
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Radio Frequency (RF) Signals THIS MODEL PHONE MEETS THE GOVERNMENT’S REQUIREMENTS FOR EXPOSURE TO RADIO WAVES Your wireless phone contains a radio transmitter and receiver. Your NEC phone is designed and manufactured not to exceed the emission limits for exposure to radio frequency (RF) energy set by the Federal Communications Commission of the U.S. Government. These limits are part of comprehensive guidelines and establish permitted levels of RF energy for the general population. The guidelines are based on standards that were developed by independent scientific organizations through periodic and thorough evaluation of scientific studies. The exposure standard for wireless mobile phones employs a unit of measurement known as the Specific Absorption Rate, or SAR. The SAR limit set by the FCC is 1.6W/kg.* Tests for SAR are conducted using standard operating positions accepted by the FCC with the phone transmitting at its highest certified power level in all tested frequency bands. Although the SAR is determined at the highest certified power level, the actual SAR level of the phone while operating can be well below the maximum value. This is because the phone is designed to operate at multiple power levels so as to use only the power required to reach the network. In general, the closer you are to a wireless base station antenna, the lower the power output. Before a phone model is available for sale to the public, it must be tested and certified to the FCC that it does not exceed the limit established by the government-adopted requirement for safe exposure. The tests are performed on positions and locations (for example, at the ear and worn on the body) as required by the FCC for each model. The highest SAR value for this model phone as reported to the FCC when tested for use at the ear is 0.850 W/kg, and when worn on the body, as described in this user guide, is 0.296 W/kg. (Body-worn measurements differ among phone models, depending upon available accessories and FCC requirements.) While there may be differences between the SAR levels of various phones and at various positions, they all meet the government requirement. Body-worn Operation This device was tested for typical body-worn operations with the back of the phone kept 1.5 cm. from the body. To maintain compliance with FCC RF exposure requirements, use only belt-clips, holsters or similar accessories that maintain a 1.5 cm. separation distance between the user’s body and the back of the phone, including the antenna, whether extended or retracted. The use of third-party belt-clips, holsters and similar accessories should not contain metallic components in its assembly. The use of accessories that do not satisfy these requirements may not comply with FCC RF exposure requirements, and should be avoided. *In the United States, the SAR limit for mobile phones used by the public is 1.6 watts/kg (W/kg) averaged over one gram of tissue. SAR values may vary depending upon national reporting requirements and the network band. ************************************************************************ Separate Section in another location of the manual: ABOUT THE ANTENNA Your phone has a built-in antenna. As with any other radio transmitting device, do not touch the antenna unnecessarily when the phone is switched on. Contact with the antenna affects call quality and may cause the phone to operate at a higher power level than needed. Not touching the antenna during a call optimizes the antenna performance and the talk- time of your phone. Use a pictogram to depict where the antenna is; use an “X” and illustrate where not to touch the phone and how the phone should be held “normal position”
Radio Frequency (RF) SignalsTHIS MODEL PHONE MEETS THE GOVERNMENT’SREQUIREMENTS FOR EXPOSURE TO RADIO WAVESYour wireless phone contains a radio transmitter and receiver. Your NECphone is designed and manufactured not to exceed the emission limits forexposure to radio frequency (RF) energy set by the Federal CommunicationsCommission of the U.S. Government. T hese limits are part of comprehensive guidelines and establish permitted le vels of RF energy for the general population. The guidelines are based on standards that were developed by independent scientific organizations through periodic and thorough evaluationof scientific studies.The exposure standard for wireless mobile phones employs a unit ofmeasurement known as the Specific Absorption Rate, or SAR. The SAR limitset by the FCC is 1.6W/kg.* Tests for SAR are conducted using standard operating positions accepted by the F CC with the phone transmitting at its highest certified power level in all tested frequency bands. Although the SARis determined at the highest certified powe r level, the actual SAR level of the phone while operating can be well below the maximum value. This is becausethe phone is designed to operate at multiple power levels so as to use only thepower required to reach the network. In general, the closer you are to a wireless base station antenna, the lower the power output.Before a phone model is available for sale to the public, it must be tested andcertified to the FCC that it does not exceed the limit established by the government-adopted requirement for safe exposure. The tests are performed on positions and locations (for example, at the ear and worn on the body) as required by the FCC for each model. The highest SAR value for this modelphone as reported to the FCC when tested for use at the ear is 0.850 W/kg,and when worn on the body, as described in this user guide, is 0.296 W/kg.