EMI -- T E S T R E P O R T

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1 EMI -- T E S T R E P O R T Test Report No. : T HU 26. February 2007 Date of issue Type / Model Name : R-IN1300MC Product Description : Long Range Industrial RFID High Frequency Reader Applicant Address : DATAMARS S.A. : Via ai Prati CH-6930 Bedano-Lugano Manufacturer Address : DATAMARS S.A. : Via ai Prati CH-6930 Bedano-Lugano Licence holder Address : DATAMARS S.A. : Via ai Prati CH-6930 Bedano-Lugano Test Result according to the standards listed in clause 1 test standards: POSITIVE DAT-P-207/05-00 The test report merely corresponds to the test sample. It is not permitted to copy extracts of these test results without the written permission of the test laboratory. mikes-testingpartners gmbh File No. T HU, page 1 of 47

2 Contents FCC ID: NDX-RIN TEST STANDARDS 3 2 SUMMARY 4 3 EQUIPMENT UNDER TEST PHOTO DOCUMENTATION OF THE EUT POWER SUPPLY SYSTEM UTILISED SHORT DESCRIPTION OF THE EQUIPMENT UNDER TEST (EUT) 22 4 TEST ENVIRONMENT ADDRESS OF THE TEST LABORATORY ENVIRONMENTAL CONDITIONS STATEMENT OF THE MEASUREMENT UNCERTAINTY MEASUREMENT PROTOCOL FOR FCC, VCCI AND AUSTEL 23 5 TEST CONDITIONS AND RESULTS CONDUCTED EMISSIONS FIELD STRENGTH OF THE FUNDAMENTAL WAVE SPURIOUS EMISSIONS (MAGNECTIC FIELD) 9 KHZ 30 MHZ RADIATED EMISSIONS (ELECTRIC FIELD) 30 MHZ 1 GHZ FREQUENCY TOLERANCE OF THE CARRIER EMISSION BANDWIDTH TRANSMITTER SPECTRUM MASK RECEIVER RADIATED EMISSIONS (MAGNECTIC FIELD) 9 KHZ 30 MHZ RECEIVER RADIATED EMISSIONS (ELECTRIC FIELD) 30 MHZ 1 GHZ 45 6 USED TEST EQUIPMENT AND ACCESSORIES 47 mikes-testingpartners gmbh File No. T HU, page 2 of 47

3 1 TEST STANDARDS FCC ID: NDX-RIN13002 The tests were performed according to following standards: FCC Rules and Regulations Part 15 Subpart C- Intentional Radiators (October 01, 2006) Part 15, Subpart C, Section Part 15, Subpart C, Section (a) Part 15, Subpart C, Section (a) Operation within the band MHz Radiated emissions, general requirements AC Line conducted emissions mikes-testingpartners gmbh File No. T HU, page 3 of 47

4 2 SUMMARY FCC ID: NDX-RIN13002 GENERAL REMARKS: The EuT is working at frequency of MHz. FINAL ASSESSMENT: The equipment under test fulfills the EMI requirements cited in clause 1 test standards. Date of receipt of test sample : acc. to storage records Testing commenced on : 18. December 2006 Testing concluded on : 15. February 2007 Checked by: Tested by: Thomas Weise Dipl.-Ing.(FH) Laboratory Manager Markus Huber mikes-testingpartners gmbh File No. T HU, page 4 of 47

5 3 EQUIPMENT UNDER TEST 3.1 Photo documentation of the EuT FCC ID: NDX-RIN13002 mikes-testingpartners gmbh File No. T HU, page 5 of 47

