GS880Z18/32/36CT-xxxI
100-Pin TQFP
Industrial Temp
Features
• NBT (No Bus Turn Around) functionality allows zero wait
read-write-read bus utilization; Fully pin-compatible with
both pipelined and flow through NtRAM™, NoBL™ and
ZBT™ SRAMs
• 2.5 V or 3.3 V +10%/–10% core power supply
• 2.5 V or 3.3 V I/O supply
• User-configurable Pipeline and Flow Through mode
• LBO pin for Linear or Interleave Burst mode
• Pin compatible with 2M, 4M, and 18M devices
• Byte write operation (9-bit Bytes)
• 3 chip enable signals for easy depth expansion
• ZZ Pin for automatic power-down
• JEDEC-standard 100-lead TQFP package
• RoHS-compliant 100-lead TQFP package available
9Mb Pipelined and Flow Through
Synchronous NBT SRAM
333 MHz–150 MHz
2.5 V or 3.3 V V
DD
2.5 V or 3.3 V I/O
rail for proper operation. Asynchronous inputs include the
Sleep mode enable (ZZ) and Output Enable. Output Enable can
be used to override the synchronous control of the output
drivers and turn the RAM's output drivers off at any time.
Write cycles are internally self-timed and initiated by the rising
edge of the clock input. This feature eliminates complex off-
chip write pulse generation required by asynchronous SRAMs
and simplifies input signal timing.
The GS880Z18/32/36CT may be configured by the user to
operate in Pipeline or Flow Through mode. Operating as a
pipelined synchronous device, meaning that in addition to the
rising edge triggered registers that capture input signals, the
device incorporates a rising-edge-triggered output register. For
read cycles, pipelined SRAM output data is temporarily stored
by the edge triggered output register during the access cycle
and then released to the output drivers at the next rising edge of
clock.
The GS880Z18/32/36CT is implemented with GSI's high
performance CMOS technology and is available in a JEDEC-
standard 100-pin TQFP package.
Functional Description
The GS880Z18/32/36CT is a 9Mbit Synchronous Static
SRAM. GSI's NBT SRAMs, like ZBT, NtRAM, NoBL or
other pipelined read/double late write or flow through read/
single late write SRAMs, allow utilization of all available bus
bandwidth by eliminating the need to insert deselect cycles
when the device is switched from read to write cycles.
Because it is a synchronous device, address, data inputs, and
read/ write control inputs are captured on the rising edge of the
input clock. Burst order control (LBO) must be tied to a power
Parameter Synopsis
-333I
Pipeline
3-1-1-1
t
KQ
tCycle
Curr (x18)
Curr (x32/x36)
t
KQ
tCycle
Curr (x18)
Curr (x32/x36)
2.5
3.0
260
300
4.5
4.5
200
225
-300I
2.5
3.3
245
280
5.0
5.0
185
210
-250I
2.5
4.0
215
245
5.5
5.5
180
200
-200I
3.0
5.0
190
215
6.5
6.5
160
180
-150I
3.8
6.7
160
180
7.5
7.5
148
165
Unit
ns
ns
mA
mA
ns
ns
mA
mA
Flow Through
2-1-1-1
Rev: 1.04 7/2012
1/24
© 2011, GSI Technology
Specifications cited are subject to change without notice. For latest documentation see http://www.gsitechnology.com.
GS880Z18/32/36CT-xxxI
GS880Z18CT 100-Pin TQFP Pinout (Package T)
NC
NC
NC
V
DDQ
V
SS
NC
NC
DQ
B
DQ
B
V
SS
V
DDQ
DQ
B
DQ
B
FT
V
DD
NC
V
SS
DQ
B
DQ
B
V
DDQ
V
SS
DQ
B
DQ
B
DQP
B
NC
V
SS
V
DDQ
NC
NC
NC
100 99 98 97 96 95 94 93 92 91 90 89 88 87 86 85 84 83 82 81
1
80
2
79
3
78
4
77
5
76
6
75
7
74
8
73
9
72
512K x 18
10
71
Top View
11
70
12
69
13
68
14
67
15
66
16
65
17
64
18
63
19
62
20
61
21
60
22
59
23
58
24
57
25
56
26
55
27
54
28
53
29
52
30
51
31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50
A
A
E
1
E
2
NC
NC
B
B
B
A
E
3
V
DD
V
SS
CK
W
CKE
G
ADV
NC
A
A
A
A
NC
NC
V
DDQ
V
SS
NC
DQP
A
DQ
A
DQ
A
V
SS
V
DDQ
DQ
A
DQ
A
V
SS
NC
V
DD
ZZ
DQ
A
DQ
A
V
DDQ
V
SS
DQ
A
DQ
A
NC
NC
V
SS
V
DDQ
NC
NC
NC
Note:
Pins marked with NC can be tied to either V
DD
or V
SS
. These pins can also be left floating.
Rev: 1.04 7/2012
LBO
A
A
A
A
A
1
A
0
NC
NC
V
SS
V
DD
NC
NC
A
A
A
A
A
A
A
2/24
© 2011, GSI Technology
Specifications cited are subject to change without notice. For latest documentation see http://www.gsitechnology.com.