(Body-worn measurements differ among phone models, depending uponavailable accessories and FCC requirements.) While there may be differencesbetween the SAR levels of various phones and at various positions, they allmeet the government requirement. Body-worn OperationThis device was tested for typical body-worn operations with the back of thephone kept 1.5 cm. from the body. To maintain compliance with FCC RFexposure requirements, use only belt-cli ps, holsters or similar accessories that maintain a 1.5 cm. Separation distance between the user’s body and the back of the phone, including the antenna, wh ether extended or retracted. The use of third-party belt-clips, holsters and similar accessories should not contain metallic components in its assembly. The use of accessories that do notsatisfy these requirements may not comply with FCC RF exposurerequirements, and should be avoided.*In the United States, the SAR limit for mobile phones used by the public is 1.6 watts/kg (W/kg) averaged over one gram of tissue. SAR values may varydepending upon national reporting requirements and the network band. *************************** ********************** **************** Separate Section in anothe r location of the manual: ABOUT THE ANTENNAYour phone has a built-in antenna. As wi th any other radio transmitting device, do not touch the antenna unnecessarily when the phone is switched on. Contact with the antenna affects call quality and may cause the phone to operate at a higher power level than needed. Not touching the antenna during a call optimizes the antenna performance and the talk-time of your phone.Use a pictogram to depict where the antenna is; use an “X” and illustratewhere not to touch the phone and how the phone should be held “normal position”
NEC America, Inc. 6535 N. Slate Hwy. 161 Irving, TX 75039-2402 Tel. 214-262-2000 April 8, 2002 Federal Communications Commission Authorization and Evaluation Division Equipment Authorization Branch 7435 Oakland Mills Road Columbia, MD 21046 To Whom It May Concern: The Wireless Engineering Division of NEC America, Inc. (“WED”), the undersigned, hereby authorizes PCTEST Engineering Laboratory Inc. (“PCTEST”), to act on the behalf of the WED solely in matters relating to the application for an FCC equipment authorization for the model ID# NEC A98-MP6JlEl-lF, including the signing of documents in connection with this Application. Necessary acts carried out by PCTEST on our behalf of the WED in connection with the Application shall have the same effect as acts of the WED. The WED also hereby certify that no party to this application is subject to a denial of benefits, including FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988,21 U.S.C. 853(a). Sincerely, Assistant General Manager Wireless Engineering Division
NEC America, Inc. 6535 N. State Hwy.161 Irving, TX 75039-2402 Tel. 214-262-2000 April 8,2002 Federal Communications Commission Equipment Authorization Branch 7435 Oakland Mills Road Columbia, MD 21046 In re: NEC America, Inc. FCC ID: A98-MP6JlEl-lF FCC Part 24 Certification Request for Confidentiality Gentlemen: In accordance with 0,459 of CFR 47, NEC America hereby requests confidentiality of the Block Diagrams, Circuit Diagrams, and the Circuit Descriptions attachments for the subject application. Those documents contain detailed system and equipment description and related information about the product which NEC America considers to be confidential proprietary, a custom design and, otherwise, not releasable to the general public. Since this design is a basis from which future technological products will evolve, NEC America considers this information would be of benefit to its competitors, and that the disclosure of the information in these documents would give competitors an unfair advantage in the market. Sincerely, Jim Helm Assistant General Manager Wireless Engineering Division
April 8, 2002 Federal Communications Commission Equipment Approval Services 7435 Oakland Mills Road Columbia, MD 21046 SUBJECT: NEC America Inc. FCC ID: A98-MP6J1E1-1F Gentlemen: Transmitted herewith, on behalf of NEC America Inc. is an application for notification of the following Single-Mode PCS GSM Phone: FCC ID: A98-MP6J1E1-1F MODEL No.: MP6J1E1-1F TRADE NAME: NEC EUT TYPE: Dual-Band PCS GSM Phone Attached is the applicant’s Letter of Authorization, Confidentiality Request, measurement report (test data and test plots), FCC ID label and location, test setup photographs, internal and external photographs, block diagram (confidential), schematics (confidential), Operational Description (confidential), and the User's manual. Should you have any questions or comments concerning the above, please contact the undersigned. cc: Jim Helm, Assistant General Manager
June 10, 2002 Federal Communications Commission Equipment Approval Services 7435 Oakland Mills Road Columbia, MD 21046 Attn: Mr. Stan Lyles SUBJECT: NEC America Inc. FCC ID: A98-MP6J1E1-1F 731 Confirmation No.: EA396407 Correspondence Reference No.: 23020 Request for Tech. Info.: 5/29/2002 Dear Stan: Transmitted herewith, on behalf of NEC America Inc., is an amendment provided in response to the request for technical information dated May 29, 2002. 1. Please find attached the retested SAR Test Data with the test photos of the corrected position. 2. Please find attached the revised operational description clarifying the conducted power levels of +30.0dBm for PCS1900 and +28.0 dBm for 800MHz band. 3. Please find attached the final version of the operational description. We trust this information is sufficient to issue the grant as soon as possible. If you have any further questions, please do not hesitate to contact us. Cc: NEC America Inc.
