TEST REPORT. Test report no.: /09. Test standard/s. Test item

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1 TEST REPORT Test report no.: /9 Testing laboratory pplicant Digi International GmbH Branch Breisach Kueferstr Breisach / Germany Phone: -/Fax: Contact: ndreas Ortlieb andreas.ortlieb@digi.com Phone: CETECOM ICT Services GmbH Untertuerkheimer Strasse Saarbruecken / Germany Phone: Fax: Internet: ict@cetecom.com ccredited test laboratory: The test laboratory (area of testing) is accredited according to DIN EN ISO/IEC 725 DR registration number: DG-PL-76/94-D Manufacturer Digi International GmbH Branch Breisach Kueferstr Breisach / Germany rea of Testing: Radio/Satellite Communications Test standard/s rib T66 特定無線設備の技術基準適合証明等に関する規則 Ordinance concerning Technical Regulations Conformity Certification etc. of Specified Radio Equipment rticle 2 clause () Item (9) (2) For further applied test standards please refer to section 3 of this test report. Test item Kind of test item: WLN Modul Model name: ConnectCore Wi-i.Mx5 Frequency [MHz]: ISM band 247 MHz to 2497 MHz (Channel MHz) Power supply: V C by C/DC power supply Temperature range: -2 C to +55 C This test report is electronically signed and valid without handwriting signature. For verification of the electronic signatures, the public keys can be requested at the testing laboratory. Test performed: cn=marco Bertolino, o=cetecom ICT Services GmbH, ou=btl-826, =marco.bertolino@cetecom.com, c=de :6:39 +'' Marco Bertolino Test report authorised: cn=ndreas Keller, o=cetecom ICT Services GmbH, ou=kll-83, =ndreas.keller@cetecom.com, c=de ::4 +'' ndreas Keller Page of 83

2 Table of contents Table of contents General information Notes pplication details Test standard/s Test environment Test item Cabinet Test laboratories sub-contracted Summary of measurement results RF measurement testing Description of test setup Radiated measurements Conducted measurements dditional comments Transmitter test results ntenna gain Maximum output power (conducted) / data rate ntenna power (conducted) & tolerance of antenna power Frequency tolerance Modulation method Spurious emission intensity - conducted Spurious emissions intensity - radiated Occupied & spreading bandwidth Spreading factor Staying time Dwell time Receiver limit of secondarily emitted radio wave strength - conducted Receiver limit of secondarily emitted radio wave strength - radiated Interference prevention function Carrier sensing function Enclosure requirements Test equipment and ancillaries used for tests...6 nnex nnex B nnex C Photographs of the test setup...63 External photographs of the EUT...68 Internal photographs of the EUT...79 nnex D Document history...83 nnex E Further information Page 2 of 83

3 2 General information 2. Notes The test results of this test report relate exclusively to the test item specified in this test report. CETECOM ICT Services GmbH does not assume responsibility for any conclusions and generalisations drawn from the test results with regard to other specimens or samples of the type of the equipment represented by the test item. The test report may only be reproduced or published in full. Reproduction or publication of extracts from the report requires the prior written approval of CETECOM ICT Services GmbH. This test report is electronically signed and valid without handwriting signature. For verification of the electronic signatures, the public keys can be requested at the testing laboratory. 2.2 pplication details Date of receipt of order: Date of receipt of test item: Start of test: End of test: Person(s) present during the test: -/- 3 Test standard/s Test standard Version Test standard description 特定無線設備の技術基準適合証明等に関する規則 Ordinance concerning Technical Regulations Conformity Certification etc. of Specified Radio Equipment rticle 2 clause () Item (9) (2) rib T66 -/- Ordinance Regulating Radio Equipment 無線設備規則 Ordinance Regulating Radio Equipment Chapter I General Provision Chapter II Transmitting Equipment Chapter III Receiving Equipment Chapter IV, Section 4.7, rticle Test environment Temperature: T nom T max T min +24 C during room temperature tests +55 C during high temperature test -2 C during low temperature test Relative humidity content: 6 % ir pressure: Power supply: V nom V max V min not relevant for this kind of testing V C by C/DC power supply V 9 V Page 3 of 83

4 5 Test item Kind of test item : WLN Modul Type identification : Connect Core Wi-i.Mx5 S/N serial number : Prototype HW hardware status : No information available! SW software status : No information available! ISM band 247 MHz to 2497 MHz Frequency band [MHz] : (Channel MHz) Type of modulation : DSSS and OFDM technology with BPSK, QPSK, 6-& 64 QM modulation Number of channels : 4 (channel to 3 are tested in a separate test report: /9) ntenna : External rod antenna for more information, please take a look at the annex B external photos of the EUT. Power supply : V C by C/DC power supply Temperature range : -2 C to +55 C 5. Cabinet Evaluation board: Size Weight Cabinet 2. cm * 8.5 cm * 2.5 cm 5.83 g without WLN module No cabinet! (see photos for details) Module: Size Weight Cabinet 8.2 cm * 5. cm *.8 cm g No cabinet! (see photos for details) 6 Test laboratories sub-contracted None Page 4 of 83

5 7 Summary of measurement results No deviations from the technical specifications were ascertained There were deviations from the technical specifications ascertained TC identifier Description verdict date Remark 特定無線設備の技術基準適合証明等に関する規則 Ordinance concerning Technical Regulations Conformity Certification etc. of Specified Radio Equipment rticle 2 clause () Item (9) (2) RF-Testing Ordinance Regulating Radio Equipment 無線設備規則 Ordinance Regulating Radio Equipment Chapter I General Provision Chapter II Transmitting Equipment Chapter III Receiving Equipment Chapter IV, Section 4.7, rticle Pass /- Test Specification Clause 8. Test Case temperature conditions power source voltages ntenna gain Nominal Nominal DSSS Mode Pass Fail N NP Remark 8.2 ntenna power (conducted) & tolerance of antenna power Nominal Nominal Nominal Nominal Low High DSSS OFDM DSSS OFDM DSSS OFDM Frequency tolerance Nominal Nominal Modulation method Nominal Nominal DSSS OFDM DSSS OFDM 8.5 Spurious emission intensity - conducted Nominal Nominal DSSS OFDM 8.6 Spurious emission intensity - radiated Nominal Nominal DSSS OFDM 8.5 Occupied & spreading bandwidth Nominal Nominal DSSS OFDM 8.8 Spreading factor Nominal Nominal -/- 8.9 Staying time Nominal Nominal DSSS OFDM Page 5 of 83

6 8. 8. Receiver limit of secondarily emitted radio wave strength conducted Receiver limit of secondarily emitted radio wave strength - radiated Nominal Nominal -/- Nominal Nominal -/- 8.2 Control equipment Nominal Nominal -/- 8.3 Connection to telecommunications carrier s facilities Nominal Nominal -/- Note: N = Not applicable; NP = Not performed Page 6 of 83

