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HY29DS162 Datasheet, PDF (30/48 Pages) Hynix Semiconductor – 16 Megabit (2M x 8/1M x 16) Super-Low Voltage, Dual Bank, Simultaneous Read/Write, Flash Memory
HY29DS162/HY29DS163
DC CHARACTERISTICS
Parameter
Description
Test Setup 2
Min
Typ
ILI
Input Load Current
VIN = VSS to VCC
ILIT
A[9] Input Load Current
A[9] = 11.0 V
ILO
Output Leakage Current
VOUT = VSS to VCC
CE# = VIL,
5 MHz
5
OE# = VIH,
ICC1
VCC Active Read Current 1
Byte Mode
CE# = VIL,
1 MHz
5 MHz
1
5
OE# = VIH,
Word Mode
1 MHz
1
CE# = VIL,
5 MHz
19
OE# = VIH,
ICC2
VCC Active Read While Write Byte Mode
(Program or Erase) Current 1 CE# = VIL,
1 MHz
5 MHz
16
19
OE# = VIH,
Word Mode
1 MHz
16
ICC3
VCC Active Write Current 3, 4 CE# = VIL, OE# = VIH
15
ICC4
VCC CE# Controlled Deep
Standby Current
CE# = VCC ± 0.3 V,
RESET# = VCC ± 0.3 V
0.2
ICC5
VCC RESET# Controlled
Standby Current
Deep
RESET#
=
VSS
±
0.3
V
0.2
ICC6
Automatic Sleep Mode
Current 5
VIH = VCC ± 0.3 V,
VIL = VSS ± 0.3 V
0.2
ICC7
VCC CE# Controlled Normal
Standby Current
CE# = RESET# = VIH
60
ICC8
VCC RESET# Controlled
Normal Standby Current 2
RESET# = VIL
60
IACC
Accelerated Program Current, CE# = VIL,
Byte or Word mode
OE# = VIH
VIL
Input Low Voltage
VIH Input High Voltage
VID
Voltage for Electronic ID and
Temporary Sector Unprotect
VCC = 2.0V
VHH
5
VCC
10
-0.5
0.8 x VCC
9.0
VHH
Voltage for Program
Acceleration
VCC = 2.0V
8.5
VOL1
VOL2
VOH1
VOH2
Output Low Voltage
Output High Voltage
VCC = VCC Min,
IOL = 2.0 mA
VCC = VCC Min,
IOL = 100 µA
VCC = VCC Min,
IOH = -2.0 mA
VCC = VCC Min,
IOH = -100 µA
0.7 x VCC
VCC - 0.1
VLKO Low VCC Lockout Voltage4
1.2
Notes:
1. The ICC current is listed is typically less than 1 mA/MHz with OE# at VIH. Typical VCC is 2.0 V.
2. All parameters are tested with V = V Max unless otherwise noted.
CC
CC
3. ICC active while the Automatic Erase or Automatic Program algorithm is in progress.
4. Not 100% tested.
5. Automatic sleep mode is enabled when addresses remain stable for tACC + 30 ns (typical).
30
Max Unit
±1.0 µA
35
µA
±1.0 µA
10
mA
2
mA
10
mA
2
mA
24
mA
21
mA
24
mA
21
mA
20
mA
5
µA
5
µA
5
µA
300
µA
300
µA
10
mA
15
mA
0.2 x VCC V
VCC + 0.3 V
11.0
V
9.5
V
0.25
V
0.1
V
V
V
1.5
V
r1.3/Apr 01