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22 3.2 Power supply system utilised FCC ID: NDX-RIN13002 Power supply voltage : 115 V / 60 Hz / 1φ 3.3 Short description of the Equipment under Test (EuT) The EuT R-IN1300MC is a long range RFID high frequency reader for industrial use. Number of tested samples: 1 Serial number: see Photo documentation of the EuT under Point 3 / Equipment Under Test EuT operation mode: The equipment under test was operated during the measurement under the following conditions: - Tx mode at MHz / pw: 4000 mw - Rx mode at MHz EuT configuration: (The CDF filled by the applicant can be viewed at the test laboratory.) The following peripheral devices and interface cables were connected during the measurements: - Coax cable Model : shielded, 3.5 m - Coax cable Model : shielded, 3.1 m - RS 232 Model : shielded, 1.5 m - AC power line, shielded and filtered Model : Eupen IMU 03 - Model : - Laptop Mikes Intern Model : 02-01/ customer specific cables mikes-testingpartners gmbh File No. T HU, page 22 of 47

23 4 TEST ENVIRONMENT 4.1 Address of the test laboratory FCC ID: NDX-RIN13002 mikes-testingpartners gmbh Ohmstrasse Strasskirchen Germany 4.2 Environmental conditions During the measurement the environmental conditions were within the listed ranges: Temperature: C Humidity: % Atmospheric pressure: kpa 4.3 Statement of the measurement uncertainty The data and results referenced in this document are true and accurate. The reader is cautioned that there may be errors within the calibration limits of the equipment and facilities. The measurement uncertainty was calculated for all measurements listed in this test report acc. to CISPR / Uncertainties, statistics and limit modelling Uncertainty in EMC measurements and is documented in the quality system acc. to DIN EN ISO/IEC Furthermore, component and process variability of devices similar to that tested may result in additional deviation. The manufacturer has the sole responsibility of continued compliance of the device. 4.4 Measurement Protocol for FCC, VCCI and AUSTEL GENERAL INFORMATION Test Methodology Conducted and radiated disturbance testing is performed according to the procedures in International Special Committee on Radio Interference (CISPR) Publication 22, European Standard EN as shown under section 1 of this report. In compliance with 47 CFR Part 15 Subpart A Section testing for FCC compliance may be done following the ANSI C procedures and using the CISPR 22 Limits. mikes-testingpartners gmbh File No. T HU, page 23 of 47

24 Justification The Equipment Under Test (EUT) is configured in a typical user arrangement in accordance with the manufacturer's instructions. A cable is connected to each available port and either terminated with a peripheral using the appropriate impedance characteristic or left unterminated. Where appropriate, cables are manually manipulated with respect to each other thus obtaining maximum disturbances from the unit DETAILS OF TEST PROCEDURES General Standard Information The test methods used comply with CISPR Publication 22, EN " Information technology equipment - Radio disturbance characteristics - Limits and methods of measurement" and with ANSI C "Methods of Measurement of Radio-Noise Emissions from Low-Voltage Electrical and Electronic Equipment in the Range of 9 khz to 40 GHz." mikes-testingpartners gmbh File No. T HU, page 24 of 47

25 5 TEST CONDITIONS AND RESULTS 5.1 Conducted emissions For test instruments and accessories used see section 6 Part A Description of the test location FCC ID: NDX-RIN13002 Test location: Shielded Room S Photo documentation of the test set-up mikes-testingpartners gmbh File No. T HU, page 25 of 47

26 5.1.3 Description of Measurement The final level, expressed in dbμv, is arrived at by taking the reading directly from the EMI receiver. This level is compared directly to the FCC Limit or to the CISPR limit. To convert between dbμv and μv, the following conversions apply: dbμv = 20(log μv) μv = Inverse log(dbμv/20) Conducted emissions on the 50 Hz and/or 60 Hz power interface of the EuT are measured in the frequency range of 150 khz to 30 MHz. The measurements are performed using a receiver, which has CISPR characteristic bandwidth and quasi-peak detection and a Line Impedance Stabilization Network (LISN) with 50Ω/50 μh (CISPR 16) characteristics. Table top equipment is placed on a non-conducting table 80 centimeters above the floor and is positioned 40 centimeters from the vertical ground plane (wall) of the screen room. If the minimum limit margin appears to be less than 20 db with a peak mode measurement, the emissions are remeasured using a tuned receiver with quasi-peak and average detection and recorded on the data sheets Test result Frequency range: Min. limit margin 0.15 MHz - 30 MHz 2.9 db at MHz The requirements are FULFILLED. Remarks: mikes-testingpartners gmbh File No. T HU, page 26 of 47

