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Multiple Output Range 16-Bit DAC Design Made Simple Design Note 337 Derek Redmayne 05/04/337_conv L, LT, LTC, LTM, Linear Technology and the Linear logo are registered trademarks and SoftSpan is a trademark of Linear Technology Corporation. All other trademarks are the property of their respective owners. Introduction Precision 16-bit analog outputs with software-con- figurable output ranges are often needed in industrial process control equipment, analytical and scientific instruments and automatic test equipment. In the past, designing a universal output module was a daunting task and the cost and PCB real estate associated with this function were problematic, if not prohibitive. Figure 1 shows an example of the circuitry formerly required to produce a programmable 16-bit DAC with a variety of output ranges. However, with the new LTC ® 1592 multiple output range DAC, all of this complexity is unnecessary. Figure 2 shows the compact simplicity of an implementation based on the new LTC1592. All the standard industrial ranges (0V to 5V, 0V to 10V, ±5V, ±10V, ±2.5V and –2.5V to 7.5V) are provided, accurately and under software control. + + U8 U8 U7 U7 U6 U8 U6 U3 U4 0.1% 10ppm/°C TRACKING 5V REF 10V 5V 2.5V 10k 5k 10k 10k U6, U7, U8: DG411 U9: 74HC1G4066 + U5 SHDN SHDN SHDN U1 16-BIT CMOS DAC + + + U2 1/2 LT ® 1469 U2 1/2 LT1469 U10 15pF OUT DN337 F01 100k U7 U6 U7 U9 U6 100pF 10k 10k 5V 10ppm TRACKING 50k 1% 15V –15V U6 U7 U8 U8 Figure 1. How NOT to Build a Universal 16-Bit Analog Output

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  • Multiple Output Range 16-Bit DAC Design Made Simple Design Note 337

    Derek Redmayne

    05/04/337_conv

    L, LT, LTC, LTM, Linear Technology and the Linear logo are registered trademarks and SoftSpan is a trademark of Linear Technology Corporation. All other trademarks are the property of their respective owners.

    IntroductionPrecision 16-bit analog outputs with software-con- gurable output ranges are often needed in industrial process control equipment, analytical and scienti c instruments and automatic test equipment. In the past, designing a universal output module was a daunting task and the cost and PCB real estate associated with this function were problematic, if not prohibitive. Figure1 shows an example of the circuitry formerly required to produce a programmable 16-bit DAC with a variety

    of output ranges. However, with the new LTC1592 multiple output range DAC, all of this complexity is unnecessary. Figure 2 shows the compact simplicity of an implementation based on the new LTC1592. All the standard industrial ranges (0V to 5V, 0V to 10V, 5V, 10V, 2.5V and 2.5V to 7.5V) are provided, accurately and under software control.

    +

    +

    U8

    U8

    U7

    U7

    U6U8

    U6

    U3

    U4

    0.1%10ppm/C

    TRACKING

    5VREF 10V

    5V

    2.5V10k

    5k

    10k

    10k

    U6, U7, U8: DG411U9: 74HC1G4066

    +U5

    SHDN

    SHDN

    SHDN

    U116-BIT CMOS DAC

    +

    +

    +

    U21/2 LT1469

    U21/2 LT1469

    U10

    15pFOUT

    DN337 F01

    100k

    U7

    U6

    U7

    U9

    U6100pF

    10k 10k

    5V

    10ppmTRACKING

    50k1%

    15V

    15V

    U6 U7 U8

    U8

    Figure 1. How NOT to Build a Universal 16-Bit Analog Output

  • LINEAR TECHNOLOGY CORPORATION 2004

    dn337f_conv LT/TP 0504 305K PRINTED IN THE USA

    Linear Technology Corporation1630 McCarthy Blvd., Milpitas, CA 95035-7417 (408) 432-1900 FAX: (408) 434-0507 www.linear.com

    Data Sheet Download

    www.linear.comFor applications help,call (408) 432-1900

    The Old WayFigure 1 shows a pre-LTC1592 implementation of a multiple output range DAC. The circuit can be made to work, but only with costly components and a lot of PCB real estate. The range switching capability requires the addition of analog switches and precision resistors to the basic DAC. Some of these analog switches are required to compensate for the resistance of switches at other points in the circuit. The circuit as shown, even with its considerable complexity, is a compromise as some of these analog switches are not paired with counterparts in the same package. The analog switches are expensive. They also require PCB real estate, by-passing and decoupling to compensate for poor PSRR to mitigate digital noise. In addition, since they are not switching at virtual ground, the analog switches exhibit on-resistance variation with voltage which will degrade linearity. Leakage can be an issue at high temperature.

    Precision matched resistor pairs are shown, as they are available from a number of sources. But unless very expensive devices are used, they will degrade accuracy.

    The New, Easy WayIn contrast is Figure 2 where the LTC1592 contains all of the circuitry required to perform these functionsall under processor control. All the ranges are accurate with low drift, fast settling and low glitch operation right out of the box. The LTC1592 incorporates all the switches and precision resistors. A full implementa-tion takes less than 0.5in 0.5in including the dual operational ampli er, bypass and compensation. This analog output subsystem can be recon gured in real time and the serial interface makes optoisolation easy.

    ConclusionBuilding a precision, multiple output range, software-con gurable 16-bit DAC is no longer a complicated, expensive design effort. Now a clean, simple design yields smaller size, lower cost and much better accuracy. The LTC1592 can also be used for embedded or xed range applications, where its 4-quadrant operation with serial interface make it compelling even if range changing may not be required.

    +1/2 LT1469

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    LTC1592

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    VCC0.1F

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    RFB

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    DN337 F01

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    16-BIT DAC WITHSPAN ADJUST

    Figure 2. Programmable Output Range 16-Bit SoftSpan DAC