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LeCroy Showcases Differentiated EV Testing with CAN FD Decoding Solution

Google 우선 소스Published2018.03.20 11:57

Focus on showing the information actually needed by testers.
Standard mask provision enables differentiation between testing and simultaneous quality


Teledyne LeCroy showcased its CAN FD decoding solution at the Automotive Testing Expo 2018. The CAN FD decoding solution, which distinguishes and displays signals from the physical layer—which are difficult to verify with a standard oscilloscope—ranging from ID to various data, has been used in the automotive field since 2004 and expanded support to eight analog channels based on the HD4096 in 2014.

Extract and view only the desired signals
The HD4096, Teledyne LeCroy's flagship testing instrument, features flexible triggering capabilities that allow it to distinguish unwanted abnormal signals or differentiate signals using signal values of specific desired IDs. The data triggering function, which applies conditions, offers flexibility, while the error frame trigger, with its wide applicability, can isolate error frames using error conditions.

The actual set ID value and data section displayed on the screen.

Visualization of intuitive protocol information
The decoded protocol information has color added to specific parts of the serial data waveform and is transparently overlaid for intuitiveness, making it easier to understand. In addition, the decoded protocol is displayed in the table along with the capture time.

Chang-hoon Oh, a manager at Teledyne LeCroy who participated in the Automotive Testing Expo, stated that the equipment being showcased allows users to directly import and compare provided eye diagrams and standard masks, thereby enabling them to immediately check whether the product signal condition is good or bad.

Teledyne LeCroy's General Manager Oh Chang-hoon is pointing to the standard mask section brought in.

In addition, in the automotive field, CAN data information such as torque and speed is viewed, and it was stated that this equipment allows one to view torque and speed from CAN messages by utilizing the CAN decoding function. Furthermore, it was stated that through this data, the inverter output and mechanical output efficiency can be verified to improve the overall output of the vehicle.
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