June 12, 2002 Federal Communications Commission Equipment Approval Services 7435 Oakland Mills Road Columbia, MD 21046 Attn: Mr. Stan Lyles SUBJECT: NEC America Inc. FCC ID: A98-MP6J1E1-1F 731 Confirmation No.: EA396407 Correspondence Reference No.: 23099 Request for Tech. Info.: 6/12/2002 Dear Stan: Transmitted herewith, on behalf of NEC America Inc., is an amendment provided in response to the request for technical information dated June 12, 2002. 1. Please find attached the latest draft version of the users manual page that contains the final wording for the RF warning page. We trust this information is sufficient to issue the grant as soon as possible. If you have any further questions, please do not hesitate to contact us. Cc: NEC America Inc.
© 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone
© 2002 PCTEST Lab FCC ID SAMPLE LABEL & LOCATION LABELLING REQUIREMENTS PER §§ 2.925 The Label shown shall be permanently affixed at a conspicuous location on the device and be readily visible to the user at the time of purchase. (SEE NEXT PAGE)
© 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone
NEC FCC ID: A98-MP6J1E1-1F -- 850MHz GSM Head SAR SAM Phantom; Right Hand Section; Probe:ET3DV6 - SN1560; ConvF(6.78,6.78,6.78) Med. Parameters 835 MHz Brain: σ = 0.91 mho/m ε r = 41.55 ρ = 1.00 g/cm 3 ; Antenna Position -- Out; Crest Factor 8.0 SAR (1g): 0.377 mW/g, SAR (10g): 0.182 mW/g NEC DualBand GSM Phone Model: MP6J1E1-1F 850MHz GSM Mode, Ch.251 [848.8MHz]; Standard Battery; Ambient Temp. = 22.2°C / Meas. Tissue Temp. = 22.0° Conducted Power = 28.0dBm; Flip = open; Right Head SAR, Cheek/Touch position Test Date -- 02/28/2002 [FCC/OET Bulletin 65 - Supplement C, July 2001] SAR Tot [mW/g] 3.10E-2 9.30E-2 1.55E-1 2.17E-1 2.79E-1 PCTEST Engineering Laboratory, Inc. NEC FCC ID: A98-MP6J1E1-1F -- 850MHz GSM Head SAR SAM Phantom; Right Hand Section; Probe:ET3DV6 - SN1560; ConvF(6.78,6.78,6.78) Med. Parameters 835 MHz Brain: σ = 0.91 mho/m ε r = 41.55 ρ = 1.00 g/cm 3 ; Antenna Position -- Out; Crest Factor 8.0 SAR (1g): 0.0977 mW/g, SAR (10g): 0.0526 mW/g NEC DualBand GSM Phone Model: MP6J1E1-1F 850MHz GSM Mode, Ch.251 [848.8MHz]; Standard Battery; Ambient Temp. = 22.2°C / Meas. Tissue Temp. = 22.0° Conducted Power = 28.0dBm; Flip = open; Right Head SAR, Ear/15° Tilt position Test Date -- 02/28/2002 [FCC/OET Bulletin 65 - Supplement C, July 2001] SAR Tot [mW/g] 6.70E-3 2.01E-2 3.35E-2 4.69E-2 6.03E-2 PCTEST Engineering Laboratory, Inc. NEC FCC ID: A98-MP6J1E1-1F -- 850MHz GSM Head SAR SAM Phantom; Left Hand Section; Probe:ET3DV6 - SN1560; ConvF(6.78,6.78,6.78) Med. Parameters 835 MHz Brain: σ = 0.91 mho/m ε r = 41.55 ρ = 1.00 g/cm 3 ; Antenna Position -- Out; Crest Factor 8.0 SAR (1g): 0.448 mW/g, SAR (10g): 0.238 mW/g NEC DualBand GSM Phone Model: MP6J1E1-1F 850MHz GSM Mode, Ch.251 [848.8MHz]; Standard Battery; Ambient Temp. = 22.2°C / Meas. Tissue Temp. = 22.0° Conducted Power = 28.0dBm; Flip = open; Left Head SAR, Touch/Cheek position Test Date -- 02/28/2002 [FCC/OET Bulletin 65 - Supplement C, July 2001] SAR Tot [mW/g] 2.95E-2 8.85E-2 1.47E-1 2.06E-1 2.65E-1 PCTEST Engineering Laboratory, Inc. NEC FCC ID: A98-MP6J1E1-1F -- 850MHz GSM Head SAR SAM Phantom; Left Hand