GS880Z18/32/36CT-xxxI
GS880Z32CT 100-Pin TQFP Pinout (Package T)
NC
DQ
C
DQ
C
V
DDQ
V
SS
DQ
C
DQ
C
DQ
C
DQ
C
V
SS
V
DDQ
DQ
C
DQ
C
FT
V
DD
NC
V
SS
DQ
D
DQ
D
V
DDQ
V
SS
DQ
D
DQ
D
DQ
D
DQ
D
V
SS
V
DDQ
DQ
D
DQ
D
NC
100 99 98 97 96 95 94 93 92 91 90 89 88 87 86 85 84 83 82 81
1
80
2
79
3
78
4
77
5
76
6
75
7
74
8
73
9
72
256K x 32
10
71
Top View
11
70
12
69
13
68
14
67
15
66
16
65
17
64
18
63
19
62
20
61
21
60
22
59
23
58
24
57
25
56
26
55
27
54
28
53
29
52
30
51
31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50
A
A
E
1
E
2
B
D
B
C
B
B
B
A
E
3
V
DD
V
SS
CK
W
CKE
G
ADV
NC
A
A
A
NC
DQ
B
DQ
B
V
DDQ
V
SS
DQ
B
DQ
B
DQ
B
DQ
B
V
SS
V
DDQ
DQ
B
DQ
B
V
SS
NC
V
DD
ZZ
DQ
A
DQ
A
V
DDQ
V
SS
DQ
A
DQ
A
DQ
A
DQ
A
V
SS
V
DDQ
DQ
A
DQ
A
NC
Note:
Pins marked with NC can be tied to either V
DD
or V
SS
. These pins can also be left floating.
Rev: 1.04 7/2012
LBO
A
A
A
A
A
1
A
0
NC
NC
V
SS
V
DD
NC
NC
A
A
A
A
A
A
A
3/24
© 2011, GSI Technology
Specifications cited are subject to change without notice. For latest documentation see http://www.gsitechnology.com.
GS880Z18/32/36CT-xxxI
GS880Z36CT 100-Pin TQFP Pinout (Package T)
DQP
C
DQ
C
DQ
C
V
DDQ
V
SS
DQ
C
DQ
C
DQ
C
DQ
C
V
SS
V
DDQ
DQ
C
DQ
C
FT
V
DD
NC
V
SS
DQ
D
DQ
D
V
DDQ
V
SS
DQ
D
DQ
D
DQ
D
DQ
D
V
SS
V
DDQ
DQ
D
DQ
D
DQP
D
100 99 98 97 96 95 94 93 92 91 90 89 88 87 86 85 84 83 82 81
1
80
2
79
3
78
4
77
5
76
6
75
7
74
8
73
9
72
256K x 36
10
71
Top View
11
70
12
69
13
68
14
67
15
66
16
65
17
64
18
63
19
62
20
61
21
60
22
59
23
58
24
57
25
56
26
55
27
54
28
53
29
52
30
51
31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50
A
A
E
1
E
2
B
D
B
C
B
B
B
A
E
3
V
DD
V
SS
CK
W
CKE
G
ADV
NC
A
A
A
DQP
B
DQ
B
DQ
B
V
DDQ
V
SS
DQ
B
DQ
B
DQ
B
DQ
B
V
SS
V
DDQ
DQ
B
DQ
B
V
SS
NC
V
DD
ZZ
DQ
A
DQ
A
V
DDQ
V
SS
DQ
A
DQ
A
DQ
A
DQ
A
V
SS
V
DDQ
DQ
A
DQ
A
DQP
A
Note:
Pins marked with NC can be tied to either V
DD
or V
SS
. These pins can also be left floating.
Rev: 1.04 7/2012
LBO
A
A
A
A
A
1
A
0
NC
NC
V
SS
V
DD
NC
NC
A
A
A
A
A
A
A
4/24
© 2011, GSI Technology
Specifications cited are subject to change without notice. For latest documentation see http://www.gsitechnology.com.
GS880Z18/32/36CT-xxxI
100-Pin TQFP Pin Descriptions
Symbol
A
0
, A
1
A
CK
B
A
B
B
B
C
B
D
W
E
1
E
2
E
3
G
ADV
CKE
NC
DQ
A
DQ
B
DQ
C
DQ
D
DQP
A
DQP
B
DQP
C
DQP
D
ZZ
FT
LBO
V
DD
V
SS
V
DDQ
Type
In
In
In
In
In
In
In
In
In
In
In
In
In
In
—
I/O
I/O
I/O
I/O
I/O
I/O
I/O
I/O
In
In
In
In
In
In
Description
Burst Address Inputs; Preload the burst counter
Address Inputs
Clock Input Signal
Byte Write signal for data inputs DQ
A
; active low
Byte Write signal for data inputs DQ
B
; active low
Byte Write signal for data inputs DQ
C
; active low
Byte Write signal for data inputs DQ
D
; active low
Write Enable; active low
Chip Enable; active low
Chip Enable; Active High. For self decoded depth expansion
Chip Enable; Active Low. For self decoded depth expansion
Output Enable; active low
Advance/Load; Burst address counter control pin
Clock Input Buffer Enable; active low
No Connect
Byte A Data Input and Output pins
Byte B Data Input and Output pins
Byte C Data Input and Output pins
Byte D Data Input and Output pins
9th Data I/O Pin; Byte A
9th Data I/O Pin; Byte B
9th Data I/O Pin; Byte C
9th Data I/O Pin; Byte D
Power down control; active high
Pipeline/Flow Through Mode Control; active low
Linear Burst Order; active low
Core power supply
Ground
Output driver power supply
Rev: 1.04 7/2012
5/24
© 2011, GSI Technology
Specifications cited are subject to change without notice. For latest documentation see http://www.gsitechnology.com.