The AT27C4096-12VI is a member of the AT27C4096 series of programmable read-only memory (PROM) integrated circuits. This device falls under the category of non-volatile memory and is commonly used for storing firmware and configuration data in various electronic systems. The AT27C4096-12VI is characterized by its high reliability, low power consumption, and ease of integration into electronic designs. It is typically available in a 40-pin dual in-line package (DIP) and is sold in quantities suitable for both prototyping and production applications.
The AT27C4096-12VI features a detailed pin configuration with 40 pins, each serving specific functions related to address lines, data input/output, control signals, and power supply.
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The functional features of the AT27C4096-12VI include: - High-speed access time - Low power consumption - Easy integration into electronic designs - Reliable storage of firmware and configuration data
The AT27C4096-12VI operates on the principle of programming the memory cells using electrical signals to store data permanently. When the device is powered on, it allows read access to the stored data without the need for continuous power supply.
The AT27C4096-12VI finds extensive application in various electronic systems, including but not limited to: - Embedded systems - Consumer electronics - Industrial control systems - Automotive electronics
For users seeking alternative models to the AT27C4096-12VI, several options are available from different manufacturers, including: - STMicroelectronics M27C4001 - Intel 27C400 - Microchip SST27SF040
In conclusion, the AT27C4096-12VI is a reliable and efficient PROM device suitable for a wide range of electronic applications, offering high performance and ease of integration.
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What is the AT27C4096-12VI?
What are the key features of the AT27C4096-12VI?
What are the typical applications for the AT27C4096-12VI?
How do I program the AT27C4096-12VI?
What are the voltage requirements for the AT27C4096-12VI?
Can the AT27C4096-12VI be used in automotive applications?
What is the data retention capability of the AT27C4096-12VI?
Does the AT27C4096-12VI support multiple read cycles?
What precautions should be taken when handling the AT27C4096-12VI?
Is the AT27C4096-12VI RoHS compliant?