
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Model: D100 DECT NA Model: D100 DECT Repeater NA Model: D160 DECT Handset NA July 2012 - Avaya IMPORTANT NOTICE Read all safety, installation, and user documentation prior to installing or operating this product. To view and download safety, installation, and user documentation go to: http://support.avaya.com. All information is subject to change without notice. Always check Avaya’s Support web site for updates – http://support.avaya.com. Important Safety Instructions When using your telephone equipment, basic safety precautions should always be followed to reduce the risk of fire, electric shock and injury to persons, including the following: This unit is NOT waterproof. DO NOT expose it to rain or moisture. Do not use this product near water, for example, near a bath tub, wash bowl, kitchen sink or laundry tub, in a wet basement or near a swimming pool. Avoid using a telephone (other than a cordless type) during an electrical storm. There may be a remote risk of electric shock from lightning. Do not use the telephone to report a gas leak in the vicinity of the leak. Use only the power cord and batteries indicated in the manual. Do not dispose of batteries in a fire. They may explode. Check with local codes for possible special disposal instructions. Do not place the handset in any charging cradle without the battery installed and the battery cover securely in place. SAVE THESE INSTRUCTIONS! CAUTION! Risk of explosion if battery is replaced by an incorrect type! Dispose of used batteries according to the instructions. Do not open or mutilate the battery. Disconnect the battery before shipping this product. Rechargeable Battery Warning If your equipment contains a rechargeable Nickel-Metal-Hydride (Ni-MH) battery; Nickel is a chemical known to the state of California to cause cancer. Do not short-circuit the battery. The batteries in this equipment may explode if disposed of in a fire. Do not charge the batteries in any charger other than the one specified in the owner's manual. Using another charger may damage the battery or cause it to explode. As part of our commitment to protecting our environment and conserving natural resources, Uniden voluntarily participates in an RBRC® industry program to collect and recycle used Ni- MH batteries within the United States. Please call 1-800-8-BATTERY for information on Ni-MH battery recycling in your area. (RBRC® is a registered trademark of the Rechargeable Battery Recycling Corporation.) Rechargeable batteries must be recycled or disposed of properly. COMPLIANCE INFORMATION FCC Part 15 Information 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 communications may not be ensured when using this phone. FCC PART 15.105(b): Note: This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: Reorient or relocate the receiving antenna. Increase the separation between the equipment and receiver. Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. Consult the dealer or an experienced radio/TV technician for help. FCC RF Exposure Information This product complies with FCC radiation exposure limits under the following conditions: The base must be placed to allow a minimum of 20 cm (8 inches) between the antenna and all persons during normal operation. The base must not be collocated or operated in conjunction with any other antenna or transmitter. The handset is designed for body-worn operation and meets FCC RF exposure guidelines when used with any belt clip, carrying case, or other accessory supplied with this product. (All necessary accessories are included in the package; any additional or optional accessories are