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______________________________________________________________________________ 8000 West Sunrise Boulevard, Fort Lauderdale, Florida 33322. Confidentiality Request Date: Oct 1, 2003 Authorization & Evaluation Division Federal Communications Commission Laboratory 7435 Oakland Mills Road Columbia, MD 21046 Subject: Application for Certification of Transmitter with FCC ID: AZ489FT4863. Dear Sir or Madam: Motorola is requesting that Exhibit 4 (Circuit Descriptions), Exhibit 5 (Schematic Diagrams), Exhibit 10 (Parts List and Tune Up Procedures), and Exhibit 12 (Operational Description) not be made routinely available for public inspection. Motorola considers the information in these exhibits to be classified as trade secrets, pursuant to 47 CFR Section 0.457(d) and Section 552(b)(4) of the Freedom of Information Act. Please mark Exhibits 4, 5, 10, and 12 as “Confidential.” Please contact me if you require any additional information. Sincerely, /s/ Mike Ramnath FCC Liaison Tel: (954) 723-5793 E-mail: [email protected] EXHIBIT 13b
FCC ID: AZ489FT4863 11 th December 2003 Mr. Steve Dayhoff Equipment Authorization Branch Federal Communications Commission Laboratory 7435 Oakland Mills Road Columbia, MD 21046 Re: Form 731 Confirmation Number: EA212052 with FCC ID: AZ489FT4863. Dear Mr. Dayhoff; Motorola Inc., 8000 West Sunrise Boulevard, Fort Lauderdale, Florida 33322, herein submits its response to the 5 th December 2003 request for information in Correspondence Number 26057. Q1) The RF power measured is 1.1 watts, however the requested RF power on the 731 Form is 726 mW. Please clarify. R1) The RF power measured at 1.1 Watts is the conducted power into 50 Ohms taken at the antenna port and using a power supply set to the factory test voltage of 3.8V. The RF power listed on the FCC Form 731 of 726 mW is the radiated output power with a fully charged battery. The product has a non- removable integrated antenna and as such the radiated power is being used for grant purposes. Contact me at (954) 723-5793 if you require any additional information. Best Regards, /s/ Mike Ramnath (signed) Manager, Regulatory Compliance Email: [email protected]
FCC ID: AZ489FT4863 EXTERNAL PHOTOGRAPHS 1Front view of Radio. 2 Rear view of Radio with battery cover. 3 Rear view of radio without battery cover. 4 Front view of Base. 5 Front view of Base without battery cover. 6 Rear view of Base. 7 Rear view of Base label. FCC ID: AZ489FT4863 EXHIBIT 3 FCC ID: AZ489FT4863 FCC ID: AZ489FT4863 EXHIBIT 3A Rear view with Battery cover Rear view with out Battery cover Magnified rear view with out Battery cover FCC ID: AZ489FT4863 EXHIBIT 3B Front view of Base. Front view of Base without battery cover. Rear view of Base. FCC ID: AZ489FT4863 Rear view of Base label EXHIBIT 3B
FCC ID: AZ489FT4863 LIST OF EXHIBITS DESCRIPTION EXHIBIT REFERENCE I. Identification label information 1A, 1B 2.983-(f) & General Information 1C 1. Production Plans 2.981-(a) 2. Application References 2.1061 3. Data Submittal Procedure 4. Similar Applications II. Certification of Data 2 III. External Photographs 3 2.983-(g) IV. Block Diagrams 4 V. Schematic Diagrams 5 2.983-(d)-7 VI. Test Report 6 1. Data Index 6 2. RF Output Data 6A 2.985 3. Modulation Characteristics 2.987 A. Audio Response & Low Pass Filter Response 6B, 9C B. Modulation Limiting 6D 4. Occupied Bandwidth 6E 2.989 5. Frequency Stability (Temperature & Supply Voltage) 6G 2.995 6. Transient Frequency Behavior 6H 90.214 VII. Test Set-up Procedures 7 2.999 VIII. Instruction Manual 8 2.983-(d)-8 IX. Internal Photographs. 