This annex is valid from: to Replaces annex dated: Location(s) where activities are performed under accreditation

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1 Location(s) where activities are performed under accreditation Head ffice Vijzelmolenlaan GX oerden The Netherlands Location Abbreviation/ location Vijzelmolenlaan GX oerden The Netherlands n-site LF 0 0 DC/LF ELECTRICITY LF 1 0 DIRECT VLTAGE 0-2 mv U V Generating 2 20 mv U V 20 mv mv U V 200 mv - 2 V U V 1 Calibration and ment Capability (CMC): Demonstrated measurement uncertainty, with coverage probability 95%, in a given measurement point or measurement range. ment uncertainty, U, is calculated according to EA-4/02 "Evaluation the Uncertainty ment in Calibration". This annex has been approved by the Board the Dutch Accreditation Council, on its behalf, J.A..M. de Haas Director perations Dutch Accreditation Council RvA Page 1 18

2 2 V - 20 V 20 V V 200 V V U + 8 V U mv U mv mv U V Measuring 200 mv - 2 V U V 2 V - 20 V 20 V V 200 V V U + 7 V U mv U mv LF 2 0 DIRECT CURRENT µa I + 5 na Generating 200 µa - 2 ma I + 12 na 2-20 ma I A ma I µa 200 ma - 2 A I + 23 µa µa I + 5 na Measuring 200 µa - 2 ma I µa 2-20 ma I µa ma I + 5 µa 200 ma - 2 A I ma LF 3 0 ALTERNATING VLTAGE 1-2 mv 30 Hz 3,3 khz U + 7 µv Generating, 2-wire 3,3 10 khz U + 7 µv Dutch Accreditation Council RvA Page 2 18

3 10-33 khz U + 7 µv khz U + 7 µv 2 mv - 20 mv 30 Hz - 1 khz U + 6 µv 1-3,3 khz U + 6 µv 3,3 10 khz U + 6 µv khz U + 6 µv khz U + 6 µv 20 mv mv Hz U + 10 µv 330 Hz - 1 khz U + 10 µv 1 3,3 khz U + 6 µv 3,3-10 khz U + 6 µv khz U + 6 µv khz U + 6 µv 90 mv - 2V Hz U + 50 µv Generating, 4-wire Hz U + 50 µv 330 Hz 3,3 khz U + 25 µv khz U + 25 µv khz U + 20 µv khz U mv 330 khz - 1 MHz U mv 2 V - 20 V Hz U mv Hz U mv 330 Hz - 33 khz U mv khz U mv khz U + 7 mv 330 khz - 1 MHz U + 12 mv 20 V V Hz U + 9 mv Hz U + 6 mv Dutch Accreditation Council RvA Page 3 18

4 330 Hz - 10 khz U mv khz U mv 33 khz 100 khz U + 18 mv 200 V V Hz U + 50 mv 330 Hz- 10 khz U + 40 mv khz U + 50 mv 2 mv mv Hz U + 5 µv Measuring 40 Hz - 2 khz U + 5 µv 2-10 khz U + 7 µv khz U + 12 µv khz U + 25 µv 200 mv - 2 V Hz U + 23 µv Hz U + 23 µv Hz U + 23 µv Hz U + 23 µv 1-3 khz U + 23 µv 3-10 khz U mv khz U mv khz U mv khz U mv 300 khz - 1 MHz U + 23 mv 2 V - 20 V Hz U mv Hz U mv 100 Hz - 3 khz U mv 3-10 khz U mv Dutch Accreditation Council RvA Page 4 18

5 10-60 khz U mv khz U + 23 mv 300 khz - 1 MHz U V 20 V V Hz U mv Hz U mv 100 Hz 300 Hz U mv 300 Hz - 10 khz U mv khz U + 5 mv khz U + 23 mv 200 V V 40 Hz - 3 khz U + 23 mv LF 4 0 ALTERNATING CURRENT 3-10 khz U + 23 mv khz U + 50 mv µa Hz I + 11 na Generating Hz I + 11 na Hz I + 5 na 200 µa - 2 ma Hz I A Hz I A Hz I A khz I A khz I A 2 ma - 20 ma Hz I µa Hz I µa Hz I µa khz I µa khz I + 12 µa 200 ma - 2 A Hz I ma Dutch Accreditation Council RvA Page 5 18

