sn74avc16t245
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F E A T U R E S
D E S C R I P T I O N / O R D E R I N G I N F O R M A T I O N
DGG OR DGV PACKAGE
(TOP VIEW)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
48
47
46
45
44
43
42
41
40
39
38
37
36
35
34
33
32
31
30
29
28
27
26
25
1DIR
1B1
1B2
GND
1B3
1B4
VCCB
1B5
1B6
GND
1B7
1B8
2B1
2B2
GND
2B32B4
VCCB
2B5
2B6
GND
2B7
2B8
2DIR
1OE
1A1
1A2
GND
1A3
1A4
VCCA
1A5
1A6
GND
1A7
1A8
2A1
2A2
GND
2A32A4
VCCA
2A5
2A6
GND
2A7
2A8
2OE
T h e S N 7 4 A V C 1 6 T 2 4 5 i s d e s i g n e d f o r a s y n c h r o n o u s c o m m u n i c a t i o n b e t w e e n d a t a b u s e s . T h e d e v i c e t r a n s m i t s
S N 7 4 A V C 1 6 T 2 4 5
1 6 - B I T D U A L - S U P P L Y B U S T R A N S C E I V E R
W I T H C O N F I G U R A B L E V O L T A G E T R A N S L A T I O N A N D 3 - S T A T E O U T P U T S S C E S 5 5 1 C F E B R U A R Y 2 0 0 4 R E V I S E D A U G U S T 2 0 0 5
C o n t r o l I n p u t s V I H / V I L L e v e l s A r e R e f e r e n c e d t o V C C A V o l t a g e
V C C I s o l a t i o n F e a t u r e I f E i t h e r V C C I n p u t I s a t
G N D , B o t h P o r t s A r e i n t h e H i g h - I m p e d a n c e S t a t e
O v e r v o l t a g e - T o l e r a n t I n p u t s / O u t p u t s A l l o w
M i x e d - V o l t a g e - M o d e D a t a C o m m u n i c a t i o n s
F u l l y C o n f i g u r a b l e D u a l - R a i l D e s i g n A l l o w s E a c h P o r t t o O p e r a t e O v e r t h e F u l l 1 . 2 - V t o
3 . 6 - V P o w e r - S u p p l y R a n g e
Io f f S u p p o r t s P a r t i a l - P o w e r - D o w n M o d e O p e r a t i o n
I / O s A r e 4 . 6 - V T o l e r a n t
L a t c h - U p P e r f o r m a n c e E x c e e d s 1 0 0 m A P e r
J E S D 7 8 , C l a s s I I
E S D P r o t e c t i o n E x c e e d s J E S D 2 2
8 0 0 0 - V H u m a n - B o d y M o d e l ( A 1 1 4 - A )
2 0 0 - V M a c h i n e M o d e l ( A 1 1 5 - A )
1 0 0 0 - V C h a r g e d - D e v i c e M o d e l ( C 1 0 1 )
T h i s 1 6 - b i t n o n i n v e r t i n g b u s t r a n s c e i v e r u s e s t w o s e p a r a t e c o n f i g u r a b l e p o w e r - s u p p l y r a i l s . T h e S N 7 4 A V C 1 6 T 2 4 5 i s o p t i m i z e d t o o p e r a t e w i t h V C C A / V C C B s e t a t 1 . 4 V t o 3 . 6 V . I t i s o p e r a t i o n a l w i t h V C C A / V C C B a s l o w a s 1 . 2 V . T h e A p o r t i s d e s i g n e d t o t r a c k V C C A . V C C A a c c e p t s a n y s u p p l y v o l t a g e f r o m 1 . 2 V t o 3 . 6 V . T h e B p o r t i s d e s i g n e d t o t r a c k V C C B .
V C C B a c c e p t s a n y s u p p l y v o l t a g e f r o m 1 . 2 V t o 3 . 6 V . T h i s a l l o w s f o r u n i v e r s a l l o w - v o l t a g e b i d i r e c t i o n a l t r a n s l a t i o n b e t w e e n a n y o f t h e 1 . 2 - V , 1 . 5 - V , 1 . 8 - V , 2 . 5 - V , a n d 3 . 3 - V v o l t a g e n o d e s .
d a t a f r o m t h e A b u s t o t h e B b u s o r f r o m t h e B b u s t o t h e A b u s , d e p e n d i n g o n t h e l o g i c l e v e l a t t h e d i r e c t i o n - c o n t r o l ( D I R ) i n p u t . T h e o u t p u t - e n a b l e ( O E ) i n p u t c a n b e u s e d t o d i s a b l e t h e o u t p u t s s o t h e b u s e s e f f e c t i v e l y a r e i s o l a t e d .
T h e S N 7 4 A V C 1 6 T 2 4 5 i s d e s i g n e d s o t h a t t h e c o n t r o l p i n s ( 1 D I R , 2 D I R , 1 O E , a n d 2 O E ) a r e s u p p l i e d b y V C C A .
O R D E R I N G I N F O R M A T I O N
T A P A C K A G E ( 1 ) O R D E R A B L E P A R T N U M B E R T O P - S I D E M A R K I N G
T S S O P D G G T a p e a n d r e e l S N 7 4 A V C 1 6 T 2 4 5 D G G R A V C 1 6 T 2 4 5
T V S O P D G V T a p e a n d r e e l S N 7 4 A V C 1 6 T 2 4 5 D G V R W F 2 4 5 4 0 C t o 8 5 C
V F B G A G Q L S N 7 4 A V C 1 6 T 2 4 5 G Q L R T a p e a n d r e e l W F 2 4 5
V F B G A Z Q L ( P b - f r e e ) S N 7 4 A V C 1 6 T 2 4 5 Z Q L R
( 1 ) P a c k a g e d r a w i n g s , s t a n d a r d p a c k i n g q u a n t i t i e s , t h e r m a l d a t a , s y m b o l i z a t i o n , a n d P C B d e s i g n g u i d e l i n e s a r e a v a i l a b l e a t w w w . t i . c o m / s c / p a c k a g e .
P l e a s e b e a w a r e t h a t a n i m p o r t a n t n o t i c e c o n c e r n i n g a v a i l a b i l i t y , s t a n d a r d w a r r a n t y , a n d u s e i n c r i t i c a l a p p l i c a t i o n s o f T e x a s I n s t r u m e n t s s e m i c o n d u c t o r p r o d u c t s a n d d i s c l a i m e r s t h e r e t o a p p e a r s a t t h e e n d o f t h i s d a t a s h e e t .
P R O D U C T I O N D A T A i n f o r m a t i o n i s c u r r e n t a s o f p u b l i c a t i o n d a t e . C o p y r i g h t 2 0 0 4 2 0 0 5 , T e x a s I n s t r u m e n t s I n c o r p o r a t e d P r o d u c t s c o n f o r m t o s p e c i f i c a t i o n s p e r t h e t e r m s o f t h e T e x a s I n s t r u m e n t s s t a n d a r d w a r r a n t y . P r o d u c t i o n p r o c e s s i n g d o e s n o t
n e c e s s a r i l y i n c l u d e t e s t i n g o f a l l p a r a m e t e r s .
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D E S C R I P T I O N / O R D E R I N G I N F O R M A T I O N ( C O N T I N U E D )
GQL OR ZQL PACKAGE
(TOP VIEW)
J
H
G
F
E
D
C
B
A
21 3 4 65
K
T E R M I N A L A S S I G N M E N T S ( 2 )
S N 7 4 A V C 1 6 T 2 4 5
1 6 - B I T D U A L - S U P P L Y B U S T R A N S C E I V E R
W I T H C O N F I G U R A B L E V O L T A G E T R A N S L A T I O N A N D 3 - S T A T E O U T P U T S S C E S 5 5 1 C F E B R U A R Y 2 0 0 4 R E V I S E D A U G U S T 2 0 0 5
T h i s d e v i c e i s f u l l y s p e c i f i e d f o r p a r t i a l - p o w e r - d o w n a p p l i c a t i o n s u s i n g I o f f. T h e I o f f c i r c u i t r y d i s a b l e s t h e o u t p u t s , p r e v e n t i n g d a m a g i n g c u r r e n t b a c k f l o w t h r o u g h t h e d e v i c e w h e n i t i s p o w e r e d d o w n .
