Keysight’s Automotive SerDes receiver (Rx) solution will ensure interoperability for automotive in-vehicle networks of MIPI A-PHY.
| Measurement type | Receive (Rx) |
| Technology | MIPI A-PHY |
| Data rate | 2 Gb/s – 32 Gb/s |
There are several different technologies that operate in the vehicle network. Conformance and interoperability for each of those is critical to the safety and security of modern vehicle architectures.
Keysight delivers end-to-end Automotive Ethernet validation across OSI Layers 1–7. Testing begins at the physical layer and extends upward to include control-plane validation, timing accuracy, guaranteed delivery, and AVB/TSN performance.
Keysight automotive Ethernet and SerDes solutions validate multi-gigabit communication as modern ADAS and autonomous features demand the fastest data rates.
Automate testing and validation across transmitter (Tx), receiver (Rx), and channel testing from 10 Mbps to 50 Gbps, providing increased test accuracy while saving time for rigorous compliance testing.
| Measurement type | Channel (Lx), Receive (Rx), Transmit (Tx) |
| Technology | Automotive Ethernet, MIPI A-PHY, ASA, GSML, Generic |
| 10 Mb/s – 10 Gb/s, 100 Mb/s – 1000 Mb/s, 2 Gb/s – 32 Gb/s |
Keysight’s Automotive SerDes receiver (Rx) solution will ensure interoperability for automotive in-vehicle networks of MIPI A-PHY.
Next-generation advanced driver-assistance systems (ADAS) will use sensors like cameras, radar, and lidar with increasingly high resolutions, requiring a network with faster data throughput and greater bandwidth. Serializers and De-serializers (SerDes), are common in virtually all high-speed digital bus technologies.
| The point of receiver testing at the PHY layer is to stress the receiver and to validate its operation in the noisy environment of the car. Receiver tests ensure the quality of the digital transmission by measuring the receiver’s ability to recover data from an impaired input signal. The need for interoperability makes test and measurement a key focus of the standard because it is a critical path to enable broad adoption. | The AE2000R is a solution that includes control software for the Arbitrary Waveform Generator (AWG) to create compliant test signals. It provides all signal parameters and all tests specified in the applicable compliance test specification. |
| Key Capabilities | Test performance of Automotive MIPI A-PHY receivers in the presence of injected noise. |
| Includes all required instruments, fixtures, and accessories. | Accurate and repeatable results with the Keysight AWG. |
| Test report generation. | Ordering information |
| Software supports Keysight M8195A AWG. | Configuration includes AWG, fixture, adapters and software. |
| The datasheet contains configuration details. | MIPI® service marks and logo marks are owned by MIPI Alliance, Inc. and any use of such marks by Keysight Technologies is under license. Other service marks and trade names are those of their respective owners. |
Innovate at speed with curated support plans and prioritized response and turn-around times.
Get predictable, lease-based subscriptions and full lifecycle management solutions—so you reach your business goals faster.
Experience elevated service as a KeysightCare subscriber to get committed technical response and more.
Ensure your test system performs to specification and meets local and global standards.
Make measurements quickly with in-house, instructor-led training, and eLearning.
Download Keysight software or update your software to the newest version.

The EDU34450A is a bench DMM with dual-display 5.5-digit-resolution digital multimeter with up to 110 readings/s measuring rate for speed-critical tests.

The EDU190A is an anodized metal frame that enables one EDU series instrument to stack on each other. It can be securely attached to the wall or lab bench.

The Keysight DM34460A series 6.5-digit dual-display digital multimeter uses Truevolt technology to perform accurate hardware design validation and debugging.

The Keysight DM34461A 6.5-digit dual-display digital multimeter uses Truevolt technology to perform accurate hardware design validation and debugging.