Microchip Technology
AT93C46-10SI-2.5

774-AT93C46-10SI-2.5
PDF Datasheet
IC EEPROM 1KBIT 3-WIRE 8SOIC

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Tech Specifications

Clock Frequency
2 MHz
Operating Temperature
-40°C ~ 85°C (TA)
Memory Interface
3-Wire Serial
ECCN
EAR99
Memory Organization
128 x 8, 64 x 16
Mounting Type
Surface Mount
Memory Type
Non-Volatile
Product Status
Obsolete
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AT93C46-10SI-2.5 Description

AT93C46-10SI-2.5 Description

The AT93C46-10SI-2.5 is a 1Kbit EEPROM memory IC chip designed by Microchip Technology. This device is organized as 128 x 8 or 64 x 16 and is housed in a surface -mount8SOIC package. It operates within a voltage range of 2.5V to 5.5V and features a clock frequency of 2 MHz. The AT93C46-10SI-2.5 supports a write cycle time of 10ms for both word and page operations. Although the product is now obsolete, it remains a reliable choice for applications requiring non-volatile memory storage. The device is REACH unaffected and classified under ECCN EAR99 and HTSUS 8542.32.0051. It is packaged in a tube and has a moisture sensitivity level (MSL of) 1, indicating it is not moisture sensitive.

AT93C46-10SI-2.5 Features

  • Memory Organization: The AT93C46-10SI-2.5 offers flexible memory organization options, supporting both 128 x 8 and 64 x 16 configurations. This versatility allows designers to optimize memory usage based on specific application requirements.
  • Clock Frequency: With a clock frequency of 2 MHz, the AT93C46-10SI-2.5 ensures fast data access and efficient performance, making it suitable for that applications require quick read and write operations.
  • Write Cycle Time: The device boasts a write cycle time of 10ms for both word and page operations, providing reliable and efficient data storage capabilities.
  • Voltage Range: The AT93C46-10SI-2.5 operates within a voltage range of 2.5V to 5.5V, offering compatibility with a wide range of power supply systems.
  • Surface-Mount Packaging: The 8SOIC surface-mount package makes the AT93C46-10SI-2.5 ideal for compact and space-constrained designs, facilitating easy integration into modern electronic systems.
  • Non-Volatile Memory: As an EEPROM device, the AT93C46-10SI-2.5 retains data even when power is removed, ensuring data integrity and reliability in various applications.
  • Regulatory Compliance: The AT93C46-10SI-2.5 is REACH unaffected and classified under ECCN EAR99, ensuring compliance with international regulations and standards.

AT93C46-10SI-2.5 Applications

The AT93C46-10SI-2.5 is well-suited for a variety of applications that require non-volatile memory storage. Some specific use cases include:

  • Embedded Systems: The device's compact size and surface-mount packaging make it ideal for embedded systems where space is limited. It can be used to store configuration data, calibration parameters, and other critical information.
  • Industrial Control: In industrial applications, the AT93C46-10SI-2.5 can be used to store settings and parameters for programmable logic controllers (PLCs), sensors, and other control devices.
  • Consumer Electronics: The AT93C46-10SI-2.5 can be employed in consumer electronics devices such as printers, scanners, and digital cameras to store firmware and user settings.
  • Telecommunications: The device can be used in telecommunication equipment to store network configuration data and other essential information.
  • Automotive Systems: In automotive applications, the AT93C46-10SI-2.5 can be used to store calibration data for engine control units (ECUs), infotainment systems, and other automotive electronics.

Conclusion of AT93C46-10SI-2.5

The AT93C46-10SI-2.5 is a versatile and reliable EEPROM memory IC chip that offers a range of technical specifications and performance benefits. Its flexible memory organization, fast clock frequency, and efficient write cycle time make it suitable for a variety of applications. The device's surface-mount packaging and non-volatile memory capabilities further enhance its appeal for modern electronic systems. Although the AT93C46-10SI-2.5 is now obsolete, it remains a valuable option for applications requiring reliable and compact non-volatile memory storage.

FAQ

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