meta data for this page
Differences
This shows you the differences between two versions of the page.
Both sides previous revisionPrevious revisionNext revision | Previous revision | ||
groups:mg:k_k_fxe [2018/08/10 09:34] – ssauer | groups:mg:k_k_fxe [2018/08/31 14:14] (current) – removed ssauer | ||
---|---|---|---|
Line 1: | Line 1: | ||
- | ====== K&K FXE / FXQE80 ====== | ||
- | Company: [[http:// | ||
- | |||
- | <note important> | ||
- | |||
- | ===== | ||
- | Upgrade der Zählerkarten 2018 ===== | ||
- | |||
- | - Die Zählerkarte **FXE02 (alt)** wurde zu einer **FXE07 (neu)** ersetzt. Die FXE02 war zu alt und konnte nicht upgegradet werden. | ||
- | - Sync-Fähigkeit mit PPS | ||
- | - Bei 1V ist Schaltschwelle | ||
- | - Wird als Master-Zähler verwendet | ||
- | - Die Zählerkarte **FXE04** wurde upgegradet: | ||
- | - USB-LAN-Buchse | ||
- | - USB-Nummer: 000000EA (kann verändert werden) | ||
- | - Ergänzung der Sync-Verkettung | ||
- | - Wird weiterhin als Slave-Zählerkarte verwendet | ||
- | - Allgemein: | ||
- | - Nun können bis zu 4 unabhängige User einen Kanal benutzen | ||
- | - Sie können unterschiedliche Modis gleichzeitig verwenden: gemittelt/ | ||
- | - Der Zähler kann als TCP-Server verwendet werden | ||
- | - Die acht Eingänge können: | ||
- | - 4kHz - 132MHz zählen anstatt bis 65MHz | ||
- | - ~ 0dBm - 17dBm | ||
- | - Verbindung mit dem Computer ist mit USB und LAN möglich anstatt Serial. | ||
- | - Dadurch können die Kanäle schneller ausgelesen werden. Anstatt 1 Kanal 1ms (bei Serial) | ||
- | |||
- | ===== New Counter ===== | ||
- | |||
- | |||
- | ==== Select your measuring method ==== | ||
- | Difference between π- and Λ-measurement. Set under //Report Mode//: | ||
- | * π-measurement = // | ||
- | * Λ-measurement = //Phase Average// (__usually__) | ||
- | |||
- | " | ||
- | Please note that I distinguish between the raw measurement results generated by the hardware, and the reports to the PC which are produced by the microprocessor.\\ | ||
- | Internally, the FXE counters continuously take raw measurements of the phase (relative to the 10MHz reference) of each channel every millisecond.\\ | ||
- | The on-board microprocessor can evaluate these raw measurements in different modes for presentation to the PC. I shall try to describe this by giving examples for each mode, where Pc(i) shall be the current raw ' | ||
- | |||
- | **a) Instantaneous phase report mode:** | ||
- | The on-board microprocessor reports to the PC at the selected report interval only the latest raw measurement result. All other intermediate results are ignored. Measurements reported (@ interval 1s) will be | ||
- | Pc( i ) | ||
- | | ||
- | | ||
- | | ||
- | |||
- | **b) Averaged phase report mode:** | ||
- | The on-board microprocessor calculates the average of all raw measurements taken during the report interval and reports to the PC at the end of the interval. All raw measurements contribute to the reported result. This helps to reduce measurement noise. Results reported (@ interval 1s) will be | ||
- | | ||
- | | ||
- | | ||
- | | ||
- | |||
- | **c) Phase difference report mode:** | ||
- | Inter-channel phase differences Pc-P1 are reported. These differences are the 'best possible' | ||
- | | ||
- | | ||
- | | ||
- | | ||
- | |||
- | **d) Averaged phase difference report mode:** | ||
- | Inter-channel differences of averaged phase Pc-P1 are reported. Measurements reported (@ interval 1s) will be | ||
- | | ||
- | | ||
- | | ||
- | | ||
- | |||
- | **e) Frequency report mode:** | ||
- | Frequency is Phase advance per time. The on-board microprocessor calculates the difference of the current phase measurement and the measurement taken one report interval earlier, and divides it by the report interval. Measurements reported (@ interval 1s) will be | ||
- | | ||
- | | ||
- | | ||
- | | ||
- | |||
- | **f) Averaged frequency report mode:** | ||
- | Averaged frequency is advance of averaged phase per time. The on-board microprocessor calculates the difference of the currents averaged phase and the averaged phase calculated one report interval earlier. Measurements reported (@ interval 1s) will be | ||
- | | ||
- | | ||
- | | ||
- | | ||
- | |||
- | By just re-arranging these sums you can also write | ||
- | ... = Sum(n=0..999){[Pc(i+n) - Pc(i-1000+n)]/ | ||
- | |||
- | Hence, averaged frequency can be thought of either as ' | ||
- | |||
- | Consequently, | ||
- | |||
- | " | ||
- | ===== Old Counter ===== | ||
- | |||
- | * Possible range: 4kHz - 65MHz | ||
- | * Recommented Input: 4-17 dBm (1-5V) | ||
- | |||
- | ==== Program ==== | ||
- | |||
- | Default Settings: 8 Com Ports\\ | ||
- | Trimmer: Auto Trimmer\\ | ||
- | Measurement Method: Phase\\ | ||
- | |||
- | ==== Intervall length ==== | ||
- | You can change the length of the // | ||
- | * Range: ~1 ms - 1 s | ||
- | * For shorter length [shortest: 1ms] the memory would fill up very fast. | ||
- | * Don´t forget to adapt the length in the program // | ||
- | |||
- | ==== Start a measurement ==== | ||
- | Push buttons before measurement to erase RAM: | ||
- | - //Clear Buffer// | ||
- | - Rename the data file in KK_FXE Folder | ||
- | - Start new measurement via " | ||
- | |||
- | |||
- | {{: | ||
- | |||
- | === For understanding and communication with PTB === | ||
- | |||
- | {{: |