27 5.1.5 Test protocol Test point Operation mode: Remarks: Date: Operator: Markus Huber L1 Tx mode at MHz / pw: 4000 mw With shielded and filtered AC mains cable and modification FCC ID: NDX-RIN13002 Result: passed Freq QP- L D -Limit Freq AV-L D -Limit Freq QP- L D -Limit Freq AV-L D -Limit khz db[µv] QP [db] khz db[µv] AV [db] khz db[µv] QP [db] khz db[µv] AV [db] ,6 34, ,6 21, ,7 19, ,7 38, ,7 31, ,8 35, ,3 23, ,7 14, ,6 42, ,9 34, ,1 19, ,8 36, ,2 11,8 db [µv] Legend PK: AV: Detector: QP: AV: QP LIMIT 50 AV LIMIT [MHz] mikes-testingpartners gmbh File No. T HU, page 27 of 47

28 Test point: Operation mode: Remarks: Date: Tested by: Huber Markus N Tx mode With shielded and filtered AC mains cable and modification Result: passed Freq QP- L D -Limit Freq AV-L D -Limit Freq QP- L D -Limit Freq AV-L D -Limit khz db[µv] QP [db] khz db[µv] AV [db] khz db[µv] QP [db] khz db[µv] AV [db] ,8 35, ,4 21, ,3 19, ,3 39, ,1 32, ,8 32, ,7 42, , ,5 21, ,9 33, ,3 41, ,6 35, ,6 43, ,1 11, ,0 db [µv] Legend PK: AV: Detector: QP: AV: QP LIMIT 50 AV LIMIT [MHz] mikes-testingpartners gmbh File No. T HU, page 28 of 47

29 Test point: Operation mode: Remarks: Date: Operator: Markus Huber L1 Rx mode at MHz With shielded and filtered AC mains cable and modification Result: passed Freq QP- L D -Limit Freq AV-L D -Limit Freq QP- L D -Limit Freq AV-L D -Limit khz db[µv] QP [db] khz db[µv] AV [db] khz db[µv] QP [db] khz db[µv] AV [db] ,5 31, ,4 38, ,4 41, ,7 37, ,4 41, ,4 34, ,9 40, ,5 35, ,9 49, ,7 36, ,7 45, ,1 2, ,2 34, ,1 35, ,4 32, ,2 32, ,8 35, ,7 33, ,4 12, ,5 44, ,4 41,6 db [µv] Legend PK: AV: Detector: QP: AV: QP LIMIT 50 AV LIMIT [MHz] mikes-testingpartners gmbh File No. T HU, page 29 of 47

30 Test point: Operation mode: Remarks: Date: Operator: Markus Huber N Rx mode at MHz With shielded and filtered AC mains cable and modification Result: passed Freq QP- L D -Limit Freq AV-L D -Limit Freq QP- L D -Limit Freq AV-L D -Limit khz db[µv] QP [db] khz db[µv] AV [db] khz db[µv] QP [db] khz db[µv] AV [db] ,2 30, ,3 36, ,9 40, ,8 40, ,9 42, ,6 32, ,6 40, ,1 31, ,8 48, ,6 38, , ,4 36, ,4 42, ,5 6, ,1 29, ,3 36, ,8 30, ,5 33, ,6 37, ,3 39, ,8 16, ,2 48, ,8 42,2 db [µv] Legend PK: AV: Detector: QP: AV: QP LIMIT 50 AV LIMIT [MHz] mikes-testingpartners gmbh File No. T HU, page 30 of 47

31 5.2 Field strength of the fundamental wave For test instruments and accessories used see section 6 Part CPR Description of the test location FCC ID: NDX-RIN13002 Test location: Test distance: OATS1 30 metres Photo documentation of the test set-up mikes-testingpartners gmbh File No. T HU, page 31 of 47