6 Hz I ma Hz I ma khz I ma khz I + 33 A 100 µa µa Hz I + 23 na Measuring 1-5 khz I + 23 na 200 µa - 2 ma Hz I A Hz I A 1-5 khz I A 2 ma - 20 ma Hz I µa Hz I µa 1-5 khz I µa 20 ma ma Hz I + 23 µa 1-5 khz I + 23 µa 200 ma - 2 A Hz I ma 1-5 khz I ma LF 6 0 IMPEDANCE (DC/LF) LF 6 2 DC resistance m Generating, 4-wire m m 1 k 21 m 10 k k M 33 Dutch Accreditation Council RvA Page 6 18

7 10 M 0.7 k 100 M 22 k Generating, 2-wire k k k M M 0.7 k 100 M 22 k R Measuring, 4-wire R m R m 2-20 k R + 13 m k R k - 2 M R M R Measuring, 2-wire M R + 10 k 200 M - 2 G R M RF 0 0 HIGH FREQUENCY QUANTITIES RF 2 0 Impedance LISN Impedance 9 khz 30 MHz // (50 µh + 5 ) and 50 // 50 µh Dutch Accreditation Council RvA Page 7 18

8 100 khz 150 MHz // (5 µh + 1 ) and 50 // 5 µh CDN Impedance 150 khz 300 MHz , 0 nominal RF 2 1 Reflection coefficient 3) Magnitude 0 to khz 1 MHz ² 1 MHz - 2 GHz ² 2 GHz - 8 GHz ² 8 GHz 18 GHz ² Nom. impedance 50 at nominal -10 dbm RF power Phase 180 to khz -18 GHz u( ) u( ) arcsin If the magnitude is less than its uncertainty, the phase uncertainty is 180 w RF 2 2 Transmission Coefficient For coaxial 50 devices 1, 3) Magnitude 0 to 40 db 9 khz 1 MHz 0.07 db at nom. -10 dbm RF power 1 MHz - 2 GHz 0.03 db 2 GHz - 8 GHz 0.08 db 8 GHz 18 GHz 0.10 db Magn. ( 40 to 70)dB Magn. ( 70 to 100)dB 9 khz 18 GHz 0.10 db at nom. 0 dbm RF power 9 khz 18 GHz 1.0 db at nom. +10 dbm RF power Dutch Accreditation Council RvA Page 8 18

9 Antenna Reflection coefficient Magnitude MHz 700 MHz MHz 1500 MHz Nominal impedance 50 at nominal -10 dbm RF power 1500 MHz 3000 MHz RF 3 0 HIGH FREQUENCY PER Calibration Factors Power Sensors 1, 3) 9 khz 10 MHz 0.05 db 0 dbm nominal 10 MHz 3 GHz 0.06 db 0 dbm nominal 3 GHz 6 GHz 0.07 db 0 dbm nominal 6 GHz 10 GHz db 0 dbm nominal 10 GHz 18 GHz 0.09 db 0 dbm nominal 10 MHz 2 GHz 0.06 db -30 dbm nominal 2 GHz 6 GHz 0.07 db -30 dbm nominal 6 GHz 10 GHz db -30 dbm nominal 10 GHz 18 GHz 0.10 db -30 dbm nominal Linearity RF power 0-10 dbm 9 khz 6 GHz 0.04 db 0-20 dbm 9 khz 6 GHz 0.05 db 0-30 dbm 9 khz 6 GHz 0.07 db 0-40 dbm 10 MHz 6 GHz 0.09 db 0-50 dbm 10 MHz 6 GHz 0.09 db Dutch Accreditation Council RvA Page 9 18

