KISTLER 6215 PDF

The main concern is that this is not IEPE sensor, and requires additional charge amplifier according to Kistler's manual. Go to Solution. You will most likely need a charge amplifier, either in-line or a separate unit. I believe this particular sensor does not have the built-in amplifier circuits found in IEPE type sensors.

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The main concern is that this is not IEPE sensor, and requires additional charge amplifier according to Kistler's manual. Go to Solution. You will most likely need a charge amplifier, either in-line or a separate unit. I believe this particular sensor does not have the built-in amplifier circuits found in IEPE type sensors.

I can't confirm this though because I can't find documentation on this particular sensor. The in-line charge amplifier something like a Kistler Type B convert the high impedance signals charge signals to low impedance voltage signals. Hello nar, thank you for reply.

Here is the documentation for the Kistler You are right for the non existing IEPE circuit in sensor. Tricky thing is what they mean by non-IEPE?

What I understood that this module have built-in charge amplifier. I would like to use this, but my application requires kHz sampling. I think that I can solve data sampling easily with NI, but can not find the appropriate charge amplifier that will cover this frequency range until now.

Essentially they are saying you can "toggle" the IEPE current source according to your needs. When Kistler says PE, they are referring to a charge mode sensor I. This means the output of the sensor is in C rather than typical V. The cMod made by Kistler looks like it will internally convert the charge to a voltage. You can make the NI system work if you purchase an inline charge amp. However, the NI module only samples out to There are the NI modules that can fit my needs.

NI or even some X series USB cards , but my problem is that charge amplifiers are mostly working up to 50 kHz frequency range, and still can not find suitable one for my application kHz. I think you are confusing IEPE devices and charge devices. The is another IEPE device. It does have a higher sampling frequency, but it is still only IEPE. You could purchase a bench-top charge amplifier also. It offers a little more flexibility, at a higher expense.

These amplifiers do not require IEPE since their power comes from the wall. The other issue is that most charge sensors, and the amplifiers, are limited to kHz due to the capacitance acting as low pass filter. With these amplifiers you can still pass the high frequency signal through it, but expect attenuation maybe -3dB depending on the amplifier. I would recommend checking www. United States. Signal Conditioning.

Turn on suggestions. Auto-suggest helps you quickly narrow down your search results by suggesting possible matches as you type. Showing results for. Search instead for. Did you mean:. Is it ok to connect it directly to NI without any additional electronics between? Thank you in advance, Solved! Message 1 of 8. Message 2 of 8. Trusted Enthusiast. Message 3 of 8. Message 4 of 8. Message 5 of 8. Message 6 of 8. Accepted by topic author FarukMW.

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Depending upon desired measurement configuration, the Type may also be installed with an optional sold separately protective shield or diaphragm protection. In particular, thermal shields or plates further reduce the potential for thermal shock errors and diaphragm protection provides resistance to mechanical damage from metal fragments and powder particles. Sensor mounting is achieved via a M10x1 threaded hole. For more information, visit Kistler North America. Sensors can be used in ballistics, bomb testing applications.

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