FCC ID: SSVMW6051 Test Report #EMCC G Page 2 of 37 Issue Date:
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2 Page of 7 CONTENTS Page GENERAL INFORMATION.... Purpose.... Limits and Reservations.... Test Location....4 Manufacturer....5 Dates... PRODUCT DESCRIPTION...4. Equipment Under Test (EUT)...4. EUT Peripherals...4. Mode of Operation During Testing Modifications Required for Compliance...4 TEST RESULTS SUMMARY RADIATION HAZARD Regulation Test Equipment Test Procedure Test Result POWER OUTPUT Regulation Test Equipment Test Procedure Test Results Result Summary OPERATING FREQUENCIES Regulation Test Procedure Results Result Summary Measurement Plots... 7 RADIATED EMISSIONS Regulation Test Equipment Test Procedures Calculation of Field Strength Limits Field Strength Calculation Test Results Result Summary... 8 CONDUCTED EMISSIONS Regulation Test Procedures Test Equipment Test Results Result Summary MISCELLANEOUS COMMENTS AND NOTES LIST OF ANNEXES...7
3 Page of 7 GENERAL INFORMATION. Purpose The purpose of this report is to show compliance to the FCC regulations for industrial scientific and medical equipment operating under section 8 of the Code of Federal Regulations title 47.. Limits and Reservations The test results in this report apply only to the particular Equipment Under Test (EUT) as declared in this report. This test report shall not be reproduced except in full without the written permission of EMCCons DR. RAŠEK.. Test Location Company Name: EMCCons DR. RAŠEK Street: Moggast, Boelwiese 8 City: 90 Ebermannstadt Country: Germany Laboratory: EMCCons DR. RAŠEK Test Laboratory IV located at Stoernhofer Berg 5, 964 Unterleinleiter, Germany. This site has been fully described in a report submitted to the FCC, and accepted in the letter dated January 8, 008 Registration Number Phone: Fax: emc.cons@emcc.de Web: Manufacturer Company Name: MIELE & CIE. KG Street: Carl-Miele-Platz City: 590 Oelde Country: Germany Name for contact purposes: Mr. Uwe Keller Phone: Fax: uwe.keller@miele.de.5 Dates Date of receipt of EUT: CW /008 Test date: CW /008
4 Page 4 of 7 PRODUCT DESCRIPTION. Equipment Under Test (EUT) Description: Household Microwave / Convection Oven Model: H8 BM M.-No.: 0770 Serial Number: 00/ FCC-ID: SSVMW5 Equipment Category: Industrial, Scientific and Medical (ISM) equipment Power: N~0V Hz Single Phase AC /0V Hz Single Phase AC 08/0V Hz Operating frequency: 4 MHz Internally used frequencies: Magnetron Type: Rated Power Input: Rated Microwave Power: khz (SPS), 4.9 MHz (Display PCB), 8 MHz (Power PCB), 6 MHz (Touch PCB), 4.57 MHz (Control PCB) TOSHIBA M8H (ML) AC V/Hz AC 08V/Hz AC V/Hz AC 08V/Hz. EUT Peripherals none. Mode of Operation During Testing The EUT was tested as an independent unit with pure water as load. All emission tests performed with the upper nominal supply voltage of V/ Hz applied. Frequency measurements performed with both nominal voltages varied according to the MP-5 requirements..4 Modifications Required for Compliance None.
5 Page 5 of 7 TEST RESULTS SUMMARY Summary of Test Results for the following EUT: Manufacturer: MIELE & CIE. KG Model: H8 BM Serial Number: 00/ Requirement CFR Section Report Section Test Result Radiation Hazard OET MP-5, OET Bulletin 56 Pass Power Output OET MP-5 Pass Operating frequencies 8.0, 8.0 Pass Field Strength Limits (Spurious and Harmonics) 8.05 Pass AC Line Conducted Emissions 8.07 Pass The client has made the determination that EUT Condition, Characterization, and Mode of Operation are representative of production units, and meet the requirements of the specifications referenced herein. Consistent with Industry practice, measurement and test equipment not directly involved in obtaining measurement results but having an impact on measurements (such as cable loss, antenna factors, etc.) are factored into the "Correction Factor" documented in certain test results. Instrumentation employed for testing meets tolerances consistent with known Industry Standards and Regulations. The measurements contained in this report were made in accordance with the procedure FCC/OET MP- 5 (986) and all applicable Public Notices received prior to the date of testing. All emissions from the device were found to be within the limits outlined in this report. The test results in this report apply only to the particular Equipment Under Test (EUT) as declared in this report. Test Personnel: Wolfgang Döring Issuance Date:
