CAL U100B CAL U100B CDN M016 CAL U100B CDN M016 CAL U100B. Used as M2 CDN. Used as M3 CDN
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1 out < +0 out < +0 ch. < +0 ch. < +0 ch. < +7 ch. < +0 ch. < +0 ch. < +7 LL LL nd nd Test setup calibration with a CDN The calibration setup always refers to the type of CDN. The CDN user manuals and the Control Program show the required setup. (Immunity Menu / Global setup / Show test setup pictures). Examples for the system calibration of CDN M0 and CDN S are shown in the following figures: Used as M CDN db Switch position M Compact generator CAL U00B 0 Ω / 0 Ω adapter CDN M0 CAL U00B 0 Ω / 0 Ω adapter 0 Ω 00 Ω Port 00 Ω Termination SAR M00 adapter ch. Used as M CDN db Switch position M Compact generator CAL U00B 0 Ω / 0 Ω adapter CDN M0 CAL U00B 0 Ω / 0 Ω adapter 0 Ω 00 Ω Port 00 Ω Termination SAR M00 adapter SAR MA adapter ch. Figure : Test setup calibration with CDN M0 (switchable M / M) CAL U00B SAR M00 Port SAR MA CAL U00B 0 Ω load 00 Ω PE N L CDN M0 M PE N L 00 Ω CAL U00B SAR M00 Port SAR M00 CAL U00B 0 Ω load 00 Ω PE N L CDN M0 M PE N L 00 Ω Figure : Setup details with CDN M0 B
2 out < +0 ch. < +0 ch. < +0 ch. < +7 out < +0 ch. < +0 ch. < +0 ch. < +7 LL LL nd nd db Compact generator No load or adapter required CDN S Port 00 Ω CAL U00B 0 Ω / 0 Ω adapter Common-mode adapter ch. Figure 7: Test setup calibration with CDN S 8... test setup with CDN After calibration the calibration adapter has to be removed from the setup. The must be connected through the CDN. One general example for the test setup with is shown below: Compact generator db attenuator CDN Port Insulating Figure 8: Test setup with 8-00 E07
3 < +0 < +0 ch. < +0 ch. < +0 ch. < +7 ch. < +0 ch. < +0 ch. < +7 EM clamp / EM-Koppelzange KEMZ 80A EM clamp / EM-Koppelzange KEMZ 80A Test setup calibration with EM clamp The is connected via a db attenuator to the port of the EM clamp. The port of the EM clamp is connected with a 0 Ω to 0 Ω adapter to power meter channel. The port is terminated with 0 Ω. Both adapters need to be connected with the supplied cable of the calibration jig. The clamp needs to be clicked on this cable. The setup for the system calibration is shown in figure below: Compact generator out LL nd db attenuator Termination 0 Ω 00 Ω -side KEMZ 80A -side 00 Ω Reference ground plane CAL 80A adapter set Figure : Test setup calibration according IEC / EN with EM clamp test setup with EM clamp After calibration the 0 Ω to 0 Ω adapter / 0 Ω load has to be removed from the setup. The must be connected through the EM clamp. One general example for the test setup with is shown below: Compact generator out LL nd db attenuator -side KEMZ 80A -side Insulating Reference ground plane Insulating Figure 0: Test setup with according IEC / EN with EM clamp B
4 out < +0 out < +0 ch. < +0 ch. < +0 ch. < +7 ch. < +0 ch. < +0 ch. < +7 EM clamp / EM-Koppelzange KEMZ 80A LL LL nd nd The test setup with using the monitoring probe is shown below. Compact generator db attenuator -side KEMZ 80A -side Insulating Reference ground plane Monitoring probe MD 070 Insulating Figure : Test setup with according IEC / EN with EM clamp and monitoring probe 8... Test setup calibration with current injection probe (0 Ω system) The test generator is connected via db attenuator to the port of the current injection probe. The probe is inserted in a 0 Ω jig. The jig is connected with a 0 Ω to 0 Ω adapter to a power meter with 0 Ω input impedance. The other side of the jig is terminated with 0 Ω. The setup for the system calibration is shown in the figure below: Compact generator ch. 0 Ω termination 0/0 Ω adapter db attenuator Calibration jig Current injection probe Figure : Test setup calibration according IEC / EN with current injection probe 8-00 E07
