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Overview
The S80 is a fully software defined 4D Imaging Radar-on-Chip (RoC) with Digital Code Modulation (DCM), certified for use in key automotive safety applications such as automatic emergency braking, lane change assist, adaptive cruise control, and blind-spot detection, as well as automated driving functions for autonomous vehicles.
The RoC uses a PMCW (phase modulated continuous wave), MIMO (multiple-input multiple-output) radar architecture capable of processing up to 192 virtual channels. It supports 12 transmit antenna channels (Tx) and 2x8 receive antenna channels (Rx) – the 8 receivers on chip can switch between the two banks of 8 antenna, allowing receiver division multiplexing. The S80 has built-in processors to run a full radar stack, including application and OEM-specific software on chip.
The RoC is provided with system tools and production-ready software APIs to enable quick time-to-market for customers.
The DCM-based imaging radar provides a rich point cloud output for use in long, mid, and short-range applications with high contrast resolution (HCR) to deliver maximum discrimination and high-confidence detection of independent small targets. Furthermore, the DCM technology enables improved interference mitigation and is inherently hack resistant to spoofing.
Key Features
- 76-81 GHz Frequency Range
- 4D Digital Imaging Radar: Simultaneous Measurement of Range, Velocity, Azimuth, and Elevation Angle
- 192 Virtual Receive Channels (VRx)
- 2x8 Receive Antenna Channels (Rx)
- 12 Transmit Antenna Channels (Tx)
- 96 VRx with True MIMO
- High Contrast Resolution
- Hack Resistant to Radar Spoofing
- Software Defined Frame and Scan Configuration
- Advanced Interference Mitigation
- AEC-Q104 Qualified
- Supports ASIL-B Functional Safety (ISO 26262)
- Supports user Algorithms On-Chip with High Performance CPU and DSP Cores
- ASPICE Qualified Software Development Kit (SDK) with Ready-to-Integrate APIs
- Small Form Factor
Target Applications
- Imaging Radar for Automated Driver Assistance Systems (ADAS). Examples:
- Low Power Consumption
- Pedestrian Automatic Emergency Braking (P-AEB)
- Blind Spot Detection (BSD) and Cross-Traffic Detection (CTD)
- Autonomous Vehicles (AVs)
Key Specifications
| S80 Radar-on-Chip (RoC) | Value |
|---|---|
| Center Frequency | 76-81GHz |
| Channels | 12Tx&2x8Rx |
| Tx Output Power (1) | 12dBm |
| Maximum Modulation Bandwidth | 1GHz |
| Noise Figure (NF) (1) | 10dB |
| On-Chip Memory | 16MB |
| External Memory | Up to 2GB LPDDR4 [Up to 32-bit @ 4266MHz] |
| Compute Processing Cores | 2 ARM Cortex-R5F CPUs @ 667MHz |
| Digital Signal Processing (DSP) Cores | 2 Tensilica-P5 DSPs @ 533MHz |
| Chip Control Processor and Functional Safety Manager | ARM Cortex M0+ CPU @ 400MHz with Lockstep Configuration |
| Security (Secure Boot, Interference, Updates) | Hardware Security Module (HSM) |
| I/O Interfaces | 3x100/1000 Ethernet, 2xCAN-FD, 2xI2C, QSPI, GPIO |
| Power Consumption | Typical 9W @ 50% Duty Cycle |
| Package | 12.8mm x 8.21mm eWLB (wafer level chip scale package) |
| Temperature Range (Tj) | -40℃ to +125℃ |
(1) Typical
Typical Application Block Diagram
S80 RoC