Microchip Technology USB3326C-GL-TR USB 2.0 Transceiver
The USB3326C-GL-TR from Microchip Technology is a highly integrated full-featured Hi-Speed USB 2.0 transceiver chip that operates at a 480 Mb/s data rate. Designed to support a wide range of applications, this versatile transceiver is an ideal solution for portable electronic devices that require USB connectivity.
This compact transceiver is part of Microchip's innovative USB product line and comes in a space-saving 24-QFN (4x4) package, making it perfect for applications where board space is at a premium. Its small footprint and low-power consumption are particularly well-suited for battery-powered devices such as smartphones, tablets, digital cameras, and other USB-enabled electronics.
The USB3326C-GL-TR is engineered with an integrated voltage regulator and on-chip resistor termination, which simplifies circuit design and reduces external component requirements. This feature enables designers to create more streamlined and cost-effective USB interfaces. Additionally, the transceiver supports the UTMI+ Level 3 interface for USB 2.0 Hi-Speed data transfer, ensuring compatibility with a broad range of USB host controllers.
With its built-in features such as overcurrent protection and ESD protection circuitry, the USB3326C-GL-TR ensures robust operation and longevity in harsh electrical environments. Its operating temperature range from -40°C to +85°C guarantees reliable performance across various conditions.
Key features of the USB3326C-GL-TR include:
- Hi-Speed USB 2.0 transceiver (480 Mb/s)
- Integrated voltage regulator and resistor termination
- Support for UTMI+ Level 3 interface
- 24-QFN (4x4) package for space-constrained applications
- Overcurrent and ESD protection
- Extended operating temperature range (-40°C to +85°C)
Whether for consumer electronics, mobile devices, or industrial applications, the USB3326C-GL-TR transceiver from Microchip Technology offers a reliable and efficient solution for integrating Hi-Speed USB connectivity into your product design.