurize the conditioned area when necessary, and when
required by NFPA 496 area reclassification.
Commitment to QualityIndustrial-duty, corrosion-resistant components, UL listed
control panels, CSA/UL listed and labeled units, and a host of
available options make the InPac modular line of industrial
ECUs the finest HVAC solution available.
Explosion Proof Redundancy:
The unit shown is an InPac 636
(3 ton) fully redundant system
with complete explosion proofing
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Four things to
know whenchoosing your
Specific System
HVAC unit
#1 Required Cooling LoadRequired cooling load is determined by the size of the area to be conditioned including total
interior volume (occupiable space plus any area above a dropped ceiling and below a raised
floor), number of occupants, total heat contribution of all electrical equipment contained in the
area, R/U-values of wall, floor, and ceiling insulation system, as well as the final geographical
destination of the unit/building. Our trained staff will be happy to assist you in preparing a verydetailed computerized load study calculation for your unique application.
#2 Hazardous Location (if applicable)Depending on the types of hazardous materials and their likelihood of being in the atmosphere,
your application may require gas alarms, chemical filtration, a purge & pressurization system,
stack packages, and various explosion proof/spark proof application features dictated by
the particular area classification. The Specific Systems InPac series of industrial HVAC and
pressurization systems are the only fully certified product line of their type in the industry. InPac
series units are third-party listed and labeled for use in both general purpose and hazardous areas.
#3 Likelihood of Corrosive Agents in the EnvironmentFrom salt water to sulfur compounds, corrosive agents are abundant in many industrial and
petrochemical facilities. Knowing the types of corrosion likely to occur in your application is
helpful in determining the cabinet material (i.e.galvanized steel, stainless steel or aluminum),
filtration (HEPA, chemical, etc.), and coil and copper coatings best suited to your application.
We have over 35 years of experience in the application of HVAC and pressurization systems in
corrosive atmospheres and will be happy to assist you with your particular application.
#4 Unit ConfigurationWhile our most popular unit configuration ordered is the vertical wall-mounted packaged
to/through-the-wall, some applications require roof mounted, pad mounted, or split system
configurations, often useful in buildings where wall space is limited. Page 18 has moreinformation on selecting the proper unit configuration for your application.
www.specificsystems.com :: (918) 663-9321 :: (918) 663-5498 fax
Class & Division Overview
Class I: Flammable gases or vapors may be or are present
Class II: Combustible dust may be or is present
Class III: Ignitable fibers may be or are present
Division 1: Hazard present under normal conditions
Division 2: Hazard stored in sealed containers, and is present only
under abnormal conditions, as through accidental release.
Typical Class I Locations
Petroleum refineries and gasoline storage and dispensing areas
Industrial firms that use flammable liquids in dip tanks for parts
cleaning, etc.
Petrochemical companies that manufacture chemicals from gas
and oil
Dry cleaning plants where vapors from cleaning fluids can be present
Spraying areas where they coat products with paint or plastics
Aircraft hangars and fuel servicing areas
Operations involving storage and handling of liquefied petroleum
gas or LNG
Typical Class II Locations
Grain elevators, flour and feed mills
Plants that manufacture, use, or store magnesium or aluminum
powders
Plants that have chemical or metallugical processes: producers of
plastics, medicines, and fireworks, etc.
Producers of starch or candies
Spice-grinding plants, sugar plants, and cocoa plants
Coal preparation plants and other carbon-handling or processing
areas
Typical Class III Locations
Textile mills, cotton gins, cotton seed mills and flax processing
plants
Any plant that shapes, pulverizes, or cuts wood and creates
sawdust or flyings
Note: Fibers and flyings are not likely to be suspended in the air,
but can collect around machinery or on lighting fixtures where heat,
a spark, or hot metal can ignite them.
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Specific Systems :: 7655 East 41st Street, Tulsa, OK 74145
Specific Systems InPac units are most often used in petroleum, petrochem, production,
processing facilities, pipeline pump stations, power/utility distribution, waste water treatment,
and grain processing facilities. With a wide selection of options and configurations available for
the InPac series units, the most custom industrial applications can be fit to a tee.
Petroleum ProcessingSpecific Systems has been dedicated to the design, engineering, and manufacturing of special
application environmental control systems for the petroleum and process industries for over 35
years. Our engineering oriented company places special emphasis on durability of design with the
ability to withstand adverse atmospheric conditions, including spark resistant and explosion proof
areas. In offshore production platforms as well as onshore facilities, many with very corrosive
atmospheres, the InPac series units consistently meet and exceed those challenges.
Offshore Petroleum FacilitiesOffshore oil processing and production facilities present some of the worlds most corrosive and
challenging environments. Equipment used in these facilities must withstand salt spray as wellas corrosive chemicals and fumes produced during petroleum processing.
HVAC units used in these adverse conditions must be designed to handle the harsh conditions
including hydrogen sulfides and many other corrosive chemicals. Specific Systems InPac units
are designed, engineered, and manufactured to withstand those and other corrosive elements,
as well as explosive environments.
Power / Utility DistributionInPac customers include many energy-related companies, including power generation and
distribution. These companies use high capacity Specific Systems InPac units to cool and protect
the power distribution switchgear, MCC, VFD, and process equipment in packaged controlcenters.
Our engineers are always available to assist in calculating capacity needs for your specific
applications by running heat load studies based on internal electrical and electronic equipment
and internal and ambient design temperatures.
Other IndustriesAlong with the petrochemical, utility generation, and distribution industries, Specific Systems
manufactures systems destined for use by many other special industries as well as military and
governmental agencies. Specific Systems InPac units are found in such diverse applications as
food processing, space shuttle ground support systems, and Americas space defense initiative.
Grain and ethanol production facilities and explosive production facilities are all users of
Specific Systems InPac units.
Whichindustries
benefit fromusing InPac
environmentalcontrol units?
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www.specificsystems.com :: (918) 663-9321 :: (918) 663-5498 fax
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Specific Systems :: 7655 East 41st Street, Tulsa, OK 74145
InPac units include as standard what many others consider
modifications or special features. Beginning with 16-gauge
powder coated galvanized steel cabinets with stainless steel
fasteners and drain pans, InPacs are industrial duty by design.
Standard features are listed here.
Cabinet Construction All of Specific Systems InPac units
incorporate 16-gauge or heavier hot-dipped galvanized steel
as the standard cabinet material. Already very corrosion-
resistant, the galvanized steel is powder coated in-house
after fabrication to a thickness of four mils in our standard
nitro blue, white, or custom color of your choosing. This adds
an additional level of protection beyond wet paint coatings
commonly used in custom and commercial-grade HVAC units.
Dual Fans Providing conditioned air into a space is
the main purpose of an ECU, and InPac units are built to
deliver. All InPac units in capacities from two tons (24,000
BTUH) to 40 tons (480,000 BTUH) utilize dual spark-proof
evaporator blower assemblies. Two forward-curved blowers
run concurrently on a double-shafted industrial grade motor
to distribute the air-handling load with increased total
airflow. If necessary, two additional blowers can be optionedto serve as redundant backups and assist in the purging
and pressurization of the area in the event of a pressure
loss, meeting the exit velocity threshold required by NFPA
496. Spark-proof axial condenser fans are standard on InPac
units with dual fans on unit capacities fifteen tons (180,000
BTUH) to twenty tons (240,000 BTUH), with the twenty-five to
forty ton (300,000 to 480,000 BTUH) units incorporating four
independent condenser fans.
Evaporator and Condenser Coils Our standard coils are
constructed from heavy-weight rifled copper tubes mechanically
bonded to aluminum fins. All InPac evaporator and condenser
coils interlace two completely separate refrigeration circuits,
allowing the InPac unit footprint to remain as small as possible
while still offering the redundancy and efficiency of four separate
coils. Highly corrosion resistant copper fin/copper tube coils are
available as an option.
Compressor Two hermetically-sealed scroll compressors
comprise the heart of the InPac series units. Crankcase
heaters are provided as a standard feature to further extend
the life of compressors by helping to keep the refrigerant
separate from the lubricant during off-cycles in cold climates,
thereby lessening the chance of compressor bearing damage
due to lubricant migration.
Control Systems UL 508A Listed and labeled control panels
are located in the unit chassis, but can be remotely mounted if
requested. Our control panels utilize the most reliable industrial
components and modern technology with all wires numbered
Redundancy is Standard
InPac 12000 series unit, Shown in standard non-explosion proof design.
with ductmate flange for easy integration
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and labeled for easy recognition during service. Basic features
of standard InPac HVAC control panels include two-stage
control on both heating and cooling, automatic switching, and
manual override switches for both stages, if desired.
Temperature Control Close-tolerance temperature control
is provided by a dual-stage digital thermostat, generally
placed on the unit; alternatively, it can be remotely mounted
if required. If desired, a remote temperature and interface
control panel capable of controlling multiple individual units
from a single location can also be provided (see page 39).
Power Control Fans, compressors, and other components in
standard InPac units are automatically shut down by numerous
safety devices, depending on any of several overload conditions.
Standard fault interrupts on InPac units include high and low
refrigerant pressure on both circuits, evaporator coil freeze,
compressor high current/temp overload, high temperature in the
heating coil, fan motor overloads, and compressor restart delay.
Each of these faults can be wired to trigger a local and remote
alarm if desired.
Filtration The standard InPac return air filter is a 1"
aluminum frame washable flexible polyurethane foam media
(UL Class 2). The standard InPac outside air fiter is a 2"
Farr 30/30, a MERV-8 pleated panel filter that meets most
industrial and commercial filtration requirements. Additional
special and high efficiency filtration, including HEPA, can
be provided as shown in the optional equipment list. Please
check with your sales representative for full details on
available filtration options.
Alarms System failure alarm Form C contacts for each of
the two refrigeration circuits are provided on all units. Units
ordered with the optional NFPA 496 purge & pressurization
package also include purge system failure, instantaneous and
sustained building pressure loss alarms as standard features.
All alarms offer one or more Form C dry contacts for interface
to remote monitoring systems for notification of an alarm
event. A multitude of other alarms, as well as unit mounted
visual and audible indicators are available as options.
Front View (From inside the conditioned area). Note redundant piping for
dual refrigeration circuits including two receivers
Rear View (From outside the conditioned area). Note the redundant
compressors and blowers, as well as optional electric heat and filter dryers.
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In addition to the many standard features, a large number of
options are available for customization of your InPac unit. Many
of these options are available in packages specially selected
and designed for applications such as low ambient conditions,
corrosive environments, and classified hazardous locations.
Many available options are listed here, with others available
by special order. Please contact us if you have any questions
regarding which options are required or recommended for your
unique application.
