The STK11C88-SF45I is a non-volatile static RAM (NVSRAM) that belongs to the category of semiconductor memory devices. This entry provides an overview of its basic information, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.
The STK11C88-SF45I has a standard DIP package with 28 pins. The detailed pin configuration is as follows: 1. A0-A14: Address Inputs 2. CE1, CE2: Chip Enable Inputs 3. OE: Output Enable Input 4. WE: Write Enable Input 5. VCC: Power Supply 6. VSS: Ground 7. DQ0-DQ7: Data Input/Output
The STK11C88-SF45I utilizes a combination of volatile SRAM cells and non-volatile EEPROM cells to achieve non-volatile data storage. When data is written to the device, it is stored in the SRAM cells and simultaneously copied to the EEPROM cells. During power loss, the data is retained in the EEPROM cells, ensuring non-volatility.
The STK11C88-SF45I is suitable for applications requiring fast read and write operations along with non-volatile data storage. Some potential application fields include: - Industrial control systems - Automotive electronics - Medical devices - Data logging and event recording
Some alternative models to the STK11C88-SF45I include: - STK12C68-SF45I: Similar NVSRAM with higher capacity - FM1608B: Parallel non-volatile SRAM with lower power consumption - CY14B101I: Serial NVSRAM with smaller form factor
In conclusion, the STK11C88-SF45I offers a unique combination of non-volatile data storage and high-speed operation, making it suitable for various embedded system applications.
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What is STK11C88-SF45I?
What are the key features of STK11C88-SF45I?
How can STK11C88-SF45I be used in industrial applications?
In what ways can STK11C88-SF45I enhance system reliability?
What are the typical operating conditions for STK11C88-SF45I?
Can STK11C88-SF45I be used in automotive electronics?
How does STK11C88-SF45I compare to traditional SRAM and EEPROM?
What are the potential challenges in integrating STK11C88-SF45I into a design?
Are there any specific design considerations when using STK11C88-SF45I in battery-powered devices?
What support resources are available for developers working with STK11C88-SF45I?