M
E M O R Y M O D U L E
S R a m 1 M x 3 2 -S O P
S ta tic R a m
M O D U L E
3 D S R 3 2 M 3 2 V S 8 5 0 1
3 2 M b it S R a m
o r g a n iz e d a s 1 M x 3 2 , b a s e d o n 2 5 6 K x 1 6
P in A s s ig n m e n t (T o p V ie w )
S O P 6 8 - ( P itc h : 0 .8 0 m m )
F e a tu re s
-
-
-
F a s t A c c e s s T im e : 1 2 , 1 5 , o r 1 7 n s .
S in g le + 3 . 3 V ± 3 . 0 V p o w e r s u p p ly .
P o w e r D is s ip a tio n :
- S ta n d b y
4 0 m A
- O p e r a t in g
2 9 0 m A (M a x .)
T T L C o m p a tib le In p u t a n d O u tp u ts .
F u lly S t a t ic O p e r a t io n
- N o c lo c k o r R e fr e s h r e q u ir e d .
T h re e S ta te O u tp u ts .
C e n te r P o w e r /G r o u n d P in C o n f ig u r a t io n .
D ie c o n t r o l : # C S 0 ~ # C S 7 c h ip s e le c t .
A v a ila b le T e m p e r a t u r e R a n g e :
0 ° C to + 7 0 ° C
-4 0 ° C to + 8 5 ° C
-5 5 ° C to + 1 2 5 ° C
A v a ila b le w it h s c r e e n in g o p t io n f o r h ig h r e lia b ility a p p lic a t io n
(S p a c e , e tc ...).
-
-
-
-
-
-
-
1
2
3
4
5
6
7
8
9
1 0
1 1
1 2
1 3
1 4
1 5
1 6
1 7
# C
I/O
I/O
I/O
# C
# C
A
A
A
A
A
# C
I/O
I/O
I/O
I/O
V C
S 5
1 8
1 7
1 6
S 1
S 4
0
1
2
3
4
S 0
0
1
2
3
C
1 8
1 9
2 0
2 1
2 2
2 3
2 4
2 5
2 6
2 7
2 8
2 9
3 0
3 1
3 2
3 3
3 4
V S
I/O
I/O
I/O
I/O
# W
A
A
A
A
A
I/O
I/O
I/O
I/O
I/O
N
C
S
4
5
6
7
E
5
6
7
8
9
2 3
2 2
2 1
2 0
1 9
3 5
3 6
3 7
3 8
3 9
4 0
4 1
4 2
4 3
4 4
4 5
4 6
4 7
4 8
4 9
5 0
5 1
N C
# C S 6
I/O 2 7
I/O 2 6
I/O 2 5
I/O 2 4
A 1 0
A 1 1
A 1 2
A 1 3
A 1 4
# C S 2
I/O 8
I/O 9
I/O 1 0
I/O 1 1
V C C
5 2
5 3
5 4
5 5
5 6
5 7
5 8
5 9
6 0
6 1
6 2
6 3
6 4
6 5
6 6
6 7
6 8
V S S
I/O 1
I/O 1
I/O 1
I/O 1
# L B
# U B
# O E
A 1 5
A 1 6
A 1 7
I/O 3
I/O 3
I/O 2
I/O 2
# C S
# C S
0
2
3
4
5
1
9
8
3
7
G e n e r a l d e s c r ip tio n
T h e
3 D
S R 3 2 M 3 2 V S 8 5 0 1
is
a
3 3 ,5 5 4 ,4 3 2
h ig h - s p e e d
S ta tic
F U N C T IO N A L B L O C K D IA G R A M
R a n d o m
o f 3 2 b its .
A c c e s s M e m o r y o r g a n iz e d a s 4 b a n k s o f 2 6 2 ,1 4 4 w o r d s
1
# C S 0
2
# C S 1
T h e 3 D S R 3 2 M 3 2 V S 8 5 0 1
u s e s 3 2
c o m m o n
in p u t a n d
I/O 0 -1 5
3
4
# C S 2
# C S 3
o u t p u t lin e s a n d h a s a n o u t p u t e n a b le p in w h ic h o p e r a te s f a s t e r
t h a n a d d r e s s a c c e s s t im e a t r e a d c y c le . A ls o it a llo w s lo w e r a n d
u p p e r b y te a c c e s s
m a n u fa c tu re d
t e c h n o lo g y
p a r t ic u la r it y
u s in g
d e s ig n e d
b y
d a ta
c o n tro l (# U B , # L B ). T h e
w e ll k n o w n
d e v ic e
is
5
2 5 6 K x 1 6
# C S 4
3 D -P L U S
fo r h ig h
fo r u s e
M C M -V p a te n d e d
6
I/O 1 6 -3 1
# C S 5
s p e e d c ir c u it a p p lic a t io n s . I t is
in h ig h r e lia b ilit y , h ig h
a p p lic a t io n s s u c h a s s o lid
in
6 8 p in s S O P .
7
8
# C S 6
# C S 7
w e ll s u it e d
p e r fo r m a n c e a n d h ig h d e n s ity s y s te m
T h e
3 D
S R 3 2 M 3 2 V S 8 5 0 1
is
2 5 6 K x 1 6
s ta te m a s s r e c o r d e r , s e r v e r o r w o r s ta tio n .
p a c k a g e d
( A ll o th e r s ig n a ls a r e c o m m o n to th e
S R a m
M e m o r y M o d u le
e ig h t m e m o r ie s )
1 2 4
!
D
P L U S S .A . r e s e r v e s th e r ig h t to c h a n g e o r c a n c e l p r o d u c ts o r s p e c ific a tio n s w ith o u t n o tic e
!
D F P -0 5 0 1 -R E V : 2 - A U G . 2 0 1 2
1
M E M O R Y M O D U L E
S R a m 1 M x 3 2 -S O P
S ta tic R a m
M O D U L E
M e c h a n ic a l D r a w in g
3 D S R 3 2 M 3 2 V S 8 5 0 1
3 2 M b it S R a m
o r g a n iz e d a s 1 M x 3 2 , b a s e d o n 2 5 6 K x 1 6
Mi
n
M ax
A
A
A 2
D
1 1 .5 5
1 0 .3 0
2 9 .4 0
1 3 .4 0
1 2 .1 5
1 0 .9 0
2 9 .8 0
1 3 .8 0
1 1 .0 5
A 2
D
E
E 1
b
e
1 0 .8 5
E 1
E
e
b
0 .3 5
0 .8 0
D im e n s io n s ( m m )
M a x . w e ig h t : 9 .0 0 g r .
T e s t T o o ls
3 D
S R 3 2 M 3 2 V S 8 5 0 1
E N P L A S O T S -6 4 -0 .8 -0 4
M o d ifie d b y 3 D
P L U S
D C
P a
S u
In p
In p
O u
O u
O p e r a tin g c o n d itio n s a n d c h a r a c te r is tic s
ra m
p p ly
u t lo
u t lo
tp u t
tp u t
e te r
v o lta
g ic h
g ic lo
lo g ic
lo g ic
g e
ig h
w v
h ig
lo w
S y m b o l
V
C C
V
IH
V
IL
V
O H
V
O L
M in
3 .0
2 .0
-0 .3
2 .4
-
T y p
3 .3
-
-
-
-
M a x
3 .6
V
C C
+ 0 .3
0 .8
-
0 .4
U n it
V
V
V
V
V
A b s o lu te m a x im u m
r a tin g s
S y m b o l
V
IN
, V
O U T
T
P
D
O S
S T G
P a ra m e te r
V o lta g e o n a n y p in r e la tiv e to V S S
S to ra g e te m p e ra tu re
P o w e r d is s ip a tio n
S h o r t c ir c u it c u r r e n t
v o lta g e
o lta g e
h V o lta g e
v o lta g e
L
V a lu e
-0 .5 ~ + 4 .6
-6 5 ~ + 1 5 0
2
5 0
U n it
V
° C
W
m A
D C C h a r a c te r is tic s
P a ra m e te r
O p e r a tin g c u r r e n t ( O n e b a n k a c tiv e )
T T L S ta n d b y C u rre n t
C M O S S ta n b y C u rre n t
S y m b o l
I
C C O
P
I
C C S
B
I
C C S
B
1
V a lu e
2 9 0
3 2 0
4 0
U n
m
m
m
A
A
A
it
3 D
S R 3 2 M 3 2 V S 8 5 0 1
T e m p e
C =
(0
I =
(-4 0
M =
(-5 5 °
S =
N
B
S
C
=
=
=
=
ra tu re
° C to
° C to
C to +
R a
+ 7 0
+ 8 5
1 2 5
S p e
n g e
° C )
° C )
° C )
c ific
e l
e
e
e
m
X
X
P a r t N u m b e r M a r k in g
P a r t O p tio n M a r k in g
P in 1 In d ic a t o r
M O D U L E M A R K IN G
3 D
P lu s L O G O
D a ta C o d e (Y Y W W )
S e r ia l N u m b e r O p t io n a l
Q u a
C o m m e rc
In d u s tr
S p a
lity
ia l
ia l
c e
C
L e v
G ra d
G ra d
G ra d
u s to
3 D X X X 0 0 0 X 0 0 X X 0 0 0 0
X X
0 0 0 0
0 0 0 0
M A IN S A L E S O F F IC E
3 D P L U S
4 0 8 , r u e H é lè n e B o u c h e r Z .I.
7 8 5 3 2 B U C C e d e x
3 D P L
6 6 3 3 E ld
S
M c k in n
U S
o ra
u ite
e y ,
U S
d o
4 2
T X
A , In c
P a rk w a y
0
7 5 0 7 0
W e b : w w w .3 d - p lu s .c o m
e - m a il : s a le s @ 3 d - p lu s .c o m
D IS T R IB U T O R
F R A N C E
T é l : 3 3 (0 )1 3 0 8 3 2 6 5 0
F a x : 3 3 (0 )1 3 9 5 6 2 5 8 9
U S A
T é l : (2 1 4 ) 7 3 3 -8 5 0 5
F a x : (2 1 4 ) 7 3 3 -8 5 0 6
e - m a il : s a le s @ 3 d - p lu s .c o m
1 2 4
3 D
P L U S S .A . r e s e r v e s th e r ig h t to c h a n g e o r c a n c e l p r o d u c ts o r s p e c ific a tio n s w ith o u t n o tic e
3 D F P -0 5 0 1 -R E V : 2 - A U G . 2 0 1 2
2