6 Page 6 of 7 4 RADIATION HAZARD Test Requirement: OET Bulletin 56, OET Bulletin 65 Test Procedure: FCC/OET MP-5 (986) 4. Regulation OET Bulletin 56 Table : FCC Limits for Maximum Permissible Exposure (MPE) (B) Limits for General Population/Uncontrolled Exposure Frequency Range [MHz] Electric Field Strength (E) [V/m] Magnetic Field Strength (H) [A/m] Power Density (S) [mw/cm ] ()* /f.9/f (/f )* f/0 0 0-, f = frequency in MHz *Plane-wave equivalent power density The limit for an operating frequency of,4mhz is mw/ cm. Averaging Time E, H or S [minutes] 4. Test Equipment Type Field Probe Electromagnetic Radiation Meter Manufacturer/ Model No. PMM 5A PMM EP-8 EMCC Ident. No. Last Calibration Next Calibration Test Procedure EUT was supplied with V/Hz and operated with a 0 ml of water load located in the center of the oven. Radiation leakage was measured on all sides around the EUT using the field probe. Fig. Radiation leakage test
7 Page 7 of Test Result Manufacturer: MIELE & CIE. KG Model: H8 BM Serial Number: 00/ The maximum measured power density was 0.09 mw/cm and did not exceed the specified limit. The EUT meets the requirements of this section. Test Personnel: Wolfgang Döring Test Date:
8 Page 8 of 7 5 POWER OUTPUT Test Requirement: FCC 47 CFR, Section 8.05 Test Procedure: FCC/OET MP-5 (986) 5. Regulation The field strength limit according to Section 8.05 depends on the RF power generated by the equipment. The measured value of power is used to determine the allowable out-of-band field strength under the terms specified in Section 8.05 of the Rules. The AC Input Power to the oven is also measured to determine if the EUT is operating in accordance with the manufacturer's specifications. 5. Test Equipment Type Manufacturer/ EMCC Last Calibration Next Calibration Model No. Ident. No. AC Power Source CALIFORNIA INSTRUMENTS HGA with pcs. 0ih-0 Temperature sensor Ahlborn Almemo Datalogger Ahlborn MA5-4S Scale Bosch PE65 Digital Multimeter Voltcraft Test Procedure The input power is measured by the measuring capabilities of the AC source and compared with the nominal power as declared by the manufacturer. The power output is measured by the calorimetric method according to IEC/EN 5 chapter 8, using a load of 0ml of water in the beaker located in the center of the oven. The power output was computed from the measured temperature rise of the load over a period of time using the following equation: P = [4.87 x m w x (T - T ) + 0,55 x m c (T T 0 )] / t where P = Output power in W, m w = Mass of water in g, m c = Mass of beaker in g, T 0 = Ambient temperature in C T = Starting temperature in C, T = Final temperature in C, t = Time in sec. 5.4 Test Results 5.4. Input Power Input Power Measurement Mode Input Voltage Input Current Power Consumption Manufacturer Rating 0ml load L: 7.7 A L: 7. A L-N: 0 V L-N: 0 V L-L: V L: 94 W L: 85 W L+L: 776 W 8 W
9 Page 9 of RF Output Power RF Output Power Measurement Mass of water Mass of beaker Ambient temperature Starting temperature Final temperature Elapsed time Calculated RF power 7g 46g 0 C 9 C. C sec 0 W 5.5 Result Summary Manufacturer: MIELE & CIE. KG Model: H8 BM Serial Number: 00/ The EUT power consumption matches with the manufacturer's rating. The RF output power exceeds 0W. Therefore the field strength limit is calculated according to 8.05 (b) based on the measured power of 0 W. The EUT meets the requirements of this section. Test Personnel: Wolfgang Döring Test Date:
10 Page 0 of 7 6 OPERATING FREQUENCIES Test Requirement: FCC 47 CFR, Sections 8.0 and 0 Test Procedure: FCC/OET MP-5 (986) 6. Regulation Section 8.0 Operating frequencies ISM equipment may be operated on any frequency above 9 khz except as indicated in 8.0. The following frequency bands, in accordance with.06 of the rules, are allocated for use by ISM equipment: ISM frequency Tolerance,4 MHz +/-.0MHz 6. Test Procedure According to OET MP-5 Section 4.5 Frequency measurements. The frequency was measured using a EMI Receiver and a Horn Antenna placed at a distance of approx. meters from the EUT. The frequency was measured as a function of a) line voltage variation (from % to 5% of both nominal line voltages) and b) load variation (from 0ml to 00ml). 6. Results 6.. Frequency vs Line Voltage Variation Test a) Nominal Voltage: 08V; Load: 0ml Line Voltage [V] lower -0dBc frequency [MHz] peak frequency [MHz] upper 0dBc frequency [MHz] 08 (%),4,458, (%),8,456, (%),448,4, (0%),8,456,44 (5%),4,458,44 b) Nominal Voltage: V; Load: 0ml Line Voltage [V] lower -0dBc frequency [MHz] peak frequency [MHz] upper 0dBc frequency [MHz] (%),88,, (%),4,45, (%),46,45, (0%),,4444, (5%),48,4488,470