Heat Likely the most common option, heat is available inall units. Specific Systems heater options, when paired with
a humidistat and humidifier, if required, will help maintain
a set humidity level in the conditioned area, improve the
comfort level of personnel, and reduce the risk of static
electrical damage to industrial control equipment. Low
temperature electric fin-tube elements are available, and can
be ordered in very low watt-density UL/CSA listed and labeled
explosion proof configurations. Hydronic and steam coils are
also available for supply air, outside air, and pre-heating.
Coil Coatings In corrosive environments, chemicals in
the air are abundant and can destroy untreated aluminum
and copper in a very short time. For applications in these
areas, we offer Esgard, TechniCoat, E-Coat, Heresite, and
Thermoguard coil coatings. Each of these coatings is suited
to individual sets of corrosive chemicals and environments,
so contact our headquarters or your sales rep to
determine which coating is correct for your application.
Routinely, environments requiring coil coatings also require
some type of additional air filtration, including chemical
filtration to reduce the level of corrosive gases in an area
such as a process control room.
Chemical Filtration Chemical filtration systems are
designed to keep corrosive, toxic, and hazardous gases such
as H2S and SO
2, often present in outside air in petroleum and
petrochem areas, out of conditioned areas where personnel
and sensitive electronic equipment are housed. Numerous
filtration options can be incorporated directly into the existing
InPac cabinet as modular add-on packages, adding minimal
depth to the unit, or in some cases, provided as a separate and
self-contained unit.
Economizers As the ambient outside air temperature
falls below designed room conditions, so falls the need
for mechanical cooling. Our economizer option adds an
automatic outside/return air damper control to allow cool
ambient air to help condition the inside space. This option
adds what is termed free cooling to the unit, extending the
life of the compressors and conserving power.
Options for Your Unique Needs
InPac 8000 Series with explosion proof control panel, custom sized
chemical filter box, stack adapter, and purge/pressurization
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HEATERS
2-Stage Electric Heat, 1040KW
Tube-Finned Heat, 1040KW
2-Stage Explosion Proof Electric Heat
Flanged (Remote) Duct Heater
Crankcase Heater
Explosion Proof Crankcase Heater
EVAPORATOR & CONDENSER FANS
Auxiliary Evaporator
Epoxy Coated Blower Wheels
AMCA B Add-on
Auxiliary Condenser Fan
Epoxy Coated Condenser Fan Hub
NFPA 496 Purge & Pressurization
CONTROL PANELS
NEMA 4X Enclosure
NEMA 7 Enclosure
Remote Control Panel
ALARMS, VISIBLE & AUDIBLE
Explosion Proof Loss Of Pressure Alarm
Explosion Proof Strobe Light
High Temperature Alarm
Low Temperature Alarm
Oxygen Depletion Alarm
Push To Test Alarm Lights
Clogged Filter Alarm
Temp & Alarm Monitoring
High/Low Voltage And Phase Loss Monitor
Beacon, Non-Hazardous Location
CORROSION RESISTANT COATINGS AND
ADDITIONAL COIL OPTIONS
Esgard
TechniCoat
Heresite
Electrofin E-Coat
Thermoguard
Tin Dipped Coils
Copper Fin Copper Tube
All Copper Pipes
Low Fin Coils
Steam Coil
Steam Coil Valve
Water Cooled Condenser
Carboline Coated Condenser Section
ADDITIONAL CABINET OPTIONS
Type 304 Stainless Steel Cabinet
Type 316 Stainless Steel Cabinet
1" or 2" Double Wall Construction
(Standard galvanized or stainless steel)
All Welded Construction
DETECTION
Freezestat
Smoke Detector
Corrosive Gas Detection
Combustible Gas Detection
Toxic Gas Detection
Firestat
Oxygen Deficiency Monitor
Detectors for Most Gases
FILTER ACCESSORIES
Chemical Filtration Package
Spin Filter, Evap or Cond
Roll Filter
HEPA Filter
SO2Filter
Carbon Filter
Filter Gauge
AIR STACK ACCESSORIES
Rain Cap With Birdscreen
Freestanding Stack Kit
Building Brace Kit
Type 304 / 316 Stainless Steel
Spiral Wound
THIRD PARTY CERTIFICATIONS
City Of LA Approval
City Of LA Res. Report
CSA Approval (UL 1995) (In House)
UL 1995 UL Standard For Safety Heating
And Cooling Equipment Second Edition;
CAN/CSA C22.2 No 236-95
Field Label Provided By CSA
UL Field Evaluation For A Non-Explosion
Proof Unit
UL 1995 Heating & Cooling Equipment
UBC Seismic Zone 4 Calculation
And California PE Stamp Showing
Compliance
*See page 43 for more information
ACCESSORIES
Airflow Switch
Explosion Proof Airflow Switch
Airflow Metering Station
Backdraft Damper
Remote Thermostat
Remote Temperature Sensor
Electronic / Programmable Thermostat
Humidistat
De-Humidistat
Humidifier Systems
Onguard CCT
Pressure Regulating Valve
Double Throw Transfer Switch NEMA 7
NEMA 7 Disconnect
Non-Explosion Proof Disconnect
(Standard or NEMA 4X)
Flooded Condenser
Low Ambient Package
Fan Cycle Switch
Custom Paint
Motor Space Heater
Purge Air Damper
Economizer Fully or Non-Modulating
Power Transfer Kit
Auto & Manual Switchover
Override to Energize Standby Unit
and Lockout
Lead / Lag Controller With Automatic
Changeover To Backup
Lead / Lag Controller To Alternate Two
Units
Compressor Lead / Lag Control Modification
Control Panel Space Heater
Remote Controls
PLC With Touchscreen
PLC Interface With Remote
Adjustable Pressure Switch
Supply Air Plenum
Sound Attenuator
Variable Frequency Drive (Not Available On
Single Phase Explosion Proof Units)
S.S. Mist Eliminator
Concentric Supply / Return Diffuser
Filter Grill
Wash Down Motor
12" Battery Room Exhaust Fan Unit
Condensate Overflow Alarm
SCR Heat Controller
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HVAC Request Form
Date: _____________________________ Project: _______________________________
To: _____________________________ Contractor: _______________________________
Attn: _____________________________ Engineer: _______________________________Reference:_____________________________ Prepared by: _______________________________
Based on the information below, we recommend the following:
Quantity: __________ Capacity (Tons): __________
Model: __________ Heating: __________
Building Description
Building Size: __________ H __________ W __________ L
Insulation Factor: __________ Roof __________ Walls __________ Floor
Equipment Heat Load, Sensible: __________ BTU/KW/Hr
Equipment Heat Load, Latent: __________ BTU
Lighting Heat Load: __________ BTU/KW/Hr
Number of Building Personnel: __________
Location of Building: ________________________________________
Avg. Design Temp, Outside: DB/WB: __________ Winter; __________ Summer
Avg. Design Humidity: __________ Winter; __________ Summer
Avg. Design Temp, Inside: DB/WB: __________ Winter; __________ Summer
Voltage: __________ V __________ Phase
Number of Air Changes: __________, __________ Building Pressure Requirement
Notes:__________________________________________________________________________
______________________________________________________________________________
Building Sketch
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60 Series 61 (1 Ton) 62 (2 Ton) 63 (3 Ton)
600 Series 624 (2 Ton) 636 (3 Ton) 648 (4 Ton) 660 (5 Ton)
6000 Series 6090 (7.5 Ton) 6120 (10 Ton)
8000 Series 8090 (7.5 Ton) 8120 (10 Ton) 8180 (15 Ton)
12000 Series 12180 (15 Ton) 12240 (20 Ton)
14000 Series 14300 (25 Ton)
14360 (30 Ton)
16000 Series 16420 (35 Ton) 16480 (40 Ton)
Product
InformationSection
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60 Series Overview
The InPac 60 Series is the physically smallest of the InPac
units, with capacities ranging from one through three tons.
Recently updated, the new InPac 60 Series moves more
air than its predecessor and is more efficient with only a
very slight increase in exterior dimensions. Using updated
fan and coil technology, the new InPac 60 Series improves
performance over the previous design without compromising
Specific Systems well-known modular design and ease of
service. Models 61 and 62 utilize a single refrigerant circuit,
while Model 63 contains dual refrigerant circuits for backup
redundancy.
The small footprint and high reliability of the direct drive
motor design makes the 60 Series the optimal choice for small
control room shelters in hazardous and corrosive environments
such as gas and process analyzer houses. As with the entire
InPac line, the 60 Series is available with UL/CSA labeled
and listed explosion proof designs, explosion proof heating,
chemical filtration, and purge/pressurization options for
meeting the most stringent hazardous area requirements.
As with the other InPac units, corrosive and toxic gas
alarms are optional, as are corrosion resistant coil coatings,
stainless steel cabinetry (shown). Purge & pressurization is
available with the addition of a module that includes a dual
spark-proof blower and outside air damper assembly.
An optional chemical filter module contains chemical filter
cells, a Farr 30/30 MERV 8 pre-filter, and an optional booster
blower. Additional filtration options include high efficiency
Riga-Flofinal filters and higher MERV ratings. Optional
stack packages can be mounted on either side or the back
of the purge & pressurization module simply by moving the
door with the outside air inlet ring flange.