T h e V C C i s o l a t i o n f e a t u r e e n s u r e s t h a t i f e i t h e r V C C i n p u t i s a t G N D , b o t h p o r t s a r e i n t h e h i g h - i m p e d a n c e s t a t e .
T o e n s u r e t h e h i g h - i m p e d a n c e s t a t e d u r i n g p o w e r u p o r p o w e r d o w n , O E s h o u l d b e t i e d t o V C C t h r o u g h a p u l l u p
r e s i s t o r ; t h e m i n i m u m v a l u e o f t h e r e s i s t o r i s d e t e r m i n e d b y t h e c u r r e n t - s i n k i n g c a p a b i l i t y o f t h e d r i v e r .
1 2 3 4 5 6
A 1 D I R N C N C N C N C 1 O E
B 1 B 2 1 B 1 G N D G N D 1 A 1 1 A 2
C 1 B 4 1 B 3 V C C B V C C A 1 A 3 1 A 4
D 1 B 6 1 B 5 G N D G N D 1 A 5 1 A 6
E 1 B 8 1 B 7 1 A 7 1 A 8
F 2 B 1 2 B 2 2 A 2 2 A 1
G 2 B 3 2 B 4 G N D G N D 2 A 4 2 A 3
H 2 B 5 2 B 6 V C C B V C C A 2 A 6 2 A 5
J 2 B 7 2 B 8 G N D G N D 2 A 8 2 A 7
K 2 D I R N C N C N C N C 2 O E
( 2 ) N C N o i n t e r n a l c o n n e c t i o n
F U N C T I O N T A B L E ( E A C H 8 - B I T S E C T I O N )
I N P U T S O P E R A T I O N
O E D I R
L L B d a t a t o A b u s
L H A d a t a t o B b u s
H X I s o l a t i o n
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To Seven Other Channels
1DIR
1A1
1B1
1OE
To Seven Other Channels
2DIR
2A1
2B1
2OE
1
47
24
36
48
2
25
13
A b s o l u t e M a x i m u m R a t i n g s
( 1 )
S N 7 4 A V C 1 6 T 2 4 5
1 6 - B I T D U A L - S U P P L Y B U S T R A N S C E I V E R
W I T H C O N F I G U R A B L E V O L T A G E T R A N S L A T I O N A N D 3 - S T A T E O U T P U T S S C E S 5 5 1 C F E B R U A R Y 2 0 0 4 R E V I S E D A U G U S T 2 0 0 5
L O G I C D I A G R A M ( P O S I T I V E L O G I C )
o v e r o p e r a t i n g f r e e - a i r t e m p e r a t u r e r a n g e ( u n l e s s o t h e r w i s e n o t e d )
M I N M A X U N I T
V C C A S u p p l y v o l t a g e r a n g e 0 . 5 4 . 6 V V C C B
I / O p o r t s ( A p o r t ) 0 . 5 4 . 6
V I I n p u t v o l t a g e r a n g e ( 2 ) I / O p o r t s ( B p o r t ) 0 . 5 4 . 6 V
C o n t r o l i n p u t s 0 . 5 4 . 6
A p o r t 0 . 5 4 . 6 V o l t a g e r a n g e a p p l i e d t o a n y o u t p u t V O Vi n t h e h i g h - i m p e d a n c e o r p o w e r - o f f s t a t e ( 2 ) B p o r t 0 . 5 4 . 6
A p o r t 0 . 5 V C C A + 0 . 5 V O V o l t a g e r a n g e a p p l i e d t o a n y o u t p u t i n t h e h i g h o r l o w s t a t e
( 2 ) ( 3 ) VB p o r t 0 . 5 V C C B + 0 . 5
II K I n p u t c l a m p c u r r e n t V I < 0 5 0 m A
IO K O u t p u t c l a m p c u r r e n t V O < 0 5 0 m A
IO C o n t i n u o u s o u t p u t c u r r e n t 5 0 m A
C o n t i n u o u s c u r r e n t t h r o u g h e a c h V C C A , V C C B , a n d G N D 1 0 0 m A
D G G p a c k a g e 7 0
J A P a c k a g e t h e r m a l i m p e d a n c e ( 4 ) D G V p a c k a g e 5 8 C / W
G Q L / Z Q L p a c k a g e 4 2
T s t g S t o r a g e t e m p e r a t u r e r a n g e 6 5 1 5 0 C
( 1 ) S t r e s s e s b e y o n d t h o s e l i s t e d u n d e r " a b s o l u t e m a x i m u m r a t i n g s " m a y c a u s e p e r m a n e n t d a m a g e t o t h e d e v i c e . T h e s e a r e s t r e s s r a t i n g s o n l y , a n d f u n c t i o n a l o p e r a t i o n o f t h e d e v i c e a t t h e s e o r a n y o t h e r c o n d i t i o n s b e y o n d t h o s e i n d i c a t e d u n d e r " r e c o m m e n d e d o p e r a t i n g c o n d i t i o n s " i s n o t i m p l i e d . E x p o s u r e t o a b s o l u t e - m a x i m u m - r a t e d c o n d i t i o n s f o r e x t e n d e d p e r i o d s m a y a f f e c t d e v i c e r e l i a b i l i t y .
( 2 ) T h e i n p u t v o l t a g e a n d o u t p u t n e g a t i v e - v o l t a g e r a t i n g s m a y b e e x c e e d e d i f t h e i n p u t a n d o u t p u t c u r r e n t r a t i n g s a r e o b s e r v e d . ( 3 ) T h e o u t p u t p o s i t i v e - v o l t a g e r a t i n g m a y b e e x c e e d e d u p t o 4 . 6 V m a x i m u m i f t h e o u t p u t c u r r e n t r a t i n g i s o b s e r v e d .
( 4 ) T h e p a c k a g e t h e r m a l i m p e d a n c e i s c a l c u l a t e d i n a c c o r d a n c e w i t h J E S D 5 1 - 7 .
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R e c o m m e n d e d O p e r a t i n g C o n d i t i o n s ( 1 ) ( 2 ) ( 3 )
S N 7 4 A V C 1 6 T 2 4 5
1 6 - B I T D U A L - S U P P L Y B U S T R A N S C E I V E R
W I T H C O N F I G U R A B L E V O L T A G E T R A N S L A T I O N A N D 3 - S T A T E O U T P U T S S C E S 5 5 1 C F E B R U A R Y 2 0 0 4 R E V I S E D A U G U S T 2 0 0 5
V C C I V C C O M I N M A X U N I T
V C C A S u p p l y v o l t a g e 1 . 2 3 . 6 V
V C C B S u p p l y v o l t a g e 1 . 2 3 . 6 V
1 . 2 V t o 1 . 9 5 V V C C I 0 . 6 5 H i g h - l e v e l
V I H D a t a i n p u t s ( 4 )
1 . 9 5 V t o 2 . 7 V 1 . 6 V i n p u t v o l t a g e 2 . 7 V t o 3 . 6 V 2
1 . 2 V t o 1 . 9 5 V V C C I 0 . 3 5 L o w - l e v e l
V I L D a t a i n p u t s ( 4 ) 1 . 9 5 V t o 2 . 7 V 0 . 7 V
i n p u t v o l t a g e 2 . 7 V t o 3 . 6 V 0 . 8
1 . 2 V t o 1 . 9 5 V V C C A 0 . 6 5 H i g h - l e v e l D I R
V I H 1 . 9 5 V t o 2 . 7 V 1 . 6 V i n p u t v o l t a g e ( r e f e r e n c e d t o V C C A ) ( 5 )
2 . 7 V t o 3 . 6 V 2
1 . 2 V t o 1 . 9 5 V V C C A 0 . 3 5 L o w - l e v e l D I R
V I L 1 . 9 5 V t o 2 . 7 V 0 . 7 V i n p u t v o l t a g e ( r e f e r e n c e d t o V C C A ) ( 5 )
2 . 7 V t o 3 . 6 V 0 . 8
V I I n p u t v o l t a g e 0 3 . 6 V
A c t i v e s t a t e 0 V C C OV O O u t p u t v o l t a g e V
3 - s t a t e 0 3 . 6
1 . 2 V 3
1 . 4 V t o 1 . 6 V 6
IO H H i g h - l e v e l o u t p u t c u r r e n t 1 . 6 5 V t o 1 . 9 5 V 8 m A
2 . 3 V t o 2 . 7 V 9
3 V t o 3 . 6 V 1 2
1 . 2 V 3
1 . 4 V t o 1 . 6 V 6
IO L L o w - l e v e l o u t p u t c u r r e n t 1 . 6 5 V t o 1 . 9 5 V 8 m A
2 . 3 V t o 2 . 7 V 9
3 V t o 3 . 6 V 1 2
t / v I n p u t t r a n s i t i o n r i s e o r f a l l r a t e 5 n s / V
T A O p e r a t i n g f r e e - a i r t e m p e r a t u r e 4 0 8 5 C
( 1 ) V C C I i s t h e V C C a s s o c i a t e d w i t h t h e d a t a i n p u t p o r t . ( 2 ) V C C O i s t h e V C C a s s o c i a t e d w i t h t h e o u t p u t p o r t . ( 3 ) A l l u n u s e d d a t a i n p u t s o f t h e d e v i c e m u s t b e h e l d a t V C C I o r G N D t o e n s u r e p r o p e r d e v i c e o p e r a t i o n . R e f e r t o t h e T I a p p l i c a t i o n r e p o r t ,
I m p l i c a t i o n s o f S l o w o r F l o a t i n g C M O S I n p u t s , l i t e r a t u r e n u m b e r S C B A 0 0 4 . ( 4 ) F o r V C C I v a l u e s n o t s p e c i f i e d i n t h e d a t a s h e e t , V I H m i n = V C C I 0 . 7 V , V I L m a x = V C C I 0 . 3 V . ( 5 ) F o r V C C A v a l u e s n o t s p e c i f i e d i n t h e d a t a s h e e t , V I H m i n = V C C A 0 . 7 V , V I L m a x = V C C A 0 . 3 V .