Section; Probe:ET3DV6 - SN1560; ConvF(6.78,6.78,6.78) Med. Parameters 835 MHz Brain: σ = 0.91 mho/m ε r = 41.55 ρ = 1.00 g/cm 3 ; Antenna Position -- Out; Crest Factor 8.0 SAR (1g): 0.110 mW/g, SAR (10g): 0.0590 mW/g NEC DualBand GSM Phone Model: MP6J1E1-1F 850MHz GSM Mode, Ch.251 [848.8MHz]; Standard Battery; Ambient Temp. = 22.2°C / Meas. Tissue Temp. = 22.0° Conducted Power = 28.0dBm; Flip - open; Left Head SAR, Ear/15° Tilt position Test Date -- 02/28/2002 [FCC/OET Bulletin 65 - Supplement C, July 2001] SAR Tot [mW/g] 1.06E-2 3.18E-2 5.30E-2 7.42E-2 9.54E-2 PCTEST Engineering Laboratory, Inc. NEC FCC ID: A98-MP6J1E1-1F -- 1900MHz GSM Head SAR SAM Phantom; Right Hand Section; Probe:ET3DV6 - SN1560; ConvF(5.16,5.16,5.16) Med. Parameters 1900 MHz Brain: σ = 1.44 mho/m ε r = 40.1 ρ = 1.00 g/cm 3 ; Antenna Position -- Out; Crest Factor 8.0 SAR (1g): 0.719 mW/g, SAR (10g): 0.408 mW/g NEC DualBand GSM Phone Model: MP6J1E1-1F 1900MHz GSM Mode, Ch.810 [1909.8MHz]; Standard Battery; Ambient Temp. = 22.0°C / Meas. Tissue Temp. = 21.9°C Conducted Power = 29.9dBm; Flip = open; Right Head SAR, Cheek/Touch position Test Date -- 03/01/2002 [FCC/OET Bulletin 65 - Supplement C, July 2001] SAR Tot [mW/g] 4.58E-2 1.37E-1 2.29E-1 3.21E-1 4.12E-1 PCTEST Engineering Laboratory, Inc. NEC FCC ID: A98-MP6J1E1-1F -- 1900MHz GSM Head SAR SAM Phantom; Right Hand Section; Probe:ET3DV6 - SN1560; ConvF(5.16,5.16,5.16) Med. Parameters 1900 MHz Brain: σ = 1.44 mho/m ε r = 40.1 ρ = 1.00 g/cm 3 ; Antenna Position -- Out; Crest Factor 8.0 SAR (1g): 0.177 mW/g, SAR (10g): 0.105 mW/g NEC DualBand GSM Phone Model: MP6J1E1-1F 1900MHz GSM Mode, Ch.810 [1909.8MHz]; Standard Battery; Ambient Temp. = 22.0°C / Meas. Tissue Temp. = 21.9°C Conducted Power = 29.9dBm; Flip = open; Right Head SAR, Ear/15° Tilt position Test Date -- 03/01/2002 [FCC/OET Bulletin 65 - Supplement C, July 2001] SAR Tot [mW/g] 1.76E-2 5.28E-2 8.80E-2 1.23E-1 1.58E-1 PCTEST Engineering Laboratory, Inc. NEC FCC ID: A98-MP6J1E1-1F -- 1900MHz GSM Head SAR SAM Phantom; Left Hand Section; Probe:ET3DV6 - SN1560; ConvF(5.16,5.16,5.16) Med. Parameters 1900 MHz Brain: σ = 1.44 mho/m ε r = 40.1 ρ = 1.00 g/cm 3 ; Antenna Position -- Out; Crest Factor 8.0 SAR (1g): 0.850 mW/g, SAR (10g): 0.497 mW/g NEC DualBand GSM Phone Model: MP6J1E1-1F 1900MHz GSM Mode, Ch.810 [1909.8MHz]; Standard Battery; Ambient Temp. = 22.0°C / Meas. Tissue Temp. = 21.9°C Conducted Power = 29.9dBm; Flip = open; Left Head SAR, Cheek/Touch position Test Date -- 03/01/2002 [FCC/OET Bulletin 65 - Supplement C, July 2001] SAR Tot [mW/g] 8.20E-2 2.46E-1 4.10E-1 5.74E-1 7.38E-1 PCTEST Engineering Laboratory, Inc. NEC FCC ID: A98-MP6J1E1-1F -- 1900MHz GSM Head SAR SAM Phantom; Left Hand Section; Probe:ET3DV6 - SN1560; ConvF(5.16,5.16,5.16) Med. Parameters 1900 MHz Brain: σ = 1.44 mho/m ε r = 40.1 ρ = 1.00 g/cm 3 ; Antenna Position -- Out; Crest Factor 8.0 SAR (1g): 0.229 mW/g, SAR (10g): 0.137 mW/g NEC DualBand GSM Phone Model: MP6J1E1-1F 1900MHz GSM Mode, Ch.810 [1909.8MHz]; Standard Battery; Ambient Temp. = 22.0°C / Meas. Tissue Temp. = 21.9°C Conducted Power = 29.9dBm; Flip = open; Left Head SAR, Ear/15° Tilt position Test Date -- 03/01/2002 [FCC/OET Bulletin 65 - Supplement C, July 2001] SAR