InPac 63 in stainless steel with explosion proof control box
Left: InPac 62 in stainless steel with chemical filtration/purge &
pressurization option
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Electric Power
230/240V
160Hz
200V
150Hz
460/480
360Hz
230/240
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Fan Motor FLA 11.1 12.8 3.2 6.4 2.3 2.5 5.4 2.7
Compressor Motor RLA 12.8 11.3 3.7 7.4 3.0 3.3 6.5 3.1
Heat, Exp. Proof, Amps, (KW) 14.1 (3.4) 11.7 (2.3) 5.4 (4.5) 8.1 (3.4) 4.7 (3.4) 4.3 (2.8) 6.8 (2.3) 6.5 (6.5)
Heat, Standard Amps (KW) 15.0 (3.4) 13.0 (2.6) 18.0 (15.0) 27.1 (11.2) 15.6 (11.2) 14.3 (9.4) 22.6 (7.8)
Total FLA,
Cooling
w/o Auxiliary Fan 23.9 24.1 6.9 13.8 5.3 5.8 11.9 5.8
w/Auxiliary Fan 35.0 36.9 10.1 20.2 7.6 8.3 17.3 8.5
Heat,
Explosion
Proof
MCA w/o Aux Fan 31.5 30.6 10.8 18.1 8.8 8.5 15.3 11.5
MOP w/o Aux Fan 42.8 39.1 15.4 24.6 12.9 12.2 20.7 17.3
MCA w/Aux Fan 42.6 43.4 14.0 24.5 11.1 11.0 20.7 14.2
MOP w/Aux Fan 53.9 51.9 18.6 31.0 15.2 14.7 26.1 20.0
Heat,
Standard
MCA w/o Aux Fan 32.6 32.3 26.5 41.9 22.4 21.0 35.0
MOP w/o Aux Fan 44.9 42.1 43.7 67.4 37.4 34.7 56.3
MCA w/Aux Fan 43.7 45.1 29.7 48.3 24.7 23.5 40.4
MOP w/Aux Fan 56.0 54.9 46.9 73.8 39.7 37.2 61.7
Unit LRA* 88 AMP 81 AMP 25 AMP 51 AMP 20 AMP 22 AMP 44 AMP 21 AMP
Operating Range 216V253V 180V220V 432V506V 216V253V 373V456V 342V418V 180V220V 517V600V
Electric Power
230/240V
160Hz
200V
150Hz
460/480
360Hz
230/240
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Fan Motor FLA 11.1 12.8 3.2 6.4 2.3 2.5 5.4 2.7
Compressor Motor RLA 12.8 11.3 3.7 7.4 3.0 3.3 6.5 3.1
Heat, Exp. Proof, Amps, (KW) 14.1 (3.4) 11.7 (2.3) 5.4 (4.5) 8.1 (3.4) 4.7 (3.4) 4.3 (2.8) 6.8 (2.3) 6.5 (6.5)
Heat, Standard Amps (KW) 15.0 (3.4) 13.0 (2.6) 18.0 (15.0) 27.1 (11.2) 15.6 (11.2) 14.3 (9.4) 22.6 (7.8)
Total FLA,
Cooling
w/o Auxiliary Fan 23.9 24.1 6.9 13.8 5.3 5.8 11.9 5.8
w/Auxiliary Fan 35.0 36.9 10.1 20.2 7.6 8.3 17.3 8.5
Heat,
Explosion
Proof
MCA w/o Aux Fan 31.5 30.6 10.8 18.1 8.8 8.5 15.3 11.5
MOP w/o Aux Fan 42.8 39.1 15.4 24.6 12.9 12.2 20.7 17.3
MCA w/Aux Fan 42.6 43.4 14.0 24.5 11.1 11.0 20.7 14.2
MOP w/Aux Fan 53.9 51.9 18.6 31.0 15.2 14.7 26.1 20.0
Heat,
Standard
MCA w/o Aux Fan 32.6 32.3 26.5 41.9 22.4 21.0 35.0
MOP w/o Aux Fan 44.9 42.1 43.7 67.4 37.4 34.7 56.3
MCA w/Aux Fan 43.7 45.1 29.7 48.3 24.7 23.5 40.4
MOP w/Aux Fan 56.0 54.9 46.9 73.8 39.7 37.2 61.7
Unit LRA* 88 AMP 81 AMP 25 AMP 51 AMP 20 AMP 22 AMP 44 AMP 21 AMP
Operating Range 216V253V 180V220V 432V506V 216V253V 373V456V 342V418V 180V220V 517V600V
ElectricalData
Model61
ElectricalD
ata
Model62
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Electric Power
230/240V
160Hz
200V
150Hz
460/480
360Hz
230/240
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Fan Motor FLA 11.1 12.8 3.2 6.4 3.1 3.4 5.4 2.7
Compressor Motor RLA 12.8 (25.6) 11.3 (22.6) 3.7 (7.4) 7.4 (14.8) 3.0 (6.0) 3.3 (6.6) 6.5 (13.0) 3.1 (6.2)
Heat, Exp. Proof, Amps, (KW) 14.1 (3.4) 11.7 (2.3) 5.4 (4.5) 8.1 (3.4) 4.7 (3.4) 4.3 (2.8) 6.8 (2.3) 6.5 (6.5)
Heat, Standard Amps (KW) 15.0 (3.4) 13.0 (2.6) 18.0 (15.0) 27.1 (11.2) 15.6 (11.2) 14.3 (9.4) 22.6 (7.8)
Total FLA,
Cooling
w/o Auxiliary Fan 23.9 24.1 6.9 13.8 5.3 5.8 11.9 5.8
w/Auxiliary Fan 35.0 36.9 10.1 20.2 7.6 8.3 17.3 8.5
Heat,
Explosion
Proof
MCA w/o Aux Fan 31.5 30.6 10.8 18.1 8.8 8.5 15.3 11.5
MOP w/o Aux Fan 42.8 39.1 15.4 24.6 12.9 12.2 20.7 17.3
MCA w/Aux Fan 42.6 43.4 14.0 24.5 11.1 11.0 20.7 14.2
MOP w/Aux Fan 53.9 51.9 18.6 31.0 15.2 14.7 26.1 20.0
Heat,
Standard
MCA w/o Aux Fan 32.6 32.3 26.5 41.9 22.4 21.0 35.0
MOP w/o Aux Fan 44.9 42.1 43.7 67.4 37.4 34.7 56.3
MCA w/Aux Fan 43.7 45.1 29.7 48.3 24.7 23.5 40.4
MOP w/Aux Fan 56.0 54.9 46.9 73.8 39.7 37.2 61.7
Unit LRA* 101 AMP 92 AMP 29 AMP 58 AMP 23 AMP 26 AMP 51 AMP 24 AMP
Operating Range 216V253V 180V220V 432V506V 216V253V 373V456V 342V418V 180V220V 517V600V
Model63
E l t i l D t
Industrial Grade Wiring Techniques
All InPac units utilize point-to-point industrial grade wiring. The photo above shows a typical InPac electrical panel showing multiple options
including VFD controller, explosion proof controls, and redundant gas alarms. Note the hand loomed and labeled wiring for ease of maintenance.
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System Configurations
C
AD
B
A
C
B
D
Serviceable by DesignWall Mount:The standard vertical through the wall mounted InPac units are designed to provide
maximum capacity in the smallest possible footprint. By engineering the cabinet to fit through
the wall, mounting stability is combined with ease of access, allowing most components of the
unit to be serviceable from within the conditioned space.
Roof Mount:Roof mount configurations use the same standard modules as the wall mounted
units, arranged in a skid-based horizontal configuration for mounting on the roof of the building.
Slimline:Slimline unit cofigurations are also available. In this configuration, the modular
condenser and evaporator sections are separated and then placed side-by-side (instead of
vertically) as in the wall mounting configuration. The slimline configuration should be considered
where the height of the wall mounted configuration will not fit the application.
Split System:Much like the HVAC systems in most residential homes, the split system
configuration places the condenser section of the InPac unit outside the building, requiring
only the evaporator/fan section to be mounted to the building itself. Evaporator sections can be
placed inside the building, vertical/horizontal, wall mounted, freestanding, ceiling hung, or roof
mounted, making them an excellent selection for existing building retrofit applications.
Packaged Pad Mount:In a pad mounted system, both the evaporator and condenser sections
are located outside the conditioned area, with supply and return air brought in through attached
ductwork, thus reducing the interior building noise level and conserving valuable wall space.
Standard vertical, horizontal, slimline, and roof mount configurations can be pad mounted.
Wall Mount
Easiest installation
Easiest serviceability
Larger units may require some
exterior bracing
Roof Mount
Distance from ground allows
for shorter stack
Uses minimal wall space
Perfect for applications with
minimal exterior clearance
Split System
QuieterCondenser section
mounted outside
Uses minimal wall space
All-purpose, can be used on all
building types
Packaged Pad Mount
Lowest interior noise level
Uses minimal wall space
Requires no structural bracing
InPac 60016000 Series
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www.specificsystems.com :: (918) 663-9321 :: (918) 663-5498 fax
Airflow Configurations
Wall Mount
Roof Mount
Split System
Standard Airflow
Standard Bottom Supply / Return
Front Supply / Return
Top Supply / Bottom ReturnSide Supply / Side Return
Side Supply / Bottom Return
Top Supply / Front Return Standard Airflow
Reverse Airflow
End Supply / Return Side Supply / Return
EvaporatorDischarge:Front
EvaporatorIntake:Front
CondenserDischarge:Rear
CondenserIntake:Side
Reverse Airflow
EvaporatorIntake:Front
EvaporatorDischarge:Front
CondenserDischarge:Rear
CondenserIntake:Side
Upblast Airflow
EvaporatorDischarge:Top
EvaporatorIntake:Front
CondenserDischarge:Rear
CondenserIntake:Side
Plenum Airflow
EvaporatorDischarge:Top ThroughOptionalPlenum
EvaporatorIntake:Front
CondenserDischarge:Rear
CondenserIntake:Side
EvaporatorDischarge: Side
EvaporatorIntake: Side
CondenserDischarge: Side
CondenserIntake: Side
Evaporator Section Building Interior Condenser Section Building Exterior
EvaporatorDischarge: Bottom
EvaporatorIntake: Bottom
CondenserDischarge: End
CondenserIntake: Side
CondenserDischarge: End
EvaporatorIntake: Side
EvaporatorDischarge: End
CondenserIntake: End
InPac 60016000 Series
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20/480 Specific Systems :: 7655 East 41st Street, Tulsa, OK 74145
A B C D E F G H J
Series Unit Width
Basic
Unit Depth Unit Height
Unit Depth
With Filter
Box
Supply Air
Width
Return Air
Width
Supply Air
Height
Return Air
Height
Wall Pass
Through
Depth
600 48.00 27.00 94.87 51.00 32.00 32.00 10.00 18.00 7.50
6000 48.00 27.00 94.87 51.00 44.00 44.00 16.00 22.00 7.50
8000 60.00 39.00 102.00 63.00 55.00 55.00 18.00 26.50 7.50
12000 72.00 51.00 102.00 75.00 55.00 55.00 12.00 26.50 7.50
14000 72.00 75.00 102.00 99.00 55.00 66.00 12.00 38.00 7.50
16000 86.00 121.00 B+D 114.00 121.00 B+D 68.00 36.00 2 18.00 40.00 7.50
A B C D E F G H
Series Unit Length Unit Width Unit HeightSupply
Air WidthReturn
Air WidthSupply Air
DepthReturn Air
Depth Skid Base
600 82.00 48.00 32.00 32.00 32.00 10.00 18.00 6.00
6000 106.00 48.00 52.00 43.00 44.00 16.00 22.00 6.00
8000 132.00 60.00 45.00 55.00 55.00 18.00 26.50 6.00
12000 134.00 72.00 54.00 55.00 55.00 12.00 26.50 6.00
14000 132.00 72.00 78.00 55.00 66.00 12.00 38.00 6.00
16000 153.00 86.00 60.00 66.00 66.00 12.00 38.00 6.00
A
(Inside) Front Side (Exterior) Rear
C
E
F
B 2" flashing on 3 sides
GSUPPLY
RETURN
H
D
J
PURGEOFF/AUTOPOWER ON
PRESS.LOSSPURGE
A
A
B
F EG
Side End Top View
BC
HD
Physical DimensionsInPac 60016000 Series
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Model
Total Cap. @ 60Hz, 80 DB / 67 WB Entering Evap.