7 8 RF measurement testing 8. Description of test setup 8.. Radiated measurements The radiated emissions from the EUT are performed in a fully anechoic chamber. The EUT is placed on a non conductive turntable and powered with nominal voltage. The signalling is performed either from outside the chamber with a signalling unit (P or other) by air link using a signalling antenna or directly by special test software from the customer. Fully anechoic chamber shielded fully anechoic chamber control room signalling antenna direction of rotation - elevation equipment under test measurement distance 3m amplifier horn antenna audio system turntable & antenna controller generator EMI pre-selector supply panel turntable loop antenna signalling units for the EUT CMU 2 direction of rotation - azimuth Picture : Diagram radiated measurements tri-log antenna CBT The signalling units are dependent on the EUT. Further units are Laptops; Router 9 khz - 3 MHz: active loop antenna 3 MHz - GHz: tri-log antenna >GHz: horn antenna OT chamber: The Rectangular Chamber consists of a shielded enclosure constructed of rigid steel panels. The chamber is treated with pyramidal and wedge shaped absorbers. Lighting in the chamber is RF-filtered and consists of four incandescent lamps mounted in recessed waveguide vents in the chamber ceiling. single leaf swing type shielded door is provided for equipment and personal access into the chamber. The nechoic Rectangular Chamber is capable of meeting RF attenuation level better than db throughout the frequency range of 7 MHz to 8 GHz, so that testing performed within the chamber does not interfere with other testing activities at the facility and vice versa. Power is supplied on separate circuits to the chamber and control area. ll power filters provide a minimum of db attenuation over a frequency range of 4 khz to 8 GHz if tested per MIL STD Page 7 of 83

8 Network nalyzer Spectrum nalyzer Multi-xis Positioning System (MPS) Base-Station Simulator Step ttenuator Dual Polarized Measurement ntenna ntenna Under Test (UT) Interferer Generator Relay Switch Unit PC running measurement SW Comm nt. Walkway GPIB-Bus MPS Controller Fiber Optics for MPS system Penetration Panel Measurement ntenna Comm. ntenna Door Positioner Phi bsorber Light Duty Positioner Theta DUT Page 8 of 83

9 8..2 Conducted measurements The EUT s RF signal is coupled out by the antenna connector which is supplied by the manufacturer. The signal is first db attenuated before it is power divided (~6dB loss per branch). One of the signal paths is connected to the signalling unit (P or other), the other one is connected to the spectrum analyzer. The specific losses for both signal paths are first checked within a calibration. The measurement readings on the signalling unit/spectrum analyzer are corrected by the specific test set-up loss. The attenuator, power divider, signalling unit and the spectrum analyzer are impedance matched on 5 Ohm. If special software is used, there is no power divider necessary. Picture 2: Diagram conducted measurements The term measuring receiver refers to either a selective voltmeter or a spectrum analyser. Frequency being measured f Measuring receiver bandwidth 6 db Spectrum analyser bandwidth 3dB f < 5 khz 2 Hz or 3 Hz 5 khz f < 25 MHz 9 khz or khz 25 MHz f < MHz 2 khz or khz MHz f MHz NOTE: Specific requirements in CEPT/ERC/Recommendation 7-3 [2] shall be applied where applicable. 8.2 dditional comments Provided channels: 242 MHz, 247 MHz, 2422 MHz, 2427 MHz, 2432 MHz, 2437 MHz, 2442 MHz, 2447 MHz, 2452 MHz, 2457 MHz, 2462 MHz, 2467 MHz, 2472 MHz, 2484 MHz Page 9 of 83

10 8.3 Transmitter test results 8.3. ntenna gain The antenna gain is calculated by the difference of radiated power in EIRP and the conducted power of the module. Caused by the large emission bandwidth of more than MHz the gain is by comparing the measurement results of the radiated and conducted measurement using a RBW of MHz. So these results don t reflect the total radiated power of the EUT. Results: Detector: Sweep time: Resolution bandwidth: Video bandwidth: Span: Trace-Mode: dditional EUT parameters: Measurement parameter RMS 2s MHz 3 MHz Zero span Max Hold Test mode (modulated carrier) DSSS modulation used Max power Conducted peak power [dbm] DSSS (measured) Radiated peak power [dbm] DSSS (measured)eirp*) Gain [dbi] calculated channel MHz -/- -/ /- -/ /- -/ /- -/- *) max found peak (see nnex ntenna Diagram) Limit: Limit ntenna Gain Measured Max gain [dbi]: only applicable if radiated peak power exceeds 2.4 dbm EIRP using none-directional antenna: No using directional antenna: Yes Calculated ntenna Factor [db]= Max gain- 2.4dB [db]: Calculated ntenna Factor [lin]= ^( [db]/] : Max allowed ntenna opening angle (sum 3dB) [ ] Verdict Result: The result of the measurement is passed. Max 2.4 dbi No opening angle calculation needed the maximum radiated output power is below the 2.4 dbm EIRP limit! Page of 83

11 Plots: Plot : ntenna diagram channel 4 (vertical) all values are in dbm Theta zimuth =.2 Elevation = -4.7 Roll = -6.6 Y 2 - Z X P o w e r (d B m ) Plot 2: ntenna diagram channel 4 (horizontal) all values are in dbm Phi zimuth = -.2 Elevation =.5 Roll = Y 4 2 Z X P o w er (d B m ) Page of 83

12 Plot 3: ntenna diagram channel 4 (vertical & horizontal vectorial summation) all values are in dbm Total zimuth = -.2 Elevation = -.5 Roll = Y Z X P ower (dbm ) Page 2 of 83

13 8.4 Maximum output power (conducted) / data rate Description: Measurement of the maximum output power conducted. This measurement is performed only at the middle channel in both modes and all data rates to determine the data rate per mode which results in the highest output power. This mode will be selected for all further measurements. The used measurement settings are for the data rate verification only and not a passed / fail criteria. Measurement: Detector: Sweep time: Video bandwidth: Resolution bandwidth: Span: Trace-Mode: Measurement parameter Peak uto 3 MHz 5 MHz MHz Max Hold Results: DSSS Maximum Output Power Conducted [dbm] Data Rate [MBit/s] Ch MHz Measurement uncertainty ±.5 db OFDM Maximum Output Power Conducted [dbm] Data Rate [MBit/s] Ch MHz Measurement uncertainty ±.5 db OFDM Maximum Output Power Conducted [dbm] Data Rate [MBit/s] MCS MCS MCS 2 MCS 3 MCS 4 MCS 5 MCS 6 MCS 7 Ch MHz Measurement uncertainty ±.5 db Result: Selected data rate for all measurements: DSSS: MBit/s OFDM g mode: 24 MBit/s OFDM n mode: MCS Page 3 of 83