Tot [mW/g] 1.29E-2 3.87E-2 6.45E-2 9.03E-2 1.16E-1 PCTEST Engineering Laboratory, Inc. NEC FCC ID: A98-MP6J1E1-1F -- 850MHz GSM Body SAR SAM Phantom; Flat Section; Probe:ET3DV6 - SN1560; ConvF(6.52,6.52,6.52) Med. Parameters 835 MHz Muscle: σ = 0.98 mho/m ε r = 55.1 ρ = 1.00 g/cm 3 ; Antenna Position -- Out; Crest Factor 8.0 SAR (1g): 0.136 mW/g, SAR (10g): 0.0783 mW/g NEC DualBand GSM Phone Model: MP6J1E1-1F 850MHz GSM Mode, Ch.251 [848.8MHz]; Standard Battery; Ambient Temp. = 22.0°C / Meas. Tissue Temp. = 21.8° Conducted Power = 28.0dBm; Flip = closed; Spacing = 1.5cm from back of EUT (antenna side) to flat phantom; No BeltClip/No Holster Test Da…
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© 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone © 2002 PCTEST Lab NEC America Inc. (Model: MP6J1E1-1F) FCC ID: A98-MP6J1E1-1F Dual-Band GSM Phone
PCTEST ENGINEERING LABORATORY, INC. 6660 — B Dobbin Road • Columbia, MD 21045 • USA Telephone 410.290.6652 / Fax 410.290.6654 http://www.pctestlab.com (email: [email protected]) CERTIFICATE OF COMPLIANCE (SAR EVALUATION) PCTEST SAR REPORT FCC CERTIFICATION Reviewed by: Quality Manager SAR Filename: SAR-220227171.A98 Test Dates: Feb. 28 - Mar. 6, 2002 Phone Type: Dual-Band GSM Phone FCC ID: A98-MP6J1E1-1F Page 1 of 30 © 2002 PCTEST Engineering Laboratory, Inc APPLICANT NAME & ADDRESS: DATE & LOCATION OF TESTING: NEC AMERICA INC. Dates of Tests: Feb. 28 — Mar. 6, 2002 6535 N. State Hwy. 161 Test Report S/N: 22/24.220227171.A98 Irving, TX 75039-2402 Test Site: PCTEST Lab, Columbia MD Attn: Johnny Pham FCC ID: A98-MP6J1E1-1F APPLICANT: NEC AMERICA INC. EUT Type: Dual-Band GSM Phone Tx Frequency: 824.20MHz — 848.80MHz (GSM) / 1850.20MHz — 1909.80MHz (PCS GSM) Rx Frequency Range: 869.20MHz — 893.80MHz (GSM) / 1930.20MHz — 1989.80MHz (PCS GSM) Max. RF Output Power: 0.482 W ERP GSM (26.833 dBm) / 0.523 W EIRP PCS CDMA (27.181 dBm) Max. SAR Measurement: 0.448mW/g GSM Head SAR; 0.136mW/g GSM Body SAR; 0.850mW/g PCS GSM Head SAR; 0.296mW/g PCS GSM Body SAR Trade Name/Model(s): MP6J1E1-1F FCC Classification: Licensed Portable Transmitter Held to Ear (PCE) FCC Rule Part(s): §2.1093; FCC/OET Bulletin 65 Supplement C [July 2001] Application Type: Certification Test Device Serial No.: identical prototype This wireless portable device has been shown to be capable of compliance for localized specific absorption rate (SAR) for uncontrolled environment/general population exposure limits specified in ANSI/IEEE Std. C95.1-1992 and had been tested in accordance with the measurement procedures specified in FCC/OET Bulletin 65 Supplement C (2001) and IEEE Std. 1528-200X (Draft 6.4, July 2001). I attest to the accuracy of data. All measurements reported herein were performed by me or were made under my supervision and are correct to the best of my knowledge and belief. I assume full responsibility for the completeness of these measurements and vouch for the qualifications of all persons taking them. PCTEST certifies that no party to this application has been denied the FCC benefits pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 862. 