IS42S16100B-6T-TR ISSI, Integrated Silicon Solution Inc, IS42S16100B-6T-TR Datasheet - Page 25

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IS42S16100B-6T-TR

Manufacturer Part Number
IS42S16100B-6T-TR
Description
Manufacturer
ISSI, Integrated Silicon Solution Inc
Type
SDRAMr
Datasheet

Specifications of IS42S16100B-6T-TR

Organization
1Mx16
Density
16Mb
Address Bus
12b
Access Time (max)
6/5.5ns
Maximum Clock Rate
166MHz
Operating Supply Voltage (typ)
3.3V
Package Type
TSOP-II
Operating Temp Range
0C to 70C
Operating Supply Voltage (max)
3.6V
Operating Supply Voltage (min)
3V
Supply Current
150mA
Pin Count
50
Mounting
Surface Mount
Operating Temperature Classification
Commercial
Lead Free Status / RoHS Status
Not Compliant
IS42S16100B
Read With Auto-Precharge
The read with auto-precharge command first executes a
burst read operation and then puts the selected bank in the
precharged state automatically. After the precharge com-
pletes, the bank goes to the idle state. Thus this command
performs a read command and a precharge command in a
single operation.
During this operation, the delay period (t
last burst data output and the start of the precharge
operation differs depending on the CAS latency setting.
When the CAS latency setting is two, the precharge
operation starts on one clock cycle before the last burst
data is output (t
Integrated Silicon Solution, Inc. — www.issi.com —
R e v . A
10/07/03
CAS latency = 3, burstlength = 4
CAS latency = 2, burstlength = 4
COMMAND
COMMAND
READ WITH AUTO-PRECHARGE
READ WITH AUTO-PRECHARGE
CLK
CLK
DQ
DQ
PQL
= –1). When the CAS latency setting is
(BANK 0)
(BANK 0)
READA 0
READA 0
PQL
D
) between the
OUT
PRECHARGE START
PRECHARGE START
0
D
D
OUT
OUT
0
1
1-800-379-4774
three, the precharge operation starts on two clock cycles
before the last burst data is output (t
the selected bank can be made active after a delay of t
from the start position of this precharge operation.
The selected bank must be set to the active state before
executing this command.
The auto-precharge function is invalid if the burst length is
set to full page.
D
D
OUT
OUT
CAS
CAS
CAS
CAS
CAS Latency
t
PQL
1
2
t
PQL
t
D
D
RP
OUT
OUT
t
PQL
2
3
t
RP
D
ACT 0
OUT
3
–2
3
PQL
= –2). Therefore,
ISSI
ACT 0
–1
2
25
RP
®

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