32 5.2.3 Description of Measurement The magnetic field strength from the EuT will be measured on an open area test site in the frequency range of 9 khz to 30 MHz using a tuned receiver and a shielded loop antenna. The set up of the Equipment under test will be in accordance to ANSI C The antenna was positioned 3, 10 or 30 meters horizontally from the EuT. Measurements have been made in all three orthogonal axes and the shielded loop antenna was rotated to locate the maximum of the emissions. In the case where larger measuring distances are required the results will extrapolated based on the values measured on the closer distances according to Section (f) (2) [2]. The final measurement will be performed with an EMI Receiver set to Quasi Peak detector except for the frequency bands 9 khz to 90 khz and 110 to 490 khz where an average detector will be used according to Section (d) [2]. The final level, expressed in dbμv/m, is arrived at by taking the reading from the EMI receiver (Level dbμv) and adding the antenna correction factor and cable loss factor (Factor db) to it. This result then has to be compared with the relevant FCC limit. The resolution bandwidth during the measurement is as follows: 9 khz 150 khz: ResBW: 200 Hz 150 khz 30 MHz: ResBW: 9 khz Example: Frequency Level + Factor = Level Limit = Delta (MHz) (dbµv) (db) (dbµv/m) (dbµv/m) (db) = = Test result Frequency L: PK L: AV L: QP Correct. L: PK L: AV L: QP Limit Delta [MHz] [dbµv] [dbµv] [dbµv] [db] [dbµv/m] [dbµv/m] [dbµv/m] [dbµv/m] [db] Limit according to FCC Part 15 Subpart (a) Frequency (MHz) Field strength of fundamental wave Measurement distance (meters) (µv/m) db (µv/m) The requirements are FULFILLED. Remarks: mikes-testingpartners gmbh File No. T HU, page 32 of 47

33 5.3 Spurious emissions (Magnectic field) 9 khz 30 MHz For test instruments and accessories used see section 6 Part SER Description of the test location FCC ID: NDX-RIN13002 Test location: Test distance: OATS1 30 metres Photo documentation of the test set-up mikes-testingpartners gmbh File No. T HU, page 33 of 47

34 5.3.3 Description of Measurement The spurious emissions from the EuT will be measured on an open area test site in the frequency range of 9 khz to 30 MHz using a tuned receiver and a shielded loop antenna. The antenna was positioned 3, 10 or 30 meters horizontally from the EuT. Measurements have been made in all three orthogonal axes and the shielded loop antenna was rotated to locate the maximum of the emissions. In the case where larger measuring distances are required the results will extrapolated based on the values measured on the closer distances according to Section (f) (2) [2]. The final measurement will be performed with an EMI Receiver set to Quasi Peak detector except for the frequency bands 9 khz to 90 khz and 110 to 490 khz where an average detector will be used according to Section (d) [2]. The final level, expressed in dbμv/m, is arrived at by taking the reading from the EMI receiver (Level dbμv) and adding the antenna correction factor and cable loss factor (Factor db) to it. This result then has to be compared with the relevant FCC limit. The resolution bandwidth during the measurement is as follows: 9 khz 150 khz: ResBW: 200 Hz 150 khz 30 MHz: ResBW: 9 khz Example: Frequency Level + Factor = Level Limit = Delta (MHz) (dbµv) (db) (dbµv/m) (dbµv/m) (db) = = Test result Frequency L: PK L: AV L: QP Correct. L: PK L: AV L: QP Limit Delta [MHz] [dbµv] [dbµv] [dbµv] [db] [dbµv/m] [dbµv/m] [dbµv/m] [dbµv/m] [db] Limit according to FCC Part 15 Subpart (a) Frequency (MHz) Field strength of spurious emissions (µv/m) db (µv/m) /F(kHz) /F (khz) Measurement distance (meters) The requirements are FULFILLED. Remarks: mikes-testingpartners gmbh File No. T HU, page 34 of 47