not required for compliance with the guidelines.) Third party accessories (unless approved by the manufacturer) should be avoided as these might not comply with FCC RF exposure guidelines. Industry Canada (I.C.) Notice Terminal equipment NOTICE: This equipment meets the applicable Industry Canada Terminal Equipment Technical Specifications. This is confirmed by the registration number. The abbreviation IC before the registration number signifies that registration was performed based on a Declaration of Conformity indicating that Industry Canada technical specifications were met. It does not imply that Industry Canada approved the equipment. Radio equipment The term IC before the radio certification number only signifies that Industry Canada technical specifications were met. Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device. "Privacy of communications may not be ensured when using this telephone". Environmental Requirements Only use the cordless telephone in temperatures between -10 ºC to +50 ºC (+14 ºF to +122 ºF). Avoid exposing the cordless telephone to direct sunlight or close to other heat sources. Do not expose the cordless telephone to open flame. Keep the cord…
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Uniden America Corporation 4700 Amon Carter Blvd. Fort Worth, TX 76155 817-858-3300 Fax: 817-858-3328 REQUEST FOR CONFIDENTIALITY February 3, 2012 To: Federal Communications Commission Equipment Authorization Branch Laboratory Division Office of Engineering and Technology 7435 Oakland Mills Road Columbia, Maryland 21046 Subject: Data for FCC Certification Applicant: Uniden America Corporation 4700 Amon Carter Blvd., Fort Worth, Texas 76155 Jon Suehiro, Manager – Engineering and Regulatory Affairs TYPE OF EQUIPMENT: UPCS 1.9 GHz Cordless Telephone Handset Unit FCC IDENTIFIER: AMWUP683R Dear Sir or Madam: Some of the material included in this application contains trade secrets and proprietary information not customarily released to the public. Because public disclosure of the material might be harmful to the applicant and provide unjustified benefits to its competitors, it is requested that the following be withheld from public disclosure: Circuit Description AMWUP683R_CIRCUIT DESCRIPTION.pdf Schematic Diagrams AMWUP683R_Schematic Diagram.pdf Block Diagrams AMWUP683R_Block Diagram.pdf Trade secrets and proprietary information can be held confidential. Therefore, we wish to invoke the act under the provisions of 47CFR, Sections 0.457(d) and 0.459. Please contact the undersigned if you have any questions or need any further information. Regards, Jon Suehiro Manager, Engineering and Regulatory Affairs
Equipment Identification Label (“D100 DECT NA” Handset ,”D160 DECT Handset NA” Extra Handset) Equipment Labels: The following markings are permanently affixed to the Base Unit: 1) 20 mm(W) x 2.2 mm(H) by Engraving 2) 40.5 mm(W) x 24 mm(H) by Label 3) 35 mm(W) x 5.5 mm(H) by Label 4) 8 mm(W) 4 mm(H) by Label Equipment Identification Label (“D100 DECT NA” Charger ,”D160 DECT Handset NA” Extra Charger) Equipment Labels: The following markings are permanently affixed to the Base Unit: 1) 36.5 mm(W) x 11 mm(H) by Label