75F
(24C)
85F
(29C)
95F
(35C)
110F
(43C)
120F
(49C)
624 27810 26400 24900 22600 21100
636 55100 52270 49250 44590 41360
648 55620 52760 49900 45300 42100
660 69920 66560 63110 57780 53910
6090 112150 106400 100500 91600 85400
6120 140600 133430 126350 115010 107230
8090 112450 106710 100800 91800 85600
8120 140600 133570 126360 115010 107220
8180 200410 190450 180900 165000 153800
12180 218400 208260 197800 181000 169300
12240 265022 252760 239890 219980 205676
14300 363260 346360 329300 302700 283600
14360 408710 389500 369800 339200 316800
16420 530920 503510 474520 430210 396590
16480 582900 553550 525530 475590 453170
Refrigerant Capacity
Model Standard w/Receivers
624 4 14
636 4 14
648 4 14
660 4 14
6090 9.5 30
6120 9.5 30
8090 8 33
8120 9 27
8180 14 40
12180 16 41
12240 24 53
14300 28 68
14360 30 70
16420 39 88
16480 48 106
CFM @ 0.50" S.P. Nominal Capacity
Model 60Hz 50Hz 60 Hz 50 Hz
624 1750 1460 24000 19920
636 1750 1460 36000 30000
648 1750 1460 48000 40000
660 1750 1460 60000 50000
6090 3700 3070 90000 74700
6120 3700 3070 120000 100000
8090 3700 3070 90000 74700
8120 3700 3070 120000 100000
8180 5700 4730 180000 150000
12180 5700 4730 180000 150000
12240 5700 4730 240000 200000
14300 10000 8300 300000 250000
14360 12000 10000 360000 300000
16420 14000 11600 420000 349000
16480 14000 11600 480000 398000
Model
Sensible Cap. @ 60Hz, 80 DB / 67 WB Entering Evap.
75F
(24C)
85F
(29C)
95F
(35C)
110F
(43C)
120F
(49C)
624 18850 18310 17720 16830 16220
636 37430 36400 35210 33400 32150
648 37700 36600 34440 36660 32450
660 43770 42360 40760 38650 36880
6090 84250 81950 79350 76110 73840
6120 94880 92660 89820 84850 81800
8090 84370 82070 79480 76140 73960
8120 95570 92700 89800 84890 81800
8180 137550 133490 129920 123640 119250
12180 147480 143740 139530 132890 128330
12240 167570 162090 156210 148180 141780
14300 256020 249090 242150 232310 224880
14360 292810 295010 276810 264720 257400
16420 367120 356820 342490 326170 311350
16480 387970 375310 366020 344070 331080
Performance & Capacity DataInPac 60016000 Series
For further capacity information, including high sensible heat loads, please consult the individual cut sheets for each system.
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Electric Power
230/240V
160Hz
200V
150Hz
460/480V
360Hz
230/240V
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Evaporator Fan Motor FLA 8.7 8.5 2.5 5.0 2.0 2.2 4.4 2.1
Condenser Motor FLA 10.7 10.6 3.1 6.2 2.3 2.5 5.4 2.6
Compressor Motor RLA 12.8 11.3 3.7 7.4 3.0 3.3 6.5 3.1
Heat 20KW, Amps (Actual KW) 26.0 (21.6) 53.2 (21.2) 29.8 (21.4) 29.7 (19.5) 55.0 (19.1) 23.3 (23.2)
Heat 15KW, Amps (Actual KW) 18.5 (15.4) 37.7 (15.0) 22.4 (16.1) 20.6 (13.5) 39.5 (13.7) 15.6 (15.5)
Heat 10KW, Amps (Actual KW) 46.1 (10.6) 40.0 (8.0) 13.0 (10.8) 26.6 (10.6) 16.0 (11.5) 14.7 (9.6) 23.1 (8.0)
Total FLA,
Cooling
w/o Auxiliary Fan 32.2 30.4 9.3 18.6 7.3 8.0 16.3 7.8
w/Auxiliary Fan 40.9 38.9 11.8 23.6 9.3 10.2 20.7 9.9
10 KW
Heat
MCA w/o Aux Fan 62.7 55.6 17.8 36.2 20.5 19.3 31.5
MOP w/o Aux Fan 83.6 73.5 23.6 48.2 28.0 26.1 41.9
MCA w/Aux Fan 71.4 64.1 20.3 41.2 22.5 21.5 35.9
MOP w/Aux Fan 92.3 82.0 26.1 53.2 30.0 28.3 46.3
15 KW
Heat
MCA w/o Aux Fan 23.9 48.7 27.7 25.9 49.9 20.2
MOP w/o Aux Fan 32.6 66.3 38.4 35.7 68.6 27.5
MCA w/Aux Fan 26.4 53.7 29.7 28.1 54.3 22.3
MOP w/Aux Fan 35.1 71.3 40.4 37.9 73.0 29.6
20 KW
Heat
MCA w/o Aux Fan 32.4 66.1 36.0 36.2 67.4 28.8
MOP w/o Aux Fan 44.8 91.5 50.4 50.5 93.8 39.9
MCA w/Aux Fan 34.9 71.1 38.0 38.4 71.8 30.9
MOP w/Aux Fan 47.3 96.5 52.4 52.7 98.2 42.0
Unit LRA* 96 AMP 87 AMP 28 AMP 56 AMP 22 AMP 25 AMP 49 AMP 23 AMP
Operating Range 216V253V 180V220V 432V506V 216V253V 373V456V 342V418V 180V220V 517V600V
Electric Power
230/240V
160Hz
200V
150Hz
460/480V
360Hz
230/240V
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Evaporator Fan Motor FLA 8.7 8.5 2.5 5.0 2.0 2.2 4.4 2.1
Condenser Motor FLA 10.7 10.6 3.1 6.2 2.3 2.5 5.4 2.6
Compressor Motor RLA 12.8 (25.6) 11.3 (22.6) 3.7 (7.4) 7.4 (14.8) 3.0 (6.0) 3.3 (6.6) 6.5 (13.0) 3.1 (6.2)
Heat 20KW, Amps (Actual KW) 26.0 (21.6) 53.2 (21.2) 29.8 (21.4) 29.7 (19.5) 55.0 (19.1) 23.3 (23.2)
Heat 15KW, Amps (Actual KW) 18.5 (15.4) 37.7 (15.0) 22.4 (16.1) 20.6 (13.5) 39.5 (13.7) 15.6 (15.5)
Heat 10KW, Amps (Actual KW) 46.1 (10.6) 40.0 (8.0) 13.0 (10.8) 26.6 (10.6) 16.0 (11.5) 14.7 (9.6) 23.1 (8.0)
Total FLA,
Cooling
w/o Auxiliary Fan 45.0 41.7 13.0 26.0 10.3 11.3 22.8 10.9
w/Auxiliary Fan 53.7 50.2 15.5 31.0 12.3 13.5 27.2 13.0
10 KW
Heat
MCA w/o Aux Fan 62.7 55.6 17.8 36.2 20.5 19.3 31.5
MOP w/o Aux Fan 83.6 73.5 23.6 48.2 28.0 26.1 41.9
MCA w/Aux Fan 71.4 64.1 20.3 41.2 22.5 21.5 35.9
MOP w/Aux Fan 92.3 82.0 26.1 53.2 30.0 28.3 46.3
15 KW
Heat
MCA w/o Aux Fan 23.9 48.7 27.7 25.9 49.9 20.2
MOP w/o Aux Fan 32.6 66.3 38.4 35.7 68.6 27.5
MCA w/Aux Fan 26.4 53.7 29.7 28.1 54.3 22.3
MOP w/Aux Fan 35.1 71.3 40.4 37.9 73.0 29.6
20 KW
Heat
MCA w/o Aux Fan 32.4 66.1 36.0 36.2 67.4 28.8
MOP w/o Aux Fan 44.8 91.5 50.4 50.5 93.8 39.9
MCA w/Aux Fan 34.9 71.1 38.0 38.4 71.8 30.9
MOP w/Aux Fan 47.3 96.5 52.4 52.7 98.2 42.1
Unit LRA* 109 AMP 98 AMP 32 AMP 63 AMP 25 AMP 28 AMP 55 AMP 26 AMP
Operating Range 216V253V 180V220V 432V506V 216V253V 373V456V 342V418V 180V220V 517V600VLRA - Lock Rotor Amps, defined as evaporator fan, condenser fan, and compressor operating at full load and one compressor at LRA; MCA - Minimum Circuit Ampacity; MOP Maximum Overcurrent Protection; To size circuit breaker, select between MCA value and MOP value
ElectricalData
Model624
ElectricalD
ata
Model636
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Electric Power
230/240V
160Hz
200V
150Hz
460/480V
360Hz
230/240V
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Evaporator Fan Motor FLA 8.7 8.5 2.5 5.0 2.0 2.2 4.4 2.1
Condenser Motor FLA 10.7 10.6 3.1 6.2 2.3 2.5 5.4 2.6
Compressor Motor RLA 12.8 (25.6) 11.3 (22.6) 3.7 (7.4) 7.4 (14.8) 3.0 (6.0) 3.3 (6.6) 6.5 (13.0) 3.1 (6.2)
Heat 20KW, Amps (Actual KW) 92.2 (21.2) 95.5 (19.1) 26.0 (21.6) 53.2 (21.2) 29.8 (21.4) 29.7 (19.5) 55.0 (19.1) 23.3 (23.2)
Heat 15KW, Amps (Actual KW) 65.2 (15.0) 68.5 (13.7) 18.5 (15.4) 37.7 (15.0) 22.4 (16.1) 20.6 (13.5) 39.5 (13.7) 15.6 (15.5)
Heat 10KW, Amps (Actual KW) 46.1 (10.6) 40.0 (8.0) 13.0 (10.8) 26.6 (10.6) 16.0 (11.5) 14.7 (9.6) 23.1 (8.0)
Total FLA,
Cooling
w/o Auxiliary Fan 45.0 41.7 13.0 26.0 10.3 11.3 22.8 10.9
w/Auxiliary Fan 53.7 50.2 15.5 31.0 12.3 13.5 27.2 13.0
10 KW
Heat
MCA w/o Aux Fan 62.7 55.6 17.8 36.2 20.5 19.3 31.5
MOP w/o Aux Fan 83.6 73.5 23.6 48.2 28.0 26.1 41.9
MCA w/Aux Fan 71.4 64.1 20.3 41.2 22.5 21.5 35.9
MOP w/Aux Fan 92.3 82.0 26.1 53.2 30.0 28.3 46.3
15 KW
Heat
MCA w/o Aux Fan 23.9 48.7 27.7 25.9 49.9 20.2
MOP w/o Aux Fan 32.6 66.3 38.4 35.7 68.6 27.5
MCA w/Aux Fan 26.4 53.7 29.7 28.1 54.3 22.3
MOP w/Aux Fan 35.1 71.3 40.4 37.9 73.0 29.6
20 KW
Heat
MCA w/o Aux Fan 32.4 66.1 36.0 36.2 67.4 28.8
MOP w/o Aux Fan 44.8 91.5 50.4 50.5 93.8 39.9
MCA w/Aux Fan 34.9 71.1 38.0 38.4 71.8 30.9
MOP w/Aux Fan 47.3 96.5 52.4 52.7 98.2 42.0
Unit LRA* 109 AMP 98 AMP 32 AMP 63 AMP 25 AMP 28 AMP 55 AMP 26 AMP
