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A3LMMV20PGCMicrowave Oven

Samsung Electronics Co Ltd
Microwave Oven - FCC ID A3LMMV20PGC - Samsung Electronics Co Ltd
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Application Details

Equipment Class
8CC - Part 18 Consumer Device
Date of Grant
Jun 01, 2006
Application Purpose
Original Equipment
Date of Application
Jun 01, 2006
Equipment Note
Microwave Oven
Frequency Range
2450.00000000 - 2450.00000000
Company
Samsung Electronics Co Ltd
Country
United States

Documents & Files

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Users Manual

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External Photos

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ID Label/Location Info

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Internal Photos

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Schematics

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

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ID Label/Location Info

Headquarters:Newton,IAU.S.A. MODEL/MODÉLE:MMV5207BCB SERIAL / SÉRIE : MANUFACTURED/FABRIQUÉ NOT FOR COMMERCIAL USE/NON DESTINÉ À UN USAGE COMMERCIAL P/N 8102P284-60: 1-800-688-2002FORSERVICE www.maytag.com MADE IN MALAYSIA FABRIQUÉ EN MALAISIE FCC ID : A3LMMV20PGC THIS PRODUCT COMPLIES WITH DHHS RULES 21 CFR SUBCHAPTER J. 120V A.C. 60Hz, 13A OUTPUT : 1000W Headquarters:Newton,IAU.S.A. MODEL/MODÉLE:MMV5207BCW SERIAL / SÉRIE : MANUFACTURED/FABRIQUÉ NOT FOR COMMERCIAL USE/NON DESTINÉ À UN USAGE COMMERCIAL P/N 8102P284-60: 1-800-688-2002FORSERVICE www.maytag.com MADE IN MALAYSIA FABRIQUÉ EN MALAISIE FCC ID : A3LMMV20PGC THIS PRODUCT COMPLIES WITH DHHS RULES 21 CFR SUBCHAPTER J. 120V A.C. 60Hz, 13A OUTPUT : 1000W Headquarters:Newton,IAU.S.A. MODEL/MODÉLE:MMV5207BCS SERIAL / SÉRIE : MANUFACTURED/FABRIQUÉ NOT FOR COMMERCIAL USE/NON DESTINÉ À UN USAGE COMMERCIAL P/N 8102P284-60: 1-800-688-2002FORSERVICE www.maytag.com MADE IN MALAYSIA FABRIQUÉ EN MALAISIE FCC ID : A3LMMV20PGC THIS PRODUCT COMPLIES WITH DHHS RULES 21 CFR SUBCHAPTER J. 120V A.C. 60Hz, 13A OUTPUT : 1000W