14 Plot : DSSS mode, MBit/s, channel 6, power index 45 Ref 3 dbm * tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 5.3 dbm GHz 3 Offset 2. db PK MXH DB Center GHz MHz/ Span MHz Date: 5.OCT.2 :6:58 Plot 2: DSSS mode, 2 MBit/s, channel 6, power index 45 Ref 3 dbm * tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 5.32 dbm GHz 3 Offset 2. db PK MXH DB Center GHz MHz/ Span MHz Date: 5.OCT.2 :8: Page 4 of 83

15 Plot 3: DSSS mode, 5.5 MBit/s, channel 6, power index 45 Ref 3 dbm * tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 5.38 dbm GHz 3 Offset 2. db PK MXH DB Center GHz MHz/ Span MHz Date: 5.OCT.2 :9:2 Plot 4: DSSS mode, MBit/s, channel 6, power index 45 Ref 3 dbm * tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 5.39 dbm GHz 3 Offset 2. db PK MXH DB Center GHz MHz/ Span MHz Date: 5.OCT.2 :2: Page 5 of 83

16 Plot 5: OFDM, g mode, 6 MBit/s, channel 6, power index 45 Ref 35 dbm * tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 8.4 dbm GHz 3 Offset 2. db PK MXH DB Center GHz MHz/ Span MHz Date: 5.OCT.2 8:55:4 Plot 6: OFDM, g mode, 9 MBit/s, channel 6, power index 45 Ref 35 dbm * tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 8.3 dbm GHz 3 Offset 2. db PK MXH DB Center GHz MHz/ Span MHz Date: 5.OCT.2 8:56: Page 6 of 83

17 Plot 7: OFDM, g mode, 2 MBit/s, channel 6, power index 45 Ref 35 dbm * tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 8.6 dbm GHz 3 Offset 2. db PK MXH DB Center GHz MHz/ Span MHz Date: 5.OCT.2 8:57:24 Plot 8: OFDM, g mode, 8 MBit/s, channel 6, power index 45 Ref 35 dbm * tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 8.2 dbm GHz 3 Offset 2. db PK MXH DB Center GHz MHz/ Span MHz Date: 5.OCT.2 8:58: Page 7 of 83

18 Plot 9: OFDM, g mode, 24 MBit/s, channel 6, power index 45 Ref 35 dbm * tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 8.7 dbm GHz 3 Offset 2. db PK MXH DB Center GHz MHz/ Span MHz Date: 5.OCT.2 9::33 Plot : OFDM, g mode, 36 MBit/s, channel 6, power index 45 Ref 35 dbm * tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 8. dbm GHz 3 Offset 2. db PK MXH DB Center GHz MHz/ Span MHz Date: 5.OCT.2 9:: Page 8 of 83

19 Plot : OFDM, g mode, 48 MBit/s, channel 6, power index 45 Ref 35 dbm * tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 8.6 dbm GHz 3 Offset 2. db PK MXH DB Center GHz MHz/ Span MHz Date: 5.OCT.2 9:2:34 Plot 2: OFDM, g mode, 54 MBit/s, channel 6, power index 45 Ref 35 dbm * tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 8.9 dbm GHz 3 Offset 2. db PK MXH DB Center GHz MHz/ Span MHz Date: 5.OCT.2 9:3: Page 9 of 83

20 Plot 3: OFDM, n mode, MCS, channel 6, power index 45 Ref 3 dbm *tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 9.9 dbm GHz 3 Offset.5 db 2 PK MXH DB Center GHz MHz/ Span MHz Date: 6.DEC.2 3:7:6 Plot 4: OFDM, n mode, MCS, channel 6, power index 45 Ref 3 dbm *tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 9.4 dbm GHz 3 Offset.5 db 2 PK MXH DB Center GHz MHz/ Span MHz Date: 6.DEC.2 3:7: Page 2 of 83

21 Plot 5: OFDM, n mode, MCS 2, channel 6, power index 45 Ref 3 dbm *tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 9.28 dbm GHz 3 Offset.5 db 2 PK MXH DB Center GHz MHz/ Span MHz Date: 6.DEC.2 3:8:3 Plot 6: OFDM, n mode, MCS 3, channel 6, power index 45 Ref 3 dbm *tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 8.92 dbm GHz 3 Offset.5 db 2 PK MXH DB Center GHz MHz/ Span MHz Date: 6.DEC.2 3:9: Page 2 of 83

22 Plot 7: OFDM, n mode, MCS 4, channel 6, power index 45 Ref 3 dbm *tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 9.8 dbm GHz 3 Offset.5 db 2 PK MXH DB Center GHz MHz/ Span MHz Date: 6.DEC.2 3:9:42 Plot 8: OFDM, n mode, MCS 5, channel 6, power index 45 Ref 3 dbm *tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 9.25 dbm GHz 3 Offset.5 db 2 PK MXH DB Center GHz MHz/ Span MHz Date: 6.DEC.2 3:2: Page 22 of 83

23 Plot 9: OFDM, n mode, MCS 6, channel 6, power index 45 Ref 3 dbm *tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 9.5 dbm GHz 3 Offset.5 db 2 PK MXH DB Center GHz MHz/ Span MHz Date: 6.DEC.2 3:2: Plot 2: OFDM, n mode, MCS 7, channel 6, power index 45 Ref 3 dbm *tt 5 db * RBW 5 MHz * VBW 3 MHz SWT 2.5 ms Marker [T ] 9.29 dbm GHz 3 Offset.5 db 2 PK MXH DB Center GHz MHz/ Span MHz Date: 6.DEC.2 3:22: Page 23 of 83

24 8.4. ntenna power (conducted) & tolerance of antenna power Measurement parameter: Detector: Sweep time: Resolution bandwidth: Video bandwidth: Trace-Mode: dditional EUT parameters: Results: DSSS / b mode, power index 45, Mbit/s Measurement parameter RMS 2s MHz 3 MHz Zero span Test mode Power index 45 Technology / Frequency Temperature /Voltage conditions Output power conducted DSSS 2484 MHz T nom / V nom /- T nom / V nom -/- -/- T nom / V nom -/- DSSS 2484 MHz T high / V low.4 -/- T high / V low -/- -/- T high / V low -/- DSSS 2484 MHz T high / V high.7 -/- T high / V high -/- -/- T high / V high -/- DSSS 2484 MHz T low / V low 4.9 -/- T low / V low -/- -/- T low / V low -/- DSSS 2484 MHz T low / V high /- T low / V high -/- -/- T low / V high -/ Page 24 of 83

25 Results: OFDM / g mode, power index 7, 24 Mbit/s Technology / Frequency Temperature /Voltage conditions Output power conducted OFDM 2484 MHz T nom / V nom -.4 -/- T nom / V nom -/- -/- T nom / V nom -/- OFDM 2484 MHz T high / V low /- T high / V low -/- -/- T high / V low -/- OFDM 2484 MHz T high / V high /- T high / V high -/- -/- T high / V high -/- OFDM 2484 MHz T low / V low.94 -/- T low / V low -/- -/- T low / V low -/- OFDM 2484 MHz T low / V high.97 -/- T low / V high -/- -/- T low / V high -/ Page 25 of 83

