Features
- Cortex-A55 (1.8GHz) x 4 cores
- Cortex-R8 (800MHz) x 2 cores
- Cortex-M33 (200MHz) x 1 core
- AI Accelerator DRP-AI3 (8TOPS/dense, 80TOPS/sparse)
- Dynamically reconfigurable processor (DRP)
- Arm® Mali™-C55 ISP (option)
- 6MB on-chip SRAM
- LPDDR4/LPDDR4X memory interface
- Gigabit Ethernet 2ch
- USB 2.0 interface 2ch (On-the-Go (OTG) x 1ch, Host x 1ch)
- USB 3.2 (Gen2) interface 2ch (Host only)
- PCIe® interface (Gen3/4-lane) 1ch
- MIPI® CSI-2® camera interface 4ch
- CAN interface (CAN FD) 6ch
- Package: BGA, 19mm x 19mm 1368-pin 0.5mm pitch
Description
The RZ/V2H high-end AI MPU boasts Renesas' proprietary dynamically reconfigurable processor AI accelerator (DRP-AI3), quad Arm® Cortex®-A55 (1.8GHz) Linux processors, and dual Cortex®-R8 (800MHz) real-time processors. Furthermore, the RZ/V2H also includes another dynamically reconfigurable processor (DRP). This processor can accelerate image processing, such as OpenCV, and dynamics calculations required for robotics applications. It also features high-speed interfaces like PCIe®, USB 3.2, and Gigabit Ethernet, making it an ideal microprocessor for applications such as autonomous robots and machine vision in factory automation, where advanced AI processing must be implemented with low power consumption.
Parameters
| Attributes | Value |
|---|---|
| CPU Architecture | Arm |
| Main CPU | Cortex-A55 x 4 + Cortex-R8 x 2 + Cortex-M33 x 1 |
| Program Memory (KB) | 0 |
| RAM (KB) | 6144 |
| Carrier Type | Bulk (Tray), Full Carton (Tray) |
| Supply Voltage (V) | 3.135 - 3.465 |
| I/O Ports | 86 |
| NPU | Yes |
| DRAM I/F | LPDDR4-3200, LPDDR4X-3200 (32-bit) |
| 3D GPU | Mali-G31, No |
| Temp. Range (°C) | Tj = -40 to +125 |
| Operating Freq (Max) (MHz) | 1800 |
| Ethernet speed | 10M/100M/1G |
| Ethernet (ch) | 2 |
| EtherCat (ch) (#) | 0 |
| USB FS (host ch/device ch) | ( 4 / 1 ) |
| USB HS (host ch/device ch) | ( 4 / 1 ) |
| USB SS (host ch/device ch) | ( 2 / 0 ) |
| PCI Express (generation and ch) | PCIe (Gen.3.0 4Lane) x 1 ch |
| SCI or UART (ch) | 10 |
| SPI (ch) | 3 |
| I2C (#) | 9 |
| CAN (ch) | 0 |
| CAN-FD (ch) | 6 |
| Wireless | No |
| SDHI (ch) | 3 |
| High Resolution Output Timer | No |
| PWM Output (pin#) | 0 |
| 32-Bit Timer (ch) | 32 |
| 16-Bit Timer (ch) (#) | 0 |
| 8-Bit Timer (ch) | 0 |
| Standby operable timer | No |
| Asynchronous General Purpose Timer / Interval Timer (ch) | 0 |
| 16-Bit A/D Converter (ch) | 0 |
| 14-Bit A/D Converter (ch) | 0 |
| 12-Bit A/D Converter (ch) | 8 |
| 10-Bit A/D Converter (ch) | 0 |
| 24-Bit Sigma-Delta A/D Converter (ch) | 0 |
| 16-Bit D/A Converter (ch) | 0 |
| 12-Bit D/A Converter (ch) | 0 |
| 10-Bit D/A Converter (ch) (#) | 0 |
| 8-Bit D/A Converter (ch) | 0 |
| Capacitive Touch Sensing Unit (ch) | 0 |
| Graphics LCD Controller | No |
| MIPI Interfaces (DSI) (ch) | 1 |
| MIPI Interfaces (CSI) (ch) | 4 |
| Image Codec | H.264/H.265 |
| Segment LCD Controller | No |
| Security & Encryption | AES,RSA,ECC,SHA-1,SHA-224,SHA-256,GHASH,TRNG, AES, RSA, ECC, SHA-1, SHA-224, SHA-256, GHASH, TRNG, No |
Package Options
| Pkg. Type | Pkg. Dimensions (mm) | Lead Count (#) | Pitch (mm) |
|---|---|---|---|
| FCBGA | 19 x 19 x 2.85 | 1368 | 0.5 |
Application Block Diagrams
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Autonomous Mobile Robot (AMR)
AI-enabled AMR system with real-time control, scalable power, and compact design.
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Unmanned Aerial Vehicle (UAV)
UAV system with AI vision, precision motor control, and smart battery management.
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Service Robot
AI-powered service robot system with real-time control for smart, safe, and efficient navigation.
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Robotic Standard Arm System
Robotic arm system with AI-powered vision and real-time motion control.
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Dexterous Hand
This robotic hand system comes with 6-cylinder control, micro-ROS support, and modular sensor integration.
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High-Performance Vision AI System
High-end vision AI system features real-time object detection and high-efficiency AI accelerators.
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Power Sequencer & I/O Expander for Printers (PPC/MFP)
An MCU-based power sequencer and I/O expander for high-performance PPC/MFP printers.
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Single Board Computer with Vision AI
SBC with Vision AI offers high-end Vision performance with exceptional power efficiency, enabling compact and fan-less operation.
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Additional Applications
- Robotics
- Automated Guided Vehicle (AGV)
- Autonomous Mobile Robot (AMR)
- Factory Automation (FA) Machine Vision
- Smart Retail
Applied Filters:
Filters
Software & Tools
Sample Code
Simulation Models
This video demonstrates how to run the RZ/V2H AI applications demo on the RZV2H evaluation board kit.
Chapter Titles
00:00 Opening
00:08 Overview
00:56 Download RZ/V2H AI demo image file
01:42 Writing the AI application demo image file on microSD card
03:00 Setup for RZ/V2H EVK
03:33 Launch AI demo
04:05 End of AI demo and RZ/V2H EVK power-off procedure
05:08 Ending
Related Resources
This video shows how to run AI applications on RZ/V2H Evaluation Board Kit (EVK), using RZ/V2H AI Software Development Kit Version 3.00.
Chapter's Title & Time
00:00 Opening
00:46 Preparation
03:39 Set up AI SDK
07:56 Run the Application
23:18 Ending
Related Resources
This demo highlights the unique features of the RZ/V2H processor, including its proprietary dynamically reconfigurable AI accelerator (DRP-AI3), quad Arm® Cortex®-A55 Linux processors, and dual Cortex®-R8 real-time processors.
These components enable real-time AI vision and advanced robotics, supporting intuitive, gesture-controlled manipulation. With exceptional image processing and dynamic calculation capabilities, the system is ideal for applications such as autonomous robots and machine vision in factory automation.
Related Resources
Watch how the DRP-AI3 accelerator technology embedded in the RZ/V2H MPU enables a humanoid robot to make real-time decisions and respond to gestures with precise movements.
Learn about the key features and advantages that the RZ/V2H MPU could bring to your next computer vision AI applications.
Explore which technology could provide you with faster AI inference time and lower active power for a range of applications between the DRP-AI test board and GPU board. Visit the RZ/V2H product page for more information.