Schematics

OTR-7 PCTO HUMIDITY SENSOR CIRCUIT LOUVER CIRCUIT FTR-F3AA024E RY08 D061N4148M C1310nF 1N4148MD05 2KR28 78L05 IC05 F1 1N4148M D18 10KR23 TR07KRC246M TR02 470 KRC246M 2KR37 R17 2KR41 R27 R06 100K D281N4148M 2K 1N4148MD27 F1 D041N4148M 2KR35 RY06 FTR-F3AA024E 1N4148M D24 C10100nF R19 +15V +5V R102.2K +5V 1K +24V -24V R30 348K ZD03 UZ5.1BSB FTR-F3AA024E RY02 UZ5.1BSBZD05 KRC246MTR03 200KR26 TR10KRA226-AT 249K R29 FTR-F3AA024E RY07 ZNR110D471 TR04 R3347K KRC246M 47uFC02 C1622pF CN05 SMW250-03V_BLU 213 TR05KRC246M 1T4D03 100nFC07 +15V TR16KRC246M KRC246MTR06 TR17KRC246M 1N4148M D20 R3147K +24V +24V +5V R152K KRC246MTR08 TR11KRC246M +24V C08100nF C04 R22470 1N4148MD11 F2 100nF RY03 DU24D1-1P 4.7uFC12 TR12KRC246M R4410K 47KAR01 +5V 10KR03 D251T4 KRC246MTR13 1N4148MD07 D19 1N4148M CBE2220BA BZ01 2K R20 XTL18MHz R402K +5V D081N4148M C114.7nF PTC1270MD151T4 D261N4148M X-OUT 28 +5V D21 1N4148M 161718 29 RESET 25 TESTVAref 5756 VAss 58 VDDVSS 26 19 Vkk 27 X-IN 56789101112131415 5455 50515253 4241 34 202123 59606162636412 333540393736383031224344454624 474849 32 P10 34 22uFC06 TMP87CM14F-CHUNIC01 2KR04 VCCVEE LVT1SLV-5574U KIA75S358IC04 IC03 7033P RY11 FTR-F3AA024E +5V SMW250-03V_WHT 231 R432K 1357 CN04 31975 CN03SMW250-07AV_RED 3 2 1 SMW250-09AV_REDCN06 1415 16 1110 8 7 6 5 4 F2 12516HS-16CN01 9 12 13 R16 DU24D1-1P RY04 2K R45300 FTR-F3AA024E RY10 47KR32 -24V D17 1N4148M D01 R2410K 1T4 D101N4148M 2200uFC01 R01 470 R362K +5V RY09 FTR-F3AA024E 2KR13 R1220K UZ5.1BSBZD04 R052K 78L15 1N4148M D22 +15V IC02 TR14KRC246M RY05 FTR-F3AA024E 22pFC17 TR09KRC246M C15100nF 470 R02 R21 2K 100nFC09 2KR39 D121N4148M P10P11 9 P12 10 P13 1319 P14 15 P15P16 12 P2 7 16 P3 14 P4 17 P5P6 4 P7 5 P8 6 P9 8 3G 27 4G 28 5G 29 6G 30 7G F11 1 F12 2 F21 32 F22 33 NP-1 20 NP-2 21 NP-3 22 NP-4 23 P1 1118 DSP1 SVM-07SS25 24 1G 25 2G 26 R253.32K +24V 1N4148M D16 R112K -24V 47KR34 1N4148MD09 R382K KRC246MTR01 R142K 1N4148M C05100uF D23 1T4 +5V D131N4148M D02 UZ5.1BSB ZD01 4152 C144.7uF CN02SMW250-05V_WHT 3 1KR18 KRC246MTR15 2K RY01 FTR-F3AA024E 1N4148MD14 R42 C03470uF R4647K L1 Ladder-1Ladder-2VmVs LV-IN2LV-IN1 CN-RVM-R VENT-M VENT-L VENT-H VL-RVH-R VENT-MVENT-HVENT-L BZ-S POWER-L P-R-L P-R-L TT-R CN-R VH-R LV-R LV-R LOUVER LOUVER N NIGHT BRIGHT Ladder-1 BZ BZ-N TCO I-R P-R-H M-R CB-R Vm VM-R Ladder-2 LV-IN1LV-IN2 TCO POWER-L BZ-LBZ-N BZ RESET RESET TT-R P-R-H INRUSH POWER-H I-R MAIN BRIGHT T-TABLE NIGHT CB-R VL-R DOORPOWER-HINRUSHT-TABLEMAIN M-R L1 N INT INT BZ-L BZ-S DOOR Vs

Test Report

JOB Number : LBE061287 Page 1 of 16 EMC TEST REPORT According to FCC CFR47 Part 18 Subpart C JOB Number : LBE061287 1. This test report does not constitute an endorsement by NIST/NVLAP or U.S Government. 2. This test report is to certify that the tested device properly complies with the requirements of FCC Rules and Regulations Part 18 CFR47 Subpart C Intentional Radiators. All tests necessary to show compliance to the requirements were and these results met the specifications requirement. 1. Applicant Name :SAMSUNG ELECTRONICS CO., LTD. 416 Maetan 3-Dong, Yeongtong-Gu, Suwon-Si, Gyeonggi-Do, Korea, 443-742 2. Identification of tested device 2.1 FCC ID :A3LMMV20PGC 2.2 Device Name :MICROWAVE OVEN 2.3 Trade Name :Maytag, Jenn-Air 2.4 Model Number :MMV5207BCQ Variant Model : MMV5207BCB/MMV5207BCS/JMV8208BCB/JMV8208BCW/JMV8208BCS 2.5 RF Output Power : 1 000W ( by IEC 705 method ) 3. Test Procedure and Items 3.1 FCC/OST MP-5 : 1986 4. Issued Date :May 30, 2006 Tested by: Sung Jin, SIM / Test Engineer Authorised by: No Cheon, PARK / Chief of EMC Lab. This report shall not be reproduced except in full, without the written approval of SEC EMC laboratory. This laboratory is registered by the NIST/NVLAP, U.S.A. The test reported herein have been performed in accordance with its terms of registration. NVLAP LAB CODE 200623-0 JOB Number : LBE061287 Page 2 of 16 TABLE OF CONTENTS 1. Product Description 2. Test Facility 3. Accreditation and Listing 4. Radio Noise Emission Measurement Procedures/Results 4.1 Radiation Hazard Measurement 4.2 Input Power Measurement 4.3 RF Output Power Measurement 4.4 Operation Frequency Measurement 4.4.1 Frequency Measurement 4.5 Conducted Emission Measurement 4.5.1 Conducted Emission Measurement Procedure 4.5.2 Conducted Emission Measurement Configuration 4.5.3 Conducted Emission Measurement Data(0.15 MHz ~30 MHz) 4.6 Radiated Emission Measurement 4.6.1 Radiated Emission Measurement Procedure 4.6.2 Radiated Emission Measurement Configuration 4.6.3 Radiated Emission Measurement Data(30 MHz ~ 1 000 MHz) 4.6.4 Radiated Emission Measurement Data(1 GHz ~ 25 GHz) 5. Measurement Equipment List This report shall not be reproduced except in full, without the written approval of SEC EMC laboratory. JOB Number : LBE061287 Page 3 of 16 1. Product Description The equipment under test is a microwave oven sold for commercial use. Model : MMV5207BCQ is a 1 000 W microwave oven with digital controls. Installation Type: UTC Clock Frequency : 8 MHz < Magnetron > Model : OM-75P manufactured by Samsung Electronic Co., Ltd. < Electrical Ratings > 1) Power Supply : 120 V ac, 60 Hz 2) Operating Frequency : 2 450 +/- 50 MHz 3) Power Input : 13 A 4) RF Power Output : 1 000 W (by IEC 705 method) 2. Test Facility The Semi-anechoic chamber and Conducted measurement facilities used to collect the radiated data are located at 416, Maetan 3-Dong, Yeongtong-Gu, Suwon-Si, Gyeonggi-Do, Korea. The sites are constructed in conformance with the requirements of ANSI C63.4 and CISPR Publication 22. 3. Accreditation and Listing The test facilities used to perform radiated and conducted emissions tests are accrediated by National Voluntary Laboratory Accreditation Program for the specific of accreditation under Lab Code: 200623-0 to perform Electromagnetic Interference tests according to FCC PART 15 and CISPR 22 requirements. No part of this report may be used to claim or imply product endorsement by NVLAP or any agency of the US Government. This report shall not be reproduced except in full, without the written approval of SEC EMC laboratory. JOB Number : LBE061287 Page 4 of 16 4. Radio Noise Emission Measurement Procedures/Results 4.1 Radiation Hazard Measurement A 700 ml water load was placed in the center of the oven. The power setting was set to maximum power. While the oven was operating, the Microwave Survey Meter probe was moved slowly around the door seams to check for leakage. Fig. 1 Test Setup for Radiation Hazard Measuerment The results of this test are as follows. ProbeMaximum LeakageLimit Location[mW/Cm2][mW/Cm2] 10.181.0 20.171.0 90.141.0 All others0.101.0 This report shall not be reproduced except in full, without the written approval of SEC EMC laboratory. 1 2 3 4 5 6 7 8 9 JOB Number : LBE061287 Page 5 of 16 4.2 Input Power Measurement Input power and current were measured using a Power Analyzer. A 700 ml water load was placed in the center of the oven and the oven set to maximum power. A 700 ml water load was chosen for its compatibility. Manufacturers to determine their input ratings commonly use this procedure. Fig. 2 Test Setup for Input power The results of this test are as follows. InputInputMeasuredEUT Spec. VoltageCurrentInput powerInput current [Vac][amps][watts][amps] 12013.121 54913 Based on the measured input power, the EUT was found to be operating within the intended specifications. This report shall not be reproduced except in full, without the written approval of SEC EMC laboratory. JOB Number : LBE061287 Page 6 of 16 4.3 RF Output Power Measurement The Caloric Method was used to determine maximum output power. The initial temperature of a 1 000 ml water load was measured. The water load was placed in the center of the oven. The oven was operated at maximum output power. Then the temperature of the water was 20 , the test was finished. Fig.3 Test Setup for RF output power QuantityStartingFinalHeatingRF Power of waterTemperature TemperatureTime [ml][centigrade][centigrade][seconds][watts] 1 0001020.042963.3 1 0001019.942957.7 1 0001020.042964.8 961.9 Power [W] = (4.187) * Lw * (Tf-Ti) + 0.55*Bi*(Tf- Tr) t Magnetron type: OM-75P L w : Mass of the water, in grams B i : Mass of the container, in grams T f : Final temperature of the water, in °C T i : Initial temperature of the water, in °C T r : Ambient temperature, in °C t : Heating time in seconds, excluding the magnetron filament heat-up time. The measured output was found to be ABOVE 500 Watts. Therefore, in accordance with se…

Text truncated - open the document above for the full version.

Test Setup Photos

JOB Number : LBE061287 Page 4 of 16 4. Radio Noise Emission Measurement Procedures/Results 4.1 Radiation Hazard Measurement A 700 ml water load was placed in the center of the oven. The power setting was set to maximum power. While the oven was operating, the Microwave Survey Meter probe was moved slowly around the door seams to check for leakage. Fig. 1 Test Setup for Radiation Hazard Measuerment The results of this test are as follows. ProbeMaximum LeakageLimit Location[mW/Cm2][mW/Cm2] 10.181.0 20.171.0 90.141.0 All others0.101.0 This report shall not be reproduced except in full, without the written approval of SEC EMC laboratory. 1 2 3 4 5 6 7 8 9 JOB Number : LBE061287 Page 5 of 16 4.2 Input Power Measurement Input power and current were measured using a Power Analyzer. A 700 ml water load was placed in the center of the oven and the oven set to maximum power. A 700 ml water load was chosen for its compatibility. Manufacturers to determine their input ratings commonly use this procedure. Fig. 2 Test Setup for Input power The results of this test are as follows. InputInputMeasuredEUT Spec. VoltageCurrentInput powerInput current [Vac][amps][watts][amps] 12013.121 54913 Based on the measured input power, the EUT was found to be operating within the intended specifications. This report shall not be reproduced except in full, without the written approval of SEC EMC laboratory. JOB Number : LBE061287 Page 6 of 16 4.3 RF Output Power Measurement The Caloric Method was used to determine maximum output power. The initial temperature of a 1 000 ml water load was measured. The water load was placed in the center of the oven. The oven was operated at maximum output power. Then the temperature of the water was 20 , the test was finished. Fig.3 Test Setup for RF output power QuantityStartingFinalHeatingRF Power of waterTemperature TemperatureTime [ml][centigrade][centigrade][seconds][watts] 1 0001020.042963.3 1 0001019.942957.7 1 0001020.042964.8 961.9 Power [W] = (4.187) * Lw * (Tf-Ti) + 0.55*Bi*(Tf- Tr) t Magnetron type: OM-75P L w : Mass of the water, in grams B i : Mass of the container, in grams T f : Final temperature of the water, in °C T i : Initial temperature of the water, in °C T r : Ambient temperature, in °C t : Heating time in seconds, excluding the magnetron filament heat-up time. The measured output was found to be ABOVE 500 Watts. Therefore, in accordance with section 18.305 of Subpart C, the measured out-of-band emissions were compared to the 25xSQRT(power/500)[uV/m] @ 300 m limit. This report shall not be reproduced except in full, without the written approval of SEC EMC laboratory. Average RF Power of 3 Trials

Contact Information

Applicant

Jenni Chun(General Manager)
[email protected]973-808-6375Fax: 973-808-6361

Technical Contact

PCTEST Engineering Lab., Inc.Randy Ortanez
[email protected]410-290-6652

6660-B Dobbin Road · Columbia, Maryland · United States

Test Firm

Samsung Electronics Co., Ltd.John Lee
[email protected]82-31-200-7241Fax: 82-31-200-7272

Technical Specifications

#Rule PartsFrequency RangePower Output
1182.45 GHz - 2.45 GHz1000 W
Grant Notes
Magnetron Type: SAMSUNG OM-75P

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