35 5.4 Radiated emissions (electric field) 30 MHz 1 GHz For test instruments and accessories used see section 6 Part SER Description of the test location FCC ID: NDX-RIN13002 Test location: Test distance: OATS1 3 metres Photo documentation of the test set-up mikes-testingpartners gmbh File No. T HU, page 35 of 47

36 5.4.3 Description of Measurement Spurious emissions from the EuT are measured in the frequency range of 30 MHz to 1000 MHz using a tuned receiver and appropriate broadband linearly polarized antennas. Measurements between 30 MHz and 1000 MHz are made with 120 khz/6 db bandwidth and quasi-peak detection. Table top equipment is placed on a 1.0 X 1.5 meter non-conducting table 80 centimetres above the ground plane. Floor standing equipment is placed directly on the turntable/ground plane. The set up of the Equipment under test will be in accordance to ANSI C The Interface cables that are closer than 40 centimetres to the ground plane are bundled in the center in a serpentine fashion so they are at least 40 centimetres from the ground plane. Cables to simulators/testers (if used in this test) are routed through the center of the table and to a screen room located outside the test area. The antenna was positioned 3, 10 or 30 meters horizontally from the EuT. To locate maximum emissions from the test sample the antenna is varied in height from 1 to 4 meters, measurement scans are made with both horizontal and vertical antenna polarization`s and the EuT are rotated 360 degrees. The final level, expressed in dbµv/m, is arrived by taking the reading from the EMI receiver (Level dbµv) and adding the correction factors and cable loss factor (Factor db) to it. This is done automatically in the EMI receiver, where the correction factors are stored. This result then has the FCC or CISPR limit subtracted from it to provide the Delta which gives the tabular data as shown in the data sheets at page. The resolution bandwidth during the measurement is as follows: 30 MHz 1000 MHz: ResBW: 120 khz Example: Frequency Level + Factor = Level Limit = Delta (MHz) (dbµv) (db) (dbµv/m) (dbµv/m) (db) = = -2.4 mikes-testingpartners gmbh File No. T HU, page 36 of 47

37 5.4.4 Test result Frequency [MHz] L: QP [dbµv] Correct. [db] L: QP [dbµv/m] Limit [dbµv/m] Delta [db] Limit according to FCC Part 15 Subpart (a) Frequency (MHz) Field strength of spurious emissions (µv/m) db (µv/m) Above Measurement distance (meters) The requirements are FULFILLED. Remarks: mikes-testingpartners gmbh File No. T HU, page 37 of 47

38 5.5 Frequency tolerance of the carrier For test instruments and accessories used see section 6 Part FE Description of the test location FCC ID: NDX-RIN13002 Test location: AREA Photo documentation of the test set-up Test result Test conditions T min (-20) C V nom (115)V T (-10) C V nom (115)V T (0) C V nom (115)V T (10) C V nom (115)V V min (98)V T nom (20) C V nom (115)V V max (132)V T (30) C V nom (115)V T (40) C V nom (115)V T max (50) C V nom (115)V Maximum tolerance of carrier frequency (khz) / Measurement uncertainty Test result Frequency (MHz) ± 10 Hz mikes-testingpartners gmbh File No. T HU, page 38 of 47

39 Limit according to FCC Part 15 Subpart (e): ± 0.01 % of carrier frequency at MHz = ± khz The requirements are FULFILLED. Remarks: mikes-testingpartners gmbh File No. T HU, page 39 of 47

40 5.6 Emission Bandwidth For test instruments and accessories used see section 6 Part MB Description of the test location FCC ID: NDX-RIN13002 Test location: Shielded Room S Photo documentation of the test set-up Description of Measurement The bandwidth is measured at an amplitude level reduced from the reference level by a specified ratio of -20 db. The reference level is the level of the highest amplitude signal observed from the transmitter at either the fundamental frequency or the first-order modulation products in all typical modes of operation, including the unmodulated carrier, even if atypical. The resolution bandwidth of measuring instrument was set to a value as shown in the folloing table below according to ANSI C Test result Fundamental frequency Minimum resolution bandwidth 9 khz to 30 MHz 1kHz 30 to 1000 MHz 10 khz 1000 MHz to 40 GHz 100 khz Channel Frequency 20 db Bandwidth [MHz] [khz] Remarks: For detailed test result please refer to following test protocol. mikes-testingpartners gmbh File No. T HU, page 40 of 47

