Hi,
@
guste100
Sure, you can answer.

I appreciate any feedback. My title wasn't intended to exclude qualitative answers, but rather to understand the number of error cases and the need for such a device in workshops.
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- How is the current measured?
If the cable needs to be disconnected and your measuring device connected, this is quite cumbersome in practice. If a DC clamp meter is used, I fear a significant offset drift due to the long measurement time.
- What dynamic range does the measuring device offer (i.e., smallest measurement range / largest measurement range)? |
The measurement is performed by interrupting the current path through the fuse. The measuring head is therefore inserted like a fuse, and the actual measurement process takes place via the voltage drop across the fuse wire. An A/D converter and associated electronics convert the signal in the measuring head into a CAN bus signal.
The amount of current that can be measured depends on the type of sensor head used, as this head is theoretically also responsible for protecting the circuit from overcurrent.
Down into the microampere range. I think that's more than enough.
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| - The evaluation of the measurement results requires a certain level of electronics/IT knowledge, which is unfortunately often limited in many workshops. |
I fear that too.
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| In principle, it is difficult to determine which specific gas turbine (STG) in the combined cycle power plant is defective based solely on the electrical power output. |
The developer assumes that the workshops will then have enough experience to accomplish this. Unfortunately, I doubt that.
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| Overall, it's more of a supporting measurement device, which isn't suitable for the average workshop, but rather for an electronics-focused workshop where qualified professionals with corresponding analysis skills are available. |
That would significantly limit the number of units that could be sold. I had also considered working with factory representatives, but I'm not sure to what extent they have experts in electronics.
@
dieselmartin
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Furthermore, the excessive power consumption is often caused by software bugs.
One or more ECUs are not going to sleep because they are "constantly talking." |
According to the developers, this is supposedly happening with cars that are newly released on the market.
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| because they "constantly chatter". |
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Even now that I have clearly identified one thing, I only know that this is drawing power. Why remains unclear.
If two or more people pull, it becomes completely unclear why. |
A similar process is already used in the development of vehicle electronics.
The developer of the measuring device created it in collaboration with an automotive manufacturer. The system we are being offered is the improved successor to the original. Therefore, there seems to be a demand for it, especially since customers are increasingly becoming test drivers.
Conclusion:
The main problem is how to process the data streams in a way that produces a meaningful and understandable result. There is definitely still room for clarification on this point.
Thank you very much for your efforts.
Best regards,
Jörg