9 2.983-(g) X. Parts List and Tune-Up procedures 10 2.983-(d)-6, 9 XI. RF Exposure Information 11 2.1093 XII. Operational Description 12 2.983-(d)-1,2,3,4,5 1.Technical Characteristics 12A 2. Frequency Stabilizing 12B 3. Modulation Limiting 12C and Post Limiter Filter 4.Harmonic Suppression 12D 5.Power Limiting 12E XIII. Cover Letter 13 FCC ID: AZ489FT4863 IDENTIFICATION LABEL LOCATION X See the attached Photograph or Sketch Back of Radio Back of Radio under Belt Clip TYPE X The label is a paper polyester film laminate with a pressure sensitive adhesive backing. The adhesive is a permanent type acrylic with minimum peel strength of 40 oz/ inch. The label is laser etched into the Urethane paint, exposing the Nickel plating on the Zamak casting substrate. Since no adhesive is required, the label is permanent and tamper- proof. (** - NOTE- The label attached below is a paper polyester film laminate, as described above. This is just for sample purposes, as the actual label is laser etched into the casting) HANDSET MARKINGS (TEXT) See Photograph, Exhibit 1A. See photographs in exhibit 3 for location of label on handset unit. Text Molded on inside cover of battery door: This device complies with part 15 of the FCC rules. Operation is subject to the condition that this device does not cause harmful interference FCC ID: AZ489FT4863 EXHIBIT 1A BASE MARKINGS (TEXT) See Sketch, Exhibit 1B. See photographs in exhibit 3 for location of label on base unit. Text Molded on inside cover of battery door: This device complies with part 15 of the FCC rules. Operation is subject to the following two conditions: (1) this device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. Privacy of communication may not be ensured when using this phone. Complies with 47 CFR part 68 requirements. FCC ID: AZ489FT4863 EXHIBIT 1B GENERAL INFORMATION I. Production Plans—Pursuant 2.983 ( c ). Quantity production is planned. II. Application References -- Pursuant 2.1061 Reference is made to the following Motorola “Application References” 1. Portable Products and their application. 2. Portable Products Transmitter Modulations Methods. III. Data Submittal Procedure: Data is supplied in accordance with Part 2, Sub-part J of the Commissions’ Rules. IV.Similar, currently Type Accepted Transmitter, FCC ID: AZ489FT4851. FCC ID: AZ489FT4863 EXHIBIT 1C
FCC ID: AZ489FT4863 INTERNAL PHOTOGRAPHS: 1 Display side, View of PC Board 2 Component side, with CVM attached 3 Component sides of PCB and CVM 4 Component side of Base 5 Non Component side of Base PC Board FCC ID: AZ489FT4863 EXHIBIT 9 FCC ID: AZ489FT4863 Display side Component side with CVM FCC ID: AZ489FT4863 EXHIBIT 9A Component side PCB & CVM Component side Base FCC ID: AZ489FT4863 EXHIBIT 9B Non-component side Base FCC ID: AZ489FT4863 EXHIBIT 9C
CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 1 of 21 CGISS EME Test Laboratory 8000 West Sunrise Blvd Fort Lauderdale, FL. 33322 S.A.R. EME Compliance Test Report Part 1 of 3 Note: Based on the information and the testing results provided herein, the undersigned certifies that when used as stated in the operating instructions supplied, said product complies with the national and international reference standards and guidelines listed in section 2.0 of this report. Signature on File 10/29/03 Ken Enger Date Approved Senior Resource Manager, Product Safety and EME Director Note: This report shall not be reproduced without written approval from an officially designated representative of the Motorola EME Laboratory. Attention: FCC Date of Report: October 29, 2003 Report Revision: Rev. A Manufacturer: Motorola China Product Description: 1.0 Watt fixed antenna UHF/RBR/ 4 channel; 300mW 2.4GHz cordless phone; w/ display; Fixed antenna FCC ID: AZ489FT4863 Device Model: HCUE1112A Certificate Number: 1449-02 Test Period: 9/10/03-10/03/03 EME Technician: Clint Miller (EME Technician) EME Engineer: Stephen Whalen (Sr. EME Engineer) Author: Michael Sailsman (Global EME Regulatory Affairs Liaison) CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 2 of 21 TABLE OF CONTENTS Part 1 of 2 1.0 Introduction 2.0 Reference Standards and Guidelines 3.0 Description of Test Sample 3.1 Test Signal 3.2 Test Output Power 4.0 Description of Test Equipment 4.1 Description of S.A.R Measurement System 4.2 Description of Phantom 4.2.1 Flat Phantom 4.2.2 SAM phantom 4.3 Simulated Tissue Properties 4.3.1 Type of Simulated Tissue 4.3.2 Simulated Tissue Composition 4.4 Test condition 5.0 Description of Test Procedure 5.1 Device Test Positions 5.1.1 Body 5.1.2 Head 5.1.3 Face 5.2 Test Position Photographs 5.3 Probe Scan Procedures 6.0 Measurement Uncertainty 7.0 S.A.R. Test Results 7.1 S.A.R. results 7.2 Peak S.A.R. location 7.3 Highest S.A.R. results calculation methodology 8.0 Conclusion Part 2 of 2 Appendix A: Power Slump Data/Shortened scan Appendix B: Data Results Appendix C: Dipole System Performance Check Results Appendix D: Calibration Certificates Appendix E: Illustration of Body-worn Accessories Appendix F: Accessories and options test status and separation distances CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 3 of 21 REVISION HISTORY Date Revision Comments 10/8/03 O Release of Prototype Results 10/29/03 A Corrected incorrect maximum calculated 1 and 10 gram results in sec 7.1 and 8.0. Corrected incorrect scan presented on page 9 of 66 in Appendix B. Corrected oversight typographical errors discovered in sections 4.2, 5.0, 5.3, Appendix A, B and C. Added attached tested audio accessories to 2.5cm photos on page 12 of 13. Inserted a better representative test position photo for right ear cheek touch presented on page 14 of 22. Corrected incorrect run # stated in section 7.1 Split report into 3 parts to meet FCC file size requirements. CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 4 of 21 1.0 Introduction This report details the utilization, test setup, test equipment, and test results of the Specific Absorption Rate (S.A.R.) measurements performed at the CGISS EME Test Lab for model number HCUE1112A, FCC ID: AZ489FT4863. The applicable exposure environment is Occupational/Controlled. 2.0 Reference Standards and Guidelines This product is designed to comply with the following national and international standards and guidelines. • United States Federal Communications Commission, Code of Federal Regulations; 47CFR part 2 sub-part J • IEEE 1528, 2003 "Recommended Practice for Determining the Peak Spatial-Average Specific Absorption Rate (SAR) in the Human Head from Wireless Communications Devices: Measurement Techniques," • American National Standards Institute (ANSI) / Institute of Electrical and Electronic Engineers (IEEE) C95. 