11 Page of Frequency vs Load Variation Test a) Voltage: 08V, Nominal Load: 0ml Load [ml] lower -0dBc frequency [MHz] peak frequency [MHz] upper 0dBc frequency [MHz] 0 (%),4,458,48 0 (%),46,456, (%),444,4556, (%),,45,46 00 (0%),4,4564,46 b) Voltage: V, Nominal Load: 0ml Load [ml] lower -0dBc frequency [MHz] peak frequency [MHz] upper 0dBc frequency [MHz] 0 (%),88,, (%),47,4464,46 0 (%),476,4596,466 0 (%),456,4576, (0%),464,459, Result Summary Manufacturer: MIELE & CIE. KG Model: H8 BM Serial Number: 00/ Minimum operating frequency:,8 MHz Maximum operating frequency:,47 MHz The EUT meets the requirements of this section. Test Personnel: Wolfgang Döring Test Date:
12 Page of Measurement Plots 6.5. Frequency vs Line Voltage Variation Test (Nominal Voltage = 08 V) 86.6 db V INPUT.0 GHz D 86.6 db V Det MA/AV Trd ResBW MHz Meas T ms Unit db V [T] 86.6 db V.0 GHz [T] 66.7 db V.000 GHz [T] 68.8 db V.00 GHz MA D 66.6 db V F F 0.5 GHz.55 GHz Comment B: MIELE H8B 0ml center, 08V Date:.MAY.008 :8:0 Det MA/AV Trd Det MA/AV Trd 77.7 db V ResBW MHz db V ResBW MHz INPUT.000 GHz Meas T ms Unit db V INPUT.0 GHz Meas T ms Unit db V [T] 77.7 db V [T] db V.000 GHz.0 GHz [T] 5.49 db V.400 GHz [T] db V.000 GHz [T] 56. db V GHz D db V [T] 6.9 db V GHz D 77.7 db V MA MA D db V D 57.7 db V F F F F 0.5 GHz.55 GHz Comment B: MIELE H8B 0ml center, 66.4 V Date:.MAY.008 :5:6 0.5 GHz.55 GHz Comment B: MIELE H8B 0ml center, 87 V Date:.MAY.008 :9: Det MA/AV Trd Det MA/AV Trd db V ResBW MHz 86. db V ResBW MHz INPUT.0 GHz Meas T ms Unit db V INPUT.0 GHz Meas T ms Unit db V [T] db V [T] 86. db V.0 GHz.0 GHz D db V [T] db V.000 GHz [T] 67.5 db V D 86.6 db V [T] db V GHz [T] db V.4000 GHz.4000 GHz MA MA D db V D 66.6 db V F F F F 0.5 GHz.55 GHz Comment B: MIELE H8B 0ml center, 8 V Date:.MAY.008 ::5 0.5 GHz.55 GHz Comment B: MIELE H8B 0ml center, V Date:.MAY.008 :6:8
13 Page of Frequency vs Line Voltage Variation Test (Nominal Voltage = V) 8.0 db V INPUT.0000 GHz D 8. db V Det MA/AV Trd ResBW MHz Meas T ms Unit db V [T] 8.0 db V.0000 GHz [T] 6. db V.8000 GHz [T] db V GHz MA D 6. db V F F 0.5 GHz.55 GHz Comment B: MIELE H8B 0ml center, V Date:.MAY.008 :09:0 Det MA/AV Trd Det MA/AV Trd db V ResBW MHz db V ResBW MHz INPUT GHz Meas T ms Unit db V INPUT.00 GHz Meas T ms Unit db V [T] db V [T] db V GHz.00 GHz D db V [T] 66. db V.00 GHz [T] db V GHz D db V [T] db V.000 GHz [T] 66.7 db V GHz MA MA D db V D db V F F F F 0.5 GHz.55 GHz Comment B: MIELE H8B 0ml center, 9 V Date:.MAY.008 :4: 0.5 GHz.55 GHz Comment B: MIELE H8B 0ml center, 6 V Date:.MAY.008 :46:0 Det MA/AV Trd Det MA/AV Trd db V ResBW MHz db V ResBW MHz INPUT GHz Meas T ms Unit db V INPUT GHz Meas T ms Unit db V [T] db V [T] db V GHz GHz D db V [T] 67.5 db V.0000 GHz [T] db V D db V [T] 67.5 db V.00 GHz [T].94 db V GHz GHz MA MA D db V D db V F F F F 0.5 GHz.55 GHz Comment B: MIELE H8B 0ml center, 64 V Date:.MAY.008 :: GHz.55 GHz Comment B: MIELE H8B 0ml center, 00 V Date:.MAY.008 :56:8
14 Page 4 of Frequency vs Load Variation Test (Nominal Voltage = 08 V) 86.6 db V INPUT.0 GHz D 86.6 db V Det MA/AV Trd ResBW MHz Meas T ms Unit db V [T] 86.6 db V.0 GHz [T] 66.7 db V.000 GHz [T] 68.8 db V.00 GHz MA D 66.6 db V F F 0.5 GHz.55 GHz Comment B: MIELE H8B 0ml center, 08V Date:.MAY.008 :8:0 Det MA/AV Trd. db V ResBW MHz INPUT GHz Meas T ms Unit db V [T]. db V GHz [T] 7.6 db V D. db V.000 GHz [T] db V GHz MA db V INPUT.00 GHz D db V Det MA/AV Trd ResBW MHz Meas T ms Unit db V [T] db V.00 GHz [T] db V.0000 GHz [T] 67.5 db V GHz MA D. db V D db V F F F F 0.5 GHz.55 GHz Comment B: MIELE H8B 00ml center, 08V Date:.MAY.008 :06:49 Det MA/AV Trd 85.5 db V ResBW MHz INPUT.4500 GHz Meas T ms Unit db V [T] 85.5 db V.4500 GHz [T] 67.5 db V GHz [T] 54.8 db V D 85.5 db V GHz MA 0.5 GHz.55 GHz Comment B: MIELE H8B 0ml center, 08V Date:.MAY.008 :0:8 Det MA/AV Trd db V ResBW MHz INPUT.0 GHz Meas T ms Unit db V [T] db V.0 GHz [T] 65.8 db V.00 GHz [T] db V D db V GHz MA D 65.5 db V D db V F F F F 0.5 GHz.55 GHz Comment B: MIELE H8B 0ml center, 08V Date:.MAY.008 :: GHz.55 GHz Comment B: MIELE H8B 0ml center, 08V Date:.MAY.008 :5:5