The Testcenter facility ‘Dosimetric Test Lab’ within IMST GmbH is accredited by the German National ‘Deutsche Akkreditierungsstelle GmbH (DAkkS)’ for testing according to the scope as listed in the accreditation certificate: D-PL-12139-01-01. SAR_Report_TRaC_60320_6120187_FCC_DECT_CalData_D160 Appendix for the Report Dosimetric Assessment of the Portable Device D160 (FCC ID: AMWUP683R) (IC: 513C-UP683) According to the FCC Requirements Calibration Data June 15, 2012 IMST GmbH Carl-Friedrich-Gauß-Str. 2 D-47475 Kamp-Lintfort Customer Unit E, South Orbital Trading Park Hedon Road, Hull HU9 1NJ UK The Testcenter facility ‘Dosimetric Test Lab’ within IMST GmbH is accredited by the German National ‘Deutsche Akkreditierungsstelle GmbH (DAkkS)’ for testing according to the scope as listed in the accreditation certificate: D-PL-12139-01-01. Cal_D1900V2_SN5d051_Sep2011 Page 1 of 8 Calibration Certificate Certificate No: Cal_D1900V2_SN5d051_Sep2011 Object: D1900V2 SN: 5d051 Date of Calibration: September 30, 2011 Next Calibration: September 2013 Object Condition: In Tolerance Calibration Equipment used: Test Equipment Serial Number Last calibration Calibrated by Next calibration Powermeter E4416A GB41050414 Dec 10 Agilent Techn. (ISO/IEC 17025, 1-1784162174-1) Dec 12 Power Sensor E9301H US40010212 Dec 10 Agilent Techn. (ISO/IEC 17025, 1-1784041195-1) Dec 12 Powermeter E4417A GB41050441 Dec 10 Agilent Techn. (ISO/IEC 17025, 1-1674038198-1) Dec 12 Power Sensor E9301A MY41495584 Dec 10 Agilent Techn. (ISO/IEC 17025, 1-1784041307-1) Dec 12 Network Analyzer E5071C MY46103220 Aug 11 Rohde& Schwarz (14967-DKD-00201- 2009-08) Aug 12 Reference Probe ET3DV6 SN 1669 Feb 11 SPEAG, No ET3- 1669_Feb09 Feb 12 DAE3 SN 335 Feb 11 SPEAG, No DAE3- 335_Feb09 Feb 12 Cal_D1900V2_SN5d051_Sep2011 Page 2 of 8 Calibration is performed according the following standards: IEEE 1528-2003 "IEEE Recommended Practice for Determining the Peak Spatial - Averaged Specific Absorption Rate (SAR) in the Human Head from Wireless Communication Devices: Measurement Technique", December 2003 EN 62209-1 "Procedure to measure the Specific Absorption Rate (SAR) for hand - held devices used in close proximity to the ear (frequency range of 300 MHz to 3GHz)", March 2007 Federal Communications Commission Office of Engineering & Technologies (FCCOET) "Evaluating Compliance wit FCC Guidelines for Human Exposure to Radiofrequency Electromagnetic Fields; Additional Information for Evaluating Compliance of Mobile and Portable Devices with FCC Limits for Human Exposure to Radiofrequency Emissions", Supplement C (Edition 01-01) to Bulletin 65 Additional Documentation: DASY 4 System Handbook prepared by: reviewed by: Alexander Rahn André van den Bosch test engineer quality assurance engineer 08/ABo Cal_D1900V2_SN5d051_Sep2011 Page 3 of 8 Measurement Conditions DASY Version: Dasy 4; V4.7 Phantom: SAM Phantom 1340 Distance Dipole Center – TSL: 10mm With spacer Zoom Scan res. dx, dy, dz = 5mm Frequency: 1900 MHz ± 1MHz Head TSL Parameters Temperature Permittivity Conductivity Nominal Head TSL Parameters 22.0 40.0 1.40 Measured Head TSL Parameters 22.8 39.4 ± 6% 1.43 S/m ± 6% SAR Result with Head TSL Averaged over 1g SAR measured 250mW input power9.53 mW/g SAR normalized normalized to 1W 38.12 mW/g SAR for nominal Head TSL parameters normalized to 1W 37.51 mW/g ± 16.5 % (k=2) Averaged over 10g SAR measured 250mW input power4.93 mW/g SAR normalized normalized to 1W 19.72 mW/g SAR for nominal Head TSL parameters normalized to 1W 19.52 mW/g ± 16.5 % (k=2) Cal_D1900V2_SN5d051_Sep2011 Page 4 of 8 Body TSL Parameters Temperature Permittivity Conductivity Nominal Body TSL Parameters 22.0 53.30 1.52 Measured Body TSL Parameters 23.3 52.10 ± 6% 1.54 S/m ± 6% SAR Result with Body TSL Averaged over 1g SAR measured 250mW input power 9.66 mW/g SAR normalized normalized to 1W 38.64 mW/g SAR for nominal Body TSL parameters normalized to 1W 38.14 mW/g ± 16.5 % (k=2) Averaged over 10g SAR measured 250mW input power 5.10 mW/ g SAR normalized normalized to 1W 20.40 mW/g SAR for nominal Body TSL parameters normalized to 1W 20.23 mW/g ± 16.5 % (k=2) General Antenna Parmeters