1-1992 • Institute of Electrical and Electronic Engineers (IEEE) C95.1-1999 Edition • International Commission on Non-Ionizing Radiation Protection (ICNIRP) 1998 • Ministry of Health (Canada) Safety Code 6. Limits of Human Exposure to Terminal frequency Electromagnetic Fields in the Frequency Range from 3 kHz to 300 GHz, 1999 • Australian Communications Authority Terminal communications (Electromagnetic Radiation - Human Exposure) Standard 2003 • ANATEL, Brazil Regulatory Authority, Resolution 256 (April 11, 2001) "additional requirements for SMR, cellular and PCS product certification." CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 5 of 21 3.0 Description of Test Sample FCC ID: AZ489FT4863 is a wireless communication device that allows two-way operation in one-to-one or group communication using Zero IF analog FM technology. The device also incorporates a 2.4GHz cordless phone that utilizes a Cordless Voice Module (CVM) proprietary frequency hopping technology developed by RTX that uses Gausian Frequency Shift Keying (GFSK) modulation. The maximum PTT transmission duty cycle of the two-way UHF transmitter is 50%. The maximum transmission duty cycle of the cordless phone 2.4GHz transmitter is 8.3%. The intended operating positions are “at the face” in a vertical position 1 to 2 inches from the mouth of the user, at the sides of the head while in cordless phone mode, and at the body by means of the offered body-worn accessories. Audio and PTT operation while at the body is accomplished by means of optional remote accessories that connect to the radio. This device will be marketed to and used by employees solely for work-related operations, such as restaurants, retail stores, and small businesses. User training is the responsibility of these entities, who can be expected to employ the usage instructions, safety information and operational cautions set forth in the user's manual, instructional sessions or other means. Motorola also makes available to its customers training classes on the proper use of two-way radios and wireless data devices. FCC ID: AZ489FT4863 operates in the 461.0375-469.5625 MHz band and the 2.400–2.482 GHz band. The r…
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CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 1 of 18 CGISS EME Test Laboratory 8000 West Sunrise Blvd Fort Lauderdale, FL. 33322 S.A.R. EME Compliance Test Report Part 2 of 3 Note: Based on the information and the testing results provided herein, the undersigned certifies that when used as stated in the operating instructions supplied, said product complies with the national and international reference standards and guidelines listed in section 2.0 of this report. Signature on File 10/29/03 ____________________________________________________________ _________________________ Ken Enger Date Approved Senior Resource Manager, Laboratory Director, CGISS EME Lab Note: This report shall not be reproduced without written approval from an officially designated representative of the Motorola EME Laboratory. Certificate Number: 1449-02 Attention: FCC Date of Report: October 29, 2003 Report Revision: Rev. A Manufacturer: Motorola China Product Description: 1.0 Watt fixed antenna UHF/RBR/ 4 channel; 300mW 2.4GHz cordless phone; w/ display; Fixed antenna FCC ID: AZ489FT4863 Device Model: HCUE1112A Test Period: 9/10/03-10/03/03 EME Technician: Clint Miller (EME Technician) EME Engineer: Stephen Whalen (Sr. EME Engineer) Author: Michael Sailsman (Global EME Regulatory Affairs Liaison) CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 2 of 18 APPENDIX A Power Slump Data/Shortened Scan CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 3 of 18 DUT Power versus time data CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 4 of 18 CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 5 of 18 Alkaline CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 6 of 18 Shortened Scan Results FCC ID: AZ489FT4863; Test Date: 9/18/03 Motorola CGISS EME Laboratory RUN #: SW-Face-R1-030918-02 