15 Page 5 of Frequency vs Load Variation Test (Nominal Voltage = V) 8.0 db V INPUT.0000 GHz D 8. db V Det MA/AV Trd ResBW MHz Meas T ms Unit db V [T] 8.0 db V.0000 GHz [T] 6. db V.8000 GHz [T] db V GHz MA D 6. db V F F 0.5 GHz.55 GHz Comment B: MIELE H8B 0ml center, V Date:.MAY.008 :09:0 Det MA/AV Trd db V ResBW MHz INPUT GHz Meas T ms Unit db V [T] db V GHz [T]. db V GHz D db V [T] 6.6 db V GHz MA db V INPUT GHz D db V Det MA/AV Trd ResBW MHz Meas T ms Unit db V [T] db V GHz [T] db V.0 GHz [T] 6.0 db V GHz MA D db V D db V F F F F 0.5 GHz.55 GHz Comment B: MIELE H8B 00ml center, V Date:.MAY.008 :54:0 Det MA/AV Trd 8. db V ResBW MHz INPUT GHz Meas T ms Unit db V [T] 8. db V GHz [T] 66. db V GHz [T] 6.46 db V GHz D 8. db V MA 0.5 GHz.55 GHz Comment B: MIELE H8B 0ml center, V Date:.MAY.008 :59:45 Det MA/AV Trd.84 db V ResBW MHz INPUT GHz Meas T ms Unit db V [T].84 db V GHz [T] 6.8 db V GHz [T] 56.5 db V GHz D.84 db V MA D 6. db V D.84 db V F F F F 0.5 GHz.55 GHz Comment B: MIELE H8B 0ml center, V Date:.MAY.008 :0:4 0.5 GHz.55 GHz Comment B: MIELE H8B 0ml center, V Date:.MAY.008 :06:08
16 Page 6 of 7 7 RADIATED EMISSIONS Test Requirement: FCC 47 CFR, Part 8 Test Procedure: FCC/OET MP-5 (986) 7. Regulation FCC 47 CFR Section 8.05 Field strength limits (a) ISM equipment operating on a frequency specified in 8.0 is permitted unlimited radiated energy in the band specified for that frequency. (b) The field strength levels of emissions which lie outside the bands specified in 8.0, unless otherwise indicated, shall not exceed the following: Equipment Operating frequency RF Power generated by equipment [watts] Field strength limit [µv/m] Distance [meters] Below Any type unless Any ISM frequency otherwise 0 or more 5 SQRT(power/0) 00 () specified Any non-ism Below (miscellaneous). frequency 0 or more 5 SQRT(power/0) 00 () Industrial heaters and RF stabilized arc welders. On or below 5,75 MHz Above 5,75 MHz Any Any 0 (),0 () Medical Any ISM frequency Any 5 00 diathermy Any non-ism Any 5 00 frequency Ultrasonic Below 4 khz Below 0,0/F(kHz) 00 0 or more,0/f(khz) 00 () SQRT(power/0). 4 to,0 khz Any 4,000/F(kHz) 0 Above,0 khz Any 5 0 Induction cooking Below khz Any,0 0 (4) ranges On or above khz Any 00 0 (4) Field strength may not exceed 0 μv/m at 0 meters. Consumer equipment operating below 0 MHz is not permitted the increase in field strength otherwise permitted here for power over 0 watts. 4 Reduced to the greatest extent possible. Field strength may not exceed 0 μv/m at 0 meters. Consumer equipment is not permitted the increase in field strength otherwise permitted here for over 0 watts. Induction cooking ranges manufactured prior to February, 9, shall be subject to the field strength limits for miscellaneous ISM equipment. (c) The field strength limits of RF lighting devices shall be the following: Equipment Frequency (MHz) Field strength limit at 0 meters (µv/m) Non-consumer equipment Consumer equipment NOTES. The tighter limit shall apply at the boundary between two frequency ranges.. Testing for compliance with these limits may be made at closer distances, provided a sufficient number of measurements are taken to plot the radiation pattern, to determine the major lobes of radiation, and to determine
