TBGA SRAM 1,589

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Part RoHS Manufacturer Memory IC Type Temperature Grade No. of Terminals Package Code Refresh Cycles Package Shape Total Dose (V) Package Body Material Surface Mount No. of Functions Technology Screening Level Nominal Negative Supply Voltage Terminal Form Parallel or Serial Operating Mode Maximum Supply Current No. of Words Self Refresh Input/Output Type Nominal Supply Voltage / Vsup (V) Power Supplies (V) Memory Width Package Style (Meter) Package Equivalence Code Alternate Memory Width Sub-Category Terminal Pitch Maximum Operating Temperature Reverse Pinout Output Characteristics Organization No. of Words Code Minimum Standby Voltage Minimum Operating Temperature Terminal Finish Terminal Position No. of Ports JESD-30 Code Moisture Sensitivity Level (MSL) Maximum Supply Voltage (Vsup) Maximum Seated Height Maximum Clock Frequency (fCLK) Width Qualification Memory Density Minimum Supply Voltage (Vsup) Additional Features JESD-609 Code Maximum Time At Peak Reflow Temperature (s) Peak Reflow Temperature (C) Output Enable Maximum Standby Current Length Maximum Access Time

MT55L512L18PF-6IT

Micron Technology

ZBT SRAM

INDUSTRIAL

165

TBGA

RECTANGULAR

PLASTIC/EPOXY

YES

1

CMOS

BALL

PARALLEL

SYNCHRONOUS

500 mA

524288 words

COMMON

3.3

3.3

18

GRID ARRAY, THIN PROFILE

BGA165,11X15,40

SRAMs

1 mm

85 Cel

3-STATE

512KX18

512K

3.14 V

-40 Cel

Tin/Silver/Copper (Sn/Ag/Cu)

BOTTOM

R-PBGA-B165

3.465 V

1.2 mm

166 MHz

13 mm

Not Qualified

9437184 bit

3.135 V

e1

.01 Amp

15 mm

3.5 ns

MT58L256L18P1F-10

Micron Technology

CACHE SRAM

COMMERCIAL

165

TBGA

RECTANGULAR

PLASTIC/EPOXY

YES

1

CMOS

BALL

PARALLEL

SYNCHRONOUS

300 mA

262144 words

COMMON

3.3

3.3

18

GRID ARRAY, THIN PROFILE

BGA165,11X15,40

SRAMs

1 mm

70 Cel

3-STATE

256KX18

256K

3.14 V

0 Cel

Tin/Lead (Sn/Pb)

BOTTOM

R-PBGA-B165

3.6 V

1.2 mm

100 MHz

13 mm

Not Qualified

4718592 bit

3.135 V

PIPELINED ARCHITECTURE

e0

.01 Amp

15 mm

5 ns

MT55L256V32PF-10

Micron Technology

ZBT SRAM

COMMERCIAL

165

TBGA

RECTANGULAR

PLASTIC/EPOXY

YES

1

CMOS

BALL

PARALLEL

SYNCHRONOUS

300 mA

262144 words

COMMON

3.3

2.5,3.3

32

GRID ARRAY, THIN PROFILE

BGA165,11X15,40

SRAMs

1 mm

70 Cel

3-STATE

256KX32

256K

3.14 V

0 Cel

Tin/Lead (Sn/Pb)

BOTTOM

R-PBGA-B165

3.465 V

1.2 mm

100 MHz

13 mm

Not Qualified

8388608 bit

3.135 V

PIPELINED ARCHITECTURE

e0

.01 Amp

15 mm

5 ns

MT55L256V36PF-6

Micron Technology

ZBT SRAM

COMMERCIAL

165

TBGA

RECTANGULAR

PLASTIC/EPOXY

YES

1

CMOS

BALL

PARALLEL

SYNCHRONOUS

500 mA

262144 words

COMMON

3.3

2.5,3.3

36

GRID ARRAY, THIN PROFILE

BGA165,11X15,40

SRAMs

1 mm

70 Cel

3-STATE

256KX36

256K

3.14 V

0 Cel

Tin/Lead (Sn/Pb)

BOTTOM

R-PBGA-B165

3.465 V

1.2 mm

166 MHz

13 mm

Not Qualified

9437184 bit

3.135 V

PIPELINED ARCHITECTURE

e0

.01 Amp

15 mm

3.5 ns

MT58L256L18D1F-7.5

Micron Technology

CACHE SRAM

COMMERCIAL

165

TBGA

RECTANGULAR

PLASTIC/EPOXY

YES

1

CMOS

BALL

PARALLEL

SYNCHRONOUS

375 mA

262144 words

COMMON

3.3

3.3

18

GRID ARRAY, THIN PROFILE

BGA165,11X15,40

SRAMs

1 mm

70 Cel

3-STATE

256KX18

256K

3.14 V

0 Cel

Tin/Lead (Sn/Pb)

BOTTOM

R-PBGA-B165

3.6 V

1.2 mm

133.33 MHz

13 mm

Not Qualified

4718592 bit

3.135 V

PIPELINED ARCHITECTURE

e0

.01 Amp

15 mm

4 ns

SRAM

SRAM, or Static Random-Access Memory, is a type of volatile computer memory that stores data as a flip-flop, which retains the data as long as power is supplied to the system. SRAM is commonly used as cache memory and in other applications where high-speed access to data is required.

SRAM is a type of memory that is faster and more expensive than DRAM (Dynamic Random-Access Memory). It is commonly used as cache memory in computer systems and other digital devices to improve the speed of data access. SRAM is also used in applications where high-speed data processing is required, such as in networking equipment, video games, and other high-performance computing applications.

One of the advantages of using SRAM is that it provides faster access to data than other types of memory, such as DRAM. This is because SRAM does not need to be refreshed like DRAM, which makes it faster and more reliable. Additionally, SRAM uses less power than other types of memory, which makes it ideal for use in battery-powered devices.

One of the disadvantages of using SRAM is that it is more expensive and less dense than other types of memory, such as DRAM or flash memory. This means that it is not suitable for applications that require large amounts of memory at a low cost. Additionally, SRAM is volatile, which means that it cannot store data permanently.