41 5.6.5 Test protocol Ref 127 dbµv 120 Att 50 db * RBW 1 khz * VBW 1 khz SWT 50 ms 1 Marker 1 [T1 ] dbµv MHz Marker 2 [T1 ] dbµv MHz A 1 PK VIEW 110 D dbµv 2 3 Marker 3 [T1 ] dbµv MHz PRN Center MHz 2.5 khz/ Span 25 khz mikes-testingpartners gmbh File No. T HU, page 41 of 47

42 5.7 Transmitter spectrum mask For test instruments and accessories used see section 6 Part MB Description of the test location FCC ID: NDX-RIN13002 Test location: AREA Test result The absolute levels of RF power at any frequency shall not exceed the limits defined in FCC Part a-d The requirements are FULFILLED. Remarks: Test protocol Ref 136 dbµv Spectrum mask for modulated signal Att 60 db * RBW 1 khz * VBW 1 khz SWT 900 ms Marker 1 [T1 ] dbµv MHz A 1 PK VIEW FCC PRN Start MHz 90 khz/ Stop MHz mikes-testingpartners gmbh File No. T HU, page 42 of 47

43 5.8 Receiver radiated emissions (Magnectic field) 9 khz 30 MHz For test instruments and accessories used see section 6 Part SER Description of the test location Test location: Test distance: OATS1 30 metres Photo documentation of the test set-up Description of Measurement Spurious emissions from the EuT are measured in the frequency range of 9 khz to 30 MHz using a tuned receiver and a shielded loop antenna. The antenna was positioned 3, 10 or 30 meters horizontally from the EuT. Measurements have been made in all three orthogonal axes and the shielded loop antenna was rotated to locate the maximum of the emissions. The final level, expressed in dbμv/m, is arrived at by taking the reading from the EMI receiver (Level dbμv) and adding the antenna correction factor and cable loss factor (Factor db) to it. This result then has to be compared with the relevant FCC limit. mikes-testingpartners gmbh File No. T HU, page 43 of 47

44 The resolution bandwidth during the measurement was as follows: 9 khz 150 khz: ResBW: 200 Hz 150 khz 30 MHz: ResBW: 9 khz FCC ID: NDX-RIN13002 Example: Frequency Level + Factor = Level Limit = Delta (MHz) (dbµv) (db) (dbµv/m) (dbµv/m) (db) = = Test result Frequency L: PK L: AV L: QP Correct. L: PK L: AV [MHz] [dbµv] [dbµv] [dbµv] [db] [dbµv/m] [dbµv/m] < 0 20 < 20 L: QP [dbµv/m] Limit [dbµv/m] Delta [db] Limit according to FCC Part 15 Subpart (a) Frequency (MHz) Field strength of spurious emissions (µv/m) db (µv/m) /F(kHz) /F (khz) Measurement distance (meters) The requirements are FULFILLED. Remarks: mikes-testingpartners gmbh File No. T HU, page 44 of 47

45 5.9 Receiver radiated emissions (electric field) 30 MHz 1 GHz For test instruments and accessories used see section 6 Part SER Description of the test location Test location: Test distance: OATS1 3 metres Photo documentation of the test set-up Description of Measurement Spurious emissions from the EuT are measured in the frequency range of 30 MHz to 10 times the highest used frequency using a tuned receiver and appropriate broadband linearly polarized antennas. Measurements between 30 MHz and 1000 MHz are made with 120 khz/6 db bandwidth and quasi-peak detection. Table top equipment is placed on a 1.0 X 1.5 meter non-conducting table 80 centimetres above the ground plane. Floor standing equipment is placed directly on the turntable/ground plane. Interface cables that are closer than 40 centimetres to the ground plane are bundled in the center in a serpentine fashion so they are at least 40 centimetres from the ground plane. Cables to simulators/testers (if used in this test) are routed through the center of the table and to a screen room located outside the test area. The antenna was positioned 3, 10 or 30 meters horizontally from the EuT. To locate maximum emissions from the test sample the antenna is varied in height from 1 to 4 meters, measurement scans are made with both horizontal and vertical antenna polarization`s and the EuT are rotated 360 degrees. mikes-testingpartners gmbh File No. T HU, page 45 of 47