17 Page 7 of 7 the expected field strength level at 0, 00, or 0 meters. Alternatively, if measurements are made at only one closer fixed distance, then the permissible field strength limits shall be adjusted using /d as an attenuation factor. Section 8. Methods of measurement The measurement techniques which will be used by the FCC to determine compliance with the technical requirements of this part are set out in FCC Measurement Procedure MP 5, Methods of Measurements of Radio Noise Emissions from ISM equipment. Although the procedures in MP 5 are not mandated, manufacturers are encouraged to follow the same techniques which will be used by the FCC. Section 8.09 Frequency range of radiated measurements: (a) For field strength measurements: Frequency band in which device Range of frequency measurements operates (MHz) Lowest frequency Highest frequency Below.5 Lowest frequency generated in the device but not lower than 9 khz..5-0 Lowest frequency generated in the device but not lower than 9 khz. 0-0 Lowest frequency generated in the device or 5 MHz, whichever is lower. 0-0 Lowest frequency generated in the device or MHz, whichever is lower. 0 MHz. 0 MHz. Tenth harmonic or,000 MHz, whichever is higher. Tenth harmonic. Above 0 do Tenth harmonic or highest detectable emission. FCC/OET MP-5 (986) Section.. Detector function selection and bandwidths. For radio noise meters or spectrum analyzers which include weighting circuits, the detector function shall be linear. The detector function selector shall be set to average, unless otherwise specified for a given device. For RF lighting devices, the measuring instrument shall have the detector function set to the CISPR quasi-peak function. The 6 db bandwidth of the measuring instrument shall not be less than: 00 Hz for measurements below khz 9 khz for measurements from khz to 0 MHz khz for measurements from 0 MHz to 0 MHz MHz for measurements above 0 MHz Post detector video filters, if used, shall be wide enough not to affect the peak detector reading. Alternatively, field strength meters and spectrum analyzers without weighting circuits may be employed, provided measurements are made on the peak basis and recorded as observed. Section..6 Antenna-to-test unit distance Measurements shall be made at the distance at which the limits are specified, to the extend possible. [ ] The Comission as an alternative shall accept measurements at a closer fixed distance, provided /d is used as attenuation law factor (where d is the distance measured in appropriate units). [ ]
18 Page 8 of 7 7. Test Equipment Type EMI Receiver / Analyzer (0 MHz 5 GHz) Antenna (0 MHz - GHz) Antenna ( GHz 8 GHz) Standard Gain Horn Antenna (8 GHz 5 GHz) Manufacturer/ Model No. Rohde & Schwarz ESIB EMCO Model 4 Schwarzbeck BBHA 90 D Mid Century MC 0/B EMCC Ident. No. Last Calibration Next Calibration Test Procedures An EUT which is normally operated on a table shall be placed on a nonconductive table having a height of m above test site ground level. [ ] Measurements made on a test table of cm height as called for in some international measurement standards will be accepted for proof of compliance. Although the results will probably be only marginally different than with the meter height, the risk for discrepancies lies with the manufacturer. FCC tests will be performed at a height of meter. The EUT was tested on a cm test table. With the EUT operating in max. power mode with load as specified in FCC/OET MP-5, emissions from the unit are maximized by adjusting the polarization of the receive antenna and rotating the EUT. Manipulating the system cables also maximizes EUT emissions [Remark: Not applicable]. Worst case emissions are listed under chapter 7.6 Test Results. The following loads were used: Second and third harmonics measured with two loads: one of 00 ml of water and the other of 0 ml of water. Each load was tested both with the beaker located in the center of the oven and with it in the right front corner All other measurements: 0ml of water, with the beaker located in the center of the oven. Radiated Emissions Test Characteristics Frequency range Test distance Test instrumentation resolution bandwidth Receive antenna scan height Receive antenna polarization 0 MHz - 5 GHz 0 m (0 MHz 0 MHz)* m ( GHz 5 GHz)* 0 khz (0 MHz - 0 MHz) MHz ( GHz - 5 GHz) m - 4 m Vertical/Horizontal * According to FCC/OET MP-5 (986) Section..6 Antenna-to-test unit distance: [ ] The Comission as an alternative shall accept measurements at a closer fixed distance, provided /d is used as attenuation law factor (where d is the distance measured in appropriate units). [ ] When performing measurements at a distance other than that specified, the results was extrapolated to the specified distance using an extrapolation factor of 0 db/decade (inverse linear-distance for field strength measurements).
19 Page 9 of Calculation of Field Strength Limits E.g. radiated spurious emissions field strength limits: µv/m at 00 meters = 5 SQRT(power/0) = 5x SQRT(0/0) = µv/m corresponds with 0.5 dbµv/m. 7.5 Field Strength Calculation The field strength is calculated by adding the Antenna Factor and Cable Factor. The basic equation with a sample calculation is as follows: FS = RA + AF + CF where FS = Field Strength in dbµv/m RA = Receiver Amplitude in dbµv AF = Antenna Factor in db(/m) CF = Cable Attenuation Factor in db Assume a receiver reading of 0 dbµv is obtained. The Antenna Factor of 0 db(/m) and a Cable Factor of 0. db are added, giving a field strength of. dbµv/m. The. dbµv/m value can be mathematically converted to its corresponding level in µv/m. FS = =. [dbµv/m] Level in µv/m = Common Antilogarithm (./0) = 7. For test distance other than what is specified, the field strength is calculated by adding additionally an extrapolation factor of 0 db/decade (inverse linear-distance for field strength measurements). The basic equation with a sample calculation is as follows: FS = FST + DF where FS = Field Strength in dbµv/m FST = Field Strength at test distance in dbµv/m DF = Distance Extrapolation Factor in db, where DF = 0 log (Dtest/Dspec) where Dtest = Test Distance and Dspec = Specified Distance Assume the tests performed at a reduced Test Distance of 0 m instead of the Specified Distance of 00 m giving a Distance Extrapolation Factor of DF = 0 log(0m/00m) = -9.5 db. Assuming a measured field strength level of. dbµv/m is obtained. The Distance Factor of 9.5 db is added, giving a field strength of 0.8 dbµv/m. The 0.8 dbµv/m value can be mathematically converted to its corresponding level in µv/m. FS = = 0.8 [dbµv/m] Level in µv/m = Common Antilogarithm (0.8/0) = 0.96
20 Page 0 of Test Results PRODUCT SPURIOUS EMISSIONS DATA BELOW GHz; Test Distance = 0m No Emission Frequency* Receiver Bandwidth and Mode Receiver Reading RA Load / Load Location Antenna Factor AF ** Distance Extrapol. Factor DF Result = Corrected Reading FS Result Spec Limit Polarization Margin [db(µv)] [MHz] [khz] [db] [db] [db(µv/m)] [µv/m] [µv/m] [db] v h , AV 0 0ml/ h center h v Remark: No Emission Frequency* 9.7 * Six max. emissions above noise floor reported. ** Cable attenuation already included in antenna factor. Receiver Bandwidth and Mode PRODUCT SPURIOUS EMISSIONS DATA ABOVE GHz; Test Distance = m Receiver Reading RA Load/ Load Location* Antenna Factor AF Distance Extrapol. Factor DF Result = Corrected Reading FS Result Spec Limit v 4.8 Cable Attenuation Polarization [MHz] [khz] [db(µv)] [db] [db] [db] [db] [db(µv/m)] [µv/m] [µv/m] [db] ml/ center.7 Margin h v h , AV v 5.5 0ml/ v 0. center v h Remark: * Tests performed for loads and load positions as per FCC/OET-MP5. Results for max. reading at particular frequencies reported, only. h 8.0
21 Page of Result Summary Manufacturer: MIELE & CIE. KG Model: H8 BM Serial Number: 00/ The EUT meets the requirements of this section. Test Personnel: Wolfgang Döring Test Date:
22 Page of 7 8 CONDUCTED EMISSIONS Test Requirement: FCC 47 CFR, Part 8 Test Procedure: FCC/OET MP-5 (986) 8. Regulation Section 8.07 Conduction limits. For the following equipment, when intended to be connected to the public utility (AC) power line, the radio frequency voltage that is conducted back onto the AC power line on any frequency or frequencies shall not exceed the limits in the following tables. Compliance with the provisions of this paragraph shall be based on the measurement of the radio frequency voltage between each power line and ground at the power terminal using a µh/ ohms line impedance stabilization network (LISN). [ ] (b) All other part 8 consumer devices: Frequency of Emission [MHz] Conducted Limit [dbuv] Quasi-peak (QP) Average (AV) to 56 * 56 to 46 * * Decreases with the logarithm of the frequency. (d) If testing with a quasi-peak detector demonstrates that the equipment complies with the average limits specified in the appropriate table in this section, additional testing to demonstrate compliance using a average detector is not required. (e) this conduction limits shall apply only outside of the frequency bands specified in 8.0. [ ] (g)the tighter limit applies at the boundary between the frequency ranges. 8. Test Procedures The EUT shall be placed centimeters from an earth grounded conducting surface at least meters square (e.g. the floor of the test chamber) and shall be kept at least centimeters from any other earthed conducting surface. Floor standing equipment may of course be mounted on an earth grounded floor. If the measurement is made in a shielded enclosure, the walls of the enclosure may be substituted for the meters square conducting surface. If the EUT is supplied with a flexible power lead, the voltage shall be measured at the plug end of the power lead. The length of the power lead in excess centimeters separating the EUT from the LISN shall be folded back and forth so as to form a bundle not exceeding 0 to centimeters in length. [ ] The EUT is connected to a dedicated LISN and all peripherals are connected to a second separate LISN circuit. The LISNs are bonded to the groundplane. Conducted measurements are made on each current carrying conductor with respect to ground. Test performed in a shielded enclosure. The EUT was placed a non-conductive support centimeters from the floor of the test chamber. Tests performed at the AC input of the EUT on lines N, L and L. The EUT was powered by both nominal voltages L-L of 08 V Hz and L-L of V Hz, respectively.