26 Results: OFDM / n mode, power index 45, MCS 7 Technology / Frequency Temperature /Voltage conditions Output power conducted OFDM 2484 MHz T nom / V nom -.6 -/- T nom / V nom -/- -/- T nom / V nom -/- OFDM 2484 MHz T high / V low /- T high / V low -/- -/- T high / V low -/- OFDM 2484 MHz T high / V high /- T high / V high -/- -/- T high / V high -/- OFDM 2484 MHz T low / V low.92 -/- T low / V low -/- -/- T low / V low -/- OFDM 2484 MHz T low / V high.92 -/- T low / V high -/- -/- T low / V high -/- ll detected values are within +2 % and -8 % of the rated power values of each technology! Limit: Limit max. mw/mhz / dbm/mhz Result: The result of the measurement is passed Page 26 of 83

27 8.4.2 Frequency tolerance Measurement parameter: Detector: Sweep time: Resolution bandwidth: Video bandwidth: Trace-Mode: dditional EUT parameters: Measurement parameter Peak uto khz khz Max Hold Test mode Power index 45 The results are valid for all technologies DSSS and OFDM mode! Both modes use the same oscillator! Results (normal temperature / normal voltage): channel 4 f TX = 2484 MHz -/- -/- Frequency offset [khz].5 -/- -/- Offset [ppm] related to f TX.6 -/- -/- Results (high temperature / low voltage): channel 4 f TX = 2484 MHz -/- -/- Frequency offset [khz] /- -/- Offset [ppm] related to f TX /- -/- Results (high temperature / high voltage): channel 4 f TX = 2484 MHz -/- -/- Frequency offset [khz] /- -/- Offset [ppm] related to f TX /- -/ Page 27 of 83

28 Results (low temperature / low voltage): channel 4 f TX = 2484 MHz -/- -/- Frequency offset [khz] 5.9 -/- -/- Offset [ppm] related to f TX 6.4 -/- -/- Results (low temperature / high voltage): channel 4 f TX = 2484 MHz -/- -/- Frequency offset [khz] 5.8 -/- -/- Offset [ppm] related to f TX 6.4 -/- -/- Limit & Verdict: Limit < 5ppm Result: The result of the measurement is passed Page 28 of 83

29 8.4.3 Modulation method DSSS technology with BPSK and QPSK modulation. OFDM technology with BPSK, QPSK, 6 QM and 64 QM modulation. Result: The result of the measurement is passed Page 29 of 83

30 8.4.4 Spurious emission intensity - conducted Measurement parameter: Results: Detector: Sweep time: Resolution bandwidth: Video bandwidth: Span: Trace-Mode: dditional EUT parameters: Measurement parameter Positive peak s / s / 2s f <= GHz f > GHz f <= GHz f > GHz See limit! : MHz : MHz : khz : khz Max Hold Test mode (modulated carrier) DSSS used OFDM used Max power DSSS / b mode Found peaks: channel 4 f TX = 2484 MHz -/- -/- F [MHz] Level [dbm] F [MHz] Level [dbm] F [MHz] Level [dbm] No critical peaks found (see plots). -/- -/- -/- -/- OFDM / g mode Found peaks: channel 4 f TX = 2484 MHz -/- -/- F [MHz] Level [dbm] F [MHz] Level [dbm] F [MHz] Level [dbm] No critical peaks found (see plots). -/- -/- -/- -/- OFDM / n mode Found peaks: channel 4 f TX = 2484 MHz -/- -/- F [MHz] Level [dbm] F [MHz] Level [dbm] F [MHz] Level [dbm] No critical peaks found (see plots). -/- -/- -/- -/- Limit: Limit 3 MHz <= f < 2458 MHz: 2.5uW (-26 dbm) 2458 MHz <= f < 247 MHz: 25uW (-6 dbm) 2497 MHz < f <= 25 MHz: 25uW (-6 dbm) 25 MHz > f and 25 MHz < f : 2.5uW (-26 dbm) Result: The result of the measurement is passed Page 3 of 83

31 Plots: DSSS / b mode Plot : TX mode, channel 4, 3 MHz to GHz Ref dbm Offset.9 db * RBW MHz * VBW khz * tt 2 db * SWT s Marker [T ] dbm MHz PK MXH D dbm Start 3 MHz 97 MHz/ Stop GHz Date: 2.FEB.2 5:8:4 Plot 2: TX mode, channel 4, GHz to 2458 MHz Ref dbm Offset.4 db * RBW MHz * VBW khz *tt 2 db *SWT 3 s Marker [T ] dbm GHz PK MXH D dbm Start GHz 45.8 MHz/ Stop GHz Date: 2.FEB.2 5:22: Page 3 of 83

32 Plot 3: TX mode, channel 4, 2458 MHz to 247 MHz * RBW MHz * VBW khz Ref dbm * tt 2 db *SWT s Offset.4 db Marker [T ] dbm GHz PK MXH - D -6.2 dbm Start GHz.3 MHz/ Stop 2.47 GHz Date: 2.FEB.2 5:28:6 Plot 4: TX mode, channel 4, 2497 MHz to 25 MHz * RBW MHz * VBW khz Ref dbm * tt 2 db *SWT s Offset.4 db Marker [T ] dbm GHz PK MXH - D -6.2 dbm Start GHz.3 MHz/ Stop 2.5 GHz Date: 2.FEB.2 5:28: Page 32 of 83

33 Plot 5: TX mode, channel 4, 25 MHz to 25 MHz Ref dbm Offset 3 db * RBW MHz * VBW khz *tt 2 db *SWT s Marker [T ] dbm GHz PK MXH D dbm Start 2.5 GHz 999 MHz/ Stop 2.5 GHz Date: 2.FEB.2 5:4: Page 33 of 83

34 Plots: OFDM / g mode Plot : TX mode, channel 4, 3 MHz to GHz Ref dbm Offset.9 db * RBW MHz * VBW khz * tt 2 db * SWT s Marker [T ] dbm MHz PK MXH D dbm Start 3 MHz 97 MHz/ Stop GHz Date: 2.FEB.2 5:9:2 Plot 2: TX mode, channel 4, GHz to 2458 MHz Ref dbm Offset.4 db * RBW MHz * VBW khz *tt 2 db *SWT 3 s Marker [T ] dbm GHz PK MXH D dbm Start GHz 45.8 MHz/ Stop GHz Date: 2.FEB.2 5:23: Page 34 of 83