220227171.A98 PCTEST SAR REPORT FCC CERTIFICATION Reviewed by: Quality Manager SAR Filename: SAR-220227171.A98 Test Dates: Feb. 28 - Mar. 6, 2002 Phone Type: Dual-Band GSM Phone FCC ID: A98-MP6J1E1-1F Page 2 of 30 © 2002 PCTEST Engineering Laboratory, Inc 1. INTRODUCTION .................................................................................................. 3 SAR DEFINITION ................................................................................................. 3 2. SAR MEASUREMENT SETUP .................................................................................. 4 Robotic System ....................................................................................................... 4 System Hardware ................................................................................................... 4 System Electronics .................................................................................................. 4 3. DASY3 E-FIELD PROBE SYSTEM ............................................................................ 5 Probe Measurement System.................................................................................... 5 Probe Specifications ............................................................................................... 5 4. Probe Calibration Process....................................................................................... 6 Dosimetric Assessment Procedure .......................................................................... 6 Free Space Assessment ........................................................................................... 6 Temperature Assessment ........................................................................................ 6 5. PHANTOM & EQUIVALENT TISSUES .................................................................... 7 SAM Phantom ........................................................................................................ 7 Brain & Muscle Simulating Mixture Characterization ............................................. 7 Device Holder for Transmitters............................................................................... 7 6. TEST SYSTEM SPECIFICATIONS ............................................................................. 8 Automated Test System Specifications .................................................................... 8 7. DOSIMETRIC ASSESSMENT & PHANTOM SPECS................................................. 9 Measurement Procedure......................................................................................... 9 Specific Anthropomorphic Mannequin (SAM) Specifications.................................. 9 8. DEFINITION OF REFERENCE POINTS ................................................................. 10 EAR Reference Point............................................................................................. 10 Handset Reference Points ..................................................................................... 10 9. TEST CONFIGURATION POSITIONS .................................................................. 11 Positioning for Cheek/Touch ................................................................................ 11 Positioning for Ear / 15° Tilt .................................................................................. 12 Body Holster /Belt Clip Configurations ................................................................. 13 10. ANSI/IEEE C95.1 - 1992 RF EXPOSURE LIMITS ................................................... 14 Uncontrolled Environment ................................................................................... 14 Controlled Environment.................…