23 Page of 7 Tests performed with a load of 0ml of water with the beaker placed in the center of the oven. The initial step in collecting conducted data is a peak and average scan of the measurement range with an EMI test receiver. The significant peaks are then measured with quasi-peak detector. Worst case conducted emissions are reported. 8. Test Equipment Type EMI Receiver Protector Limiter 0 db V-LISN ohms//( uh + 5 ohms) AC Power Source Digital Multimeter Manufacturer/ Model No. Rohde & Schwarz ESS Rohde & Schwarz ESH-Z Rohde & Schwarz ESH-Z5 CALIFORNIA INSTRUMENTS HGA with pcs. 0ih-0 Voltcraft VC 8 EMCC Ident. No. Last Calibration Next Calibration
24 Page 4 of Test Results 8.4. Line Voltage (L-L) 08 V EMCCons DR.RASEK Conducted Emissions. May 08 7:07 EUT: H8BM Manuf: MIELE Op Cond: Operating; 08V Operator: Doering Test Spec: FCC Part 8 Comment: L Scan Settings ( Range) Frequencies Receiver Settings Start Stop Step IF BW Detector M-Time Atten Preamp OpRge k 0M 5k 0k PK+AV 0ms AUTO LN OFF db Final Measurement: x QP / + AV Meas Time: s Subranges: 5 Acc Margin: 5dB Transducer No. Start Stop Name 0k 0M Limiter dbuv FCC8QP FCC8AV PAGE 0 MHz
25 Page 5 of 7 EMCCons DR.RASEK Conducted Emissions. May 08 7:07 EUT: H8BM Manuf: MIELE Op Cond: Operating; 08V Operator: Doering Test Spec: FCC Part 8 Comment: L Scan Settings ( Range) Frequencies Receiver Settings Start Stop Step IF BW Detector M-Time Atten Preamp OpRge k 0M 5k 0k PK+AV 0ms AUTO LN OFF db Final Measurement Results: Frequency QP Level QP Limit MHz dbuv dbuv Frequency AV Level AV Limit MHz dbuv dbuv * limit exceeded PAGE
26 Page 6 of 7 EMCCons DR.RASEK Conducted Emissions. May 08 6:57 EUT: H8BM Manuf: MIELE Op Cond: Operating; 08V Operator: Doering Test Spec: FCC Part 8 Comment: L Scan Settings ( Range) Frequencies Receiver Settings Start Stop Step IF BW Detector M-Time Atten Preamp OpRge k 0M 5k 0k PK+AV 0ms AUTO LN OFF db Final Measurement: x QP / + AV Meas Time: s Subranges: 5 Acc Margin: 5dB Transducer No. Start Stop Name 0k 0M Limiter dbuv FCC8QP FCC8AV PAGE 0 MHz
27 Page 7 of 7 EMCCons DR.RASEK Conducted Emissions. May 08 6:57 EUT: H8BM Manuf: MIELE Op Cond: Operating; 08V Operator: Doering Test Spec: FCC Part 8 Comment: L Scan Settings ( Range) Frequencies Receiver Settings Start Stop Step IF BW Detector M-Time Atten Preamp OpRge k 0M 5k 0k PK+AV 0ms AUTO LN OFF db Final Measurement Results: Frequency QP Level QP Limit MHz dbuv dbuv Frequency AV Level AV Limit MHz dbuv dbuv * limit exceeded PAGE
28 Page 8 of 7 EMCCons DR.RASEK Conducted Emissions. May 08 7:8 EUT: H8BM Manuf: MIELE Op Cond: Operating; 08V Operator: Doering Test Spec: FCC Part 8 Comment: N Scan Settings ( Range) Frequencies Receiver Settings Start Stop Step IF BW Detector M-Time Atten Preamp OpRge k 0M 5k 0k PK+AV 0ms AUTO LN OFF db Final Measurement: x QP / + AV Meas Time: s Subranges: 5 Acc Margin: 5dB Transducer No. Start Stop Name 0k 0M Limiter dbuv FCC8QP FCC8AV PAGE 0 MHz
29 Page 9 of 7 EMCCons DR.RASEK Conducted Emissions. May 08 7:8 EUT: H8BM Manuf: MIELE Op Cond: Operating; 08V Operator: Doering Test Spec: FCC Part 8 Comment: N Scan Settings ( Range) Frequencies Receiver Settings Start Stop Step IF BW Detector M-Time Atten Preamp OpRge k 0M 5k 0k PK+AV 0ms AUTO LN OFF db Final Measurement Results: Frequency QP Level QP Limit MHz dbuv dbuv Frequency AV Level AV Limit MHz dbuv dbuv * limit exceeded PAGE