35 Plot 3: TX mode, channel 4, 2458 MHz to 247 MHz * RBW MHz * VBW khz Ref dbm * tt 2 db *SWT s Offset.4 db Marker [T ] -39. dbm 2.47 GHz PK MXH - D -6.2 dbm Start GHz.3 MHz/ Stop 2.47 GHz Date: 2.FEB.2 5:27:5 Plot 4: TX mode, channel 4, 2497 MHz to 25 MHz * RBW MHz * VBW khz Ref dbm * tt 2 db *SWT s Offset.4 db Marker [T ] dbm GHz PK MXH - D -6.2 dbm Start GHz.3 MHz/ Stop 2.5 GHz Date: 2.FEB.2 5:29: Page 35 of 83

36 Plot 5: TX mode, channel 4, 25 MHz to 25 MHz Ref dbm Offset 3 db * RBW MHz * VBW khz *tt 2 db *SWT s Marker [T ] dbm GHz PK MXH D dbm Start 2.5 GHz 999 MHz/ Stop 2.5 GHz Date: 2.FEB.2 5:38:36 Plots: OFDM / n mode Plot : TX mode, channel 4, 3 MHz to GHz Ref dbm Offset.9 db * RBW MHz * VBW khz * tt 2 db * SWT s Marker [T ] dbm MHz PK MXH D dbm Start 3 MHz 97 MHz/ Stop GHz Date: 2.FEB.2 5:2: Page 36 of 83

37 Plot 2: TX mode, channel 4, GHz to 2458 MHz Ref dbm Offset.4 db * RBW MHz * VBW khz *tt 2 db *SWT 3 s Marker [T ] dbm GHz PK MXH D dbm Start GHz 45.8 MHz/ Stop GHz Date: 2.FEB.2 5:23:53 Plot 3: TX mode, channel 4, 2458 MHz to 247 MHz * RBW MHz * VBW khz Ref dbm * tt 2 db *SWT s Offset.4 db Marker [T ] dbm 2.47 GHz PK MXH - D -6.2 dbm Start GHz.3 MHz/ Stop 2.47 GHz Date: 2.FEB.2 5:26: Page 37 of 83

38 Plot 4: TX mode, channel 4, 2497 MHz to 25 MHz * RBW MHz * VBW khz Ref dbm * tt 2 db *SWT s Offset.4 db Marker [T ] dbm GHz PK MXH - D -6.2 dbm Start GHz.3 MHz/ Stop 2.5 GHz Date: 2.FEB.2 5:34:2 Plot 5: TX mode, channel 4, 25 MHz to 25 MHz Ref dbm Offset 3 db * RBW MHz * VBW khz *tt 2 db *SWT s Marker [T ] dbm GHz PK MXH D dbm Start 2.5 GHz 999 MHz/ Stop 2.5 GHz Date: 2.FEB.2 5:37: Page 38 of 83

39 8.4.5 Spurious emissions intensity - radiated Measurement parameter: Results: Detector: Sweep time: Resolution bandwidth: Video bandwidth: Span: Trace-Mode: dditional EUT parameters: Measurement parameter Positive peak uto f <= GHz : khz f > GHz : MHz f <= GHz : khz f > GHz : MHz MHz steps Max Hold Test mode (modulated carrier) Modulation with highest output power used DSSS / b mode Found peaks: OFDM / g mode Found peaks: OFDM / n mode Found peaks: channel 4 f TX = 2484 MHz -/- -/- F [MHz] Level [dbm] F [MHz] Level [dbm] F [MHz] Level [dbm] No critical peaks found. The detected emissions below GHz are a part of the evaluation board and not a part of the EUT. channel 4 f TX = 2484 MHz -/- -/- -/- -/- -/- -/- F [MHz] Level [dbm] F [MHz] Level [dbm] F [MHz] Level [dbm] No critical peaks found. The detected emissions below GHz are a part of the evaluation board and not a part of the EUT. channel 4 f TX = 2484 MHz -/- -/- -/- -/- -/- -/- F [MHz] Level [dbm] F [MHz] Level [dbm] F [MHz] Level [dbm] No critical peaks found. The detected emissions below GHz are a part of the evaluation board and not a part of the EUT. -/- -/- -/- -/- Limit: Limit 3 MHz <= f < 2458 MHz: 2.5uW (-26 dbm) 2458 MHz <= f < 247 MHz: 25uW (-6 dbm) 2497 MHz < f <= 25 MHz: 25uW (-6 dbm) 25 MHz > f and 25 MHz < f : 2.5uW (-26 dbm) Result: The result of the measurement is passed Page 39 of 83

40 Plots: DSSS / b mode, power index 45, Mbit/s Plot : TX mode, channel 4, up to GHz, vertical Cetecom ICT Services GmbH Japan rt. 2 Clause Item 9-2 (TX-Mode) Radiated Emissions 25 M Hz - GHz m p litu d e / d B m M.M.G Frequency / Hz Operator: Bertolino -554_9_TXmode_b-mode_ch4_v ertical.til 8:42:2 M, Wednesday, February 23, 2 Polarisation: Vertical Company: Digi International GmbH Plot 2: TX mode, channel 4, GHz to 2.75 GHz, vertical Cetecom ICT Services GmbH Japan rt. 2 Clause Item 9-2 (TX-Mode) Radiated Emissions GHz - 2,75 GHz m p litu d e / d B m G 2.G 3.G 4.G 5.G 6.G 7.G 8.G 9.G.G.G 2.G Frequency / Hz Operator: Bertolino -554_9_TXmode_b-mode_ch4_v ertical.til 8:44:25 M, Wednesday, February 23, 2 Polarisation: Vertical Company: Digi International GmbH Page 4 of 83

41 Plot 3: TX mode, channel 4, up to GHz, horizontal Cetecom ICT Services GmbH Japan rt. 2 Clause Item 9-2 (TX-Mode) Radiated Emissions 25 M Hz - GHz m p litu d e / d B m M.M.G Frequency / Hz Operator: Bertolino -554_9_TXmode_b-mode_ch4_horizontal.TIL 8:46:3 M, Wednesday, February 23, 2 Polarisation: Horizontal Company: Digi International GmbH Plot 4: TX mode, channel 4, GHz to 2.75 GHz, horizontal Cetecom ICT Services GmbH Japan rt. 2 Clause Item 9-2 (TX-Mode) Radiated Emissions GHz - 2,75 GHz m p litu d e / d B m G 2.G 3.G 4.G 5.G 6.G 7.G 8.G 9.G.G.G 2.G Frequency / Hz Operator: Bertolino -554_9_TXmode_b-mode_ch4_horizontal.TIL 8:48:45 M, Wednesday, February 23, 2 Polarisation: Horizontal Company: Digi International GmbH Page 4 of 83