Antenna Parameters with Head TSL Impedance, transformed to feed point 48.4 jΩ - 0.7 jΩ Return Loss -35.2 dB Antenna Parameter with Body TSL Impedance, transformed to feed point 52.8 jΩ - 1.8 jΩ Return Loss -29.9 dB After long term use with 100W radiated power, only a slight warming of the dipole near the feedpoint can be measured. The dipole is made of standard semigrid coaxial cable. The center conductor of the feeding line is directly connected to the second arm of the dipole. The antenna is therefore short-circuited for DC signals. Additional EUT Data Manufactured by: SPEAG Manufactured on: January 15, 1998 Cal_D1900V2_SN5d051_Sep2011 Page 5 of 8 SAR Result with Head TSL Test Laboratory: Imst GmbH, DASY Yellow (II); File Name: 300911_y_1669.da4 DUT: Dipole 1900 MHz SN: 5d051; Type: D1900V2; Serial: D1900V2 - SN5d051 Program Name: System Performance Check at 1900 MHz Communication System: CW; Frequency: 1900 MHz;Duty Cycle: 1:1 Medium parameters used: f = 1900 MHz; σ = 1.43 mho/m; ε r = 39.4; ρ = 1000 kg/m 3 Phantom section: Flat Section DASY4 Configuration: - Probe: ET3DV6R - SN1669; ConvF(5.12, 5.12, 5.12); Calibrated: 21.02.2011 - Sensor-Surface: 4mm (Mechanical Surface Detection) - Electronics: DAE3 Sn335; Calibrated: 22.02.2011 - Phantom: SAM Glycol 1340; Type: QD 000 P40 CB; Serial: TP-1340 - Measurement SW: DASY4, V4.7 Build 80; Postprocessing SW: SEMCAD, V1.8 Build 186 d=10mm, Pin=250mW/Area Scan (7x7x1): Measurement grid: dx=10mm, dy=10mm Maximum value of SAR (measured) = 10.4 mW/g d=10mm, Pin=250mW/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 90.3 V/m; Power Drift = -0.025 dB Peak SAR (extrapolated) = 17.0 W/kg SAR(1 g) = 9.53 mW/g; SAR(10 g) = 4.93 mW/g Maximum value of SAR (measured) = 10.7 mW/g Cal_D1900V2_SN5d051_Sep2011 Page 6 of 8 SAR Result with Bod…
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The Testcenter facility ‘Dosimetric Test Lab’ within IMST GmbH is accredited by the German National ‘Deutsche Akkreditierungsstelle GmbH (DAkkS)’ for testing according to the scope as listed in the accreditation certificate: D-PL-12139-01-01. SAR_Report_TRaC_60320_6120187_FCC_DECT_D160 Page 1 of 31 Report Dosimetric Assessment of the Portable Device Avaya D160 (FCC ID: AMWUP683R) (IC: 513C-UP683) According to the FCC Requirements June 15, 2012 IMST GmbH Carl-Friedrich-Gauß-Str. 2 D-47475 Kamp-Lintfort Customer TRaC Unit E, South Orbital Trading Park Hedon Road, Hull HU9 1NJ, UK The test results only relate to the items tested. This report shall not be reproduced except in full without the written approval of the testing laboratory. SAR_Report_TRaC_60320_6120187_FCC_DECT_D160 Page 2 of 31 Dasy_Report_FCC_DECT_1900_1.3.doc/10.09.2010/ABo Executive Summary The D160 is a new cordless phone (Portable Device) from Avaya operating in the 1920 MHz frequency range (US DECT Standard). The device has an integrated antenna. The objective of the measurements done by IMST was the dosimetric assessment of one device in a worst case setup in head and body worn configuration. The handset was set to use one specific frequency, antenna and maximum output power during the measurement. The examinations have been carried out with the dosimetric assessment system „DASY4“. The measurements were conducted according to the Supplement C to OET Bulletin 65 of the Federal Communications Commission (FCC) Guidelines [OET 65] for evaluating compliance of mobile and portable devices with FCC limits for human exposure (general population) to radiofrequency emissions. All measurements have been performed in accordance to the recommendations given by SPEAG. Compliance Statement The Avaya D160 cordless telephone (FCC ID: AMWUP683R) is in compliance with the Federal Communications Commission (FCC) Guidelines [OET 65] for uncontrolled exposure. The phone was tested in addition to the head positions in the following body worn configurations: with headset attached, display towards the phantom, distance 0 mm with headset attached display towards the ground, distance 0 mm Maximum SAR 1g = 0.030 W/kg (body worn configuration, position 1, CH 2) prepared by: ........................................ reviewed by: ..................................... Alexander Rahn André van den Bosch test engineer quality assurance engineer SAR_Report_TRaC_60320_6120187_FCC_DECT_D160 Page 3 of 31 Dasy_Report_FCC_DECT_1900_1.3.doc/10.09.2010/ABo Table of Contents 1 SUBJECT OF INVESTIGATION .......................................................................................................... 4 2 THE IEEE STANDARD C95.1-1999 AND THE FCC EXPOSURE CRITERIA .................................... 4 2.1 DISTINCTION BETWEEN EXPOSED POPULATION, DURATION OF EXPOSURE AND FREQUENCIES ........... 4 2.2 DISTINCTION BETWEEN MAXIMUM PERMISSIBLE EXPOSURE AND SAR LIMITS .................................... 5 2.3 SAR LIMIT ..................................................................................................................................... 5 3 THE FCC MEASUREMENT PROCEDURE ......................................................................................... 6 3.1 GENERAL REQUIREMENTS .............................................................................................................. 6 3.2 DEVICE OPERATING NEXT TO A PERSON’S EAR ................................................................................ 6 4 BODY-WORN CONFIGURATIONS ..................................................................................................... 9 4.1 POC (PTT) POSITION ................................................................................................................... 10 4.2 PHANTOM REQUIREMENTS ............................................................................................................ 10 4.3 TEST TO BE PERFORMED .............................................................................................................. 10 5 THE MEASUREMENT SYSTEM ........................................................................................................ 10 5.1 PHANTOM .................................................................................................................................... 12 5.2 PROBE ......................................................................................................................................... 12 5.3 MEASUREMENT PROCEDURE ........................................................................................................ 13 5.4 UNCERTAINTY ASSESSMENT ......................................................................................................... 14 6 SAR RESULTS ................................................................................................................................... 15 7 EVALUATION ..................................................................................................................................... 16 8 APPENDIX .......................................................................................................................................... 17 8.1 ADMINISTRATIVE DATA .................................................................................................................. 17 8.2 DEVICE UNDER TEST AND TEST CONDITIONS ................................................................................. 17 8.3 TISSUE RECIPES .......................................................................................................................... 17 8.4 MATERIAL PARAMETERS ............................................................................................................... 18 8.5 SIMPLIFIED PERFORMANCE CHECKING .......................................................................................... 19 8.6 ENVIRONMENT ........................................................................…