Operating Range 216V253V 180V220V 432V506V 216V253V 373V456V 342V418V 180V220V 517V600V
Electric Power
230/240V
160Hz
200V
150Hz
460/480V
360Hz
230/240V
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Evaporator Fan Motor FLA 8.7 8.5 2.5 5.0 2.0 2.2 4.4 2.1
Condenser Motor FLA 10.7 10.6 3.1 6.2 2.3 2.5 5.4 2.6
Compressor Motor RLA 16.3 (32.6) 14.4 (28.8) 4.7 (9.4) 9.4 (18.8) 3.7 (7.4) 4.1 (8.2) 8.3 (16.6) 4.0 (8.0)
Heat 20KW, Amps (Actual KW) 92.2 (21.2) 95.5 (19.1) 26.0 (21.6) 53.2 (21.2) 29.8 (21.4) 29.7 (19.5) 55.0 (19.1) 23.3 (23.2)
Heat 15KW, Amps (Actual KW) 65.2 (15.0) 68.5 (13.7) 18.5 (15.4) 37.7 (15.0) 22.4 (16.1) 20.6 (13.5) 39.5 (13.7) 15.6 (15.5)
Heat 10KW, Amps (Actual KW) 46.1 (10.6) 40.0 (8.0) 13.0 (10.8) 26.6 (10.6) 16.0 (11.5) 14.7 (9.6) 23.1 (8.0)
Total FLA,
Cooling
w/o Auxiliary Fan 52.0 47.9 15.0 30.0 11.7 12.9 26.4 12.7
w/Auxiliary Fan 60.7 56.4 17.5 35.0 13.7 15.1 30.8 14.8
10 KW
Heat
MCA w/o Aux Fan 62.7 55.6 17.8 36.2 20.5 19.3 31.5
MOP w/o Aux Fan 83.6 73.5 23.6 48.2 28.0 26.1 41.9
MCA w/Aux Fan 71.4 64.1 20.3 41.2 22.5 21.5 35.9
MOP w/Aux Fan 92.3 82.0 26.1 53.2 30.0 28.3 46.3
15 KW
Heat
MCA w/o Aux Fan 23.9 48.7 27.7 25.9 49.9 20.2
MOP w/o Aux Fan 32.6 66.3 38.4 35.7 68.6 27.5
MCA w/Aux Fan 26.4 53.7 29.7 28.1 54.3 22.3
MOP w/Aux Fan 35.1 71.3 40.4 37.9 73.0 29.6
20 KW
Heat
MCA w/o Aux Fan 32.4 66.1 36.0 36.2 67.4 28.8
MOP w/o Aux Fan 44.8 91.5 50.4 50.5 93.8 39.9
MCA w/Aux Fan 34.9 71.1 38.0 38.4 71.8 30.9
MOP w/Aux Fan 47.3 96.5 52.4 52.7 98.2 42.0
Unit LRA* 134 AMP 120 AMP 39 AMP 77 AMP 30 AMP 33 AMP 65 AMP 33 AMP
Operating Range 216V253V 180V220V 432V506V 216V253V 373V456V 342V418V 180V220V 517V600VLRA - Lock Rotor Amps, defined as evaporator fan, condenser fan, and compressor operating at full load and one compressor at LRA; MCA - Minimum Circuit Ampacity; MOP Maximum Overcurrent Protection; To size circuit breaker, select between MCA value and MOP value
Model648
E l t i l D t
Model660
E l t i l D
t
-
8/14/2019 SS InPac Catalog Opt
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Electric Power
230/240V
160Hz
200V
150Hz
460/480V
360Hz
230/240V
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Evaporator Fan Motor FLA 16.6 16.3 4.8 9.6 3.8 4.2 8.4 4.0
Condenser Motor FLA 10.7 10.6 3.1 6.2 2.3 2.5 5.4 2.6
Compressor Motor RLA 21.4 (42.8) 18.0 (36.0) 6.2 (12.4) 12.4 (24.8) 5.0 (10.0) 5.5 (11.0) 10.9 (21.8) 5.2 (10.4)
Heat 20KW, Amps (Actual KW) 92.2 (21.2) 95.5 (19.1) 26.0 (21.6) 53.2 (21.2) 29.8 (21.4) 29.7 (19.5) 55.0 (19.1) 23.3 (23.2)
Heat 15KW, Amps (Actual KW) 65.2 (15.0) 68.5 (13.7) 18.5 (15.4) 37.7 (15.0) 22.4 (16.1) 20.6 (13.5) 39.5 (13.7) 15.6 (15.5)
Heat 10KW, Amps (Actual KW) 46.1 (10.6) 40.0 (8.0) 13.0 (10.8) 26.6 (10.6) 16.0 (11.5) 14.7 (9.6) 23.1 (8.0)
Total FLA,
Cooling
w/o Auxiliary Fan 70.1 62.9 20.3 40.6 16.1 17.7 35.6 17.0
w/Auxiliary Fan 86.7 79.2 25.1 50.2 19.9 21.9 44.0 21.0
10 KW
Heat
MCA w/o Aux Fan 75.4 67.4 21.9 43.7 17.4 19.1 38.3
MOP w/o Aux Fan 96.9 85.4 28.1 56.1 22.4 24.6 49.2
MCA w/Aux Fan 92.0 83.7 26.7 53.3 21.2 23.3 46.7
MOP w/Aux Fan 113.5 101.7 32.9 65.7 26.2 28.8 57.6
15 KW
Heat
MCA w/o Aux Fan 94.1 97.4 26.8 54.4 29.9 29.0 54.9 22.5
MOP w/o Aux Fan 122.5 127.6 34.9 70.8 40.2 37.7 72.6 29.4
MCA w/Aux Fan 110.7 113.7 31.6 64.0 33.7 33.2 63.3 26.5
MOP w/Aux Fan 139.1 143.9 39.7 80.4 44.0 41.9 81.0 33.4
20 KW
Heat
MCA w/o Aux Fan 124.5 127.8 35.3 71.9 38.3 38.7 72.4 31.2
MOP w/o Aux Fan 166.4 171.5 47.1 96.1 52.2 52.5 97.8 41.9
MCA w/Aux Fan 40.1 81.5 42.1 42.9 80.8 35.2
MOP w/Aux Fan 51.9 105.7 56.0 56.7 106.2 45.9
Unit LRA* 177 AMP 153 AMP 51 AMP 103 AMP 41 AMP 45 AMP 90 AMP 43 AMP
Operating Range 216V253V 180V220V 432V506V 216V253V 373V456V 342V418V 180V220V 517V600V
Electric Power
230/240V
160Hz
200V
150Hz
460/480V
360Hz
230/240V
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Evaporator Fan Motor FLA 16.6 16.3 4.8 9.6 3.8 4.2 8.4 4.0
Condenser Motor FLA 10.7 10.6 3.1 6.2 2.3 2.5 5.4 2.6
Compressor Motor RLA 28.8 (57.6) 25.3 (50.6) 8.3 (16.6) 16.6 (33.2) 6.6 (13.2) 7.3 (14.6) 14.6 (29.2) 7.0 (14.0)
Heat 20KW, Amps (Actual KW) 92.2 (21.2) 95.5 (19.1) 26.0 (21.6) 53.2 (21.2) 29.8 (21.4) 29.7 (19.5) 55.0 (19.1) 23.3 (23.2)
Heat 15KW, Amps (Actual KW) 65.2 (15.0) 68.5 (13.7) 18.5 (15.4) 37.7 (15.0) 22.4 (16.1) 20.6 (13.5) 39.5 (13.7) 15.6 (15.5)
Heat 10KW, Amps (Actual KW) 46.1 (10.6) 40.0 (8.0) 13.0 (10.8) 26.6 (10.6) 16.0 (11.5) 14.7 (9.6) 23.1 (8.0)
Total FLA,
Cooling
w/o Auxiliary Fan 84.9 77.5 24.5 49.0 19.3 21.2 43.0 20.6
w/Auxiliary Fan 101.5 90.8 29.3 58.6 23.1 25.4 51.4 24.6
10 KW
Heat
MCA w/o Aux Fan 92.1 83.9 26.6 53.1 21.0 23.1 46.7 22.4
MOP w/o Aux Fan 120.9 109.1 34.9 69.8 27.6 30.4 61.3 29.4
MCA w/Aux Fan 108.7 100.2 31.4 62.7 24.8 27.3 55.1 26.4
MOP w/Aux Fan 137.5 125.4 39.7 79.4 31.4 34.6 69.7 33.4
15 KW
Heat
MCA w/o Aux Fan 94.1 97.4 26.8 54.4 29.9 28.4 54.8 22.5
MOP w/o Aux Fan 122.5 127.6 34.9 70.8 40.2 37.7 72.6 29.4
MCA w/Aux Fan 110.7 113.7 31.6 64.0 33.7 32.6 63.2 26.5
MOP w/Aux Fan 139.1 143.9 39.7 80.4 44.0 41.9 81.0 33.4
20 KW
Heat
MCA w/Aux Fan 124.5 127.8 35.3 71.9 38.3 38.7 72.4 31.2
MOP w/o Aux Fan 166.4 171.5 47.1 96.1 52.3 52.5 97.8 41.9
MCA w/Aux Fan 40.1 81.5 42.1 42.9 80.8 35.2
MOP w/Aux Fan 51.9 105.7 56.1 56.7 106.2 45.9
Unit LRA* 230 AMP 204 AMP 66 AMP 132 AMP 52 AMP 58 AMP 116 AMP 56 AMP
Operating Range 216V253V 180V220V 432V506V 216V253V 373V456V 342V418V 180V220V 517V600VLRA - Lock Rotor Amps, defined as evaporator fan, condenser fan, and compressor operating at full load and one compressor at LRA; MCA - Minimum Circuit Ampacity; MOP Maximum Overcurrent Protection; To size circuit breaker, select between MCA value and MOP value
ElectricalData
M
odel6090
ElectricalD
ata
Model6120
-
8/14/2019 SS InPac Catalog Opt
25/48
Electric Power
230/240V
160Hz
200V
150Hz
460/480V
360Hz
230/240V
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Evaporator Fan Motor FLA 16.6 16.3 4.8 9.6 3.8 4.2 8.4 4.0
Condenser Motor FLA 12.2 (24.4) 11.9 (23.8) 3.5 (7.0) 7.0 (14.0) 3.3 (6.6) 3.6 (7.2) 6.9 (13.8) 2.9 (5.8)
Compressor Motor RLA 21.4 (42.8) 18.0 (36.0) 6.2 (12.4) 12.4 (24.8) 5.0 (10.0) 5.5 (11.0) 10.4 (20.8) 5.2 (10.4)
Heat 20KW, Amps (Actual KW) 92.2 (21.2) 95.5 (19.1) 26.0 (21.6) 53.2 (21.2) 29.8 (21.4) 29.7 (19.5) 55.0 (19.1) 23.3 (23.2)
Heat 15KW, Amps (Actual KW) 65.2 (15.0) 68.5 (13.7) 18.5 (15.4) 37.7 (15.0) 22.4 (16.1) 20.6 (13.5) 39.5 (13.7) 15.6 (15.5)
Heat 10KW, Amps (Actual KW) 46.1 (10.6) 40.0 (8.0) 13.0 (10.8) 26.6 (10.6) 16.0 (11.5) 14.7 (9.6) 23.1 (8.0)
Total FLA,
Cooling
w/o Auxiliary Fan 83.8 76.1 24.2 48.4 20.4 22.4 43.0 20.2
w/Auxiliary Fan 100.4 92.4 29.0 58.0 24.2 26.6 51.4 24.2
10 KW
Heat
MCA w/o Aux Fan 89.1 80.6 25.7 51.5 21.6 23.7 45.6 21.5
MOP w/o Aux Fan 110.5 98.6 31.9 63.9 26.6 29.2 56.0 26.7
MCA w/Aux Fan 105.7 96.9 30.5 61.1 25.4 27.9 54.0 25.5
MOP w/Aux Fan 127.1 114.9 36.7 73.5 30.4 33.4 64.4 30.7
15 KW
Heat
MCA w/o Aux Fan 94.1 97.3 26.7 54.5 30.0 28.4 55.0 22.6
MOP w/o Aux Fan 122.6 127.5 34.7 70.7 40.2 37.7 72.4 29.4
MCA w/Aux Fan 110.7 113.6 31.5 64.1 33.8 32.6 63.8 26.6
MOP w/Aux Fan 139.2 143.8 39.5 80.3 44.0 41.9 80.8 33.4
20 KW
Heat
MCA w/o Aux Fan 124.5 127.7 35.3 71.9 38.3 38.6 72.4 31.2
