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SFSD032GN1PT1TB-I-6F-02P-SW8

SFSD032GN1PT1TB-I-6F-02P-SW8

Swissbit
Memory Card microSDHC™, microSDXC™ 32GB Class 10, UHS Class 3 pSLC
Active55 in stock

Overview

The Swissbit SFSD032GN1PT1TB-I-6F-02P-SW8 is a 32GB industrial-grade microSDHC/microSDXC memory card utilizing pSLC technology for high endurance. This security-focused card features hardware-based access control and AES-256 self-encryption (SED), making it an ideal storage solution for sensitive data in harsh environments. It is designed for reliability with integrated power-off protection and advanced read disturb management.

Why Choose This Part

This card combines the performance of UHS-I Class 10 with the longevity of pSLC, offering significantly higher write endurance than standard MLC or TLC cards. The integrated AES-256 encryption and CmReady support provide a hardware-rooted security layer that is transparent to the host application while protecting against data theft or cloning.

Applications

Secure Boot and Firmware Storage
Protects system integrity by ensuring only authorized code can be accessed and executed from the microSD card.
IP Protection
Safeguards AI models, proprietary configurations, and sensitive software assets using individual protection profiles and hardware access control.
Industrial Data Logging
Reliably records telemetry in extreme temperatures ranging from -40C to 85C with high endurance pSLC NAND.
Video Surveillance
Captures high-bitrate video streams in security cameras requiring UHS Class 3 speeds and long-term write reliability.

Key Specifications

Speed Class 10, UHS Class 3
Technology pSLC
Memory Size 32GB
Memory Type microSDHC, microSDXC
Operating Temperature -40degC ~ 85degC

Getting Started

Integrate this card into any SD-compatible host system operating between 2.7V and 3.6V. For security features, utilize the Swissbit security toolset or Wibu-Systems CodeMeter environment to configure protection profiles and access credentials. Ensure the host file system is optimized for industrial flash to maximize the benefits of the internal wear-leveling and data care management algorithms.