42 Plots: OFDM / g mode, power index 45, 24 Mbit/s Plot : TX mode, channel 4, up to GHz, vertical Cetecom ICT Services GmbH Japan rt. 2 Clause Item 9-2 (TX-Mode) Radiated Emissions 25 M Hz - GHz m p litu d e / d B m M.M.G Frequency / Hz Operator: Bertolino -554_9_TXmode_g-mode_ch4_v ertical.til 8:53:8 M, Wednesday, February 23, 2 Polarisation: Vertical Company: Digi International GmbH Plot 2: TX mode, channel 4, GHz to 2.75 GHz, vertical Cetecom ICT Services GmbH Japan rt. 2 Clause Item 9-2 (TX-Mode) Radiated Emissions GHz - 2,75 GHz m p litu d e / d B m G 2.G 3.G 4.G 5.G 6.G 7.G 8.G 9.G.G.G 2.G Frequency / Hz Operator: Bertolino -554_9_TXmode_g-mode_ch4_v ertical.til 8:55:27 M, Wednesday, February 23, 2 Polarisation: Vertical Company: Digi International GmbH Page 42 of 83

43 Plot 3: TX mode, channel 4, up to GHz, horizontal Cetecom ICT Services GmbH Japan rt. 2 Clause Item 9-2 (TX-Mode) Radiated Emissions 25 M Hz - GHz m p litu d e / d B m M.M.G Frequency / Hz Operator: Bertolino -554_9_TXmode_g-mode_ch4_horizontal.TIL 8:58:37 M, Wednesday, February 23, 2 Polarisation: Horizontal Company: Digi International GmbH Plot 4: TX mode, channel 4, GHz to 2.75 GHz, horizontal Cetecom ICT Services GmbH Japan rt. 2 Clause Item 9-2 (TX-Mode) Radiated Emissions GHz - 2,75 GHz m p litu d e / d B m G 2.G 3.G 4.G 5.G 6.G 7.G 8.G 9.G.G.G 2.G Frequency / Hz Operator: Bertolino -554_9_TXmode_g-mode_ch4_horizontal.TIL 9::54 M, Wednesday, February 23, 2 Polarisation: Horizontal Company: Digi International GmbH Page 43 of 83

44 Plots: OFDM / n mode, power index 45, MCS7 Plot : TX mode, channel 4, up to GHz, vertical Cetecom ICT Services GmbH Japan rt. 2 Clause Item 9-2 (TX-Mode) Radiated Emissions 25 M Hz - GHz m p litu d e / d B m M.M.G Frequency / Hz Operator: Bertolino -554_9_TXmode_n-mode_ch4_v ertical.til 9:4:42 M, Wednesday, February 23, 2 Polarisation: Vertical Company: Digi International GmbH Plot 2: TX mode, channel 4, GHz to 2.75 GHz, vertical Cetecom ICT Services GmbH Japan rt. 2 Clause Item 9-2 (TX-Mode) Radiated Emissions GHz - 2,75 GHz m p litu d e / d B m G 2.G 3.G 4.G 5.G 6.G 7.G 8.G 9.G.G.G 2.G Frequency / Hz Operator: Bertolino -554_9_TXmode_n-mode_ch4_v ertical.til 9:7:2 M, Wednesday, February 23, 2 Polarisation: Vertical Company: Digi International GmbH Page 44 of 83

45 Plot 3: TX mode, channel 4, up to GHz, horizontal Cetecom ICT Services GmbH Japan rt. 2 Clause Item 9-2 (TX-Mode) Radiated Emissions 25 M Hz - GHz m p litu d e / d B m M.M.G Frequency / Hz Operator: Bertolino -554_9_TXmode_n-mode_ch4_horizontal.TIL 9:9: M, Wednesday, February 23, 2 Polarisation: Horizontal Company: Digi International GmbH Plot 4: TX mode, channel 4, GHz to 2.75 GHz, horizontal Cetecom ICT Services GmbH Japan rt. 2 Clause Item 9-2 (TX-Mode) Radiated Emissions GHz - 2,75 GHz m p litu d e / d B m G 2.G 3.G 4.G 5.G 6.G 7.G 8.G 9.G.G.G 2.G Frequency / Hz Operator: Bertolino -554_9_TXmode_n-mode_ch4_horizontal.TIL 9::9 M, Wednesday, February 23, 2 Polarisation: Horizontal Company: Digi International GmbH Page 45 of 83

46 8.4.6 Occupied & spreading bandwidth Measurement parameter: Measurement parameter Detector: Peak Sweep time: uto Resolution bandwidth: khz Video bandwidth: khz Span: 4 MHz Trace-Mode: Max Hold dditional EUT parameters: Max power Results (normal Voltage): DSSS / b mode channel MHz -/- -/- Occupied Bandwidth [MHz] (2dB Bandwidth) Spreading Bandwidth [MHz] (db Bandwidth) /- -/-.68 -/- -/- Results (normal Voltage): OFDM / g mode channel MHz -/- -/- Occupied Bandwidth [MHz] (2dB Bandwidth) Spreading Bandwidth [MHz] (db Bandwidth) 8.6 -/- -/ /- -/- Results (normal Voltage): OFDM / n mode channel MHz -/- -/- Occupied Bandwidth [MHz] (2dB Bandwidth) Spreading Bandwidth [MHz] (db Bandwidth) 9.4 -/- -/- 8. -/- -/- Limit: Limit Occupied Bandwidth Limit Spreading Bandwidth < 26 MHz > 5 khz Result: The result of the measurement is passed Page 46 of 83

47 Plots: DSSS / b mode, power index 45, Mbit/s Plot : channel 4, db bandwidth Ref dbm *tt 2 db * RBW khz * VBW khz SWT ms Delta 3 [T ].58 db.68 MHz PK VIEW Offset.4 db D dbm Marker [T ] -9.4 dbm GHz Marker 2 [T ].54 dbm GHz Center GHz 4 MHz/ Span 4 MHz Date: 2.FEB.2 5:2:47 Plot 2: channel 4, 2 db bandwidth Ref dbm *tt 2 db * RBW khz * VBW khz SWT ms Delta 3 [T ].69 db 3.68 MHz PK VIEW Offset.4 db - D dbm Marker [T ] dbm GHz Marker 2 [T ].54 dbm GHz Center GHz 4 MHz/ Span 4 MHz Date: 2.FEB.2 5:3: Page 47 of 83

48 Plots: OFDM / g mode, power index 45, 24 Mbit/s Plot : channel 4, db bandwidth Ref dbm *tt 2 db * RBW khz * VBW khz SWT ms Delta 3 [T ].65 db 6.72 MHz PK VIEW Offset.4 db - D dbm 2 Marker [T ] dbm GHz Marker 2 [T ] dbm GHz Center GHz 4 MHz/ Span 4 MHz Date: 2.FEB.2 5:5:3 Plot 2: channel 4, 2 db bandwidth Ref dbm *tt 2 db * RBW khz * VBW khz SWT ms Delta 3 [T ].95 db 8.6 MHz PK VIEW Offset.4 db - 2 Marker [T ] dbm GHz Marker 2 [T ] dbm GHz -2 D dbm Center GHz 4 MHz/ Span 4 MHz Date: 2.FEB.2 5:6: Page 48 of 83