MOP w/o Aux Fan 166.4 171.3 47.0 96.1 52.2 52.3 97.8 41.7
MCA w/Aux Fan 40.1 81.5 42.1 42.8 80.8 35.2
MOP w/Aux Fan 51.8 105.7 56.0 56.5 106.2 45.7
Unit LRA* 191 AMP 166 AMP 55 AMP 110 AMP 45 AMP 50 AMP 95 AMP 46 AMP
Operating Range 216V253V 180V220V 432V506V 216V253V 373V456V 342V418V 180V220V 517V600V
Electric Power
230/240V
160Hz
200V
150Hz
460/480V
360Hz
230/240V
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Evaporator Fan Motor FLA 16.6 16.3 4.8 9.6 3.8 4.2 8.4 4.0
Condenser Motor FLA 12.2 (24.4) 11.9 (23.8) 3.5 (7.0) 7.0 (14.0) 3.3 (6.6) 3.6 (7.2) 6.9 (13.8) 2.9 (5.8)
Compressor Motor RLA 28.8 (57.6) 25.3 (50.6) 8.3 (16.6) 16.6 (33.2) 6.6 (13.2) 7.3 (14.6) 14.6 (29.2) 7.0 (14.0)
Heat 20KW, Amps (Actual KW) 92.2 (21.2) 95.5 (19.1) 26.0 (21.6) 53.2 (21.2) 29.8 (21.4) 29.7 (19.5) 55.0 (19.1) 23.3 (23.2)
Heat 15KW, Amps (Actual KW) 65.2 (15.0) 68.5 (13.7) 18.5 (15.4) 37.7 (15.0) 22.4 (16.1) 20.6 (13.5) 39.5 (13.7) 15.6 (15.5)
Heat 10KW, Amps (Actual KW) 46.1 (10.6) 40.0 (8.0) 13.0 (10.8) 26.6 (10.6) 16.0 (11.5) 14.7 (9.6) 23.1 (8.0)
Total FLA,
Cooling
w/o Auxiliary Fan 98.6 90.7 28.4 59.4 23.6 26.0 51.4 23.8
w/Auxiliary Fan 115.2 107.0 33.2 66.4 27.4 30.2 59.8 27.8
10 KW
Heat
MCA w/o Aux Fan 105.8 97.0 30.5 60.9 25.3 27.8 55.1 25.6
MOP w/o Aux Fan 134.6 122.3 38.8 77.5 31.9 35.1 69.7 32.6
MCA w/Aux Fan 122.4 113.3 35.3 70.5 29.1 32.0 63.5 29.6
MOP w/Aux Fan 151.2 138.6 43.6 87.1 35.7 39.3 78.1 36.6
15 KW
Heat
MCA w/o Aux Fan 94.1 97.3 26.7 54.5 30.0 28.4 55.0 22.6
MOP w/o Aux Fan 122.6 127.7 34.9 70.7 40.2 37.7 72.4 29.4
MCA w/Aux Fan 110.7 113.6 31.5 64.1 33.8 32.6 63.4 26.6
MOP w/Aux Fan 139.2 144.0 39.7 80.5 44.0 41.9 81.0 33.4
20 KW
Heat
MCA w/o Aux Fan 124.5 127.7 35.3 71.9 38.3 38.6 72.4 31.2
MOP w/o Aux Fan 166.4 171.3 47.0 96.1 52.2 52.3 97.8 41.7
MCA w/Aux Fan 40.1 81.5 42.1 42.8 80.8 35.2
MOP w/Aux Fan 51.8 105.7 56.0 56.5 106.2 45.7
Unit LRA* 243 AMP 217 AMP 70 AMP 140 AMP 57 AMP 63 AMP 124 AMP 59 AMP
Operating Range 216V253V 180V220V 432V506V 216V253V 373V456V 342V418V 180V220V 517V600VLRA - Lock Rotor Amps, defined as evaporator fan, condenser fan, and compressor operating at full load and one compressor at LRA; MCA - Minimum Circuit Ampacity; MOP Maximum Overcurrent Protection; To size circuit breaker, select between MCA value and MOP value
M
odel8090
E l t i l D t
Model8120
E l t i l D
t
-
8/14/2019 SS InPac Catalog Opt
26/486
Electric Power
460/480V
360Hz
230/240V
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Evaporator Fan Motor FLA 7.5 15.0 5.6 6.1 12.1 6.2
Condenser Motor FLA 3.1 (6.2) 6.2 (12.4) 2.3 (4.6) 2.5 (5.0) 5.4 (10.8) 2.6 (5.2)
Compressor Motor RLA 12.5 (25.0) 25.0 (50.0) 10.0 (20.0) 11.0 (22.0) 22.0 (44.0) 10.5 (21.0)
Heat 20KW, Amps (Actual KW) 26.0 (21.6) 53.2 (21.2) 29.8 (21.4) 29.7 (19.5) 55.0 (19.1) 23.3 (23.2)
Heat 15KW, Amps (Actual KW) 18.5 (15.4) 37.7 (15.0) 22.4 (16.1) 20.6 (13.5) 39.5 (13.7) 15.6 (15.5)
Heat 10KW, Amps (Actual KW) 13.0 (10.8) 26.6 (10.6) 16.0 (11.5) 14.7 (9.6) 23.1 (8.0)
Total FLA,
Cooling
w/o Auxiliary Fan 38.7 77.4 30.2 33.1 66.9 32.4
w/Auxiliary Fan 46.2 92.4 35.8 39.2 79.0 38.6
1020 KW
Heat
MCA w/o Aux Fan 44.8 83.6 32.7 35.8 72.4 35.0
MOP w/o Aux Fan 54.3 108.7 42.7 46.8 94.4 45.5
MCA w/Aux Fan 49.3 98.6 38.3 41.9 84.5 41.2
MOP w/Aux Fan 61.8 123.7 48.3 52.9 106.5 51.7
Unit LRA* 101 AMP 202 AMP 80 AMP 88 AMP 177 AMP 85 AMP
Operating Range 432V506V 216V253V 373V456V 342V418V 180V220V 517V-600V
Electric Power
460/480V
360Hz
230/240V
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Evaporator Fan Motor FLA 7.5 15.0 5.6 6.1 12.1 6.2
Condenser Motor FLA 3.5 (7.0) 7.0 (14.0) 3.3 (6.6) 3.6 (7.2) 6.9 (13.8) 2.9 (5.8)
Compressor Motor RLA 12.5 (25.0) 25.0 (50.0) 10.0 (20.0) 11.0 (22.0) 22.0 (44.0) 10.5 (21.0)
Heat 40KW, Amps (Actual KW) 52.0 (43.2) 104.4 (41.6) 59.6 (42.9) 59.4 (39.1) 120.8 (41.7) 46.5 (46.3)
Heat 30KW, Amps (Actual KW) 38.9 (32.4) 78.3 (31.2) 44.9 (32.3) 41.0 (27.0) 90.8 (31.4) 31.1 (31.0)
Heat 20KW, Amps (Actual KW) 26.0 (21.6) 52.2 (20.8) 29.8 (21.4) 29.7 (19.5) 60.4 (20.8) 23.3 (23.2)
Heat 15KW, Amps (Actual KW) 18.5 (15.4) 37.7 (15.0) 22.4 (16.1) 20.6 (13.5) 39.5 (13.7) 15.6 (15.5)
Heat 10KW, Amps (Actual KW) 13.0 (10.8) 26.6 (10.6) 16.0 (11.5) 14.7 (9.6) 23.1 ( 8.0)
Total FLA,
Cooling
w/o Auxiliary Fan 39.5 79.0 32.2 35.3 69.9 33.0
w/Auxiliary Fan 47.0 94.0 37.8 41.4 82.0 39.2
1020 KW
Heat
MCA w/o Aux Fan 42.6 85.3 34.7 38.1 75.4 35.6
MOP w/o Aux Fan 55.1 110.3 44.7 49.1 97.4 46.1
MCA w/Aux Fan 50.1 100.3 40.3 44.2 87.5 41.8
MOP w/Aux Fan 62.6 125.3 50.3 55.2 109.5 52.3
30 KW
Heat
MCA w/o Aux Fan 53.1 106.8 57.5 53.8 117.3 42.6
MOP w/o Aux Fan 70.7 142.2 78.6 72.7 159.7 56.7
MCA w/Aux Fan 60.6 121.8 63.1 59.9 129.4 48.8
MOP w/Aux Fan 78.2 157.2 84.1 78.8 171.8 62.9
40 KW
Heat
MCA w/o Aux Fan 67.9 74.1 74.5 60.0
MOP w/o Aux Fan 92.0 102.4 102.6 81.6
MCA w/Aux Fan 75.4 79.7 80.5 66.2
MOP w/Aux Fan 99.5 108.1 108.7 87.8
Unit LRA* 102 AMP 204 AMP 82 AMP 90 AMP 180 AMP 86 AMP
Operating Range432V506V 216V253V 373V456V 342V418V 180V220V 517V-600V
LRA - Lock Rotor Amps, defined as evaporator fan, condenser fan, and compressor operating at full load and one compressor at LRA; MCA - Minimum Circuit Ampacity; MOP Maximum Overcurrent Protection; To size circuit breaker, select between MCA value and MOP value
ElectricalData
M
odel8180
ElectricalData
Model12180
-
8/14/2019 SS InPac Catalog Opt
27/48
Electric Power
460/480V
360Hz
230/240V
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Evaporator Fan Motor FLA 12.4 24.8 9.1 10.0 24.3 10.3
Condenser Motor FLA 3.5 (7.0) 7.0 (14.0) 2.5 (5.0) 2.8 (5.6) 6.9 (13.8) 2.9 (5.8)
Compressor Motor RLA 16.4 (32.8) 32.8 (65.6) 12.1 (24.2) 13.2 (26.4) 32.1 (64.2) 13.8 (27.6)
Heat 40KW, Amps (Actual KW) 52.0 (43.2) 104.4 (41.6) 59.6 (42.9) 59.4 (39.1) 120.8 (41.7) 46.5 (46.3)
Heat 30KW, Amps (Actual KW) 38.9 (32.4) 78.3 (31.2) 44.9 (32.3) 41.0 (27.0) 90.8 (31.4) 31.1 (31.0)
Heat 20KW, Amps (Actual KW) 26.0 (21.6) 52.2 (20.8) 29.8 (21.4) 29.7 (19.5) 60.4 (20.8) 23.3 (23.2)
Heat 15KW, Amps (Actual KW) 18.5 (15.4) 37.7 (15.0) 22.4 (16.1) 20.6 (13.5) 39.5 (13.7) 15.6 (15.5)
Heat 10KW, Amps (Actual KW) 13.0 (10.8) 26.6 (10.6) 16.0 (11.5) 14.7 (9.6) 23.1 (8.0)
Total FLA,
Cooling
w/o Auxiliary Fan 52.2 104.4 38.3 42.0 102.1 43.7
w/Auxiliary Fan 64.6 129.2 47.4 52.0 126.4 54.0
1020 KW
Heat
MCA w/o Aux Fan 56.3 112.6 41.3 45.3 110.3 47.2
MOP w/o Aux Fan 72.6 145.2 53.4 58.5 142.3 61.0
MCA w/Aux Fan 68.7 137.4 50.4 55.3 134.6 57.3
MOP w/Aux Fan 85.0 170.0 62.5 68.5 166.6 71.3
30 KW
Heat
MCA w/o Aux Fan 59.1 118.2 61.8 58.6 132.5 47.8
MOP w/o Aux Fan 75.5 151.0 81.9 76.6 171.9 60.7
MCA w/Aux Fan 71.5 143.0 70.9 68.6 156.8 58.1
MOP w/Aux Fan 87.8 175.6 91.0 86.6 196.2 71.0
40 KW
Heat
MCA w/o Aux Fan 74.0 148.0 78.4 79.3 166.3 65.1
MOP w/o Aux Fan 96.9 193.8 106.0 106.5 220.6 85.7
MCA w/Aux Fan 86.4 172.8 87.5 89.3 190.6 75.4
MOP w/Aux Fan 109.3 218.6 115.1 116.5 244.9 96.0
Unit LRA* 134 AMP 268 AMP 99 AMP 108 AMP 263 AMP 113 AMP
Operating Range 432V506V 216V253V 373V456V 342V418V 180V220V 517V-600V
Electric Power
460/480V
360Hz
230/240V
