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SRAM (Static Random Access Memory)

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N04L63W2AB27I
AMI Semiconductor
2.3V 3.6V Parallel BGA-48 SMD mount
Quantity: 327
Ship Date: 9-13 working days
08+
25+ $3.9543
50+ $3.7973
100+ $3.7346
300+ $3.7032
500+ $3.6718
1000+ $3.5777
5000+ $3.5777
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x $3.9543
Ext. Price: $126.53
MOQ: 32
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SPQ: 1
N02L63W3AB25IT
AMI Semiconductor
2.3V 3.6V Parallel BGA-48 SMD mount
Quantity: 2409
Ship Date: 9-13 working days
07+
50+ $2.214
100+ $2.1774
300+ $2.1591
500+ $2.1408
1000+ $2.086
5000+ $2.086
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x $2.214
Ext. Price: $121.77
MOQ: 55
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N25S818HAT21I
AMI Semiconductor
1.7V 1.95V 16MHz SPI TSSOP-8 SMD mount
Quantity: 289
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50+ $1.3259
100+ $1.3039
300+ $1.293
500+ $1.282
1000+ $1.2491
5000+ $1.2491
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x $1.3259
Ext. Price: $121.98
MOQ: 92
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SPQ: 1
N01L63W3AT25I
AMI Semiconductor
2.3V 3.6V Parallel TSOP-44 SMD mount
Quantity: 260
Ship Date: 9-13 working days
07+
50+ $1.6605
100+ $1.6331
300+ $1.6194
500+ $1.6056
1000+ $1.5645
5000+ $1.5645
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x $1.6605
Ext. Price: $121.21
MOQ: 73
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SPQ: 1
N01L63W2AT25I
AMI Semiconductor
Quantity: 260
Ship Date: 9-13 working days
08+
50+ $1.6605
100+ $1.6331
300+ $1.6194
500+ $1.6056
1000+ $1.5645
5000+ $1.5645
- +
x $1.6605
Ext. Price: $121.21
MOQ: 73
Mult: 1
SPQ: 1
N01L83W2AT25IT
AMI Semiconductor
2.3V 3.6V Parallel TSOP-32 SMD mount
Quantity: 18224
Ship Date: 9-13 working days
08+
50+ $1.5061
100+ $1.4812
300+ $1.4687
500+ $1.4563
1000+ $1.4189
5000+ $1.4189
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x $1.5061
Ext. Price: $121.99
MOQ: 81
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SPQ: 1
N02L63W3AB25I
AMI Semiconductor
2.3V 3.6V Parallel BGA-48 SMD mount
Quantity: 462
Ship Date: 9-13 working days
07+
50+ $2.3299
100+ $2.2914
300+ $2.2721
500+ $2.2529
1000+ $2.1951
5000+ $2.1951
- +
x $2.3299
Ext. Price: $121.15
MOQ: 52
Mult: 1
SPQ: 1
N02L63W3AT25I
AMI Semiconductor
2.3V 3.6V Parallel TSOP-44 SMD mount
Quantity: 260
Ship Date: 9-13 working days
08+
50+ $2.1368
100+ $2.1015
300+ $2.0838
500+ $2.0662
1000+ $2.0132
5000+ $2.0132
- +
x $2.1368
Ext. Price: $121.79
MOQ: 57
Mult: 1
SPQ: 1
N25S818HAS21I
AMI Semiconductor
Quantity: 289
Ship Date: 9-13 working days
08+
50+ $1.3259
100+ $1.3039
300+ $1.293
500+ $1.282
1000+ $1.2491
5000+ $1.2491
- +
x $1.3259
Ext. Price: $121.98
MOQ: 92
Mult: 1
SPQ: 1
N02L83W2AT25I
AMI Semiconductor
2.3V 3.6V Parallel TSOP-32 SMD mount
Quantity: 300
Ship Date: 9-13 working days
07+
50+ $1.8665
100+ $1.8356
300+ $1.8202
500+ $1.8048
1000+ $1.7585
5000+ $1.7585
- +
x $1.8665
Ext. Price: $121.32
MOQ: 65
Mult: 1
SPQ: 1

SRAM (Static Random Access Memory)

SRAM (Static Random Access Memory) is a type of volatile memory that retains its contents as long as power is supplied. It is known for its high speed and is commonly used in computer systems for cache memory and as a temporary storage for data that requires rapid access.

Definition:
SRAM is a semiconductor memory that uses flip-flops or latches to store each bit of data. Unlike DRAM (Dynamic Random Access Memory), SRAM does not require periodic refresh cycles, which makes it faster for read and write operations.

Function:
The primary function of SRAM is to provide a fast and temporary storage solution for data that needs to be accessed quickly. It is used in various applications where speed is critical, such as CPU caches, graphics cards, and high-speed buffering systems.

Applications:
1. CPU Cache: SRAM is used in the cache memory of processors to store frequently accessed data, reducing the need to access slower main memory.
2. Graphics Processing: In graphics cards, SRAM is used for storing texture maps and other data that need to be accessed rapidly during rendering.
3. Embedded Systems: SRAM is used in embedded systems for fast data storage and retrieval, such as in microcontrollers and digital signal processors.
4. Networking Equipment: High-speed networking equipment often uses SRAM for buffering data packets.

Selection Criteria:
When choosing SRAM for a specific application, consider the following criteria:
1. Speed: SRAM should have a fast access time to meet the performance requirements of the system.
2. Capacity: The amount of data that needs to be stored will determine the required memory capacity.
3. Power Consumption: SRAM can consume more power than DRAM, so power efficiency may be a consideration, especially in battery-operated devices.
4. Cost: SRAM is generally more expensive per bit than DRAM, so cost is a significant factor in large-scale applications.
5. Reliability: The reliability of the SRAM under the expected operating conditions should be considered, including temperature ranges and expected lifetime.

In summary, SRAM is a fast, volatile memory used for high-speed data storage and retrieval. Its applications range from computer caches to embedded systems, and the selection process involves balancing speed, capacity, power consumption, cost, and reliability.
Please refer to the product rule book for details.