The SDIN8DE4-32G-I from Diodes Incorporated is a high-performance eMMC (embedded Multi-Media Card) storage solution designed for a wide range of applications in the consumer electronics, mobile computing, and industrial sectors. This robust memory module combines MLC NAND flash memory with an integrated MMC controller to provide a dependable storage medium that can withstand the rigors of various operating environments.
Key Features
- Capacity: This eMMC card offers a generous storage capacity of 32GB, providing ample space for operating systems, applications, and data storage.
- Interface: It utilizes a high-speed HS400 interface, which is part of the eMMC 5.1 standard, offering fast data transfer rates that are essential for applications requiring quick read and write operations.
- Reliability: The SDIN8DE4-32G-I is engineered for reliability, with built-in features that ensure data integrity and protection against extreme conditions, making it suitable for use in environments subject to temperature variations and mechanical stress.
- Energy Efficiency: Designed with power efficiency in mind, this eMMC module helps to reduce overall power consumption, making it an ideal choice for battery-powered devices.
- Compatibility: It adheres to the JEDEC eMMC 5.1 standard, ensuring compatibility with a broad range of host devices and systems.
Applications
The versatility of the SDIN8DE4-32G-I makes it suitable for various applications, including but not limited to:
- Smartphones and tablets
- Embedded computing systems
- Digital cameras and video recorders
- GPS and navigation systems
- Industrial automation and control systems
Product Specifications
| Attribute |
Value |
| Manufacturer |
Diodes Incorporated |
| Part Number |
SDIN8DE4-32G-I |
| Memory Type |
MLC NAND Flash |
| Capacity |
32GB |
| Interface |
eMMC 5.1, HS400 |
In conclusion, the SDIN8DE4-32G-I from Diodes Incorporated is a reliable and efficient storage solution that meets the needs of a variety of high-demand applications, offering a blend of performance, capacity, and durability.