49 Plots: OFDM / n mode, power index 45, MCS7 Plot : channel 4, db bandwidth Ref dbm *tt 2 db * RBW khz * VBW khz SWT ms Delta 3 [T ] -4.8 db 8. MHz PK VIEW Offset.4 db - D dbm 2 Marker [T ] -2.9 dbm GHz Marker 2 [T ] dbm GHz Center GHz 4 MHz/ Span 4 MHz Date: 2.FEB.2 5:7:42 Plot 2: channel 4, 2 db bandwidth Ref dbm *tt 2 db * RBW khz * VBW khz SWT ms Delta 3 [T ].27 db 9.4 MHz PK VIEW Offset.4 db - 2 Marker [T ] dbm GHz Marker 2 [T ] dbm GHz -2 D dbm Center GHz 4 MHz/ Span 4 MHz Date: 2.FEB.2 5:8: Page 49 of 83

50 8.4.7 Spreading factor for devices using WLN Standard Result: The result of the measurement is passed Staying time Not applicable only required for hopping systems Limit: Limit < 4ms Result: The result of the measurement is passed Page 5 of 83

51 8.4.9 Dwell time Measurement parameter: Detector: Sweep time: Resolution bandwidth: Video bandwidth: Span: Trace-Mode: Measurement parameter Positive peak 34 ms / 2.6 ms 3 MHz MHz Zero span View Limit: Limit < 4ms Result: The result of the measurement is passed Page 5 of 83

52 DC correction factor: DSSS / b mode Plot : Timing Ref 2 dbm * tt 5 db RBW 3 MHz *VBW MHz SWT.75 ms Delta 2 [T ] db µs 2 Offset.4 db Marker [T ] dbm µs PK * VIEW DB Center GHz 75 µs/ Date: 2.FEB.2 7: 4: 5 Plot 2: Timing Ref 2 dbm * tt 5 db RBW 3 MHz *VBW MHz SWT.75 ms Delta 2 [T ] 3.86 db µs 2 Offset.4 db Marker [T ] dbm µs PK * VIEW DB Center GHz 75 µs/ Date: 2.FEB.2 7: 4: 26 DC: 95.5 % Page 52 of 83

53 DC correction factor: OFDM / g mode Plot : Timing Ref 2 dbm * tt 5 db RBW 3 MHz *VBW MHz SWT.75 ms Delta 2 [T ] db µs PK * VIEW 2 Offset.4 db 2 Marker [T ] dbm µs DB Center GHz 75 µs/ Date: 2.FEB.2 7: 42: 47 Plot 2: Timing Ref 2 dbm * tt 5 db RBW 3 MHz *VBW MHz SWT.75 ms Delta 2 [T ] db µs 2 Offset.4 db Marker [T ] dbm µs PK * VIEW DB Center GHz 75 µs/ Date: 2.FEB.2 7: 43: 8 DC: 48.5 % Page 53 of 83

54 DC correction factor: OFDM / n mode Plot : Timing Ref 2 dbm * tt 5 db RBW 3 MHz *VBW MHz SWT.75 ms Delta 2 [T ] 64.7 db µs 2 Offset.4 db 2 Marker [T ] dbm µs PK * VIEW DB Center GHz 75 µs/ Date: 2.FEB.2 7: 44: 27 Plot 2: Timing Ref 2 dbm * tt 5 db RBW 3 MHz *VBW MHz SWT.75 ms Delta 2 [T ] 2.4 db µs 2 Offset.4 db Marker [T ] dbm µs PK * VIEW DB Center GHz 75 µs/ Date: 2.FEB.2 7: 44: 45 DC: 2.8 % Page 54 of 83

55 8.4. Receiver limit of secondarily emitted radio wave strength - conducted Measurement parameter: Measurement parameter Detector: Positive peak Sweep time: s / 2s Resolution bandwidth: f <= GHz f > GHz Video bandwidth: f <= GHz f > GHz Span: See limit! Trace-Mode: Max Hold dditional EUT parameters: Idle mode : MHz : MHz : khz : khz Results: Receiver mode F [MHz] No critical peaks found (see plot). Level [dbm] Found peaks: Limit & Verdict: Limit MHz f : 4 nw MHz < f : 2 nw Result: The result of the measurement is passed Page 55 of 83

56 Plots: Plot : Idle mode 3 MHz GHz Ref -2 dbm *tt 5 db * RBW MHz * VBW khz *SWT s Marker [T ] dbm MHz -2 Offset.9 db PK MXH D -54 dbm DB Start 3 MHz 97 MHz/ Stop GHz Date: 2.FEB.2 9:3:5 Plot 2: Idle mode GHz 2.5 GHz Ref -2 dbm -2 Offset 3 db * RBW MHz * VBW khz * tt 5 db *SWT 2 s Marker [T ] dbm GHz PK MXH D -47 dbm DB Start GHz.5 GHz/ Stop 2.5 GHz Date: 2.FEB.2 9:33: Page 56 of 83

57 8.4. Receiver limit of secondarily emitted radio wave strength - radiated Measurement parameter: Measurement parameter Detector: Positive peak Sweep time: uto Resolution bandwidth: f <= GHz f > GHz Video bandwidth: f <= GHz f > GHz Span: MHz steps Trace-Mode: Max Hold dditional EUT parameters: Idle mode : khz : MHz : khz : MHz Results: Receiver mode F [MHz] No critical peaks found (see plot). Level [dbm] Found peaks: Limit & Verdict: Limit MHz f : 4 nw MHz < f : 2 nw Result: The result of the measurement is passed Page 57 of 83

58 Plots: Idle / RX mode Plot : Idle / RX mode, up to GHz, vertical Cetecom ICT Services GmbH Japan rt. 2 Clause Item 9 (RX-Mode) Radiated Emissions 25 M Hz - GHz m p litu d e / d B m M.M.G Frequency / Hz Operator: Bertolino -554_9_RXmode_v ertical.til :42:2 M, Wednesday, February 23, 2 Polarisation: Vertical Company: Digi International GmbH Plot 2: Idle / RX mode, GHz to 2.75, vertical Cetecom ICT Services GmbH Japan rt. 2 Clause Item 9 (RX-Mode) Radiated Emissions GHz - 2,75 GHz m p litu d e / d B m G 2.G 3.G 4.G 5.G 6.G 7.G 8.G 9.G.G.G 2.G Frequency / Hz Operator: Bertolino -554_9_RXmode_v ertical.til :44:5 M, Wednesday, February 23, 2 Polarisation: Vertical Company: Digi International GmbH Page 58 of 83

