Manufacturer Part Number
PI7C9X2G303ELBZXE
Manufacturer
Diodes
Introduction
PI7C9X2G303ELBZXE is a specialized interface component designed by Diodes for advanced wireless applications. This component caters to the increasing demand for efficient and high-performance connectivity solutions.
Product Features and Performance
Advanced JTAG interface for programming and testing purposes
Optimized for high-speed signal integrity
Designed for wireless communication enhancements
Offers robust data transmission capabilities
Engineered for low-power consumption to extend device battery life
Product Advantages
High integration level reduces system complexity and PCB space requirements
Enhanced wireless performance improves the reliability of wireless connections
Low power design enables longer operation times for battery-powered devices
Superior signal integrity for high-speed data transactions
Key Technical Parameters
Interface: JTAG
Package / Case: 136-VFQFN Dual Rows, Exposed Pad
Supplier Device Package: 136-aQFN (8x8)
Mounting Type: Surface Mount
Quality and Safety Features
Manufactured according to Diodes' stringent quality control standards
Designed to meet various international safety regulations for wireless devices
Compatibility
Compatible with various wireless communication protocols
Designed to integrate seamlessly with existing and new system architectures
Application Areas
Ideal for IoT devices requiring reliable wireless communication
Suitable for portable devices where power efficiency is critical
Applied in industrial wireless control systems for enhanced connectivity
Product Lifecycle
The product is currently in an Active status, indicating availability and ongoing support
No current indications of discontinuation, ensuring long-term availability
Upgrades or replacements are expected to maintain compatibility and performance enhancements
Several Key Reasons to Choose This Product
Its advanced JTAG interface simplifies programming and debugging efforts
Optimized for cutting-edge wireless applications, ensuring future-proof designs
Low power consumption enhances device usability and environmental sustainability
High-quality manufacturing standards promise reliability and durability
Supports a broad range of applications, offering versatile design possibilities