5 out < +0 out < +0 ch. < +0 ch. < +0 ch. < +7 ch. < +0 ch. < +0 ch. < +7 LL nd LL nd Test setup calibration with current injection probe (0 Ω system) The test generator is connected via db attenuator to the port of the current injection probe. The probe is inserted in a 0 Ω jig. The jig is connected to a power meter channel. The other side of the jig is terminated with 0 Ω. All IEC / EN setups of the are based on the 0 Ω. A conversion factor of -. db is needed because of the 0 Ω to 0 Ω relation. For calibrating in a 0 Ω system is needed to add -. db as additional attenuation. Test levels of 0 EMF may require an additional attenuator of 0 or 0 db. The resultant factor should be used (Example: 0 db -. db = 0. db). See chapter.. if using the front panel operation of the or...7 if using the Windows software. The setup is shown in the figure below: Compact generator 0 Ω termination ch. db attenuator Calibration jig Current injection probe Figure : Test setup calibration with current injection probe in a 0 Ω system The following figure shows the use of internal and external amplifier ( MIXED mode) for having an extended frequency range. Switch (part of SW 070) output User port ch. stress level ch. forward power ch. reverse power B A Interlock amplifier input amplifier outputs A B 0 Ω Termination DIRECTIONAL COUPLER Switch (part of SW 070) Calibration jig Current injection probe db attenuator Figure : Test setup calibration with current injection probe in a 0 Ω system, amps B
6 < +0 ch. < +0 ch. < +0 ch. < +7 < +0 ch. < +0 ch. < +0 ch. < test setup with current injection probe After calibration the jig and the adapters must be removed from the setup. The must be connected through the current injection probe. A general example for the test setup with is shown below: Compact generator out LL nd Insulating Current injection probe Insulating Figure : Test setup with according IEC / EN with current injection probe The test setup with using the monitoring probe is shown below. Compact generator meter ch. out LL nd Insulating Monitoring probe Current injection probe Insulating Figure : Test setup with according IEC / EN with current injection probe and monitoring probe 8-00 E07
7 out < +0 out < +0 ch. < +0 ch. < +0 ch. < +7 ch. < +0 ch. < +0 ch. < +7 LL LL nd nd 8... Calibration of the monitoring probe Teseq recommends using the MD 070 monitoring probe due to the operating range of the power meter. The active mode of MD 070 allows also the operation with low stress levels. Details given in Table. The active mode requires to connect the power supply with the MD 070. Using the whole dynamic range requires to calibrate the MD 070 in the active and passive mode. The remote controlled switching requires connection with the user port. The probe calibration measures the insertion loss in a 0 Ω system. CAUTION: Using power amplifiers with more than 00 Watts requires to protect power meter channel with an attenuator of at least 0 db. Compact generator ch. Termination 0 Ω Calibration jig Monitoring probe Figure 7: Calibration setup of the monitoring probe The calibration setup for the monitoring probe with an external power amplifier is shown below. output ch. response power ch. forward power ch. n. c. 0 Ω Termination amplifier input Output DIRECTIONAL COUPLER Directional coupler Calibration jig Monitoring probe Figure 8: Calibration setup of the monitoring probe with external power amplifier and directional coupler B
8 out < +0 ch. < +0 ch. < +0 ch. < +7 LL nd 8... Setup with external power amplifier and directional coupler An external power amplifier can be connected to the as shown in the general example below. An external power amplifier requires always an external directional coupler regardless of the type of used. For the combination internal and external amplifier is needed the optionally available switch SW 070. A setup is shown in figure. 7 output 0 Ω ch. calibration level/ monitoring probe ch. forward power ch. reverse power amplifier input From cal. adapter/ monitoring probe DIRECTIONAL COUPLER DCP Output To coupling device Directional coupler Figure : Setup with external power amplifier and directional coupler 8-00 E07
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