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Evaporator Fan Motor FLA 12.4 24.8 9.1 10.0 24.3 10.3
Condenser Motor FLA 2.5 (10) 5.0 (20.0) 1.8 (7.2) 2.0 (8.0) 4.9 (19.6) 2.1 (8.4)
Compressor Motor RLA 21.0 (42.0) 42.0 (84.0) 15.5 (31.0) 17.0 (34.0) 41.1 (82.2) 17.6 (35.2)
Heat 40KW, Amps (Actual KW) 52.0 (43.2) 104.4 (41.6) 59.6 (42.9) 59.4 (39.1) 120.8 (41.7) 46.5 (46.3)
Heat 30KW, Amps (Actual KW) 38.9 (32.4) 78.3 (31.2) 44.9 (32.3) 41.0 (27.0) 90.8 (31.4) 31.1 (31.0)
Heat 20KW, Amps (Actual KW) 26.0 (21.6) 52.2 (20.8) 29.8 (21.4) 29.7 (19.5) 60.4 (20.8) 23.3 (23.2)
Heat 15KW, Amps (Actual KW) 18.5 (15.4) 37.7 (15.0) 22.4 (16.1) 20.6 (13.5) 39.5 (13.7) 15.6 (15.5)
Heat 10KW, Amps (Actual KW) 13.0 (10.8) 26.6 (10.6) 16.0 (11.5) 14.7 (9.6) 23.1 (8.0)
Total FLA,
Cooling
w/o Auxiliary Fan 64.4 128.8 47.3 52.0 126.2 53.9
w/Auxiliary Fan 76.8 153.6 56.4 62.0 150.5 64.2
1040 KW
Heat
MCA w/o Aux Fan 69.7 139.4 51.1 56.3 136.6 58.3
MOP w/o Aux Fan 90.7 181.4 66.7 73.3 177.8 75.9
MCA w/Aux Fan 82.1 164.2 60.2 66.3 160.9 68.6
MOP w/Aux Fan 103.1 206.2 75.8 83.3 202.1 86.2
Unit LRA* 169 AMP 338 AMP 125 AMP 137 AMP 331 AMP 142 AMP
Operating Range432V506V 216V253V 342V418V 373V456V 180V220V 517V-600V
LRA - Lock Rotor Amps, defined as evaporator fan, condenser fan, and compressor operating at full load and one compressor at LRA; MCA - Minimum Circuit Ampacity; MOP Maximum Overcurrent Protection; To size circuit breaker, select between MCA value and MOP value
Mo
del12240
E l t i l D t
Model14300
E l t i l D t
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Electric Power
460/480V
360Hz
230/240V
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Evaporator Fan Motor FLA 16.6 33.2 12.2 13.4 32.5 13.8
Condenser Motor FLA 2.5 (10) 5.0 (20.0) 1.8 (7.2) 2.0 (8.0) 4.9 (19.6) 2.1 (8.4)
Compressor Motor RLA 26.3 (52.6) 52.6 (105.2) 19.4 (38.8) 21.3 (42.6) 51.5 (103.0) 22.6 (45.2)
Heat 40KW, Amps (Actual KW) 52.0 (43.2) 104.4 (41.6) 59.6 (42.9) 59.4 (39.1) 120.8 (41.7) 46.5 (46.3)
Heat 30KW, Amps (Actual KW) 38.9 (32.4) 78.3 (31.2) 44.9 (32.3) 41.0 (27.0) 90.8 (31.4) 31.1 (31.0)
Heat 20KW, Amps (Actual KW) 26.0 (21.6) 52.2 (20.8) 29.8 (21.4) 29.7 (19.5) 60.4 (20.8) 23.3 (23.2)
Heat 15KW, Amps (Actual KW) 18.5 (15.4) 37.7 (15.0) 22.4 (16.1) 20.6 (13.5) 39.5 (13.7) 15.6 (15.5)
Heat 10KW, Amps (Actual KW) 13.0 (10.8) 26.6 (10.6) 16.0 (11.5) 14.7 (9.6) 23.1 (8.0)
Total FLA,
Cooling
w/o Auxiliary Fan 79.2 158.4 58.2 64.0 155.2 67.4
w/Auxiliary Fan 95.8 191.6 70.4 77.4 187.8 81.2
1040 KW
Heat
MCA w/o Aux Fan 85.8 171.6 63.1 69.3 168.2 73.1
MOP w/o Aux Fan 112.1 224.2 82.5 90.6 219.7 95.7
MCA w/Aux Fan 102.4 204.8 75.3 82.7 200.7 86.9
MOP w/Aux Fan 128.7 257.4 94.7 104.0 252.3 109.5
Unit LRA* 211 AMP 422 AMP 155 AMP 171 AMP 413 AMP 180 AMP
Operating Range 432V506V 216V256V 373V456V 342V418V 180V220V 517V-600V
Electric Power
460/480V
360Hz
230/240V
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Evaporator Fan Motor FLA 24.9 49.8 18.3 20.1 48.8 20.8
Condenser Motor FLA 4.7 (18.8) 9.4 (37.6) 3.5 (14.0) 3.8 (15.2) 9.2 (36.8) 3.9 (15.6)
Compressor Motor RLA 31.6 (63.2) 63.2 (126.4) 30.3 (60.6) 33.1 (66.2) 61.9 (123.8) 26.4 (52.8)
Heat 40KW, Amps (Actual KW) 52.0 (43.2) 104.4 (41.6) 59.6 (42.9) 59.4 (39.1) 120.8 (41.7) 46.5 (46.3)
Heat 30KW, Amps (Actual KW) 38.9 (32.4) 78.3 (31.2) 44.9 (32.3) 41.0 (27.0) 90.8 (31.4) 31.1 (31.0)
Heat 20KW, Amps (Actual KW) 26.0 (21.6) 52.2 (20.8) 29.8 (21.4) 29.7 (19.5) 60.4 (20.8) 23.3 (23.2)
Heat 15KW, Amps (Actual KW) 18.5 (15.4) 37.7 (15.0) 22.4 (16.1) 20.6 (13.5) 39.5 (13.7) 15.6 (15.5)
Heat 10KW, Amps (Actual KW) 13.0 (10.8) 26.6 (10.6) 16.0 (11.5) 14.7 (9.6) 23.1 (8.0)
Total FLA,
Cooling
w/o Auxiliary Fan 106.9 213.8 92.9 101.5 209.5 89.2
w/Auxiliary Fan 131.8 263.6 111.2 121.6 258.3 110.0
1040 KW
Heat
MCA w/o Aux Fan 114.8 229.6 100.5 109.8 225.0 95.8
MOP w/o Aux Fan 146.4 292.8 130.8 142.9 286.9 122.2
MCA w/Aux Fan 139.7 279.4 118.8 129.9 273.8 116.6MOP w/Aux Fan 171.3 342.6 149.1 163.0 335.7 143.0
Unit LRA* 265 AMP 530 AMP 244 AMP 267 AMP 519 AMP 221 AMP
Operating Range 432V506V 216V256V 373V456V 342V418V 180V220V 517V-600V
LRA - Lock Rotor Amps, defined as evaporator fan, condenser fan, and compressor operating at full load and one compressor at LRA; MCA - Minimum Circuit Ampacity; MOP Maximum Overcurrent Protection; To size circuit breaker, select between MCA value and MOP value
ElectricalData
Mo
del14360
Ele
ctricalData
Model16
420
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Electric Power
460/480V
360Hz
230/240V
360Hz
415V
350Hz
380V
3-50Hz
200V
350Hz
575V
360Hz
Evaporator Fan Motor FLA 24.9 49.8 18.3 20.1 48.8 20.8
Condenser Motor FLA 4.7 (18.8) 9.4 (37.6) 3.5 (14.0) 3.8 (15.2) 9.2 (36.8) 3.9 (15.6)
Compressor Motor RLA 35.6 (71.2) 71.2 (142.4) 34.2 (68.4) 37.3 (74.6) 69.8 (139.6) 29.5 (59.0)
Heat 40KW, Amps (Actual KW) 52.0 (43.2) 104.4 (41.6) 59.6 (42.9) 59.4 (39.1) 120.8 (41.7) 46.5 (46.3)
Heat 30KW, Amps (Actual KW) 38.9 (32.4) 78.3 (31.2) 44.8 (32.3) 41.0 (27.0) 90.8 (31.4) 31.1 (31.0)
Heat 20KW, Amps (Actual KW) 26.0 (21.6) 52.2 (20.8) 29.8 (21.4) 29.7 (19.5) 60.4 (20.8) 23.3 (23.2)
Heat 15KW, Amps (Actual KW) 18.5 (15.4) 37.7 (15.0) 22.4 (16.1) 20.6 (13.5) 39.5 (13.7) 15.6 (15.5)
Heat 10KW, Amps (Actual KW) 13.0 (10.8) 26.6 (10.6) 16.0 (11.5) 14.7 (9.6) 23.1 (8.0)
Total FLA,
Cooling
w/o Auxiliary Fan 114.9 229.8 109.7 109.9 225.2 95.4
w/Auxiliary Fan 139.8 279.6 119.0 130.0 274.0 116.2
1040 KW
Heat
MCA w/o Aux Fan 123.8 247.6 109.3 119.2 242.6 102.8
MOP w/o Aux Fan 159.4 318.8 143.5 156.5 312.4 132.3
MCA w/Aux Fan 148.7 297.4 127.6 139.3 291.4 123.6
MOP w/Aux Fan 184.3 368.6 161.8 176.6 361.2 153.1
Unit LRA* 293 AMP 586 AMP 271 AMP 296 AMP 574 AMP 243 AMP
Operating Range 432V506V 216V256V 373V456V 342V418V 180V220V 517V-600V
LRA - Lock Rotor Amps, defined as evaporator fan, condenser fan, and compressor operating at full load and one compressor at LRA; MCA - Minimum Circuit Ampacity; MOP Maximum Overcurrent Protection; To size circuit breaker, select between MCA value and MOP value
Mo
del16480
E l t i l D t
Left: Fully explosion proof dual
8000 series with packed bed
scrubber and redundant gas
monitors with a central common
plenum designed to mount
through a 48" x 96" wall opening
with all components accessible
from inside the building.
Front return air panel hinges open for inside service access
to all HVAC components.
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30/480 Specific Systems :: 7655 East 41st Street, Tulsa, OK 74145
Access is often restricted in certain areas of petrochem and process facilities, making service
and repair of equipment a time consuming, difficult, and very expensive procedure. Often, a
portion of the facility or process unit must be temporarily shut down to allow service, or theentire piece of HVAC equipment removed and taken off site for service.
Quick and easy equipment repair is extremely important in system critical areas of many production
and process environments. The Specific Systems fully modular InPac units make this possible with
a specially engineered set of pre-fabricated modules designed to slide into and out from the HVAC