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E l e c t r i c a l C h a r a c t e r i s t i c s ( 1 ) ( 2 )
S N 7 4 A V C 1 6 T 2 4 5
1 6 - B I T D U A L - S U P P L Y B U S T R A N S C E I V E R
W I T H C O N F I G U R A B L E V O L T A G E T R A N S L A T I O N A N D 3 - S T A T E O U T P U T S S C E S 5 5 1 C F E B R U A R Y 2 0 0 4 R E V I S E D A U G U S T 2 0 0 5
o v e r r e c o m m e n d e d o p e r a t i n g f r e e - a i r t e m p e r a t u r e r a n g e ( u n l e s s o t h e r w i s e n o t e d )
T A = 2 5 C 4 0 C t o 8 5 CP A R A M E T E R T E S T C O N D I T I O N S V C C A V C C B U N I T
M I N T Y P M A X M I N M A X
IO H = 1 0 0 A 1 . 2 V t o 3 . 6 V 1 . 2 V t o 3 . 6 V V C C O 0 . 2
IO H = 3 m A 1 . 2 V 1 . 2 V 0 . 9 5 IO H = 6 m A 1 . 4 V 1 . 4 V 1 . 0 5
V O H V I = V I H VIO H = 8 m A 1 . 6 5 V 1 . 6 5 V 1 . 2
IO H = 9 m A 2 . 3 V 2 . 3 V 1 . 7 5
IO H = 1 2 m A 3 V 3 V 2 . 3
IO L = 1 0 0 A 1 . 2 V t o 3 . 6 V 1 . 2 V t o 3 . 6 V 0 . 2
IO L = 3 m A 1 . 2 V 1 . 2 V 0 . 1 5
IO L = 6 m A 1 . 4 V 1 . 4 V 0 . 3 5 V O L V I = V I L V
IO L = 8 m A 1 . 6 5 V 1 . 6 5 V 0 . 4 5
IO L = 9 m A 2 . 3 V 2 . 3 V 0 . 5 5
IO L = 1 2 m A 3 V 3 V 0 . 7
C o n t r o l II V I = V C C A o r G N D 1 . 2 V t o 3 . 6 V 1 . 2 V t o 3 . 6 V 0 . 0 2 5 0 . 2 5 1 A
i n p u t s A o r B
0 V 0 t o 3 . 6 V 0 . 1 2 . 5 5p o r t
Io f f V I o r V O = 0 t o 3 . 6 V AA o r B
0 t o 3 . 6 V 0 V 0 . 5 2 . 5 5p o r t
V O = V C C O o r G N D , A o r B IO Z
( 3 ) V I = V C C I o r G N D , 3 . 6 V 3 . 6 V 0 . 5 2 . 5 5 Ap o r t O E = V I H
1 . 2 V t o 3 . 6 V 1 . 2 V t o 3 . 6 V 2 5 V I = V C C I o r G N D , IC C A 0 V 3 . 6 V 5 AIO = 0
3 . 6 V 0 V 2 5
1 . 2 V t o 3 . 6 V 1 . 2 V t o 3 . 6 V 2 5 V I = V C C I o r G N D , IC C B 0 V 3 . 6 V 2 5 AIO = 0
3 . 6 V 0 V 5
V I = V C C I o r G N D , IC C A + IC C B 1 . 2 V t o 3 . 6 V 1 . 2 V t o 3 . 6 V 4 5 AIO = 0
C o n t r o l C i V I = 3 . 3 V o r G N D 3 . 3 V 3 . 3 V 3 . 5 p F i n p u t s
A o r B C io V O = 3 . 3 V o r G N D 3 . 3 V 3 . 3 V 7 p F p o r t
( 1 ) V C C O i s t h e V C C a s s o c i a t e d w i t h t h e o u t p u t p o r t . ( 2 ) V C C I i s t h e V C C a s s o c i a t e d w i t h t h e i n p u t p o r t . ( 3 ) F o r I / O p o r t s , t h e p a r a m e t e r I O Z i n c l u d e s t h e i n p u t l e a k a g e c u r r e n t .
