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PDF HM62V8512CI Data sheet ( Hoja de datos )

Número de pieza HM62V8512CI
Descripción Wide Temperature Range Version4 M SRAM (512-kword x 8-bit)
Fabricantes Hitachi Semiconductor 
Logotipo Hitachi Semiconductor Logotipo



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HM62V8512CI Series
Wide Temperature Range Version
4 M SRAM (512-kword × 8-bit)
ADE-203-1215A (Z)
Rev. 1.0
Feb. 6, 2001
Description
The Hitachi HM62V8512CI is a 4-Mbit static RAM organized 512-kword × 8-bit. HM62V8512CI Series has
realized higher density, higher performance and low power consumption by employing CMOS process
technology (6-transistor memory cell). The HM62V8512CI Series offers low power standby power
dissipation; therefore, it is suitable for battery backup systems. It is packaged in standard 32-pin TSOP II.
Features
Single 3.0 V supply: 2.7 V to 3.6 V
Access time: 70 ns (max)
Power dissipation
Active: 6.0 mW/MHz (typ)
Standby: 2.4 µW (typ)
Completely static memory. No clock or timing strobe required
Equal access and cycle times
Common data input and output: Three state output
Directly LV-TTL compatible: All inputs and outputs
Battery backup operation
Operating temperature: –40 to +85˚C
Ordering Information
Type No.
HM62V8512CLTTI-7
Access time
70 ns
Package
400-mil 32-pin plastic TSOP II (TTP-32D)

1 page




HM62V8512CI pdf
HM62V8512CI Series
DC Characteristics
Parameter
Symbol Min
Typ*1 Max Unit Test conditions
Input leakage current
Output leakage current
|ILI|
|ILO|
Operating power
supply current: DC
I CC
Operating power supply current ICC1
Operating power
supply current
I CC2
Standby power supply
current: DC
ISB
— 1 µA Vin = VSS to VCC
— 1 µA CS = VIH or OE = VIH or
WE = VIL, VI/O = VSS to VCC
5 10 mA CS = VIL,
others = VIH/VIL, II/O = 0 mA
15 30 mA Min cycle, duty = 100%
CS = VIL, others = VIH/VIL
II/O = 0 mA
2 10 mA Cycle time = 1 µs,
duty = 100%
II/O = 0 mA, CS 0.2 V
VIH VCC – 0.2 V,
VIL 0.2 V
0.1 0.3 mA CS = VIH
Standby power supply
current (1): DC
ISB1
0.8*2
20*2
µA Vin 0 V,
CS VCC – 0.2 V
Output low voltage
VOL
— 0.4 V IOL = 2.0 mA
— — 0.2 V IOL = 100 µA
Output high voltage
VOH VCC – 0.2 — — V IOH = –100 µA
2.4 — — V IOH = –1.0 mA
Notes: 1. Typical values are at VCC = 3.0 V, Ta = +25°C and specified loading, and not guaranteed.
2. This characteristics is guaranteed only for L-version.
Capacitance (Ta = +25°C, f = 1 MHz)
Parameter
Symbol
Typ
Max
Input capacitance*1
Cin
8
Input/output capacitance*1 CI/O
10
Note: 1. This parameter is sampled and not 100% tested.
Unit
pF
pF
Test conditions
Vin = 0 V
VI/O = 0 V
5

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HM62V8512CI arduino
HM62V8512CI Series
Low VCC Data Retention Characteristics (Ta = –40 to +85°C)
Parameter
Symbol Min Typ Max Unit Test conditions*2
VCC for data retention
Data retention current
VDR
I CCDR
2 —— V
— 0.8*3 20*1 µA
CS VCC – 0.2 V, Vin 0 V
VCC = 3.0 V, Vin 0 V
CS VCC – 0.2 V
Chip deselect to data retention time tCDR
0 — — ns
See retention waveform
Operation recovery time
tR
tRC*4
ns
Notes: 1. For L-version and 10 µA (max.) at Ta = –40 to +40°C.
2. CS controls address buffer, WE buffer, OE buffer, and Din buffer. In data retention mode, Vin
levels (address, WE, OE, I/O) can be in the high impedance state.
3. Typical values are at VCC = 3.0 V, Ta = +25°C and specified loading, and not guaranteed.
4. tRC = read cycle time.
Low VCC Data Retention Timing Waveform (CS Controlled)
VCC
2.7 V
tCDR
Data retention mode
tR
2.4 V
VDR
CS
0V
CS VCC – 0.2 V
11

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