units cabinet with minimal effort using basic, standard tools. Refrigerant line valves on the modules
eliminate the need for field brazing, thereby allowing spare modules to be replaced at the site of
the unit, and repairs on failed modules to be performed in a non-hazardous remote environment
away from the sensitive process area. These features translate into near zero downtime during
maintenance requiring repair or replacement of a major component in the module.
Like all Specific Systems units, the base cabinets are constructed from 16-gauge hot-dipped
galvanized steel with aluminum, 304 or 316 stainless steel as options. All modular assemblies
of the fully modular InPac units have 304 stainless steel with all-welded construction as a
standard feature.
Four Modules for Fast, Easy Repair and MaintenanceEvaporator Fan Module This module consists of an industrial double-shafted motor
and two direct drive spark-proof blowers. These modules may be constructed to meet
division 1 or 2 explosion proof and spark proof criteria for hazardous areas. Auxiliary
(purge and back-up) fans are available, as are the necessary controls to automatically
purge and pressurize the building to meet NFPA 496 code requirements.
Evaporator Coil Module This contains a dual-circuit evaporator coil, 16-gauge stainless
steel drain pan, adjustable expansion valves, sight glasses, heating coil (optional), and
back seating line shutoff/service valves. The standard dual-circuit coil uses copper tubes
bonded to aluminum fins that can be optionally coated with any of several corrosion-
resistant protective coatings. Copper fin/copper tube coils are also available as an option.
Condenser Module This module is comprised of a dual-circuit condenser coil with
copper tubes bonded to aluminum fins. Like the evaporator coil, the condenser coil can
be optionally coated with any of several coatings to aid in corrosion resistance. Copper
fin/copper tube coils are an available option. Dual hermetic scroll compressors, hot gas
bypass valves, back seating service/shut off valves, and spark proof direct drive fans
with industrial motors are all found in the condenser module section.
Controls Module Depending on the options selected, the unit may use one or several
control modules. Each of the components is modular in design and can be easily
disconnected, and as with the control panels in all standard InPac units, each is point-
to-point wired and numbered for quick identification of connections and correlation with
the unit diagram. The control modules are built to exacting standards in our UL certified
panel shop and labeled accordingly.
Fully Modular InPac Units
Fully Modular Key Features
Dual redundant circuitry
Rapid, easy repair
No need for specialized on-site
repair personnel
Simplified spare parts
inventory and replacement
Fully modular InPac units are
engineered for a high level of
serviceability and safety in the
most challenging hazardous
areas. Contact a Specific
Systems sales representative
for assistance with determining
which style of InPac unit best
suits your application.
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www.specificsystems.com :: (918) 663-9321 :: (918) 663-5498 fax
Purge and
PressurizationUnits and
Information
Purge & Pressurization Overview
Stand Alone Purge & Pressurization Unit Physical Dimensions
Electrical Data
InPac Purge & Pressurization Option
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32/482 Specific Systems :: 7655 East 41st Street, Tulsa, OK 74145
Purge & Pressurization
Ensuring the safety of employees and equipment located in hazardous (classified)
areas often requires keeping the area free of any hazardous gases, dust, or fibers
that may seep in through doors, windows, or other openings in the room. A very costeffective way to do this is by pressurizing the area with protective air per NFPA 496.
Specific Systems manufactures Purge & Pressurization Units to ensure compliance
with National Fire Protection Association (NFPA) standards listed in NFPA 496 and the
National Electric Code (NFPA 70). These units can be purchased as stand-alone units
or as a unit mounted option on all of our InPac series industrial units.
NFPA defines pressurization as The process of supplying an enclosure with a protective
gas with or without continuous flow at sufficient pressure to prevent entrance of a
flammable gas or vapor, a combustible dust, or an ignitable fiber (NFPA 496:3.3.8). In
the case of pressurizing a room or building, NFPA adds that the protective gas can beair that is essentially free of contaminants or foreign matter and that it contains
no more than trace amounts of flammable vapor or gas (NFPA 496:7.2).
Purging is defined as the process of supplying an enclosure with a protective gas at
a sufficient flow and positive pressure to reduce the concentration of any flammable
gas or vapor initially present to an acceptable level. To put it simply, before an area
can be pressurized, it must be purged of the existing air at a rate equal to or greater
than ten building volumes.
According to NFPA 496, enclosure (building) pressure must be maintained at a level
of at least 25 Pa (0.1 in. of water) with all openings closed, and the purge equipment
must provide a minimum of 0.305 msec (60 ft/min) through all openings capable of
being opened including doors used for normal egress.
Generally, if the building requires hazardous area reclassification, it will require protective
gas (clean air) to be pulled from a minimum of 25' above ground level. In many instances, a
chemical filter option may also be recommended to enhance the areas indoor air quality and
remove corrosive elements such as H2S and SO
2, both prevalent in petrochemical facilities.
Figures 1 and 2, above left, give an example of a Specific Systems InPac unit with the purge &
pressurization option. These units feature built-in optional dual backup blowers that act as booster fans
when purging an area. During normal operation with doors closed (Figure 1), the unit pressurizes the
room, forcing safe, non-explosive air into the area, and out through through any cracks, crevices, and
seams. With typical building construction practices, the required pressure can be maintained with no
more than 10% of the volume of the bulding, approximately six air changes. Figure 2 shows operation
during a purge cycle, in this case a door left open. After one minute of a pressurization drop below a
preset level (usually 0.1 in. of water), the return air damper repositions to fully closed and outside air is
opened fully. The blowers automatically turn on, bringing in safe air to force potentially hazardous air
out of the area. Purging remains active for three to five minutes, (e.g. greater than ten volumes of air)
after the purge cycle begins, depending on size of the pressurized area. This time can be adjusted, and
is usually a time period that allows movement of an amount of air 10 times the buildings volume.
Figure 1.Typical Use of Backup Blower for Purge/Pressurization.
Under normal operation, one set of blowers is operating, taking
air fro