46 The final level, expressed in dbµv/m, is arrived by taking the reading from the EMI receiver (Level dbµv) and adding the correction factors and cable loss factor (Factor db) to it. This is done automatically in the EMI receiver, where the correction factors are stored. This result then has the FCC or CISPR limit subtracted from it to provide the Delta which gives the tabular data as shown in the data sheets at page. Example: Frequency Level + Factor = Level Limit = Delta (MHz) (dbµv) (db) (dbµv/m) (dbµv/m) (db) = = Test result Frequency L: PK L: AV L: QP Correct. L: PK L: AV L: QP [MHz] [dbµv] [dbµv] [dbµv] [db] [dbµv/m] [dbµv/m] [dbµv/m] < < 30 Limit [dbµv/m] Delta [db] Limit according to FCC Part 15 Subpart (a) Frequency (MHz) Field strength of spurious emissions (µv/m) db (µv/m) Measurement distance (meters) The requirements are FULFILLED. Remarks: mikes-testingpartners gmbh File No. T HU, page 46 of 47

47 6 USED TEST EQUIPMENT AND ACCESSORIES All test instruments used, in addition to the test accessories, are calibrated and verified regularly. The calibration intervals and the calibration history will be given out on request. Test Report No: T HU Beginning of Testing: 18 December 2007 End of Testing: 15 February 2007 Test ID Model Type Kind of Equipment Manufacturer Equipment No. A 4 ESHS 30 EMI Test Receiver Rohde & Schwarz München 02-02/ NNLK 8129 LISN Schwarzbeck Mess-Elektronik 02-02/ ESH 2 - Z 5 LISN Rohde & Schwarz München 02-02/ ESH 3 - Z 2 Pulse Limiter Rohde & Schwarz München 02-02/ N-4000-BNC RF Cable mikes-testingpartners gmbh 02-02/ N-1500-N RF Cable mikes-testingpartners gmbh 02-02/ SP 103 / Convertor 220V / 110V mikes-testingpartners gmbh 02-02/ CPR 1 FMZB 1516 Magnetic Field Antenna Schwarzbeck Mess-Elektronik 01-02/ ESCS 30 EMI Test Receiver Rohde & Schwarz München 02-02/ FE FSP 30 Spectrum Analyzer Rohde & Schwarz München 02-02/ THS730A Handheld Scope Tektronix GmbH 02-02/ Type Transformer STATRON Gerätetechnik 02-02/ WK-340/40 Climatic Chamber Weiss Umwelttechnik GmbH 02-02/ MB FSP 30 Spectrum Analyzer Rohde & Schwarz München 02-02/ THS730A Handheld Scope Tektronix GmbH 02-02/ Type Transformer STATRON Gerätetechnik 02-02/ SER 1 FMZB 1516 Magnetic Field Antenna Schwarzbeck Mess-Elektronik 01-02/ ESCS 30 EMI Test Receiver Rohde & Schwarz München 02-02/ SER 2 ESVS 30 EMI Test Receiver Rohde & Schwarz München 02-02/ VULB 9168 Trilog-Broadband Antenna Schwarzbeck Mess-Elektronik 02-02/ S10162-B/+11N RF Cable 33m Huber + Suhner 02-02/ KK-EF393-21N-16 RF Cable 20m Huber + Suhner 02-02/ NW-2000-NB RF Cable Huber + Suhner 02-02/ mikes-testingpartners gmbh File No. T HU, page 47 of 47

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