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The Testcenter facility ‘Dosimetric Test Lab’ within IMST GmbH is accredited by the German National ‘Deutsche Akkreditierungsstelle GmbH (DAkkS)’ for testing according to the scope as listed in the accreditation certificate: D-PL-12139-01-01. SAR_Report_TRaC_60320_6120187_FCC_DECT_Plots_D160 Page 1 of 10 Appendix for the Report Dosimetric Assessment of the Portable Device Avaya D160 (FCC ID: AMWUP683R) (IC: 513C-UP683) According to the FCC Requirements SAR Distribution Plots June 15, 2012 IMST GmbH Carl-Friedrich-Gauß-Str. 2 D-47475 Kamp-Lintfort Customer TRaC Unit E, South Orbital Trading Park, Hedon Road, Hull HU9 1NJ, UK The test results only relate to the items tested. This report shall not be reproduced except in full without the written approval of the testing laboratory. SAR_Report_TRaC_60320_6120187_FCC_DECT_Plots_D160 Page 2 of 10 dasy_report_fcc_DECT_1900_plots_1.0.doc/110.05.2006/ABo Table of Contents 1 SAR DISTRIBUTION PLOTS, HEAD MEASUREMENT ........................................................................... 3 2 SAR DISTRIBUTION PLOTS, BODY MEASUREMENTS ........................................................................ 7 3 SAR Z-AXIS SCANS (VALIDATION) ........................................................................................................... 9 4 SAR Z-AXIS SCANS (MEASUREMENTS) ................................................................................................ 10 SAR_Report_TRaC_60320_6120187_FCC_DECT_Plots_D160 Page 3 of 10 dasy_report_fcc_DECT_1900_plots_1.0.doc/110.05.2006/ABo 1 SAR Distribution Plots, Head Measurement Test Laboratory: Imst GmbH, DASY Yellow (II); File Name: 160_yDlm_1.da4 DUT: Avaya D160; Program Name: Cheek Left Communication System: DECT US; Frequency: 1924.99 MHz;Duty Cycle: 1:24 Medium parameters used: f = 1924.99 MHz; σ = 1.45 mho/m; ε r = 40.3; ρ = 1000 kg/m 3 Phantom section: Left Section DASY4 Configuration: - Probe: ET3DV6R - SN1579; ConvF(5.13, 5.13, 5.13); Calibrated: 25.01.2012 - Sensor-Surface: 4mm (Mechanical Surface Detection) - Electronics: DAE3 Sn335; Calibrated: 20.02.2012 - Phantom: SAM Glycol 1340; Type: QD 000 P40 CB; Serial: TP-1340 - Measurement SW: DASY4, V4.7 Build 80; Postprocessing SW: SEMCAD, V1.8 Build 186 Cheek Left/Area Scan (7x13x1): Measurement grid: dx=15mm, dy=15mm Maximum value of SAR (measured) = 0.002 mW/g Cheek Left/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 1.20 V/m; Power Drift = 0.041 dB Peak SAR (extrapolated) = 0.004 W/kg SAR(1 g) = 0.002 mW/g; SAR(10 g) = 0.000985 mW/g Fig. 1: SAR distribution for DECT US, channel 2, cheek position, left side of head, (May 29, 2012; Ambient Temperature: 22.0°C; Liquid Temperature: 21.8°C). SAR_Report_TRaC_60320_6120187_FCC_DECT_Plots_D160 Page 4 of 10 dasy_report_fcc_DECT_1900_plots_1.0.doc/110.05.2006/ABo Test Laboratory: Imst GmbH, DASY Yellow (II); File Name: 160_yDlm_2.da4 DUT: Avaya D160; Program Name: Cheek Left Communication System: DECT US; Frequency: 1924.99 MHz;Duty Cycle: 1:24 Medium parameters used: f = 1924.99 MHz; σ = 1.45 mho/m; ε r = 40.3; ρ = 1000 kg/m 3 Phantom section: Left