30 Page 0 of Line Voltage (L-L) V EMCCons DR.RASEK Conducted Emissions. May 08 6: EUT: H8BM Manuf: MIELE Op Cond: Operating; V Operator: Doering Test Spec: FCC Part 8 Comment: L Scan Settings ( Range) Frequencies Receiver Settings Start Stop Step IF BW Detector M-Time Atten Preamp OpRge k 0M 5k 0k PK+AV 0ms AUTO LN OFF db Final Measurement: x QP / + AV Meas Time: s Subranges: 5 Acc Margin: 5dB Transducer No. Start Stop Name 0k 0M Limiter dbuv FCC8QP FCC8AV PAGE 0 MHz
31 Page of 7 EMCCons DR.RASEK Conducted Emissions. May 08 6: EUT: H8BM Manuf: MIELE Op Cond: Operating; V Operator: Doering Test Spec: FCC Part 8 Comment: L Scan Settings ( Range) Frequencies Receiver Settings Start Stop Step IF BW Detector M-Time Atten Preamp OpRge k 0M 5k 0k PK+AV 0ms AUTO LN OFF db Final Measurement Results: Frequency QP Level QP Limit MHz db db Frequency AV Level AV Limit MHz db db * limit exceeded PAGE
32 Page of 7 EMCCons DR.RASEK Conducted Emissions. May 08 6:4 EUT: H8BM Manuf: MIELE Op Cond: Operating; V Operator: Doering Test Spec: FCC Part 8 Comment: L Scan Settings ( Range) Frequencies Receiver Settings Start Stop Step IF BW Detector M-Time Atten Preamp OpRge k 0M 5k 0k PK+AV 0ms AUTO LN OFF db Final Measurement: x QP / + AV Meas Time: s Subranges: 5 Acc Margin: 5dB Transducer No. Start Stop Name 0k 0M Limiter dbuv FCC8QP FCC8AV PAGE 0 MHz
33 Page of 7 EMCCons DR.RASEK Conducted Emissions. May 08 6:4 EUT: H8BM Manuf: MIELE Op Cond: Operating; V Operator: Doering Test Spec: FCC Part 8 Comment: L Scan Settings ( Range) Frequencies Receiver Settings Start Stop Step IF BW Detector M-Time Atten Preamp OpRge k 0M 5k 0k PK+AV 0ms AUTO LN OFF db Final Measurement Results: Frequency QP Level QP Limit MHz dbuv dbuv Frequency AV Level AV Limit MHz dbuv dbuv * limit exceeded PAGE
34 Page 4 of 7 EMCC DR.RASEK Conducted Emissions. May 08 6: EUT: H8BM Manuf: MIELE Op Cond: Operating; V Operator: Doering Test Spec: FCC Part 8 Comment: N Scan Settings ( Range) Frequencies Receiver Settings Start Stop Step IF BW Detector M-Time Atten Preamp OpRge k 0M 5k 0k PK+AV 0ms AUTO LN ON db Final Measurement: x QP / + AV Meas Time: s Subranges: 5 Acc Margin: 5dB Transducer No. Start Stop Name 0k 0M Limiter dbuv FCC8QP FCC8AV PAGE 0 MHz
35 Page 5 of 7 EMCC DR.RASEK Conducted Emissions. May 08 6: EUT: H8BM Manuf: MIELE Op Cond: Operating; V Operator: Doering Test Spec: FCC Part 8 Comment: N Scan Settings ( Range) Frequencies Receiver Settings Start Stop Step IF BW Detector M-Time Atten Preamp OpRge k 0M 5k 0k PK+AV 0ms AUTO LN ON db Final Measurement Results: Frequency QP Level QP Limit MHz dbuv dbuv Frequency AV Level AV Limit MHz dbuv dbuv * limit exceeded PAGE
36 Page 6 of Result Summary Manufacturer: MIELE & CIE. KG Model: H8 BM Serial Number: 00/ The EUT meets the requirements of this section. Test Personnel: Wolfgang Döring Test Date:
37 Page 7 of 7 9 MISCELLANEOUS COMMENTS AND NOTES None. 0 LIST OF ANNEXES The following annexes are separated parts to this test report. Annex Description File name Pages Annex 0 Label and Label Placement Diagrams 959G_Annex0.pdf Annex Photographs of test setups 959G_Annex.pdf 4 Annex Photographs of equipment under test (EUT) external views 959G_Annex.pdf 5 Annex Photographs of equipment under test (EUT) internal views 959G_Annex.pdf 5
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