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MT58L64L32PT-10
+NomenclatureCACHE SRAM, 64KX32, 5NS PQFP100
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FabricantMicron Technology Co., Ltd.
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Pièce fabricant #MT58L64L32PT-10
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Fiche technique MT58L64L32PT-10 DataSheet
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Package LQFP-100
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En stock3857
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Spécifications
| Attribut | Valeur |
| Package / Case | Bulk |
| Part Status | Active |
Présentation
Description
Key features of the MT58L64L32PT-10 include a fast access time of around 10 nanoseconds, which allows for efficient data handling and retrieval. The device typically operates at a voltage range compatible with most modern electronic systems, ensuring ease of integration into existing designs. It also supports low power consumption, which is beneficial for battery-powered or energy-efficient devices.
Overall, the MT58L64L32PT-10 is a versatile SRAM component, ideal for applications demanding high speed, reliability, and efficient performance in data handling.
Equivalent
1. Cypress CY7C1061AV33, another high-speed SRAM with similar specifications.
2. ISSI IS61LV6416, offering similar memory and speed.
3. Alliance Memory AS6C6416, a comparable high-performance SRAM.
4. Renesas R1LV1616, providing similar functionality and performance.
Always verify pin configurations, voltage requirements, and specific features to ensure full compatibility.
Pinout
The primary functions of the pins are as follows:
- Address Pins (A0-A20): Used to select the memory address for data read or write operations.
- Data Input/Output Pins (DQ0-DQ31): Used for inputting data into the memory or outputting data from the memory.
- Chip Enable Pins (CE#, CE2): Control the operation of the device, enabling the chip when active.
- Output Enable Pin (OE#): Enables the output buffers when active, allowing data to be read from the device.
- Write Enable Pin (WE#): Controls the writing of data to the device.
- Byte Write Enable Pins (BWE#0-BWE#3): Enable writing to specific bytes within the data bus.
- Clock Pin (CLK): Used to synchronize operations with the system clock.
- Power (VCC) and Ground (VSS) Pins: Supply power to the device and ground connections.
This concise pin description outlines the functionality necessary for integrating the SRAM into a system.
Manufacturer
Application
1. Telecommunications: Used in networking equipment for buffering and caching data.
2. Embedded Systems: Provides quick data access in microcontrollers and processors.
3. Graphics Processing: Supports rapid data handling in GPUs for rendering graphics.
4. Cache Memory: Acts as cache in computers and servers to improve processing speed.
5. Industrial and Medical Equipment: Ensures reliable and fast data handling in control systems.
6. Aerospace and Defense: Used in mission-critical systems for its speed and reliability.
Its low power consumption also makes it suitable for battery-powered devices.