Section DASY4 Configuration: - Probe: ET3DV6R - SN1579; ConvF(5.13, 5.13, 5.13); Calibrated: 25.01.2012 - Sensor-Surface: 4mm (Mechanical Surface Detection) - Electronics: DAE3 Sn335; Calibrated: 20.02.2012 - Phantom: SAM Glycol 1340; Type: QD 000 P40 CB; Serial: TP-1340 - Measurement SW: DASY4, V4.7 Build 80; Postprocessing SW: SEMCAD, V1.8 Build 186 Tilted Left/Area Scan (7x13x1): Measurement grid: dx=15mm, dy=15mm Maximum value of SAR (measured) = 0.020 mW/g Tilted Left/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 3.94 V/m; Power Drift = -0.179 dB Peak SAR (extrapolated) = 0.055 W/kg SAR(1 g) = 0.018 mW/g; SAR(10 g) = 0.00836 mW/g Maximum value of SAR (measured) = 0.021 mW/g Fig. 2: SAR distribution for DECT US, channel 2, tilted position, left side of head, (May 29, 2012; Ambient Temperature: 22.0°C; Liquid Temperature: 21.8°C). SAR_Report_TRaC_60320_6120187_FCC_DECT_Plots_D160 Page 5 of 10 dasy_report_fcc_DECT_1900_plots_1.0.doc/110.05.2006/ABo Test Laboratory: Imst GmbH, DASY Yellow (II); File Name: 160_yDrm_1.da4 DUT: Avaya D160; Program Name: Cheek Right Communication System: DECT US; Frequency: 1924.99 MHz;Duty Cycle: 1:24 Medium parameters used: f = 1924.99 MHz; σ = 1.45 mho/m; ε r = 40.3; ρ = 1000 kg/m 3 Phantom section: Right Section DASY4 Configuration: - Probe: ET3DV6R - SN1579; ConvF(5.13, 5.13, 5.13); Calibrated: 25.01.2012 - Sensor-Surface: 4mm (Mechanical Surface Detection) - Electronics: DAE3 Sn335; Calibrated: 20.02.2012 - Phantom: SAM Glycol 1340; Type: QD 000 P40 CB; Serial: TP-1340 - Measurement SW: DASY4, V4.7 Build 80; Postprocessing SW: SEMCAD, V1.8 Build 186 Cheek Right/Area Scan (7x13x1): Measurement grid: dx=15mm, dy=15mm Maximum value of SAR (measured) = 0.021 mW/g Cheek Right/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 3.94 V/m; Power Drift = -0.148 dB Peak SAR (extrapolated) = 0.031 W/kg SAR(1 g) = 0.018 mW/g; SAR(10 g) = 0.0099 mW/g Maximum value of SAR (measured) = 0.020 mW/g Cheek Right/Zoom Scan (7x7x7)/Cube 1: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 3.94 V/m; Power Drift = -0.148 dB Peak SAR (extrapolated) = 0.032 W/kg SAR(1 g) = 0.017 mW/g; SAR(10 g) = 0.0099 mW/g Fig. 3: SAR distribution for DECT US, channel 2, cheek position, right side of head, (May 29, 2012; Ambient Temperature: 22.0°C; Liquid Temperature: 21.8°C). SAR_Report_TRaC_60320_6120187_FCC_DECT_Plots_D160 Page 6 of 10 dasy_report_fcc_DECT_1900_plots_1.0.doc/110.05.2006/ABo Test Laboratory: Imst GmbH, DASY Yellow (II); File Name: 160_yDrm_2.da4 DUT: Avaya D160; Program Name: Cheek Right Communication System: DECT US; Frequency: 1924.99 MHz;Duty Cycle: 1:24 Medium parameters used: f = 1924.99 MHz; σ = 1.45 mho/m; ε r = 40.3; ρ = 1000 kg/m 3 Phantom section: Right Section DASY4 Configuration: - Probe: ET3DV6R …
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A RADIO TEST REPORT FOR UNIDEN CORPORATION ON 700503100 (D160 DECT Handset NA) DOCUMENT NO. TRA-007213-W-US-1 Total number of pages: 68 TRaC Wireless Test Report : TRA-007213-W-US-1 Applicant : Uniden Corporation Apparatus : 700503100 (D160 DECT Handset NA) Specification(s) : CFR47 Part 15D Purpose of Test : Certification FCCID : AMWUP683R Authorised by : : Radio Product Manager Issue Date :9 th August 2012 Authorised Copy Number : PDF TRaC Global Test Report: TRA-007213-W-US-1 3 Contents Section 1: Introduction 4 1.1 General 4 1.2 Tests Requested By 5 1.3 Manufacturer 5 1.4 Apparatus Assessed 5 1.5 System Description 6 1.6 Test Result Summary 7 1.7 Notes Relating to the Assessment 9 1.8 Deviations from Test Standards 9 Section 2: Measurement Uncertainty 10 2.1 Measurement Uncertainty Values 10 Section 3: Modifications 12 3.1 Modifications Performed During Assessment 12 Appendix A: Formal Emission Test Results 13 A1 Cross Reference To Subpart B 14 A2 Labelling Information 14 A3 Antenna Requirements 14 A4 Modulation Techniques 14 A5 Radio Frequency Radiation Exposure 14 A6 Transmitter Emission Bandwidth 15 A7 Peak Transmit Power 16 A8 Power Spectral Density 17 A9 Antenna Gain 18 A10 Automatic Discontinuation of Transmissions 19 A11 Monitoring Thresholds 20 A12 Monitoring of Intended Transmit Window & Maximum Reaction Time 21 A13 Monitoring Bandwidth & Antenna 22 A14 Power Accuracy 23 A15 Segment Occupancy 24 A16 Duration Of Transmission 25 A17 Connection Acknowledgement 26 A18 Least Interfered Channel (LIC) Procedure 27 A19 Selected Channel Confirmation 28 A20 Fair Access To Spectrum 29 A21 Emissions Inside and Outside the Sub-Band - Conducted 30 A22 Frame Repetition Stability 32 A23 Frequency Stability 33 A24 Power Line Conducted Emissions 34 A25 Unintentional Radiated Emissions 36 Appendix B: Supporting Graphical Data 38 Appendix C: Additional Test and Sample Details 57 Appendix D: Additional Information 63 Appendix E: Photographs and Figures 64 TRaC Global Test Report: TRA-007213-W-US-1 4 Section 1: Introduction 1.1 General This report contains an assessment of an apparatus against Electromagnetic Compatibility Standards based upon tests carried out on samples submitted to the Laboratory. Test performed by: TRaC Global [ ] Unit E South Orbital Trading Park Hedon Road Hull, HU9 1NJ. United Kingdom. Telephone: +44 (0) 1482 801801 Fax: +44 (0) 1482 801806 TRaC Global [X] Unit 1 Pendle Place Skelmersdale West Lancashire, WN8 9PN United Kingdom Telephone: +44 (0) 1695 556666 Fax: +44 (0) 1695 577077 Email: [email protected] Web site: http://www.tracglobal.com Tests performed by: D. Winstanley Report author: D. Winstanley This report must not be reproduced except in full without prior written permission from TRaC Global. TRaC Global Test Report: TRA-007213-W-US-1 5 1.2 Tests Requested By This testing in this report was requested by : Uniden Corporation 2-12-7 Hatchobori Chuo-ku Tokyo 104-8512 Japan 1.3 Manufacturer Uniden Vietnam Ltd LOT 5.1 Tan Truong Industrial Zon e Cam Giang District Hai Duong Province Vietnam 1.4 Apparatus Assessed The followin g apparatus was assessed between the dates 20 th February – 30 th May 2012: 700503100 (D160 DECT Handset NA) TRaC Global Test Report: TRA-007213-W-US-1 6 1.5 System Description The system is made up of two parts, a fixed part and a portable part. The portable part is a cordless handset device. The portable part is capable of operating on a maximum of 60 channels (time spectrum windows). The fixed part is a wall mounted base station transmitter. The system operates in the 1920MHz -1930MHz band. The system use 5 different frequency channels 1.728MHz apart using MC/TDMA/TDD (Multi Carrier / Time Division Multiple Access / Time Division Duplex) using GFSK modulation. The system employs a 10ms frame, divided into 24 equal timeslots, numbered 0-23. The Base station always transmits in the first half of the frame, and the Portable always transmits on the duplex mate in the second half of the frame. The portable part is the initiating device. A physica…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15D | 1.92 GHz - 1.93 GHz | 101.00 mW |
RADAR DETECTOR
Equipment Class
JBP - Part 15 Class B Computing Device PeripheralRADAR DETECTOR
Equipment Class
JBP - Part 15 Class B Computing Device PeripheralRADAR DETECTOR
Equipment Class
CRD - Part 15 Radar Detector
Wi-Fi Bluetooth Combo Module
Equipment Class
DTS - Digital Transmission System
RADAR DETECTOR
Equipment Class
CRD - Part 15 Radar Detector