59 Plot 3: Idle / RX mode, up to GHz, horizontal Cetecom ICT Services GmbH Japan rt. 2 Clause Item 9 (RX-Mode) Radiated Emissions 25 M Hz - GHz m p litu d e / d B m M.M.G Frequency / Hz Operator: Bertolino -554_9_RXmode_horizontal.TIL 9:2:26 M, Wednesday, February 23, 2 Polarisation: Horizontal Company: Digi International GmbH Plot 4: Idle / RX mode, GHz to 2.75, horizontal Cetecom ICT Services GmbH Japan rt. 2 Clause Item 9 (RX-Mode) Radiated Emissions GHz - 2,75 GHz m p litu d e / d B m G 2.G 3.G 4.G 5.G 6.G 7.G 8.G 9.G.G.G 2.G Frequency / Hz Operator: Bertolino -554_9_RXmode_horizontal.TIL 9:2:46 M, Wednesday, February 23, 2 Polarisation: Horizontal Company: Digi International GmbH Page 59 of 83

60 8.4.2 Interference prevention function Interference Prevention Function: ( rticle 9.4): Via Identification Code unexpected login incidences to extraneous receivers are avoided Result: The result of the measurement is passed Carrier sensing function Carrier sensing function: The sample does not transmit or stop transmission when detecting an interferer in the same transmitting channel. Result: The result of the measurement is passed Enclosure requirements Result: -/- Not applicable! The EUT is a WLN module without housing! Page 6 of 83

61 9 Test equipment and ancillaries used for tests Typically, the calibrations of the test apparatus are commissioned to and performed by an accredited calibration laboratory. The calibration intervals are determined in accordance with the DIN EN ISO/IEC 725. In addition to the external calibrations, the laboratory executes comparison measurements with other calibrated test systems or effective verifications. Weekly chamber inspections and range calibrations are performed. Where possible, rf-generating and signalling equipment as well as measuring receivers and analyzers are connected to an external high-precision MHz reference (GPS-based or rubidium frequency standard). In order to simplify the identification of the equipment used at some special tests, some items of test equipment and ancillaries can be provided with an identifier or number in the equipment list below (Labor/Item). No. Lab / Item Equipment Type Manufact. Serial No. INV. No Cetecom Kind of Calibration Last Calibration nechoic n. a. FC 3/5m MWB / TDK 874/ chamber 2 n. a. Relais Matrix PSU R&S 8967/ ne js Parzich 3 n. a. mplifier ne 28-5a GMBH WRCG24/2483- Band Reject 4 n. a. 2375/255- Wainwright 3335 ev filter 5/SS 5 n. a. 6 n. a. 7 n. a. 8 n. a. TILE-Software Emission PS Spectrum nalyzer 3 Hz GHz RF Filter Section 9kHz - GHz TRILOG Broadband Test-ntenna 3 MHz - 3 GHz Quantum Change, Modell TILE- ICS/FULL E444 N939 EMCO none 3345 ne gilent Technologies gilent Technologies Next Calibration MY k MY vlki! VULB963 Schwarzbeck vlki! n. a. Splitter 5542 Mini Circuits ev n. a. Splinter 42 naren ev n. a. Switch Unit TS-RSP R&S ev 2 n. a. 3 n. a. Mount kit für Laptop Hygro- Thermometer 4 n. a. CTI-Chamber 5 n. a. 6 n. a. 7 n. a. 8 n. a. 9 n. a. 2 n. a. 2 n. a. 22 n. a. 23 n. a. CTI-Chamber - Positioning Equipment Limiting mplifier (Microwave mplifier) Spectrum nalyzer 9kHz - 3 GHz Relaisplatte TS-ENGP L 2-8 EMCO/ ne Thies Clima -/- 489 k ETS-Lindgren Finnland EMCO/2 JC Technology -/-, 5-45 C, 2- %rf CTI-Chamber MS 85 CTI-Chamber - Positioning Equipment ne ne 3334 ne FSP3 R&S Ve TS-ENGP, 6 Stk 8 GHz als Erweiterun g zu TS-RSP 32 MS32-VUS + MS32-K28 R&S -/ ne Conical Log- Spiral ntenna Software Lizenz Paket MS-32 + Option für OT Messsoftw Offene Schaltund Steuerplattform für Testsystem utom Spectrum nalyzer 2 Hz - 5 GHz Spectrum nalyzer 9kHz to 3GHz dBm ETS- LINDGREN R&S NK! ne OSP2 R&S ne FSU5 R&S ve FSP3 R&S k Page 6 of 83

62 genda: Kind of Calibration k calibration / calibrated EK limited calibration ne not required (k, ev, izw, zw not required) zw cyclical maintenance (external cyclical maintenance) ev periodic self verification izw internal cyclical maintenance Ve long-term stability recognized g blocked for accredited testing vlki! ttention: extended calibration interval NK! ttention: not calibrated *) next calibration ordered / currently in progress Page 62 of 83

63 nnex Photographs of the test setup Photo documentation: Photo : chamber C Photo 2: chamber C Page 63 of 83

64 Photo 3: chamber C Photo 4: chamber C Page 64 of 83

65 Photo 5: chamber C Photo 6: chamber C Page 65 of 83

66 Photo 7: chamber C Photo 8: OT chamber Page 66 of 83

67 Photo 9: OT chamber Photo : OT chamber Page 67 of 83

68 nnex B External photographs of the EUT Photo documentation: Photo : evaluation board with WLN module Photo 2: evaluation board with WLN module Page 68 of 83

69 Photo 3: evaluation board with WLN module Photo 4: evaluation board with WLN module Page 69 of 83

70 Photo 5: evaluation board with WLN module Photo 6: evaluation board with WLN module Page 7 of 83

71 Photo 7: evaluation board with WLN module Photo 8: evaluation board with WLN module Page 7 of 83

72 Photo 9: evaluation board with WLN module Photo : WLN module Page 72 of 83

73 Photo : WLN module Photo 2: WLN module Page 73 of 83

74 Photo 3: WLN module, antenna ports RX and TX Photo 4: WLN module Page 74 of 83

75 Photo 5: antenna Photo 6: power supply Page 75 of 83

76 Photo 7: power supply Photo 8: power supply Page 76 of 83

77 Photo 9: power supply Photo 2: power supply Page 77 of 83

78 Photo 2: power supply Page 78 of 83

79 nnex C Internal photographs of the EUT Photo documentation: Photo : evaluation board Photo 2: evaluation board Page 79 of 83

80 Photo 3: evaluation board Photo 4: WLN module / back side Page 8 of 83

81 Photo 5: WLN module / front side Photo 6: WLN module / front side without shielding Page 8 of 83

82 Photo 7: WLN module / front side without shielding Page 82 of 83

83 nnex D Document history Version pplied changes Date of release. Initial release nnex E Further information Glossary DUT - Device under Test EMC - Electromagnetic Compatibility EUT - Equipment under Test FCC - Federal Communication Commission FCC ID - Company Identifier at FCC HW - Hardware IC - Industry Canada Inv. No. - Inventory number N/ - not applicable S/N - Serial Number SW - Software Page 83 of 83

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