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S w i t c h i n g C h a r a c t e r i s t i c s
S w i t c h i n g C h a r a c t e r i s t i c s
S N 7 4 A V C 1 6 T 2 4 5
1 6 - B I T D U A L - S U P P L Y B U S T R A N S C E I V E R
W I T H C O N F I G U R A B L E V O L T A G E T R A N S L A T I O N A N D 3 - S T A T E O U T P U T S S C E S 5 5 1 C F E B R U A R Y 2 0 0 4 R E V I S E D A U G U S T 2 0 0 5
o v e r r e c o m m e n d e d o p e r a t i n g f r e e - a i r t e m p e r a t u r e r a n g e , V C C A = 1 . 2 V ( s e e F i g u r e 1 1 )
V C C B = 1 . 2 V V C C B = 1 . 5 V V C C B = 1 . 8 V V C C B = 2 . 5 V V C C B = 3 . 3 V F R O M T O P A R A M E T E R U N I T
( I N P U T ) ( O U T P U T ) T Y P T Y P T Y P T Y P T Y P
tP L H 4 . 1 3 . 3 3 2 . 8 3 . 2 A B n s
tP H L 4 . 1 3 . 3 3 2 . 8 3 . 2 tP L H 4 . 4 4 3 . 8 3 . 6 3 . 5
B A n stP H L 4 . 4 4 3 . 8 3 . 6 3 . 5
tP Z H 6 . 4 6 . 4 6 . 4 6 . 4 6 . 4 O E A n s
tP Z L 6 . 4 6 . 4 6 . 4 6 . 4 6 . 4
tP Z H 6 4 . 6 4 3 . 4 3 . 2 O E B n s
tP Z L 6 4 . 6 4 3 . 4 3 . 2
tP H Z 6 . 6 6 . 6 6 . 6 6 . 6 6 . 8 O E A n s
tP L Z 6 . 6 6 . 6 6 . 6 6 . 6 6 . 8
tP H Z 6 4 . 9 4 . 9 4 . 2 5 . 3 O E B n s
tP L Z 6 4 . 9 4 . 9 4 . 2 5 . 3
o v e r r e c o m m e n d e d o p e r a t i n g f r e e - a i r t e m p e r a t u r e r a n g e , V C C A = 1 . 5 V 0 . 1 V ( s e e F i g u r e 1 1 )
V C C B = 1 . 5 V V C C B = 1 . 8 V V C C B = 2 . 5 V V C C B = 3 . 3 V V C C B = 1 . 2 V F R O M T O 0 . 1 V 0 . 1 5 V 0 . 2 V 0 . 3 V P A R A M E T E R U N I T ( I N P U T ) ( O U T P U T )
T Y P M I N M A X M I N M A X M I N M A X M I N M A X
tP L H 3 . 6 0 . 5 6 . 2 0 . 5 5 . 2 0 . 5 4 . 1 0 . 5 3 . 7 A B n s
tP H L 3 . 6 0 . 5 6 . 2 0 . 5 5 . 2 0 . 5 4 . 1 0 . 5 3 . 7
tP L H 3 . 3 0 . 5 6 . 2 0 . 5 5 . 9 0 . 5 5 . 6 0 . 5 5 . 5 B A n s
tP H L 3 . 3 0 . 5 6 . 2 0 . 5 5 . 9 0 . 5 5 . 6 0 . 5 5 . 5
tP Z H 4 . 3 1 1 0 . 1 1 1 0 . 1 1 1 0 . 1 1 1 0 . 1 O E A n s
tP Z L 4 . 3 1 1 0 . 1 1 1 0 . 1 1 1 0 . 1 1 1 0 . 1
tP Z H 5 . 6 1 1 0 . 1 0 . 5 8 . 1 0 . 5 5 . 9 0 . 5 5 . 2 O E B n stP Z L 5 . 6 1 1 0 . 1 0 . 5 8 . 1 0 . 5 5 . 9 0 . 5 5 . 2
tP H Z 4 . 5 1 . 5 9 . 1 1 . 5 9 . 1 1 . 5 9 . 1 1 . 5 9 . 1 O E A n s
tP L Z 4 . 5 1 . 5 9 . 1 1 . 5 9 . 1 1 . 5 9 . 1 1 . 5 9 . 1
tP H Z 5 . 5 1 . 5 8 . 7 1 . 5 7 . 5 1 6 . 5 1 6 . 3 O E B n s
tP L Z 5 . 5 1 . 5 8 . 7 1 . 5 7 . 5 1 6 . 5 1 6 . 3
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S w i t c h i n g C h a r a c t e r i s t i c s
S w i t c h i n g C h a r a c t e r i s t i c s
S N 7 4 A V C 1 6 T 2 4 5
1 6 - B I T D U A L - S U P P L Y B U S T R A N S C E I V E R
W I T H C O N F I G U R A B L E V O L T A G E T R A N S L A T I O N A N D 3 - S T A T E O U T P U T S S C E S 5 5 1 C F E B R U A R Y 2 0 0 4 R E V I S E D A U G U S T 2 0 0 5
o v e r r e c o m m e n d e d o p e r a t i n g f r e e - a i r t e m p e r a t u r e r a n g e , V C C A = 1 . 8 V 0 . 1 5 V ( s e e F i g u r e 1 1 )
V C C B = 1 . 5 V V C C B = 1 . 8 V V C C B = 2 . 5 V V C C B = 3 . 3 V V C C B = 1 . 2 V F R O M T O 0 . 1 V 0 . 1 5 V 0 . 2 V 0 . 3 V P A R A M E T E R U N I T ( I N P U T ) ( O U T P U T )
T Y P M I N M A X M I N M A X M I N M A X M I N M A X
tP L H 3 . 4 0 . 5 5 . 9 0 . 5 4 . 8 0 . 5 3 . 7 0 . 5 3 . 3
A B n stP H L 3 . 4 0 . 5 5 . 9 0 . 5 4 . 8 0 . 5 3 . 7 0 . 5 3 . 3
tP L H 3 0 . 5 5 . 2 0 . 5 4 . 8 0 . 5 4 . 5 0 . 5 4 . 4 B A n s
tP H L 3 0 . 5 5 . 2 0 . 5 4 . 8 0 . 5 4 . 5 0 . 5 4 . 4
tP Z H 3 . 4 1 7 . 8 1 7 . 8 1 7 . 8 1 7 . 8 O E A n s
tP Z L 3 . 4 1 7 . 8 1 7 . 8 1 7 . 8 1 7 . 8
tP Z H 5 . 4 1 9 . 2 0 . 5 7 . 4 0 . 5 5 . 3 0 . 5 4 . 5 O E B n s
tP Z L 5 . 4 1 9 . 2 0 . 5 7 . 4 0 . 5 5 . 3 0 . 5 4 . 5
tP H Z 4 . 2 1 . 5 7 . 7 1 . 5 7 . 7 1 . 5 7 . 7 1 . 5 7 . 7 O E A n s
tP L Z 4 . 2 1 . 5 7 . 7 1 . 5 7 . 7 1 . 5 7 . 7 1 . 5 7 . 7
tP H Z 5 . 2 1 . 5 8 . 4 1 . 5 7 . 1 1 5 . 9 1 5 . 7 O E B n s
tP L Z 5 . 2 1 . 5 8 . 4 1 . 5 7 . 1 1 5 . 9 1 5 . 7
o v e r r e c o m m e n d e d o p e r a t i n g f r e e - a i r t e m p e r a t u r e r a n g e , V C C A = 2 . 5 V 0 . 2 V ( s e e F i g u r e 1 1 )
V C C B = 1 . 5 V V C C B = 1 . 8 V V C C B = 2 . 5 V V C C B = 3 . 3 V V C C B = 1 . 2 V F R O M T O 0 . 1 V 0 . 1 5 V 0 . 2 V 0 . 3 V P A R A M E T E R U N I T ( I N P U T ) ( O U T P U T )
T Y P M I N M A X M I N M A X M I N M A X M I N M A X
tP L H 3 . 2 0 . 5 5 . 6 0 . 5 4 . 5 0 . 5 3 . 3 0 . 5 2 . 8 A B n s
tP H L 3 . 2 0 . 5 5 . 6 0 . 5 4 . 5 0 . 5 3 . 3 0 . 5 2 . 8
tP L H 2 . 6 0 . 5 4 . 1 0 . 5 3 . 7 0 . 5 3 . 3 0 . 5 3 . 2 B A n s
tP H L 2 . 6 0 . 5 4 . 1 0 . 5 3 . 7 0 . 5 3 . 3 0 . 5 3 . 2
tP Z H 2 . 5 0 . 5 5 . 3 0 . 5 5 . 3 0 . 5 5 . 3 0 . 5 5 . 3 O E A n s
tP Z L 2 . 5 0 . 5 5 . 3 0 . 5 5 . 3 0 . 5 5 . 3 0 . 5 5 . 3 tP Z H 5 . 2 0 . 5 9 . 4 0 . 5 7 . 3 0 . 5 5 . 1 0 . 5 4 . 5
O E B n stP Z L 5 . 2 0 . 5 9 . 4 0 . 5 7 . 3 0 . 5 5 . 1 0 . 5 4 . 5
tP H Z 3 1 6 . 1 1 6 . 1 1 6 . 1 1 6 . 1 O E A n s
tP L Z 3 1 6 . 1 1 6 . 1 1 6 . 1 1 6 . 1
tP H Z 5 1 7 . 9 1 6 . 6 1 6 . 1 1 5 . 2 O E B n s
tP L Z 5 1 7 . 9 1 6 . 6 1 6 . 1 1 5 . 2
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S w i t c h i n g C h a r a c t e r i s t i c s
