HIT HM9264BLFP-10L, HM9264BLFP-8L, HM9264BLP-10L, HM9264BLP-8L Datasheet

HM9264B Series
64 k SRAM (8-kword × 8-bit)
ADE-203-618C (Z)
Rev. 3.0
Nov. 1997

Description

The Hitachi HM9264B is 64k-bit static RAM organized 8-kword × 8-bit. It realizes higher performance and low power consumption by 1.5 µm CMOS process technology. The device, packaged in 450 mil SOP (foot print pitch width), 600 mil plastic DIP, is available for high density mounting.

Features

High speedFast access time: 85/100 ns (max)
Low powerStandby: 10 µW (typ)Operation: 15 mW (typ) (f = 1 MHz)
Single 5 V supply
Completely static memoryNo clock or timing strobe required
Equal access and cycle times
Common data input and outputThree state output
Directly TTL compatibleAll inputs and outputs
Battery backup operation capability
Note: HM9264B series can't be applied for Aerospace, Aircraft, Nucleus Plants, Main Flame
Computers, Medical Life-support System, and Automobile Engine Control and Industrial machines. (e.g. Communication Hubs, NC, and others.)

Ordering Information

Type No. Access time Package
HM9264BLFP-8L HM9264BLFP-10L
HM9264BLP-8L HM9264BLP-10L
85 ns 100 ns
85 ns 100 ns
450-mil, 28-pin plastic SOP(FP-28DA)
600-mil, 28-pin plastic DIP (DP-28)
HM9264B Series
1

Pin Arrangement

HM9264BLFP/BLP Series
1
NC
A12
A7 A6
A4
A0 I/O1 I/O2
I/O3
V
SS
2 3
4 5A5 6 7A3 8A2 9A1 10 11 12 13 14
28 27
24 23 22 21 20 19 18
(Top view)
V
CC
WE
CS226 A825 A9 A11
OE
A10
CS
I/O8 I/O7 I/O617 I/O516 I/O415

Pin Description

Pin name Function
A0 to A12 Address input I/O1 to I/O8 Data input/output CS1 Chip select 1 CS2 Chip select 2 WE Write enable OE Output enable NC No connection V
CC
V
SS
Power supply Ground

Block Diagram

A11
A8 A9
A7
A12
A5 A6
A4
Row
decoder
Memory array
256 × 256
HM9264B Series
V
CC
V
SS
I/O1
I/O8
CS2 CS1
WE
OE
Column I/O
Input
data
control
Timing pulse generator
Read, Write control
Column decoder
A1 A3
A2 A0 A10
HM9264B Series

Function Table

WE CS1 CS2 OE Mode VCC current I/O pin Ref. cycle
× H ××Not selected (power down) I ××L × Not selected (power down) ISB, I
H L H H Output disable I H L H L Read I L L H H Write I L L H L Write I
, I
SB
SB1
SB1
CC
CC
CC
CC
Note: ×: H or L

Absolute Maximum Ratings

Parameter Symbol Value Unit
Power supply voltage Terminal voltage
*1
*1
Power dissipation P Operating temperature Topr 0 to + 70 °C Storage temperature Tstg –55 to +125 °C Storage temperature under bias Tbias –10 to +85 °C
Notes: 1. Relative to V
SS
2. VT min: –3.0 V for pulse half-width 50 ns
3. Maximum voltage is 7.0 V
V
CC
V
T
T
–0.5 to +7.0 V –0.5*2 to VCC + 0.3*3V
1.0 W
High-Z — High-Z — High-Z — Dout Read cycle (1)–(3) Din Write cycle (1) Din Write cycle (2)

Recommended DC Operating Conditions (Ta = 0 to +70°C)

Parameter Symbol Min Typ Max Unit
Supply voltage V
Input high voltage V Input low voltage V
CC
V
SS
IH
IL
Note: 1. VIL min: –3.0 V for pulse half-width 50 ns
4.5 5.0 5.5 V 000V
2.2 VCC + 0.3 V
*1
–0.3
0.8 V
HM9264B Series

DC Characteristics (Ta = 0 to +70°C, VCC = 5 V ±10%, VSS = 0 V)

Parameter Symbol Min Typ*1Max Unit Test conditions
Input leakage current |I Output leakage current |ILO|——2µA CS1 = VIH or CS2 = VIL or OE = VIH or
Operating power supply current
Average operating power supply current
Standby power supply current
Output low voltage V Output high voltage V
Notes: 1. Typical values are at VCC = 5.0 V, Ta = +25°C and not guaranteed.
|—2µA Vin = VSS to V
LI
WE = V
I
CCDC
7 15 mA CS1 = VIL, CS2 = VIH, I
others = V
I
CC1
30 45 mA Min cycle, duty = 100%,
CS1 = V others = V
I
CC2
3 5 mA Cycle time = 1 µs, duty = 100%, I
CS1 0.2 V, CS2 V V
VCC – 0.2 V, VIL 0.2 V
IH
I
SB
I
SB1
—1 3 mACS1 = VIH, CS2 = V
—2 50µA CS1 ≥ VCC – 0.2 V, CS2 VCC – 0.2 V or
0 V CS2 0.2 V, 0 V Vin
OL
OH
0.4 V IOL = 2.1 mA
2.4 V IOH = –1.0 mA
CC
, V
= V
IL
I/O
IH/VIL
, CS2 = VIH, I
IL
IH/VIL
SS
to V
CC
IL
CC
= 0 mA
I/O
= 0 mA
I/O
– 0.2 V,
= 0 mA
I/O

Capacitance (Ta = 25°C, f = 1.0 MHz)

Parameter Symbol Min Typ Max Unit Test conditions
Input capacitance Input/output capacitance
*1
*1
Note: 1. This parameter is sampled and not 100% tested.
Cin 5 pF Vin = 0 V C
I/O
——7 pFV
= 0 V
I/O
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