Artículo: AMZ-B0FT3191PW

Hssdtech

TPM 2.0 Module SPI 12Pin Module with Infineon SLB9670 Windows 11 Upgrade for Gigabyte Z890I AORUS Ultra Compute Securely Bus Header Key

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  • TPM 2.0(12pin-1) ,GC-TPM2.0 SPI 2.0, Chipset:SLB9670 Compatible with Gigabyte Z890I AORUS ULTRA Compute Securely Bus Header Key
  • Precautions: This product is only applicable to older motherboards such as INTEL and AMD, and is not applicable to new motherboard models with firmware TPM, all-in-one computers, and laptops.
  • Important: The minimum hardware requirements for upgrading to Windows 11 via TPM 2.0 are as follows: 1 GHz or faster 64-bit processor (dual-core/multi-core), 4 GB of memory, 64 GB of storage space, firmware that supports UEFI Secure Boot and TPM 2.0, DirectX 12-compatible graphics card, and a display with a resolution of 720p or higher.
  • Purpose a: Resolve the TPM 2.0 verification issue when upgrading to Windows 11, enabling it to function as an independent encryption chip, providing secure storage for sensitive data, and enhancing security;
  • Use b: Hardware encryption acceleration, such as improving game lag issues and other functions.
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How to select and install a security module: 1. Confirm whether the host has TPM 2.0 or if TPM 2.0 is enabled. 2. Click “Run,” enter: tpm.msc (Win+R keys), and check if the TPM version is ready. 3. If version 2.0 is displayed but not ready, you need to configure settings in the BIOS; consult the motherboard manufacturer's customer service. 4. Open the host and inspect the TPM pins on the motherboard. 5. When installing the module, ensure the chip-side faces inward, align with the pins, and insert fully to prevent loosening. (See image for direction) Product Performance Compatible with: GC-TPM2.0 SPI 2.0,12-pin Chipset: SLB9670 Interface: SPI Core Applications: 1: Seamless upgrade to Windows 11: Resolve TPM 2.0 verification issues and easily upgrade to the latest operating system. 2: Enhanced hardware-level security: Provides an independent secure encryption chip specifically designed for securely storing sensitive data (such as encryption keys, digital certificates, and login credentials), thereby enhancing overall system security. 3: Hardware encryption acceleration: Reduces CPU load by accelerating encryption operations via dedicated hardware, indirectly improving system response speed and enhancing the smooth operation of certain encryption-dependent applications (such as games and security software).