MODEL #: HCUE1112A SN: 451ABC0001 TX Freq: 461.0375 MHz Sim Tissue Temp: 21.5 (Celsius) Start Power: 1.043 W Antenna: Fixed Battery Kit: AAA Alkaline w/1564200W18 Carry: NONE Audio Acc. NONE Shortened scan reflect highest S.A.R. producing configuration at the face. Run time 6 minutes Representative “normal” scan run time was 21 minutes “Shortened” scan; max calc. S.A.R. (drift adjusted) w/ 50% duty cycle = 1.04 mW/g “Normal” scan; max. calc. S.A.R. (drift adjusted) w/ 50% duty cycle = 1.13/g (see section 7.1 run # CM-Face-R1-030911-12) DUT front w/ 2.5cm separation distance Flat Phantom; Device Section; Position: (90°,90°); Probe: ET3DV6 - SN1384(Cal Date 05-15-2003); ConvF(7.50,7.50,7.50); Probe cal date: 15/05/03; Crest factor: 1.0; IEEE Head 465 MHz: σ= 0.88 mho/m εr = 43.6 ρ = 1.00 g/cm3; DAE3: 363V1 DAE Cal Date: 05/13/2003 Cube 5x5x7: SAR (1g): 1.50 mW/g, SAR (10g): 1.06 mW/g, (Worst-case extrapolation) Cube 5x5x7: Dx = 8.0, Dy = 8.0, Dz = 5.0; SAR (1g): 1.50 mW/g, SAR (10g): 1.06 mW/g Power drift: -1.410 dB CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 7 of 18 FCC ID: AZ489FT4863; Test Date: 10/03/03 Motorola CGISS EME Laboratory RUN #: SW-Ab-R1-031003-02 MODEL #: HCUE1112A SN: 451ABC0001 TX Freq: 464.5500 MHz Sim Tissue Temp: 21.7 (Celsius) Start Power: 1.047 W Antenna: Fixed Battery Kit: SNN5571A Carry: HCLN4019A Audio Acc. HMN9026B Shortened scan reflect test configuration at the body using battery kit SNN5571A. Run time 7 minutes Representative “normal” scan run time was 27 minutes “Shortened” scan; max calc. S.A.R. (drift adjusted) w/ 50% duty cycle = 0.694 mW/g “Normal” scan; max. calc. S.A.R. (drift adjusted) w/ 50% duty cycle = 0.712 mW/g (see section 7.1 run # SW-Ab-R1-031001-02) DUT w/ belt clip against the phantom Flat Phantom; Device Section; Position: (90°,90°); Probe: ET3DV6 - SN1384(Cal Date 05-15-2003); ConvF(7.60,7.60,7.60); Probe cal date: 15/05/03; Crest factor: 1.0; FCC Body 465 MHz: σ = 0.93 mho/m εr = 54.2 ρ = 1.00 g/cm3; DAE3: 363V1 DAE Cal Date: 05/13/2003 Cube 5x5x7: SAR (1g): 1.34 mW/g, SAR (10g): 0.919 mW/g, (Worst-case extrapolation) Cube 5x5x7: Dx = 8.0, Dy = 8.0, Dz = 5.0; SAR (1g): 1.34 mW/g, SAR (10g): 0.919 mW/g Power Drift: -0.150dB CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 8 of 18 APPENDIX B Data Results CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 9 of 18 FCC ID: AZ489FT4863; Test Date: 9/10/03 Motorola CGISS EME Laboratory RUN #: CM Ab-R1-030910-10 Model #: HCUE1112A SN: 451ABC0001 TX Freq: 461.0375 MHz Sim Tissue Temp: 21.3 (Celsius) Start Power: 0.939 W Antenna: Fixed Battery Kit: AAA Alkaline w/1564200W18 Carry: HCLN4019A belt clip Audio Acc. HMN9026B DUT w/belt clip against the phantom: Flat Phantom Phantom; Device Section; Position: (90°,90°); Probe: ET3DV6 - SN1384(Cal Date 05-15-2003); ConvF(7.60,7.60,7.60); Probe cal date: 15/05/03; Crest factor: 1.0; FCC Body 465 MHz: σ = 0.92 mho/m ε r = 54.9 ρ = 1.00 g/cm3; DAE3: 363V1 DAE Cal Date: 05/13/2003 Cube 5x5x7: SAR (1g): 1.22 mW/g, SAR (10g): 0.902 mW/g, (Worst-case extrapolation) Coarse: Dx = 15.0, Dy = 15.0, Dz = 10.0; Max at 27.0, 72.0, 4.7 Power drift: -1.49 dB CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 10 of 18 FCC ID: AZ489FT4863; Test Date: 10/02/03 Motorola CGISS EME Laboratory Run #: CM-Ab-R1-031002-06 Model #: HCUE1112A SN: 451ABC0001 TX Freq: 461.0375 MHz Sim Tissue Temp: 20.3 (Celsius) Start Power: 0.939 W Antenna: Fixed Battery Kit: AAA Alkaline w/1564200W18 Carry: HCLN4019A belt clip Audio Acc. HCSN4001A DUT w/ belt clip against the phantom: Flat Phantom; Device Section; Position: (90°,90°); Probe: ET3DV6 - SN1384(Cal Date 05-15-2003); ConvF(7.60,7.60,7.60); Probe cal date: 15/05/03; Crest factor: 1.0; FCC Body 465 MHz: ρ= 0.93 mho/m ε r = 54.0 ρ = 1.00 g/cm3; DAE3: 363V1 DAE Cal Date: 05/13/2003 Cube 5x5x7: SAR (1g): 0.786 mW/g, SAR (10g): 0.564 mW/g, (Worst-case extrapolation) Coarse: Dx = 15.0, Dy = 15.0, Dz = 10.0; Max at 28.5, 103.5, 4.7 Power drift: -1.70dB CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 11 of 18 FCC ID: AZ489FT4863; Test Date: 10/02/03 Motorola CGISS EME Laboratory Run #: CM-Ab-R1-031002-08 Model #: HCUE1112A SN: 451ABC0001 TX Freq: 461.0375 MHz Sim Tissue Temp: 20.0 (Celsius) Start Power: 0.939 W Antenna: Fixed Battery Kit: AAA Alkaline w/1564200W18 Carry: None Audio Acc. HMN9026B DUT w/ front housing t…
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CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 1 of 49 CGISS EME Test Laboratory 8000 West Sunrise Blvd Fort Lauderdale, FL. 33322 S.A.R. EME Compliance Test Report Part 3 of 3 Note: Based on the information and the testing results provided herein, the undersigned certifies that when used as stated in the operating instructions supplied, said product complies with the national and international reference standards and guidelines listed in section 2.0 of this report. Signature on File 10/29/03 Ken Enger Date Approved Senior Resource Manager, Laboratory Director, CGISS EME Lab Note: This report shall not be reproduced without written approval from an officially designated representative of the Motorola EME Laboratory. Certificate Number: 1449-02 Attention: FCC Date of Report: October 29, 2003 Report Revision: Rev. A Manufacturer: Motorola China Product Description: 1.0 Watt fixed antenna UHF/RBR/ 4 channel; 300mW 2.4GHz cordless phone; w/ display; Fixed antenna FCC ID: AZ489FT4863 Device Model: HCUE1112A Test Period: 9/10/03-10/03/03 EME Technician: Clint Miller (EME Technician) EME Engineer: Stephen Whalen (Sr. EME Engineer) Author: Michael Sailsman (Global EME Regulatory Affairs Liaison) CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 2 of 49 APPENDIX C Dipole System Performance Check Results Dipole validations at the head from SPEAG are provided herein. The CGISS EME lab validated the dipole to the applicable IEEE system performance targets. Within the same day system validation was performed using FCC body tissue parameters to generate the system performance target values for body at the applicable frequency. The results of the CGISS EME system performance validation are provided in this appendix. CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 3 of 49 SPEAG 450 MHz Dipole D450V2; SN-1001; Test Date: 9/10/03 Motorola CGISS EME Lab Run #: Sys Perf-R1-030910-04 TX Freq: 450 MHz Sim Tissue Temp: 21.4 (Celsius) Start Power; 250mW SAR target at 1W is 4.41 mW/g (1g avg, including drift) SAR target at 1W is 2.93 mW/g (10g avg, including drift) SAR calculated at 1W is 4.58 mW/g (1g avg). Percent from target (including drift) is 3.88% SAR calculated at 1W is 3.03 mW/g (10g avg). Percent from target (including drift) is 3.55% Flat Phantom; Probe: ET3DV6 - SN1384(Cal Date 05-15-2003);Probe Cal Date: 15/05/03ConvF(7.60,7.60,7.60); Crest factor: 1.0; FCC Body 450 MHz: σ= 0.91 mho/m ε r = 55.1 ρ= 1.00 g/cm3; DAE3: SN363-V1 DAE Cal Date: 05/13/2003 Cubes (2): Peak: 1.76 mW/g ± 0.04 dB, SAR (1g): 1.14 mW/g ± 0.03 dB, SAR (10g): 0.755 mW/g ± 0.03 dB, (Worst-case extrapolation) Penetration depth: 12.9 (11.5, 14.7) [mm] Power drift: -0.02 dB CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 4 of 49 SPEAG 450 