The AT27C4096-55PC belongs to the category of programmable read-only memory (PROM) chips.
It is used for storing and retrieving data in electronic devices, such as microcontrollers, computers, and consumer electronics.
The AT27C4096-55PC is typically available in a 40-pin dual in-line package (DIP).
The essence of the AT27C4096-55PC lies in its ability to store data permanently and provide fast access to the stored information.
It is commonly packaged in tubes or trays and is available in various quantities depending on the manufacturer's specifications.
The AT27C4096-55PC has a standard 40-pin configuration with specific pins dedicated to address lines, data input/output, control signals, and power supply connections.
The functional features of the AT27C4096-55PC include: - Parallel access for high-speed data retrieval - On-chip address latches for easy interfacing - Programming voltage generation circuitry for write operations - Erase capability using ultraviolet light for reprogramming
The AT27C4096-55PC operates based on the principle of storing data using floating gate transistors. When programmed, charge is trapped in the floating gate, representing the stored data bit. During read operations, the presence or absence of charge in the floating gate determines the output data.
The AT27C4096-55PC is widely used in applications requiring non-volatile memory, such as: - Embedded systems - Industrial control systems - Automotive electronics - Medical devices - Communication equipment
Some alternative models to the AT27C4096-55PC include: - AT28C64B-15PU: 64 Kilobit parallel EEPROM - M27C256B-12F1: 256 Kilobit EPROM - W27E257-12: 256 Kilobit electrically erasable PROM
In conclusion, the AT27C4096-55PC is a versatile and reliable PROM chip that finds extensive use in various electronic applications due to its non-volatile nature, high-speed access, and wide operating characteristics.
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What is the AT27C4096-55PC?
What are the key features of the AT27C4096-55PC?
How is the AT27C4096-55PC typically used in technical solutions?
What are the programming considerations for the AT27C4096-55PC?
What are the advantages of using the AT27C4096-55PC in technical solutions?
Are there any limitations or drawbacks to consider when using the AT27C4096-55PC?
What are the typical operating conditions for the AT27C4096-55PC?
Can the AT27C4096-55PC be used in automotive applications?
How does the AT27C4096-55PC compare to other similar memory devices?
What are some best practices for integrating the AT27C4096-55PC into a technical solution?