MT48LC8M16A2P-75:G Micron Technology Inc, MT48LC8M16A2P-75:G Datasheet - Page 24

IC SDRAM 128MBIT 133MHZ 54TSOP

MT48LC8M16A2P-75:G

Manufacturer Part Number
MT48LC8M16A2P-75:G
Description
IC SDRAM 128MBIT 133MHZ 54TSOP
Manufacturer
Micron Technology Inc
Type
SDRAMr

Specifications of MT48LC8M16A2P-75:G

Memory Type
SDRAM
Format - Memory
RAM
Memory Size
128M (8Mx16)
Speed
133MHz
Interface
Parallel
Voltage - Supply
3 V ~ 3.6 V
Operating Temperature
0°C ~ 70°C
Package / Case
54-TSOP II
Memory Configuration
16M X 8
Access Time
5.4ns
Page Size
128Mbit
Memory Case Style
TSOP
No. Of Pins
54
Operating Temperature Range
0°C To +70°C
Organization
8Mx16
Density
128Mb
Address Bus
14b
Access Time (max)
6/5.4ns
Maximum Clock Rate
133MHz
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
54
Mounting
Surface Mount
Operating Temperature Classification
Commercial
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Compliant, Lead free / RoHS Compliant

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Operations
Bank/row Activation
PDF: 09005aef8091e66d/Source: 09005aef8091e625
128MSDRAM_2.fm - Rev. N 1/09 EN
The procedure for exiting self refresh requires a sequence of commands. First, CLK must
be stable (stable clock is defined as a signal cycling within timing constraints specified
for the clock pin) prior to CKE going back HIGH. After CKE is HIGH, the SDRAM must
have NOP commands issued (a minimum of 2 clocks) for
time is required for the completion of any internal refresh in progress.
Upon exiting the self refresh mode, AUTO REFRESH commands must be issued every
15.625µs or less because both SELF REFRESH and AUTO REFRESH utilize the row
refresh counter.
Self refresh is not supported on automotive temperature (AT) devices.
Before any READ or WRITE commands can be issued to a bank within the SDRAM, a row
in that bank must be “opened.” This is accomplished via the ACTIVE command, which
selects both the bank and the row to be activated (see Figure 9 on page 25).
After opening a row (issuing an ACTIVE command), a READ or WRITE command may be
issued to that row, subject to the
the clock period and rounded up to the next whole number to determine the earliest
clock edge after the ACTIVE command on which a READ or WRITE command can be
entered. For example, a
results in 2.5 clocks, rounded to 3. This is reflected in Figure 10 on page 25, which covers
any case where 2 <
specification limits from time units to clock cycles.)
A subsequent ACTIVE command to a different row in the same bank can only be issued
after the previous active row has been “closed” (precharged). The minimum time
interval between successive ACTIVE commands to the same bank is defined by
A subsequent ACTIVE command to another bank can be issued while the first bank is
being accessed, which results in a reduction of total row-access overhead. The minimum
time interval between successive ACTIVE commands to different banks is defined by
t
RRD.
t
RCD (MIN)/
t
RCD specification of 20ns with a 125 MHz clock (8ns period)
24
t
t
CK ≤ 3. (The same procedure is used to convert other
RCD specification.
Micron Technology, Inc., reserves the right to change products or specifications without notice.
t
RCD (MIN) should be divided by
128Mb: x4, x8, x16 SDRAM
t
XSR because this amount of
©1999 Micron Technology, Inc. All rights reserved.
Operations
t
RC.

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