10 0-60 dbm 10 MHz 6 GHz 0.15 db Absolute power -60 to +20 dbm 2, 3) 9 khz 10 MHz 0.06 db 0 dbm nominal 10 MHz 6 GHz 0.07 db 0 dbm nominal 6 GHz 10 GHz 0.10 db 0 dbm nominal 10 GHz 18 GHz 0.12 db 0 dbm nominal 10 MHz 6 GHz 0.07 db -30 dbm nominal 6 GHz 10 GHz 0.10 db -30 dbm nominal 10 GHz 18 GHz 0.14 db -30 dbm nominal Absolute broadband power, 0 to +45 dbm 9 khz 6 GHz 0.6 db 1.0 db RadiField All other DUTs Frequency response power measuring devices 2, 3) 9 khz 10 MHz 0.05 db 0 dbm nominal 10 MHz 3 GHz 0.06 db 0 dbm nominal 3 GHz 6 GHz 0.07 db 0 dbm nominal 6 GHz 10 GHz db 0 dbm nominal 10 GHz 18 GHz 0.10 db 0 dbm nominal 10 MHz 3 GHz 0.06 db -30 dbm nominal 3 GHz 6 GHz 0.07 db -30 dbm nominal 6 GHz 10 GHz db -30 dbm nominal 10 GHz 18 GHz 0.10 db -30 dbm nominal Dutch Accreditation Council RvA Page 10 18

11 Response CISPR receivers QP and AV 9 khz - 1 GHz 0.3 db Bandwidth RB filters 1 Hz to 10 MHz 9 khz GHz B RF 5 0 ELECTRICAL / MAGNETIC FIELD QUANTITIES /EMC Electrical Field Strength V/m 9 khz 30 MHz db Temcell 4) 30 MHz 75 MHz db 75 MHz 200 MHz 1.3 db Electrical Field Strength V/m 200 MHz 1 GHz 1.2 db Anechoic Chamber 1 GHz 8 GHz 1.1 db 8 GHz 12 GHz 1.2 db 12 GHz 15 GHz db 15 GHz 18 GHz 1.5 db 18 GHz 40 GHz 2.4 db Antenna factor ANSI C63.5 CISPR ANSI C63.5 CISPR MHz 5 GHz 0.8 db ATS, Standard Site method 5) 30 MHz 1 GHz 0.8 db ATS, Reference antenna method 5) Dutch Accreditation Council RvA Page 11 18

12 Antenna symmetry - Dipole - Biconical - Hybrid 30 MHz 1 GHz 0.25 db ATS ANSI C63.5 CISPR Quasi Free Space 20 MHz 100 MHz 0.9 db Free Space Environment, Three Antenna Method 5) 100 MHz 200 MHz 0.8 db 200 MHz 5 GHz 0.7 db 1 GHz 10 GHz 1.4 db Full Anechoic Room, Three Antenna Method 4) w 10 GHz 12 GHz 1.4 db 2.1 db w 12 GHz 18 GHz 2.1 db SAE ARP MHz 100 MHz 0.9 db For military or automotive use 5) 100 MHz 200 MHz 0.8 db 200 MHz 5 GHz 0.7 db Shielding Effectiveness n Site measurement According to EN50147 and Mil Std 285 5) Magnetic Field 100dB Electric Field db Plane wave db 10 khz 30 MHz ± 5 db 10 MHz 300 MHz ± 5 db 30 MHz 1 GHz ± 5 db Dutch Accreditation Council RvA Page 12 18

13 Plane wave db 1 GHz 18 GHz ± 6 db Normalized Site Attenuation NSA 30 MHz 1000 MHz ± 1.6 db n Site measurement According to CISPR using broadband antennae Horizontal and vertical polarization, distance between 3 m and 30 m 5) Site Voltage Standing ave Ratio SVSR 1 GHz 18 GHz ± 2.0 db n Site measurement According to CISPR using reciprocal method 4) Field Uniformity n Site Forward Power 80 MHz 18 GHz ± 1.3 db measurement According to IEC Field Uniformity 80 MHz 18 GHz ± 1.7 db ) Surge generators and coupling/decoupling networks waveform surge voltage 0 V 550 V 6.7 V U 6.7 V U (on 0 V 1.1 kv 13.4 V U 13.4 V U (on According to EN /50 µs pulse 10/700 µs pulse Coupling/decouplin g networks for AC/DC power supply circuits only in combination with Dutch Accreditation Council RvA Page 13 18

