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AT88SC3216C-SU

AT88SC3216C-SU

Product Overview

  • Category: Integrated Circuit (IC)
  • Use: Secure Memory Chip
  • Characteristics:
    • High-security features
    • Non-volatile memory
    • Contact-based interface
  • Package: Surface Mount Technology (SMT)
  • Essence: Secure storage of sensitive data
  • Packaging/Quantity: Tape and Reel, 2500 units per reel

Specifications

  • Memory Size: 32 kilobits (4 kilobytes)
  • Operating Voltage: 2.7V to 5.5V
  • Operating Temperature Range: -40°C to +85°C
  • Data Retention: Up to 10 years
  • Endurance: 100,000 write cycles

Pin Configuration

The AT88SC3216C-SU has a total of 16 pins arranged as follows:

  1. VCC - Power supply voltage
  2. RST - Reset pin
  3. SDA - Serial Data Input/Output
  4. SCL - Serial Clock Input
  5. GND - Ground
  6. NC - No Connection
  7. NC - No Connection
  8. NC - No Connection
  9. NC - No Connection
  10. NC - No Connection
  11. NC - No Connection
  12. NC - No Connection
  13. NC - No Connection
  14. NC - No Connection
  15. NC - No Connection
  16. NC - No Connection

Functional Features

  • Secure Memory Storage: The AT88SC3216C-SU provides secure storage for sensitive data, ensuring confidentiality and integrity.
  • High-Security Features: It incorporates advanced security mechanisms such as encryption and authentication to protect stored information.
  • Contact-Based Interface: The chip utilizes a contact-based interface for communication with external devices, ensuring reliable data transfer.
  • Non-Volatile Memory: The data stored in the chip remains intact even when power is removed, making it suitable for applications requiring persistent storage.

Advantages and Disadvantages

Advantages: - High-security features protect sensitive data from unauthorized access. - Non-volatile memory ensures data retention even during power loss. - Contact-based interface provides reliable communication with external devices.

Disadvantages: - Limited memory size compared to other secure memory chips. - Requires additional security measures to prevent physical tampering.

Working Principles

The AT88SC3216C-SU utilizes advanced encryption algorithms and authentication protocols to ensure the security of stored data. When powered on, the chip establishes a secure channel with the host device through the contact-based interface. The host device can then read from or write to the chip's memory using the provided commands and protocols.

Detailed Application Field Plans

The AT88SC3216C-SU finds applications in various fields that require secure storage of sensitive data. Some potential application areas include:

  1. Smart Cards: The chip can be used in smart cards for secure identification, access control, and payment systems.
  2. Authentication Tokens: It can be integrated into authentication tokens used for two-factor authentication in online banking and corporate networks.
  3. Secure IoT Devices: The chip can provide secure storage for cryptographic keys and credentials in Internet of Things (IoT) devices.
  4. Medical Devices: It can be utilized in medical devices to store patient data securely and ensure privacy compliance.

Alternative Models

  1. AT88SC1616C-SU: Similar to AT88SC3216C-SU but with a smaller memory size of 16 kilobits.
  2. AT88SC6416C-SU: Offers a larger memory size of 64 kilobits compared to AT88SC3216C-SU.
  3. AT88SC10216C-SU: Provides double the memory size of AT88SC3216C-SU, with 64 kilobits of storage capacity.

These alternative models offer different memory sizes to cater to specific application requirements while maintaining similar security features and functionality.

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Sebutkan 10 pertanyaan dan jawaban umum terkait penerapan AT88SC3216C-SU dalam solusi teknis

Sure! Here are 10 common questions and answers related to the application of AT88SC3216C-SU in technical solutions:

  1. Q: What is AT88SC3216C-SU? A: AT88SC3216C-SU is a secure memory chip manufactured by Microchip Technology Inc. It is commonly used for storing sensitive data in various technical solutions.

  2. Q: What is the storage capacity of AT88SC3216C-SU? A: AT88SC3216C-SU has a storage capacity of 32 kilobits (4 kilobytes) which can be divided into multiple zones for different purposes.

  3. Q: How is AT88SC3216C-SU connected to a microcontroller or system? A: AT88SC3216C-SU uses a standard I2C interface for communication with microcontrollers or systems. It requires two lines, SDA (data line) and SCL (clock line).

  4. Q: Can AT88SC3216C-SU be used for secure authentication purposes? A: Yes, AT88SC3216C-SU supports cryptographic functions like mutual authentication, challenge-response protocols, and secure key storage, making it suitable for secure authentication applications.

  5. Q: Is AT88SC3216C-SU resistant to physical attacks? A: AT88SC3216C-SU incorporates various security features like tamper detection, anti-tearing mechanisms, and active shield technology to resist physical attacks and protect stored data.

  6. Q: Can AT88SC3216C-SU be used in contactless applications? A: No, AT88SC3216C-SU is a contact-based memory chip and requires physical contact with the reader or microcontroller for communication.

  7. Q: What is the operating voltage range of AT88SC3216C-SU? A: AT88SC3216C-SU operates within a voltage range of 2.7V to 5.5V, making it compatible with a wide range of microcontrollers and systems.

  8. Q: Can AT88SC3216C-SU be reprogrammed or write-protected? A: No, AT88SC3216C-SU is a one-time programmable memory chip. Once programmed, the data cannot be modified or erased. However, certain zones can be write-protected to prevent accidental modifications.

  9. Q: Is AT88SC3216C-SU suitable for high-security applications like banking or government systems? A: Yes, AT88SC3216C-SU meets industry standards for security and encryption, making it suitable for high-security applications where data protection is crucial.

  10. Q: Are there any development tools or software available for working with AT88SC3216C-SU? A: Yes, Microchip provides development tools, libraries, and software support for integrating AT88SC3216C-SU into various technical solutions. These tools help with programming, testing, and debugging the chip's functionality.