O p e r a t i n g C h a r a c t e r i s t i c s
S N 7 4 A V C 1 6 T 2 4 5
1 6 - B I T D U A L - S U P P L Y B U S T R A N S C E I V E R
W I T H C O N F I G U R A B L E V O L T A G E T R A N S L A T I O N A N D 3 - S T A T E O U T P U T S S C E S 5 5 1 C F E B R U A R Y 2 0 0 4 R E V I S E D A U G U S T 2 0 0 5
o v e r r e c o m m e n d e d o p e r a t i n g f r e e - a i r t e m p e r a t u r e r a n g e , V C C A = 3 . 3 V 0 . 3 V ( s e e F i g u r e 1 1 )
V C C B = 1 . 5 V V C C B = 1 . 8 V V C C B = 2 . 5 V V C C B = 3 . 3 V V C C B = 1 . 2 V F R O M T O 0 . 1 V 0 . 1 5 V 0 . 2 V 0 . 3 V P A R A M E T E R U N I T ( I N P U T ) ( O U T P U T )
T Y P M I N M A X M I N M A X M I N M A X M I N M A X
tP L H 3 . 2 0 . 5 5 . 5 0 . 5 4 . 4 0 . 5 3 . 2 0 . 5 2 . 7
A B n stP H L 3 . 2 0 . 5 5 . 5 0 . 5 4 . 4 0 . 5 3 . 2 0 . 5 2 . 7
tP L H 2 . 8 0 . 5 3 . 7 0 . 5 3 . 3 0 . 5 2 . 8 0 . 5 2 . 7 B A n s
tP H L 2 . 8 0 . 5 3 . 7 0 . 5 3 . 3 0 . 5 2 . 8 0 . 5 2 . 7
tP Z H 2 . 2 0 . 5 4 . 3 0 . 5 4 . 2 0 . 5 4 . 1 0 . 5 4 O E A n s
tP Z L 2 . 2 0 . 5 4 . 3 0 . 5 4 . 2 0 . 5 4 . 1 0 . 5 4
tP Z H 5 . 1 0 . 5 9 . 3 0 . 5 7 . 2 0 . 5 4 . 9 0 . 5 4 O E B n s
tP Z L 5 . 1 0 . 5 9 . 3 0 . 5 7 . 2 0 . 5 4 . 9 0 . 5 4
tP H Z 3 . 4 0 . 5 5 0 . 5 5 0 . 5 5 0 . 5 5 O E A n s
tP L Z 3 . 4 0 . 5 5 0 . 5 5 0 . 5 5 0 . 5 5
tP H Z 4 . 9 1 7 . 7 1 6 . 5 1 5 . 2 0 . 5 5 O E B n s
tP L Z 4 . 9 1 7 . 7 1 6 . 5 1 5 . 2 0 . 5 5
TA = 2 5 C
V C C A = V C C A = V C C A = V C C A = V C C A =T E S T V C C B = 1 . 2 V V C C B = 1 . 5 V V C C B = 1 . 8 V V C C B = 2 . 5 V V C C B = 3 . 3 V P A R A M E T E R U N I T
C O N D I T I O N S T Y P T Y P T Y P T Y P T Y P
O u t p u t s 1 1 1 1 2
e n a b l e d A t o B
O u t p u t s 1 1 1 1 1 C L = 0 ,d i s a b l e d
C p d A ( 1 ) f = 1 0 M H z , p F
O u t p u t s tr = tf = 1 n s 1 3 1 3 1 4 1 5 1 6 e n a b l e d
B t o A
O u t p u t s 1 1 1 1 1 d i s a b l e d
O u t p u t s 1 3 1 3 1 4 1 5 1 6
e n a b l e d A t o B
O u t p u t s 1 1 1 1 1 C L = 0 ,d i s a b l e d
C p d B ( 1 ) f = 1 0 M H z , p F
O u t p u t s tr = tf = 1 n s 1 1 1 1 2 e n a b l e d
B t o A O u t p u t s
1 1 1 1 1 d i s a b l e d
( 1 ) P o w e r d i s s i p a t i o n c a p a c i t a n c e p e r t r a n s c e i v e r
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S N 7 4 A V C 1 6 T 2 4 5
1 6 - B I T D U A L - S U P P L Y B U S T R A N S C E I V E R
W I T H C O N F I G U R A B L E V O L T A G E T R A N S L A T I O N A N D 3 - S T A T E O U T P U T S S C E S 5 5 1 C F E B R U A R Y 2 0 0 4 R E V I S E D A U G U S T 2 0 0 5
T a b l e 1 . T y p i c a l T o t a l S t a t i c P o w e r C o n s u m p t i o n ( I C C A + IC C B )
V C C AV C C B U N I T
0 V 1 . 2 V 1 . 5 V 1 . 8 V 2 . 5 V 3 . 3 V
0 V 0 < 0 . 5 < 0 . 5 < 0 . 5 < 0 . 5 < 0 . 5
1 . 2 V < 0 . 5 < 1 < 1 < 1 < 1 1
1 . 5 V < 0 . 5 < 1 < 1 < 1 < 1 1 A
1 . 8 V < 0 . 5 < 1 < 1 < 1 < 1 < 1
2 . 5 V < 0 . 5 1 < 1 < 1 < 1 < 1
3 . 3 V < 0 . 5 1 < 1 < 1 < 1 < 1
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T Y P I C A L C H A R A C T E R I S T I C S
0 10 20 30 40 50 60
CL Load Capacitance pF
tPLH
Propagation
Delay
ns
6
5
4
3
2
1
0
TA= 25C
VCCA= 1.2 V
VCCB= 1.2 V
+ VCCB= 1.5 V
VCCB= 1.8 V
VCCB= 2.5 V VCCB= 3.3 V
CL Load Capacitance pF
0 10 20 30 40 50 60
6
5
4
3
2
1
0
6
5
4
3
2
1
0
TA= 25C
VCCA= 1.2 V
tPHL
Prop
agationDelay
ns
VCCB= 1.2 V
+ VCCB= 1.5 V
VCCB= 1.8 V
VCCB= 2.5 V VCCB= 3.3 V
S N 7 4 A V C 1 6 T 2 4 5
1 6 - B I T D U A L - S U P P L Y B U S T R A N S C E I V E R
W I T H C O N F I G U R A B L E V O L T A G E T R A N S L A T I O N A N D 3 - S T A T E O U T P U T S S C E S 5 5 1 C F E B R U A R Y 2 0 0 4 R E V I S E D A U G U S T 2 0 0 5
F i g u r e 1 .
F i g u r e 2 .
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T Y P I C A L C H A R A C T E R I S T I C S
CL Load Capacitance pF
tPLH
PropagationDelay
ns
0 10 20 30 40 50 60
6
5
4
3
2
1
0
TA= 25C
VCCA= 1.5 V
VCCB= 1.2 V
+ VCCB= 1.5 V
VCCB= 1.8 V
VCCB= 2.5 V VCCB= 3.3 V
0 10 20 30 40 50 60
6
5
4
3
2
1
0
tPHL
P
ropagationDelay
ns
TA= 25C
VCCA= 1.5 V
CL Load Capacitance pF
VCCB= 1.2 V
+ VCCB= 1.5 V
VCCB= 1.8 V
VCCB= 2.5 V VCCB= 3.3 V
S N 7 4 A V C 1 6 T 2 4 5
1 6 - B I T D U A L - S U P P L Y B U S T R A N S C E I V E R
W I T H C O N F I G U R A B L E V O L T A G E T R A N S L A T I O N A N D 3 - S T A T E O U T P U T S S C E S 5 5 1 C F E B R U A R Y 2 0 0 4 R E V I S E D A U G U S T 2 0 0 5
F i g u r e 3 .
F i g u r e 4 .
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T Y P I C A L C H A R A C T E R I S T I C S
tPLH
PropagationDelay
ns
0 10 20 30 40 50 60
6
5
4
3
2
1
0
TA= 25C
VCCA= 1.8 V
CL Load Capacitance pF
VCCB= 1.2 V
+ VCCB= 1.5 V
VCCB= 1.8 V
VCCB= 2.5 V VCCB= 3.3 V
tPHL
PropagationDelay
ns
0 10 20 30 40 50 60
6
5
4
3
2
1
0
TA= 25C
VCCA= 1.8 V
CL Load Capacitance pF
VCCB= 1.2 V
+ VCCB= 1.5 V
VCCB= 1.8 V
VCCB= 2.5 V VCCB= 3.3 V
S N 7 4 A V C 1 6 T 2 4 5
1 6 - B I T D U A L - S U P P L Y B U S T R A N S C E I V E R
W I T H C O N F I G U R A B L E V O L T A G E T R A N S L A T I O N A N D 3 - S T A T E O U T P U T S S C E S 5 5 1 C F E B R U A R Y 2 0 0 4 R E V I S E D A U G U S T 2 0 0 5
F i g u r e 5 .