14 0 V 2.8 kv 33.5 V U 33.5 V U (on 0 V 5.5 kv 67 V U 67 V U (on appropriate surge generator aveform surge current Current amplitude 0 15 A * I * I (on 0 30 A * I * I (on 0 60 A * I * I (on A * I * I (on A * I * I (on A * I * I (on A * I * I (on A * I * I (on 1.2/50 µs pulse 10/700 µs pulse 0.5/700 µs pulse ments at coupling/decoupling network input, output; coupling modes line to neutral, line to earth and neutral to earth Dutch Accreditation Council RvA Page 14 18

15 Front time. Voltage 1.2/50 µs µs 0.08 µs 4), 10/700 µs µs 0.5 µs Front time. current 1.2/50 µs µs µs 0.18 µs 0.07 µs line line line - PE 10/700 µs µs 0.27 µs Duration. Voltage 4) 1.2/50 µs 35 µs 65 µs 1.0 µs, 10/700 µs µs 14µs, Pulse duration time Current 4) 1.2/50 µs µs 0.23 µs Current, line to line, µs 0.23 µs Current, line to earth, 10/700 µs µs 6 µs, 0.5/700 µs µs 6 µs, EFT/burst generators waveform (im)pulse. voltage into 50 ohms 0 V 150V 2.0 V U 2.0 V U According to EN (July 2004) 4) V 4.0 V U 4.0 V U V 8.0 V U 8.0 V U 4) 4) Dutch Accreditation Council RvA Page 15 18

16 0 1.5 kv 20 V U 20 V U 0 3 kv 37 V U 37 V U 4) 4) EFT/burst generators aveform pulse voltage into 1 k 0 V 500 V 6 V U 6 V U 0 V 1 kv 12 V U 12 V U 0 V 2 kv 24 V U 24 V U 0 V 5 kv 60 V U 60 V U 4) 4) 4) 4) Rise time (10%- 90%) 3 ns to 7 ns 0.3 ns 4), Pulse duration time (50%-50%) 30 ns to 70 ns 2.0 ns 4), Repetition rate 4) 5 µs 15 µs 0.15 µs, 150 µs 600 µs 2.5 µs, Burst duration 4) 10 ms to 20 ms 0.5µs * T, Dutch Accreditation Council RvA Page 16 18

17 Burst period 4) 200 ms to 400 ms 500 µs, ESD Simulators aveform discharge current First peak current ± 7% Networks and standard: 150pF / 330 IEC ( ) Rise time ± 15% Current at t1 and t2 ± 7% ESD Simulators aveform discharge current First peak current 0 10 A 0 20 A 0 50 A *I *I *I Networks and standard: 150pF / 330 IEC ( ) IS10605 ( ) Rise time ns Current at t1 and t A 0 20 A 0 50 A ESD Simulators aveform discharge current 0.08 ns 330pF / 330 IS10605 ( ) *I *I *I Dutch Accreditation Council RvA Page 17 18

18 First peak current A A A *I *I *I Networks and standard: 150pF / pF / 2000 IS10605 ( ) Rise time ns 0.08 ns Current at t1 and t A A A *I *I *I TF 0 0 TIME AND FREQUENCY TF 2 1 Frequency 10 mhz GHz ( / ) f Measuring, 10 ms 400s 10 mhz 10 Hz f Generating 10 Hz 100 khz ( / ) f Generating, 10 ms 400s 100 khz 2.16 GHz ( / ) f Generating, 10 ms 400s TF 2 2 Time interval 0.5 ns 10 s ( ) t + 15ps Generating 10 s 1000 s ( ) t The calibrations are carried out at an ambient temperature (23 ± 2) C and a relative humidity (50 ± 10) %, with an exception for calibrations marked 4 or dut < dut < All calibrations are based on equipment using N-type connectors. 4. The calibrations are carried out at ambient conditions within (23 ± 7) C and (50 ± 20) %. 5. The calibrations are carried out at ambient conditions within (20 ± 15) C and (50 ± 40) %. Dutch Accreditation Council RvA Page 18 18

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