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Probe ET3DV6 SN: 1560 Manufactured: Ca I i brated : December 1,2000 February 20,2002 Calibrated for System DASY3 PCTEST Calibration Laboratory Approved By: h Alfred Cirwithian Vice President Engineering ET3DV6 SN:1560 DASY3 - Parameters of Probe: ET3DV6 SN:1560 Sensitivity in Free Space Diode Compression NormX 1.48 μV/(V/m) 2 DCP X 98 mV NormY1.51 μV/(V/m) 2 DCP Y98mV NormZ1.43 μV/(V/m) 2 DCP Z98mV Sensitivity in Tissue Simulating Liquid Head 835 MHz Brain ε r = 41.5 ± 5% σ = 0.90 ± 5% mho/m ConvF X 6.78 Boundary effect: ConvF Y 6.78 Alpha 0.30 ConvF Z 6.78 Depth 2.90 Body 835 MHz Muscle ε r = 56.2 ± 5% σ = 0.95 ± 5% mho/m ConvF X 6.52 ± 7% (k=2) Boundary effect: ConvF Y 6.52 ± 7% (k=2) Alpha 0.30 ConvF Z 6.52 ± 7% (k=2) Depth 2.90 Head 1900 MHz Brain ε r = 40.0 ± 5% σ = 1.40 ± 5% mho/m ConvF X 5.16 Boundary effect: ConvF Y 5.16 Alpha 0.48 ConvF Z 5.16 Depth 2.40 Body 19 00 MHz Muscle ε r = 54.2 ± 5% σ = 1.50 ± 5% mho/m ConvF X 4.70 ± 7% (k=2) Boundary effect: ConvF Y 4.70 ± 7% (k=2) Alpha 0.48 ConvF Z 4.70 ± 7% (k=2) Depth 2.40 Sensor Offset Probe Tip to Sensor Center2.7mm Optical Surface Detection2.0 ± 0.2mm Page 2 of 5 ET3DV6 SN:1560 Isotropy Error (φ), θ = 0° -1.00 -0.80 -0.60 -0.40 -0.20 0.00 0.20 0.40 0.60 0.80 1.00 060120180240300360 error[dB] 30 MHz 100 MHz 300 MHz 900 MHz 1800 MHz 2500 MHz f = 1800 MHz, WG R22 0 10 20 30 40 50 60 70 80 90 100 110 120 130 140 150 160 170 180 190 200 210 220 230 240 250 260 270 280 290 300 310 320 330 340 350 XYZTot f = 2500 MHz, WG R26 0 10 20 30 40 50 60 70 80 90 100 110 120 130 140 150 160 170 180 190 200 210 220 230 240 250 260 270 280 290 300 310 320 330 340 350 XYZTot Page 3 of 5 Conversion Factor Assessment Head 835 MHz Brain ε r = 42 ± 5% σ = 0.90 ± 5% mho/m ConvF X 6.78 ± 7% (k=2) Boundary effect: ConvF Y 6.78 ± 7% (k=2) Alpha 0.30 ConvF Z 6.78 ± 7% (k=2) Depth 2.90 Head 1900 MHz Brain ε r = 40 ± 5% σ = 1.40 ± 5% mho/m ConvF X 5.16 ± 7% (k=2) Boundary effect: ConvF Y 5.16 ± 7% (k=2) Alpha 0.48 ConvF Z 5.16 ± 7% (k=2) Depth 2.40 ET3DV6 SN:1560 f = 835 MHz, WG 835 (head) 0.00 0.10 0.20 0.30 0.40 0.50 0.60 0.70 0.80 0.90 0204060 z[mm] SAR[mW/cm 3 ] / W AnalyticalMeasuremets f = 1900 MHz, WG 1900 (head) 0.00 1.00 2.00 3.00 4.00 5.00 6.00 7.00 0204060 z[mm] SAR[mW/cm 3 ] / W AnalyticalMeasuremets Page 4 of 5
The low pass filter inserted after the amplifier reduces the effect of harmonics and noise from the amplifier. For most amplifiers in normal operation the filter is not necessary. The attenuator after the amplifier improves the source m…
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6660-B Dobbin Road · Columbia, Maryland · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 2 | 24E | 1.85 GHz - 1.91 GHz | 523.00 mW | 250KGXW | 2.5 ppm |

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