F i g u r e 6 .
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T Y P I C A L C H A R A C T E R I S T I C S
tPLH
PropagationDelay
ns
0 10 20 30 40 50 60
6
5
4
3
2
1
0
TA= 25C
VCCA= 2.5 V
CL Load Capacitance pF
VCCB= 1.2 V
+ VCCB= 1.5 V
VCCB= 1.8 V
VCCB= 2.5 V VCCB= 3.3 V
CL Load Capacitance pF
tPHL
PropagationDelay
ns
0 10 20 30 40 50 60
6
5
4
3
2
1
0
TA= 25C
VCCA= 2.5 V
VCCB= 1.2 V
+ VCCB= 1.5 V
VCCB= 1.8 V
VCCB= 2.5 V VCCB= 3.3 V
S N 7 4 A V C 1 6 T 2 4 5
1 6 - B I T D U A L - S U P P L Y B U S T R A N S C E I V E R
W I T H C O N F I G U R A B L E V O L T A G E T R A N S L A T I O N A N D 3 - S T A T E O U T P U T S S C E S 5 5 1 C F E B R U A R Y 2 0 0 4 R E V I S E D A U G U S T 2 0 0 5
F i g u r e 7 .
F i g u r e 8 .
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T Y P I C A L C H A R A C T E R I S T I C S
0 10 20 30 40 50 60
6
5
4
3
2
1
0
TA= 25C
VCCA= 3.3 V
CL Load Capacitance pF
tPLH
Propagation
Delay
ns
VCCB= 1.2 V
+ VCCB= 1.5 V
VCCB= 1.8 V
VCCB= 2.5 V VCCB= 3.3 V
CL Load Capacitance pF
0 10 20 30 40 50 60
6
5
4
3
2
1
0
6
5
4
3
2
1
0
TA= 25C
VCCA= 3.3 V
tPHL
PropagationDelay
ns
VCCB= 1.2 V
+ VCCB= 1.5 V
VCCB= 1.8 V
VCCB= 2.5 V VCCB= 3.3 V
S N 7 4 A V C 1 6 T 2 4 5
1 6 - B I T D U A L - S U P P L Y B U S T R A N S C E I V E R
W I T H C O N F I G U R A B L E V O L T A G E T R A N S L A T I O N A N D 3 - S T A T E O U T P U T S S C E S 5 5 1 C F E B R U A R Y 2 0 0 4 R E V I S E D A U G U S T 2 0 0 5
F i g u r e 9 .
F i g u r e 1 0 .
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P A R A M E T E R M E A S U R E M E N T I N F O R M A T I O N
VOH
VOL
From Output
Under Test
CL(see Note A)
LOAD CIRCUIT
S1
2 VCCO
Open
GND
RL
RL
tPLH tPHL
OutputControl
(low-level
enabling)
Output
Waveform 1
S1 at 2 VCCO(see Note B)
Output
Waveform 2
S1 at GND
(see Note B)
tPZL
tPZH
tPLZ
tPHZ
VCCA/2VCCA/2
VCCI/2 VCCI/2
VCCI
0 V
VCCO/2 VCCO/2
VOH
VOL
0 V
VCCO/2 VOL+ VTP
VCCO/2VOH VTP
0 V
VCCI
0 V
VCCI/2 VCCI/2
tw
Input
VCCA
VCCO
VOLTAGE WAVEFORMS
PROPAGATION DELAY TIMES
VOLTAGE WAVEFORMS
PULSE DURATION
VOLTAGE WAVEFORMS
ENABLE AND DISABLE TIMES
Output
Input
tpdtPLZ/tPZLtPHZ/tPZH
Open
2 VCCOGND
TEST S1
NOTES: A. CLincludes probe and jig capacitance.
B. Waveform 1 is for an output with internal conditions such that the output is low, except when disabled by the output control.Waveform 2 is for an output with internal conditions such that the output is high, except when disabled by the output control.
C. All input pulses are supplied by generators having the following characteristics: PRR10 MHz, ZO= 50 , dv/dt 1 V/ns.
D. The outputs are measured one at a time, with one transition per measurement.
E. tPLZand tPHZare the same as tdis.
F. tPZLand tPZHare the same as ten.
G. tPLHand tPHLare the same as tpd.H. VCCIis the VCCassociated with the input port.
I. VCCOis the VCCassociated with the output port.
1.2 V
1.5 V 0.1 V
1.8 V 0.15 V
2.5 V 0.2 V
3.3 V 0.3 V
2 k
2 k
2 k
2 k
2 k
VCCO RL
0.1 V
0.1 V
0.15 V
0.15 V
0.3 V
VTPCL
15 pF
15 pF
15 pF
15 pF
15 pF
S N 7 4 A V C 1 6 T 2 4 5
1 6 - B I T D U A L - S U P P L Y B U S T R A N S C E I V E R
W I T H C O N F I G U R A B L E V O L T A G E T R A N S L A T I O N A N D 3 - S T A T E O U T P U T S S C E S 5 5 1 C F E B R U A R Y 2 0 0 4 R E V I S E D A U G U S T 2 0 0 5
F i g u r e 1 1 . L o a d C i r c u i t a n d V o l t a g e W a v e f o r m s
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PACKAGING INFORMATION
Orderable Device Status (1) PackageType
PackageDrawing
Pins PackageQty
Eco Plan (2) Lead/Ball Finish MSL Peak Temp(3)
74AVC16T245DGGRE4 ACTIVE TSSOP DGG 48 2000 Green (RoHS &
no Sb/Br)
CU NIPDAU Level-1-260C-UNLIM
74AVC16T245DGGRG4 ACTIVE TSSOP DGG 48 2000 Green (RoHS &no Sb/Br)
CU NIPDAU Level-1-260C-UNLIM
74AVC16T245DGVRE4 ACTIVE TVSOP DGV 48 2000 Green (RoHS &no Sb/Br)
CU NIPDAU Level-1-260C-UNLIM
74AVC16T245DGVRG4 ACTIVE TVSOP DGV 48 2000 Green (RoHS &no Sb/Br)
CU NIPDAU Level-1-260C-UNLIM
AVC16T245DGGR-D ACTIVE TSSOP DGG 48 2000 Green (RoHS &no Sb/Br)
CU NIPDAU Level-1-260C-UNLIM
SN74AVC16T245DGGR ACTIVE TSSOP DGG 48 2000 Green (RoHS &no Sb/Br)
CU NIPDAU Level-1-260C-UNLIM
SN74AVC16T245DGVR ACTIVE TVSOP DGV 48 2000 Green (RoHS &no Sb/Br)
CU NIPDAU Level-1-260C-UNLIM
SN74AVC16T245GQLR NRND BGA MICROSTA
R JUNIOR
GQL 56 1000 TBD SNPB Level-1-240C-UNLIM
SN74AVC16T245ZQLR ACTIVE BGA MICROSTA
R JUNIOR
ZQL 56 1000 Green (RoHS &no Sb/Br)
SNAGCU Level-1-260C-UNLIM
(1)The marketing status values are defined as follows:
ACTIVE:Product device recommended for new designs.LIFEBUY:TI has announced that the device will be discontinued, and a lifetime-buy period is in effect.NRND:Not recommended for new designs. Device is in production to support existing customers, but TI does not recommend using this part ina new design.PREVIEW:Device has been announced but is not in production. Samples may or may not be available.OBSOLETE:TI has discontinued the production of the device.
(2) Eco Plan - The planned eco-friendly classification: Pb-Free (RoHS), Pb-Free (RoHS Exempt), or Green (RoHS & no Sb/Br) - please checkhttp://www.ti.com/productcontentfor the latest availability information and additional product content details.TBD:The Pb-Free/Green conversion plan has not been defined.Pb-Free (RoHS):TI's terms "Lead-Free" or "Pb-Free" mean semiconductor products that are compatible with the current RoHS requirementsfor all 6 substances, including the requirement that lead not exceed 0.1% by weight in homogeneous materials. Where designed to be solderedat high temperatures, TI Pb-Free products are suitable for use in specified lead-free processes.Pb-Free (RoHS Exempt):This component has a RoHS exemption for either 1) lead-based flip-chip solder bumps used between the die andpackage, or 2) lead-based die adhesive used between the die and leadframe. The component is otherwise considered Pb-Free (RoHScompatible) as defined above.Green (RoHS & no Sb/Br):TI defines "Green" to mean Pb-Free (RoHS compatible), and free of Bromine (Br) and Antimony (Sb) based flameretardants (Br or Sb do not exceed 0.1% by weight in homogeneous material)
(3)MSL, Peak Temp. -- The Moisture Sensitivity Level rating according to the JEDEC industry standard classifications, and peak solder
temperature.
Important Information and Disclaimer:The information provided on this page represents TI's knowledge and belief as of the date that it isprovided. TI bases its knowledge and belief on information provided by third parties, and makes no representation or warranty as to theaccuracy of such information. Efforts are underway to better integrate information from third parties. TI has taken and continues to takereasonable steps to provide representative and accurate information but may not have conducted destructive testing or chemical analysis onincoming materials and chemicals. TI and TI suppliers consider certain information to be proprietary, and thus CAS numbers and other limitedinformation may not be available for release.
In no event shall TI's liability arising out of such information exceed the total purchase price of the TI part(s) at issue in this document sold by TIto Customer on an annual basis.
PACKAGE OPTION ADDENDUM
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OTHER QUALIFIED VERSIONS OF SN74AVC16T245 :
Automotive:SN74AVC16T245-Q1
NOTE: Qualified Version Definitions:
Automotive - Q100 devices qualified for high-reliability automotive applications targeting zero defects
PACKAGE OPTION ADDENDUM
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TAPE AND REEL INFORMATION
*All dimensions are nominal
Device PackageType
PackageDrawing
Pins SPQ ReelDiameter
(mm)
ReelWidth
W1 (mm)
A0(mm)
B0(mm)
K0(mm)
P1(mm)
W(mm)
Pin1Quadrant
SN74AVC16T245DGGR TSSOP DGG 48 2000 330.0 24.4 8.6 15.8 1.8 12.0 24.0 Q1
SN74AVC16T245DGVR TVSOP DGV 48 2000 330.0 16.4 7.1 10.2 1.6 12.0 16.0 Q1
SN74AVC16T245GQLR BGA MICROSTA
R JUNIOR
GQL 56 1000 330.0 16.4 4.8 7.3 1.45 8.0 16.0 Q1
SN74AVC16T245GQLR BGA MICROSTA
R JUNIOR
GQL 56 1000 330.0 16.4 4.8 7.3 1.5 8.0 16.0 Q1
SN74AVC16T245ZQLR BGA MICROSTA
R JUNIOR
ZQL 56 1000 330.0 16.4 4.8 7.3 1.45 8.0 16.0 Q1
SN74AVC16T245ZQLR BGA MICROSTA
R JUNIOR
ZQL 56 1000 330.0 16.4 4.8 7.3 1.5 8.0 16.0 Q1
PACKAGE MATERIALS INFORMATION
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*All dimensions are nominal
Device Package Type Package Drawing Pins SPQ Length (mm) Width (mm) Height (mm)
SN74AVC16T245DGGR TSSOP DGG 48 2000 346.0 346.0 41.0
SN74AVC16T245DGVR TVSOP DGV 48 2000 346.0 346.0 33.0
SN74AVC16T245GQLR BGA MICROSTARJUNIOR
GQL 56 1000 346.0 346.0 33.0
SN74AVC16T245GQLR BGA MICROSTARJUNIOR
GQL 56 1000 333.2 345.9 28.6
SN74AVC16T245ZQLR BGA MICROSTARJUNIOR
ZQL 56 1000 346.0 346.0 33.0
SN74AVC16T245ZQLR BGA MICROSTARJUNIOR
ZQL 56 1000 333.2 345.9 28.6
PACKAGE MATERIALS INFORMATION
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MECHANICAL DATA
MTSS003D JANUARY 1995 REVISED JANUARY 1998
POST OFFICE BOX 655303 DALLAS, TEXAS 75265
DGG (R-PDSO-G**) PLASTIC SMALL-OUTLINE PACKAGE
4040078/ F 12/97
48 PINS SHOWN
0,25
0,15 NOM
Gage Plane
6,00
6,20 8,30
7,90
0,75
0,50
Seating Plane
25
0,27
0,17
24
A
48
1
1,20 MAX
M0,08
0,10
0,50
08
56
14,10
13,90
48DIM
A MAX
A MIN
PINS **
12,40
12,60
64
17,10
16,90
0,15
0,05
NOTES: A. All linear dimensions are in millimeters.
B. This drawing is subject to change without notice.
C. Body dimensions do not include mold protrusion not to exceed 0,15.
D. Falls within JEDEC MO-153
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I M P O R T A N T N O T I C E
T e x a s I n s t r u m e n t s I n c o r p o r a t e d a n d i t s s u b s i d i a r i e s ( T I ) r e s e r v e t h e r i g h t t o m a k e c o r r e c t i o n s , m o d i f i c a t i o n s , e n h a n c e m e n t s , i m p r o v e m e n t s , a n d o t h e r c h a n g e s t o i t s p r o d u c t s a n d s e r v i c e s a t a n y t i m e a n d t o d i s c o n t i n u e a n y p r o d u c t o r s e r v i c e w i t h o u t n o t i c e . C u s t o m e r s s h o u l d o b t a i n t h e l a t e s t r e l e v a n t i n f o r m a t i o n b e f o r e p l a c i n g o r d e r s a n d s h o u l d v e r i f y t h a t s u c h i n f o r m a t i o n i s c u r r e n t a n d c o m p l e t e . A l l p r o d u c t s a r e s o l d s u b j e c t t o T I s t e r m s a n d c o n d i t i o n s o f s a l e s u p p l i e d a t t h e t i m e o f o r d e r a c k n o w l e d g m e n t .
T I w a r r a n t s p e r f o r m a n c e o f i t s h a r d w a r e p r o d u c t s t o t h e s p e c i f i c a t i o n s a p p l i c a b l e a t t h e t i m e o f s a l e i n a c c o r d a n c e w i t h T I s s t a n d a r d
w a r r a n t y . T e s t i n g a n d o t h e r q u a l i t y c o n t r o l t e c h n i q u e s a r e u s e d t o t h e e x t e n t T I d e e m s n e c e s s a r y t o s u p p o r t t h i s w a r r a n t y . E x c e p t w h e r e m a n d a t e d b y g o v e r n m e n t r e q u i r e m e n t s , t e s t i n g o f a l l p a r a m e t e r s o f e a c h p r o d u c t i s n o t n e c e s s a r i l y p e r f o r m e d .
T I a s s u m e s n o l i a b i l i t y f o r a p p l i c a t i o n s a s s i s t a n c e o r c u s t o m e r p r o d u c t d e s i g n . C u s t o m e r s a r e r e s p o n s i b l e f o r t h e i r p r o d u c t s a n d a p p l i c a t i o n s u s i n g T I c o m p o n e n t s . T o m i n i m i z e t h e r i s k s a s s o c i a t e d w i t h c u s t o m e r p r o d u c t s a n d a p p l i c a t i o n s , c u s t o m e r s s h o u l d p r o v i d e a d e q u a t e d e s i g n a n d o p e r a t i n g s a f e g u a r d s .
T I d o e s n o t w a r r a n t o r r e p r e s e n t t h a t a n y l i c e n s e , e i t h e r e x p r e s s o r i m p l i e d , i s g r a n t e d u n d e r a n y T I p a t e n t r i g h t , c o p y r i g h t , m a s k w o r k r i g h t , o r o t h e r T I i n t e l l e c t u a l p r o p e r t y r i g h t r e l a t i n g t o a n y c o m b i n a t i o n , m a c h i n e , o r p r o c e s s i n w h i c h T I p r o d u c t s o r s e r v i c e s a r e u s e d . I n f o r m a t i o n p u b l i s h e d b y T I r e g a r d i n g t h i r d - p a r t y p r o d u c t s o r s e r v i c e s d o e s n o t c o n s t i t u t e a l i c e n s e f r o m T I t o u s e s u c h p r o d u c t s o r s e r v i c e s o r a w a r r a n t y o r e n d o r s e m e n t t h e r e o f . U s e o f s u c h i n f o r m a t i o n m a y r e q u i r e a l i c e n s e f r o m a t h i r d p a r t y u n d e r t h e p a t e n t s o r o t h e r i n t e l l e c t u a l p r o p e r t y o f t h e t h i r d p a r t y , o r a l i c e n s e f r o m T I u n d e r t h e p a t e n t s o r o t h e r i n t e l l e c t u a l p r o p e r t y o f T I .
R e p r o d u c t i o n o f T I i n f o r m a t i o n i n T I d a t a b o o k s o r d a t a s h e e t s i s p e r m i s s i b l e o n l y i f r e p r o d u c t i o n i s w i t h o u t a l t e r a t i o n a n d i s a c c o m p a n i e d b y a l l a s s o c i a t e d w a r r a n t i e s , c o n d i t i o n s , l i m i t a t i o n s , a n d n o t i c e s . R e p r o d u c t i o n o f t h i s i n f o r m a t i o n w i t h a l t e r a t i o n i s a n u n f a i r a n d d e c e p t i v e b u s i n e s s p r a c t i c e . T I i s n o t r e s p o n s i b l e o r l i a b l e f o r s u c h a l t e r e d d o c u m e n t a t i o n . I n f o r m a t i o n o f t h i r d p a r t i e s m a y b e s u b j e c t t o a d d i t i o n a l r e s t r i c t i o n s .
R e s a l e o f T I p r o d u c t s o r s e r v i c e s w i t h s t a t e m e n t s d i f f e r e n t f r o m o r b e y o n d t h e p a r a m e t e r s s t a t e d b y T I f o r t h a t p r o d u c t o r s e r v i c e v o i d s a l l
e x p r e s s a n d a n y i m p l i e d w a r r a n t i e s f o r t h e a s s o c i a t e d T I p r o d u c t o r s e r v i c e a n d i s a n u n f a i r a n d d e c e p t i v e b u s i n e s s p r a c t i c e . T I i s n o t r e s p o n s i b l e o r l i a b l e f o r a n y s u c h s t a t e m e n t s .
T I p r o d u c t s a r e n o t a u t h o r i z e d f o r u s e i n s a f e t y - c r i t i c a l a p p l i c a t i o n s ( s u c h a s l i f e s u p p o r t ) w h e r e a f a i l u r e o f t h e T I p r o d u c t w o u l d r e a s o n a b l y b e e x p e c t e d t o c a u s e s e v e r e p e r s o n a l i n j u r y o r d e a t h , u n l e s s o f f i c e r s o f t h e p a r t i e s h a v e e x e c u t e d a n a g r e e m e n t s p e c i f i c a l l y g o v e r n i n g s u c h u s e . B u y e r s r e p r e s e n t t h a t t h e y h a v e a l l n e c e s s a r y e x p e r t i s e i n t h e s a f e t y a n d r e g u l a t o r y r a m i f i c a t i o n s o f t h e i r a p p l i c a t i o n s , a n d a c k n o w l e d g e a n d a g r e e t h a t t h e y a r e s o l e l y r e s p o n s i b l e f o r a l l l e g a l , r e g u l a t o r y a n d s a f e t y - r e l a t e d r e q u i r e m e n t s c o n c e r n i n g t h e i r p r o d u c t s a n d a n y u s e o f T I p r o d u c t s i n s u c h s a f e t y - c r i t i c a l a p p l i c a t i o n s , n o t w i t h s t a n d i n g a n y a p p l i c a t i o n s - r e l a t e d i n f o r m a t i o n o r s u p p o r t t h a t m a y b e p r o v i d e d b y T I . F u r t h e r , B u y e r s m u s t f u l l y i n d e m n i f y T I a n d i t s r e p r e s e n t a t i v e s a g a i n s t a n y d a m a g e s a r i s i n g o u t o f t h e u s e o f T I p r o d u c t s i n s u c h s a f e t y - c r i t i c a l a p p l i c a t i o n s .
T I p r o d u c t s a r e n e i t h e r d e s i g n e d n o r i n t e n d e d f o r u s e i n m i l i t a r y / a e r o s p a c e a p p l i c a t i o n s o r e n v i r o n m e n t s u n l e s s t h e T I p r o d u c t s a r e s p e c i f i c a l l y d e s i g n a t e d b y T I a s m i l i t a r y - g r a d e o r " e n h a n c e d p l a s t i c . " O n l y p r o d u c t s d e s i g n a t e d b y T I a s m i l i t a r y - g r a d e m e e t m i l i t a r y s p e c i f i c a t i o n s . B u y e r s a c k n o w l e d g e a n d a g r e e t h a t a n y s u c h u s e o f T I p r o d u c t s w h i c h T I h a s n o t d e s i g n a t e d a s m i l i t a r y - g r a d e i s s o l e l y a t t h e B u y e r ' s r i s k , a n d t h a t t h e y a r e s o l e l y r e s p o n s i b l e f o r c o m p l i a n c e w i t h a l l l e g a l a n d r e g u l a t o r y r e q u i r e m e n t s i n c o n n e c t i o n w i t h s u c h u s e .
T I p r o d u c t s a r e n e i t h e r d e s i g n e d n o r i n t e n d e d f o r u s e i n a u t o m o t i v e a p p l i c a t i o n s o r e n v i r o n m e n t s u n l e s s t h e s p e c i f i c T I p r o d u c t s a r e d e s i g n a t e d b y T I a s c o m p l i a n t w i t h I S O / T S 1 6 9 4 9 r e q u i r e m e n t s . B u y e r s a c k n o w l e d g e a n d a g r e e t h a t , i f t h e y u s e a n y n o n - d e s i g n a t e d p r o d u c t s i n a u t o m o t i v e a p p l i c a t i o n s , T I w i l l n o t b e r e s p o n s i b l e f o r a n y f a i l u r e t o m e e t s u c h r e q u i r e m e n t s .
F o l l o w i n g a r e U R L s w h e r e y o u c a n o b t a i n i n f o r m a t i o n o n o t h e r T e x a s I n s t r u m e n t s p r o d u c t s a n d a p p l i c a t i o n s o l u t i o n s :
P r o d u c t s A p p l i c a t i o n s A m p l i f i e r s a m p l i f i e r . t i . c o m A u d i o w w w . t i . c o m / a u d i o D a t a C o n v e r t e r s d a t a c o n v e r t e r . t i . c o m A u t o m o t i v e w w w . t i . c o m / a u t o m o t i v e D L P P r o d u c t s w w w . d l p . c o m B r o a d b a n d w w w . t i . c o m / b r o a d b a n d D S P d s p . t i . c o m D i g i t a l C o n t r o l w w w . t i . c o m / d i g i t a l c o n t r o l C l o c k s a n d T i m e r s w w w . t i . c o m / c l o c k s M e d i c a l w w w . t i . c o m / m e d i c a l I n t e r f a c e i n t e r f a c e . t i . c o m M i l i t a r y w w w . t i . c o m / m i l i t a r y L o g i c l o g i c . t i . c o m O p t i c a l N e t w o r k i n g w w w . t i . c o m / o p t i c a l n e t w o r k P o w e r M g m t p o w e r . t i . c o m S e c u r i t y w w w . t i . c o m / s e c u r i t y M i c r o c o n t r o l l e r s m i c r o c o n t r o l l e r . t i . c o m T e l e p h o n y w w w . t i . c o m / t e l e p h o n y R F I D w w w . t i - r f i d . c o m V i d e o & I m a g i n g w w w . t i . c o m / v i d e o R F / I F a n d Z i g B e e S o l u t i o n s w w w . t i . c o m / l p r f W i r e l e s s w w w . t i . c o m / w i r e l e s s
M a i l i n g A d d r e s s : T e x a s I n s t r u m e n t s , P o s t O f f i c e B o x 6 5 5 3 0 3 , D a l l a s , T e x a s 7 5 2 6 5 C o p y r i g h t 2 0 0 9 , T e x a s I n s t r u m e n t s I n c o r p o r a t e d
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