
SV4D-CPRXDPRX Direct Attach MIPI Test Module
The SV4D-CPRXDPRX Direct Attach MIPI Module from Introspect Technology is a compact, dual-purpose solution designed for efficient, high-speed testing in engineering and production environments. It features two complete C-PHY or D-PHY receivers on a single module, enabling true multi-site testing for MIPI DSI and CSI protocols.
In addition to MIPI support, the module offers coverage for LVDS and LVCMOS applications. With a tiny footprint and minimal I/O requirements, the SV4D mounts directly onto an application or load board using high-speed fly-over cables, optimizing space and reducing PCB routing complexity. As a C-PHY receiver (CPRX), it offers three trio connections per port across two ports, while in D-PHY mode (DPRX), it supports four data lanes and one clock lane per port, also across two ports. The module supports high-speed data reception up to 2.6 Gbps and communicates seamlessly with ATE systems via an SPI bus, making it ideal for streamlined test integration and scalability.
- Includes two complete C-PHY or D-PHY receivers on one module
- Multi-site test for MIPI DSI and CSI protocols
- Coverage for LVDS or LVCMOS test applications
- Tiny footprint and minimal I/O requirements
The SV4D-CPRXDPRX Direct Attach MIPI Test Module is a new category of tool for high-speed digital product engineering and production teams. It integrates multiple technologies to enable self-contained at-speed testing for MIPI C-PHY or D-PHY transmitter interfaces for image sensor, display driver, and SOC test.
The SV4D mounts directly on an application or load board with high-speed fly-over cables to allow for maximum space utilization while minimizing complex electrical trace routing schemes. Operating as a CPRX, it provides 3 CPHY trio connections on each port, with two ports total. As a DPRX, it provides 4 data lanes and one clock lane connection of each of port, with two ports total. The SV4D receives HS data at a maximum data rate of 2.6 Gbps. Communication with ATE is handled seamlessly via an SPI bus.