MIPI CSI-2 Receiver IP
Overview
MIPI CSI-2 Receiver interface provides full support for the two-wire MIPI CSI2 serial interface, compatible with MIPI CSI-2 Specification version 2.1. It is typically residing in an image application processor and provides communication to MIPI CSI-2 transmitter in a camera module over the serial PHY link. MIPI CSI-2 Receiver IIP is fully configurable and proven in FPGA environment. The host interface of the MIPI CSI-2 Receiver IP can be simple interface or can be AMBA APB, AMBA AHB, AMBA AHB-Lite, AMBA AXI, AMBA AXI-Lite, VCI, OCP, Avalon, PLB, Tilelink, Wishbone or Custom protocol.
Key Features
- Compliant with MIPI CSI-2 Specification v1.0, v1.1, v1.3, v2.0,v2.1
- Compliant with D - PHY Specification v1.1,v1.2,v2.0,v2.1
- Compliant with C - PHY Specification v0.7,v1.2
- Full MIPI CSI-2 RX functionality where either D - PHY / C - PHY can be used
- Supports Multi lane merging and also lanes can be configured up to 4 lanes for C - PHY and 8 lanes for D ��ô PHY
- Supports Data rate up to 4.5 Gbps per data lane of D ��ô PHY. 36 Gbps in 8 Lanes
- Supports Data rate up to 3 Gsps per trio using C ��ô PHY. 17 Gbps in 3 Trios
- Supports up to 4 Virtual channels
- Supports continuous and non-continuous clock modes
- Supports PPI Interface to connect to C - PHY / D - PHY
- Supports short and long packets.
- Supports Frame and Line Synchronization Packets (Short Packets)
- Supports Data Descrambling in Lanes
- Supports Deskew mechanism for Lane synchronization.
- Supports High Speed and Escape Mode (LPDT and ULPS) reception
- Supports the following interleaving methods
- -> Data type
- -> Virtual channel
- Supports 1-bit Error Correction and 2-bit Error Detection using ECC (6 bit) for Packet Header.
- Supports Error Detection techniques for active data using Checksum (16 bit).
- Supports 16 interleaved Virtual channel in D-PHY and 32 in C-PHY
- Support all Protocol Decoding Level errors
- Supports the compression for RAW data types
- Supports Error Detection techniques for active data using Checksum (16 bit)
- Supports Image applications with varying Pixel format
- -> RAW Data Type - RAW6, RAW7, RAW8, RAW10, RAW12, RAW14, RAW16, RAW20, RAW24
- -> RGB Data Type - RGB444, RGB555, RGB565, RGB888, RGB 666
- -> YUV Data Type - YUV422-8bit, YUV422-10bit, YUV420-8bit, YUV420-10bit, Legacy YUV420-8bit
- -> User defined data type - 8 data types
- -> Generic 8 bit long packet (Null, Blanking, Embedded data)
- Supports Pixel Level /interface to ISP with HSYNC, VSYNC, DATA and DATA VALID
- Programmable synchronization and interrupt (error and information) events
- Fully synthesizable
- Static synchronous design
- Positive edge clocking and no internal tri-states
- Scan test ready
- Simple interface allows easy connection to microprocessor/microcontroller devices
Benefits
- Single Site license option is provided to companies designing in a single site.
- Multi Sites license option is provided to companies designing in multiple sites.
- Single Design license allows implementation of the IP Core in a single FPGA bitstream and ASIC.
- Unlimited Designs, license allows implementation of the IP Core in unlimited number of FPGA bitstreams and ASIC designs.
Deliverables
- The MIPI CSI-2 Receiver interface is available in Source and netlist products
- The Source product is delivered in verilog. If needed VHDL, SystemC code can also be provided.
- Easy to use Verilog Test Environment with Verilog Testcases
- Lint, CDC, Synthesis, Simulation Scripts with waiver files
- IP-XACT RDL generated address map
- Firmware code and Linux driver package
- Documentation contains User s Guide and Release notes
Technical Specifications
Maturity
Getting used at customer site
Related IPs
- MIPI CSI-2 Receiver
- MIPI CSI-2 controller Receiver v 2.1, Compatible with MIPI C-PHY v1.2 & DPHY v2.1.
- MIPI D-PHY/LVDS Combo CSI-2 RX (Receiver) in TSMC 28HPC+
- High Performance Second Generation Extended MIPI CSI2 Receiver
- Extended MIPI CSI2 Serial Video Receiver, 64 bits, 8 data lanes, 4 pixels/clock
- MIPI D-PHY IP for TSMC (5nm, 6/7nm, 12/16nm, 22nm, 28nm, 40nm)