The 93C76C-E/MS features an 8-pin Mini Small Outline Package (MSOP-8) with the following pin configuration:
| Pin No. | Pin Name | Description | |---------|----------|-------------| | 1 | CS | Chip Select | | 2 | SK | Serial Clock | | 3 | DI | Data Input | | 4 | DO | Data Output | | 5 | VSS | Ground | | 6 | NC | No Connection | | 7 | NC | No Connection | | 8 | VCC | Power Supply |
Advantages: - Compact form factor enables integration into space-constrained designs. - Low power consumption makes it suitable for battery-powered devices. - High data retention ensures long-term reliability. - Reprogrammable memory allows for flexible data storage.
Disadvantages: - Limited memory capacity may not be sufficient for certain applications requiring larger storage. - Serial interface may result in slower data transfer compared to parallel interfaces. - Write cycle endurance limits the number of times data can be written, which may be a concern for applications with frequent updates.
The 93C76C-E/MS operates based on the principles of EEPROM technology. It utilizes electrically isolated floating gate transistors to store data. When programming, an electrical charge is applied to the floating gate, altering its threshold voltage and storing the desired data. Reading the stored data involves sensing the threshold voltage of the transistor. The serial interface facilitates communication with the IC, enabling data transfer and control operations.
The 93C76C-E/MS finds application in various electronic devices that require non-volatile memory storage. Some potential application fields include: - Consumer Electronics: Used in smart TVs, set-top boxes, and audio/video equipment for storing configuration settings and user preferences. - Automotive: Employed in automotive electronics for storing critical data such as mileage, calibration values, and security information. - Industrial Automation: Integrated into industrial control systems for storing parameters, calibration data, and production logs. - Medical Devices: Utilized in medical equipment for storing patient data, device settings, and firmware updates.
Note: The above alternative models are from the same series and share similar characteristics and pin configurations.
This comprehensive encyclopedia entry provides an overview of the 93C76C-E/MS EEPROM IC, including its product details, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.
What is the operating temperature range of 93C76C-E/MS?
- The operating temperature range of 93C76C-E/MS is -40°C to 125°C.
Can 93C76C-E/MS be used in automotive applications?
- Yes, 93C76C-E/MS is suitable for automotive applications.
What is the typical supply voltage for 93C76C-E/MS?
- The typical supply voltage for 93C76C-E/MS is 2.5V to 5.5V.
Is 93C76C-E/MS compatible with SPI interface?
- Yes, 93C76C-E/MS is compatible with SPI interface.
What is the maximum clock frequency supported by 93C76C-E/MS?
- The maximum clock frequency supported by 93C76C-E/MS is 10MHz.
Can 93C76C-E/MS be used in industrial control systems?
- Yes, 93C76C-E/MS is suitable for use in industrial control systems.
Does 93C76C-E/MS have built-in security features?
- Yes, 93C76C-E/MS includes built-in security features for data protection.
What is the typical write cycle endurance of 93C76C-E/MS?
- The typical write cycle endurance of 93C76C-E/MS is 1,000,000 cycles.
Is 93C76C-E/MS RoHS compliant?
- Yes, 93C76C-E/MS is RoHS compliant.
Can 93C76C-E/MS be used in battery-powered devices?
- Yes, 93C76C-E/MS can be used in battery-powered devices due to its low power consumption.