mcp555
Abstract: mcp55 M616Z08
Text: M616Z08 128 Kbit 8 Kbit x16 SRAM with Output Enable FEATURES SUMMARY • ■ ■ ■ ■ OPERATION VOLTAGE: 2.34V TO 3.6V 8 Kbit x16 SRAM EQUAL CYCLE and ACCESS TIMES: AS FAST AS 20ns TRI-STATE COMMON I/O TWO WRITE ENABLE PINS ALLOW WRITING TO UPPER AND LOWER BYTES
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Original
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PDF
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M616Z08
44-pin,
A0-A12
DQ0-DQ15
mcp555
mcp55
M616Z08
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mcp555
Abstract: No abstract text available
Text: M616Z08 128 Kbit 8 Kbit x 16 SRAM WITH OUTPUT ENABLE FEATURES SUMMARY • OPERATION VOLTAGE: 2.34V to 3.6V ■ 8 Kbit x 16 SRAM ■ EQUAL CYCLE and ACCESS TIMES: AS FAST AS 20ns ■ TRI-STATE COMMON I/O ■ TWO WRITE ENABLE PINS ALLOW WRITING TO UPPER AND LOWER BYTES
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Original
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PDF
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M616Z08
44-pin
A0-A12
DQ0-DQ15
A0-A12
DQ0-DQ15
AI04213
mcp555
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M616Z08
Abstract: MPC555
Text: AN1462 APPLICATION NOTE Connecting the MPC555 32-bit Microcontroller to the M616Z08 SRAM INTRODUCTION This application note describes a method of connecting the M616Z08 SRAM to the MPC555 Microcontroller. The M616Z08 is an advanced, 128 Kbit SRAM memory from ST Microelectronics, Inc., which is configured with an 8 Kbit x 16 bus width. The MPC555 is a member of Motorola’s PowerPC family of
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Original
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PDF
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AN1462
MPC555
32-bit
M616Z08
32-bit
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mcp555
Abstract: M616Z08 mcp55
Text: M616Z08 128 Kbit 8 Kbit x 16 SRAM WITH OUTPUT ENABLE FEATURES SUMMARY • OPERATION VOLTAGE: 2.34V to 3.6V ■ 8 Kbit x 16 SRAM ■ EQUAL CYCLE and ACCESS TIMES: AS FAST AS 20ns ■ TRI-STATE COMMON I/O ■ TWO WRITE ENABLE PINS ALLOW WRITING TO UPPER AND LOWER BYTES
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Original
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PDF
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M616Z08
44-pin,
A0-A12
DQ0-DQ15
mcp555
M616Z08
mcp55
|
mcp555
Abstract: mcp55 M616Z08
Text: M616Z08 128 Kbit 8 Kbit x 16 SRAM WITH OUTPUT ENABLE FEATURES SUMMARY • OPERATION VOLTAGE: 2.34V to 3.6V ■ 8 Kbit x 16 SRAM ■ EQUAL CYCLE and ACCESS TIMES: AS FAST AS 20ns ■ TRI-STATE COMMON I/O ■ TWO WRITE ENABLE PINS ALLOW WRITING TO UPPER AND LOWER BYTES
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Original
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PDF
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M616Z08
44-pin
A0-A12
DQ0-DQ15
mcp555
mcp55
M616Z08
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Untitled
Abstract: No abstract text available
Text: M616Z08 128 Kbit 8 Kbit x 16 SRAM WITH OUTPUT ENABLE PRELIMINARY DATA FEATURES SUMMARY • OPERATION VOLTAGE: 2.34V to 3.6V ■ 8 Kbit x 16 SRAM ■ EQUAL CYCLE and ACCESS TIMES: AS FAST AS 20ns ■ TRI-STATE COMMON I/O ■ TWO WRITE ENABLE PINS ALLOW WRITING
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Original
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PDF
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M616Z08
44-pin
A0-A12
DQ0-DQ15
A0-A12
DQ0-DQ15
AI04213
|
Untitled
Abstract: No abstract text available
Text: M616Z08 128 Kbit 8 Kbit x 16 SRAM WITH OUTPUT ENABLE FEATURES SUMMARY • OPERATION VOLTAGE: 2.34V to 3.6V ■ 8 Kbit x 16 SRAM ■ EQUAL CYCLE and ACCESS TIMES: AS FAST AS 20ns ■ TRI-STATE COMMON I/O ■ TWO WRITE ENABLE PINS ALLOW WRITING TO UPPER AND LOWER BYTES
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Original
|
PDF
|
M616Z08
44-pin
A0-A12
DQ0-DQ15
A0-A12
DQ0-DQ15
AI04213
|
M616Z08
Abstract: mcp555
Text: M616Z08 128 Kbit 8 Kbit x16 SRAM with Output Enable FEATURES SUMMARY • ■ ■ ■ ■ OPERATION VOLTAGE: 2.34V TO 3.6V 8 Kbit x16 SRAM EQUAL CYCLE and ACCESS TIMES: AS FAST AS 20ns TRI-STATE COMMON I/O TWO WRITE ENABLE PINS ALLOW WRITING TO UPPER AND LOWER BYTES
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Original
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PDF
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M616Z08
44-pin,
A0-A12
DQ0-DQ15
AI04213
M616Z08
mcp555
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"32-Bit Microcontroller"
Abstract: M616Z08 MPC555
Text: AN1462 APPLICATION NOTE Connecting the MPC555 32-bit Microcontroller to the M616Z08 SRAM INTRODUCTION This application note describes a method of connecting the M616Z08 SRAM to the MPC555 Microcontroller. The M616Z08 is an advanced, 128 Kbit SRAM memory from ST Microelectronics, Inc., which is configured with an 8 Kbit x 16 bus width. The MPC555 is a member of Motorola’s PowerPC family of
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Original
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PDF
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AN1462
MPC555
32-bit
M616Z08
32-bit
"32-Bit Microcontroller"
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K6X8008T2B-UF55
Abstract: m48t35 HY628100BLLT1-55 BR1632 SRAM 4T cell M48T59 m48z32 MK48T12 AN1012 BR1632 safety
Text: AN1012 APPLICATION NOTE Predicting the Battery Life and Data Retention Period of NVRAMs and Serial RTCs INTRODUCTION Standard SRAM devices have the advantage, over EEPROM and Flash memory, of high write-speed when used as main memory for a processor or microcontroller. Their disadvantage is that they are volatile,
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PDF
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AN1012
K6X8008T2B-UF55
m48t35
HY628100BLLT1-55
BR1632
SRAM 4T cell
M48T59
m48z32
MK48T12
AN1012
BR1632 safety
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