MHz Dipole D450V2; SN-1001; Test Date: 9/11/03 Motorola CGISS EME Lab Run #: Sys Perf-R1-030911-01 TX Freq: 450 MHz Sim Tissue Temp: 20.9 (Celsius) Start Power; 250mW Target: SAR target at 1W is 4.41 mW/g (1g avg, including drift) SAR target at 1W is 2.93 mW/g (10g avg, including drift) SAR calculated at 1W is 4.55 mW/g (1g avg). Percent from target (including drift) is 3.20 % SAR calculated at 1W is 3.02 mW/g (10g avg). Percent from target (including drift) is 2.96 % Flat Phantom; Probe: ET3DV6 - SN1384(Cal Date 05-15-2003);Probe Cal Date: 15/05/03ConvF(7.60,7.60,7.60); Crest factor: 1.0; FCC Body 450 MHz: σ= 0.90 mho/m ε r = 54.9 ρ= 1.00 g/cm3; DAE3: SN363-V1 DAE Cal Date: 05/13/2003 Cubes (2): Peak: 1.73 mW/g ± 0.04 dB, SAR (1g): 1.13 mW/g ± 0.05 dB, SAR (10g): 0.749 mW/g ± 0.05 dB, (Worst-case extrapolation) Penetration depth: 13.1 (11.7, 14.9) [mm] Power drift: -0.03 dB CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 5 of 49 SPEAG 450 MHz Dipole D450V2; SN-1001; Test Date: 9/11/03 Motorola CGISS EME Lab Run #: Sys Perf-R1-030911-09 TX Freq: 450 MHz Sim Tissue Temp: 21.0 (Celsius) Start Power; 250mW Target: SAR target at 1W is 4.63 mW/g (1g avg, including drift) SAR target at 1W is 3.06 mW/g (10g avg, including drift) SAR calculated at 1W is 4.78 mW/g (1g avg). Percent from target (including drift) is 3.28 % SAR calculated at 1W is 3.14 mW/g (10g avg). Percent from target (including drift) is 2.56 % Flat Phantom; Probe: ET3DV6 - SN1384(Cal Date 05-15-2003);Probe Cal Date: 15/05/03ConvF(7.50,7.50,7.50); Crest factor: 1.0; IEEE Head 450MHz: σ= 0.86 mho/m ε r = 43.8 ρ= 1.00 g/cm3; DAE3: SN363-V1 DAE Cal Date: 05/13/2003 Cubes (2): Peak: 1.85 mW/g ± 0.04 dB, SAR (1g): 1.19 mW/g ± 0.04 dB, SAR (10g): 0.781 mW/g ± 0.03 dB, (Worst-case extrapolation) Penetration depth: 12.5 (11.2, 14.3) [mm] Power drift: -0.02 dB CGISS EME Form-SAR-Rpt-Rev. 2.00 Page 6 of 49 SPEAG 450 MHz Dipole D450V2; SN-1001; Test Date: 9/12/03 Motorola CGISS EME Lab Run #: Sys Perf-R1-030912-01 TX Freq: 450 MHz Sim Tissue Temp: 21.1 (Celsius) Start Power; 250mW Target: SAR target at 1W is 4.41 mW/g (1g avg, including drift) SAR target at 1W is 2.93 mW/g (10g avg, including drift) SAR calculated at 1W is 4.62 mW/g (1g avg). Percent from target (including drift) is 4.79% SAR calculated at 1W is 3.08 mW/g (10g avg). Percent from target (including drift) is 5.19% Flat Phantom; Probe: ET3DV6 - SN1384(Cal Date 05-15-2003);Probe Cal Date: 15/05/03ConvF(7.60,7.60,7.60); Crest factor: 1.0; FCC Body 450 MHz: σ= 0.92 mho/m ε r = 55.9 ρ= 1.00 g/cm3; DAE3: SN363-V1 DAE Cal Date: 05/13/2003 Cubes (2): Peak: 1.77 mW/g ± 0.03 dB, SAR (1g): 1.15 mW/g ± 0.03 dB, SAR (10g): 0.767 mW/g ± 0.03 dB, (Worst-case extrapolation) Penetration depth: 13.1 (11.7, 14.9) [mm] Power drift: -0.02 dB CGISS EME Form-SAR-Rpt-Rev…
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8000 West Sunrise Boulevard · Ft. Lauderdale, Florida · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 90.210 | 461.0375 MHz - 469.5625 MHz | 1.1 W | 11K0F3E | 600.0000000000 Hz |

Portable two way radio
Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to FaceHandheld Portable - TANAPA BPR 45 400-470 MHZ 4W NKP
Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to Face
Portable 2-Way Radio with Bluetooth, Bluetooth LE, WIFI 2.4GHz, WIFI 5GHz, LTE
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterOperation Critical Wireless Earpiece PTT
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
2-way Portable Radio with BT, BTLE, WIFI, NFC and LTE
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter