
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Français Español English Installation Manual Model No.KX-TGA20 Key Detector Thank you for purchasing a Panasonic product. Please read this installation manual before using the unit and save it for future reference. This unit is an accessory for use with a Panasonic Digital Cordless Phone. For more details, visit our Web site: http://panasonic.net/pcc/products/telephone/p/tga20/ For U.S.A. users For assistance, visit our Web site: http://www.panasonic.com/help for customers in the U.S.A. or Puerto Rico. For Canada users For assistance, please call 1-800-561-5505 or visit us at www.panasonic.ca Supplied accessory (Replacement accessory) Battery (CR2032): 1 pc Battery type: CR coin cell lithium battery Introduction By registering the key detector to a Panasonic Digital Cordless Phone and attaching it to an easy-to-lose item in advance, you can locate and find the mislaid item to which the key detector is attached. Important: RUp to 4 key detectors can be registered to a Panasonic Digital Cordless Phone. RThe key detector is not water-resistant. Exposing it to rain, water, or high humidity may cause it to malfunction. Note: REven if the handset is out of the range of the base unit, you can use the handset to search for the key detector. While searching, the handset cannot receive calls. RIf a call is received while you are searching for the key detector with the handset, that handset does not ring. If you find that a call is being received on the base unit or another handset, you can stop searching and answer the call by using that handset. RIf the handset is placed on the base unit for the power back-up feature, the key detector function does not work. 2 Installation TGA20(en-en)_1201_ver022.pdf 22012/12/01 19:54:54 Registering a key detector to the unit Important: RFor key detector supplied users: The supplied key detector has been pre-registered to the unit. RDo not install the battery until you activate the key detector registration using the handset. RAfter installing the battery in step 2, the registration mode will end within 30 seconds. 1Handset: For key detector 1: MMENUN#6571 For key detector 2: MMENUN#6572 *1 For key detector 3: MMENUN#6573 *1 For key detector 4: MMENUN#6574 *1 *1 If you have 2 or more key detectors. 2Key detector: With the tab pushed to the right (A), pull out the battery holder (B). Insert the battery with ( ) facing up (C), then close the battery holder (D). RConfirm that the battery is set correctly ( , ). RThe key detector will go into the registration mode automatically and the registration tones will sound. C D B A 3Wait until a long beep sounds. RAfter the key detector is registered, the detector number is displayed. 4Handset: MOFFN If the registration tones do not sound or the registration fails, you need to remove the battery from the key detector once to make the key detector available for registration again. Leave the battery out of the key detector for over 2 minutes, and then repeat from step 1. 3 Installation TGA20(en-en)_1201_ver022.pdf 32012/12/01 19:54:54 Changing the key detector name 1Handset: For key detector 1: MMENUN#6561 For key detector 2: MMENUN#6562 *1 For key detector 3: MMENUN#6563 *1 For key detector 4: MMENUN#6564 *1 *1 If you have 2 or more key detectors. 2Enter the desired name (10 characters max.). 3MSAVEN a MOFFN Attaching the key detector to an easy-to-lose item You can attach the key detector to items such as a car key or house key, etc. Locating and finding a mislaid item You can locate and find the mislaid item to which the key detector is attached using the handset. 1Handset: MMENUN#655 2MbN: “Search” a MSELECTN 3MbN: Select the desired key detector. a MSELECTN RWhen the handset searches for the key detector, the handset emits the detection beeps and displays the signal strength (5 levels) and level value (1 – 100), and then the key detector emits responding beeps. As you point the handset in the right direction and then move closer to the item: –Handset: the frequency of the detection beeps will increase and a higher signal strength and level value will be displayed. –Key detector: the responding beeps are emitted during searching. RThe search is stopped after 3 minutes. To continue searching, repeat from step 3. RWhile searching, you can turn off the handset detection beeps by pressing MMUTEN. 4To stop searching, press MOFFN. 4 Installation TGA20(en-en)_1201_ver022.pdf 42012/12/01 19:54:54 Note: ROnly one handset can search for a key detector. Other handsets cannot search at the same time. RThe volume of the detection beeps and responding beeps cannot be changed. Range guidelines RThe range of the handset and key detector under the best conditions is about 50 m (160 feet) indoors and about 200 m (650 feet) outdoors. Please note this range may be shorter when the key detector is near concrete barriers, etc. Operating tips RPlace the key detector away from the handset and practice locating it a few times to get a feel for how it works. RIf you cannot figure out which room of your house the key detector was left in, first point the handset upwards to search higher floors and then point the handset downwards to search lower floors in order to check the search level. Then, start your search from the room which shows the highest search level with the doors closed. RWhen the level value reaches 70 – 90, we recommend you turn off the handset detection beeps by pressing MMUTEN and listen for the responding beeps from the key detector. RWhen you search for the key detector, we recommend that you: – turn off electronic appliances such as TVs, radios, washing machines, and cleaners and search in a quiet environment. – refrain from using other wireless appliances. RIf you are close to a wall and getting a strong signal, check the room next door. RIf error messages are displayed, try moving to a different area. Checking the battery Important: RPlace the key detector near the handset when checking the battery of the key detector. 1Handse…
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EXHIBIT A STATEMENT OF SECURITY CODE This cordless telephone system has more than 1,000 billion combinations that are provided by the following means: Provided with 128 bits for security codes. When shipped from the factory, the security code is decided by the manufacture. It is memorized in a memory IC. Base and Handset knows each other’s security code information.
Panasonic Corporation of North America One Panasonic Way 4B-8 Secaucus, NJ 07094 Tel: 201-348-7758 / Fax: 201-392-4564 [email protected] Richard Mullen Group Manager Product Safety and Compliance Division Power of Attorney January 17, 2013 PCTP-12-F008 Federal Communication Commission Equipment Authorization Division / Application Processing Branch 7435 Oakland Mills Road Columbia, Maryland 21046 To whom it may concern; Panasonic Corporation of North America hereby authorizes Nemko AS to act on our behalf in all matters relating to the preparation of TCB Certification application for the below described product, which are in compliance with FCC Part 15D. Any and all acts carried out by Nemko AS on our behalf shall have the same effects as acts of our own for a period of one year from the date of this letter. Type Filing: Original Application for DECT Key Detector, Model KX-TGA20 1 Product Classification: Part 15 Unlicensed PCS Portable Tx Worn on Body (PUT) FCC ID Handset Unit ACJ96NKX-TGA20 FCC Rule Part: FCC Part 15, Subpart D Frequency Range: 1924.992 MHz Number of Channels: 1 RF Channel / 12 TDMA Duplex Channels RF Output Power: 0.076 Watts (Peak Conducted) Responsible Panasonic Corporation of North America Applicant & Grantee: One Panasonic Way, Secaucus, NJ 07094 Responsible Manufacturer: Panasonic System Networks Co., Ltd. Sincerely yours, Richard Mullen Richard Mullen Group Manager Panasonic Corporation of North America Product Safety and Compliance Division 1 DECT Key Detector under FCC ID: ACJ96NKX-TGA20 may be marketed with DECT Bases, which will be Part 15D certified under FCC IDs: ACJ96NKX-TG4221, ACJ96NKX-TG6841 and ACJ96NKX-TG7871. Panasonic Corporation of North America One Panasonic Way 4B-8 Secaucus, NJ 07094 Tel: 201-348-7758 / Fax: 201-392-4564 [email protected] Richard Mullen Group Manager Product Safety and Compliance Division Request for Confidentiality January 17, 2013 PCTP-12-F008 Federal Communication Commission Equipment Authorization Division Application Processing Branch 7435 Oakland Mills Road Columbia, Maryland 21046 To whom it may concern; Type Filing: Original Application for DECT Key Detector, Model KX-TGA20 Product Classification: Part 15 Unlicensed PCS Portable Tx Worn on Body (PUT) FCC ID Handset Unit ACJ96NKX-TGA20 FCC Rule Part: FCC Part 15, Subpart D In accordance with provisions of Sections 0.457 and 0.459 of the Commission’s Rules and Section 552(b)(4) of the Freedom of Information Act, we request permanent confidentiality for exhibits, which contain: (1) Antenna Construction; (2) Description of Electrical Circuitry; (3) Schematic Diagrams of Handset Unit and RF Unit; and (4) Block Diagram. The transmitter is not user adjustable and does not have a Tune-Up Procedure. These exhibits contain proprietary, confidential and trade secrets material, which would not be routinely made available for public inspection. In accordance with FCC Public DA 04-1705, we request forty-five day short-term confidentiality, starting from the from the issuance of equipment authorization date, for exhibits, which contain: (1) External Photographs of Handset Unit and RF Unit; (2) Internal Photographs of Handset Unit and RF Unit; (3) Test Setup Photographs; and (4) User Manual. These exhibits contain pre-market information, which could give our competitors unfair advantage should this information be released before this product is actually introduced into the common marketplace. Sincerely yours, Richard Mullen Richard Mullen Group Manager Panasonic Corporation of North America Product Safety and Compliance Division
PCTP-12-F008 / DECT Key Detector under FCC ID: ACJ96NKX-TGA20 FCC Part 15D – Compliance Information pctp-12-f008 (fcc part 15d compliance information for dect key detector under acj96nkx-tga20).doc 8-Dec-2006 page 1 (4) rev.1.4 EUT AND PRODUCT INFORMATION Type of Equipment UPCS (DECT 6.0) Applicant Name Panasonic Corporation of North America Responsible Mfr Name Panasonic System Networks Co., Ltd. Communication system Business Unit Address 1-62, 4-chome, Minoshima, Hakata-ku, Fukuoka 812-8531, Japan Contact Keisuke Hirai PP EUT Type/System FCC ID ACJ96NKX-TGA20 Model name KX-TGA20 HW Version PNLB2163xx SW Version SW300 Max antenna Gain (dBi) 2dBi Can the EUT be Initiating Device □YES Does the EUT transmit signaling channels YES Max number of slots in use simultaneously 1 slot Test standard: FCC part 15D Other: Industry Canada RSS-213, Issue 2 Frequency Band 1924.992 MHz # of RF Channels 1 Frame Period 10 ms Max. Burst length 97us Min. Burst Length 97us # of Logical Channels 12 (12 duplex channels per RF carrier) Operating Mode Simplex Duplex PCTP-12-F008 / DECT Key Detector under FCC ID: ACJ96NKX-TGA20 FCC Part 15D – Compliance Information pctp-12-f008 (fcc part 15d compliance information for dect key detector under acj96nkx-tga20).doc 8-Dec-2006 page 2 (4) rev.1.4 ANTENNAS Antenna Type Internal External 1 2 3 4 Base (FP) Does RX and TX use the same antenna(s)? Yes No Antenna Type Internal External 1 Pattern Antenna 2 Handset (PP) Does RX and TX use the same antenna(s)? Yes No ANTENNA DIVERSITY Diversity Supported Antenna TX RX 1 2 3 Base (FP) and Repeater 4 1 Handset (PP) 2 VOLTAGE AND TEMPERATURE RANGES VOLTAGES FP PP Detector Nominal Voltage - DC3.0V Cut-Off Voltage (if applicable) - - - POWER SOURCE Type Manufacturer Base or Repeater Handset (PP) (charger) Data Connections PSTN (Base) Others (please specify) .... PCTP-12-F008 / DECT Key Detector under FCC ID: ACJ96NKX-TGA20 FCC Part 15D – Compliance Information pctp-12-f008 (fcc part 15d compliance information for dect key detector under acj96nkx-tga20).doc 8-Dec-2006 page 3 (4) rev.1.4 ANCILLARY EQUIPMENT Description Type Manufacturer HOST DEVICE Description Type Manufacturer ADDITIONAL INFORMATION PCTP-12-F008 / DECT Key Detector under FCC ID: ACJ96NKX-TGA20 FCC Part 15D – Compliance Information pctp-12-f008 (fcc part 15d compliance information for dect key detector under acj96nkx-tga20).doc 8-Dec-2006 page 4 (4) rev.1.4 MANUFACTURERS DECLARATIONS FCC part 15.323 (c)(5) No device or group of co-operating devices located within 1m of each other shall during any frame period occupy more than 6 MHz of aggregate bandwidth, or alternatively, more than one third of the time and spectrum windows defined by the system. Applicant Agrees Yes No FCC part 15.323 (c)(10) The applicant hereby declares that the system in this application does use the criteria of (c)(10) of this section. Applicant Agrees Yes No FCC part 15.323 (c)(11) The applicant hereby declares that system in this application does not use the criteria of (c)(11) of this section. Applicant Agrees Yes No FCC part 15.323 (c)(12) The provisions of (c)(10) or (c)(11) of this section shall not be used to extend the range of spectrum occupied over space or time for the purpose of denying fair access to spectrum to other devices. Applicant Agrees Yes No FCC part 15.307 (b) The Applicant is a participating member of UTAM, Inc. and will provide an affidavit from UTAM, Inc. certifying this. Confirmed By Applicant Yes No ADDITIONAL REMARKS: > DECLARED BY: December 19, 2012 Richard Mullen Richard Mullen
EXTERNAL PHOTOGRAPHS KX-TGA20
EXHIBIT B MARKINGS Base Unit: The base unit provides with the following marking, or equivalent. 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. NOTE: Above m arkings are shown on bottom of the base unit.
INTERNAL PHOTOGRAPHS Internal View
SAR_Report_Nemko_60320_6120431_FCC_CalData_TGA20 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. Appendix for the Report Dosimetric Assessment of the Portable Device Panasonic KX-TGA20 (FCC ID: ACJ96NKX-TGA20) (IC 216A-KXTGA20) According to the FCC Requirements Calibration Data December 18, 2012 IMST GmbH Carl-Friedrich-Gauß-Str. 2 D-47475 Kamp-Lintfort Customer Panasonic System Networks Co., Ltd. 1-62, 4-chome, Minoshima, Hakata-ku 5215 MC ́s-Hertogenbosch Fukuoka 812-8531 Japan Dasy_Report_FCC_DECT_1900_1.1.doc/22.05.2006/CH 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;…
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SAR_Report_Nemko_60320_6120431_FCC_DECT_Plots_TGA20 Page 1 of 5 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. Appendix for the Report Dosimetric Assessment of the Portable Device Panasonic KX-TGA20 (FCC ID: ACJ96NKX-TGA20) (IC 216A-KXTGA20) According to the FCC Requirements SAR Distribution Plots December 18, 2012 IMST GmbH Carl-Friedrich-Gauß-Str. 2 D-47475 Kamp-Lintfort Customer Panasonic System Networks Co., Ltd. 1-62, 4-chome, Minoshima, Hakata-ku NL-5215 MV ́s-Hertogenbosch Fukuoka 812-8531 Japan 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. dasy_report_fcc_DECT_1900_plots_1.0.doc/110.05.2006/ABo SAR_Report_Nemko_60320_6120431_FCC_DECT_Plots_TGA20 Page 2 of 5 dasy_report_fcc_DECT_1900_plots_1.0.doc/110.05.2006/ABo Table of Contents 1 SAR DISTRIBUTION PLOTS ......................................................................................................................... 3 2 SAR Z-AXIS SCANS (VALIDATION) ........................................................................................................... 5 3 SAR Z-AXIS SCANS (MEASUREMENTS) .................................................................................................. 5 SAR_Report_Nemko_60320_6120431_FCC_DECT_Plots_TGA20 Page 3 of 5 dasy_report_fcc_DECT_1900_plots_1.0.doc/110.05.2006/ABo 1 SAR Distribution Plots Test Laboratory: Imst GmbH, DASY Yellow (II); File Name: TGA20_yphm_1_front.da4 DUT: Panasonic; Type: KX-TGA20; Program Name: DECT Communication System: DECT US; Frequency: 1924.99 MHz;Duty Cycle: 1:24 Medium parameters used: f = 1924.99 MHz; σ = 1.56 mho/m; ε r = 54.6; ρ = 1000 kg/m 3 Phantom section: Flat Section DASY4 Configuration: - Probe: EX3DV4 - SN3536; ConvF(8.4, 8.4, 8.4); Calibrated: 24.09.2012 - 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 Body/Area Scan (6x7x1): Measurement grid: dx=15mm, dy=15mm Maximum value of SAR (measured) = 0.002 mW/g Body/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 1.11 V/m; Power Drift = 0.015 dB Peak SAR (extrapolated) = 0.013 W/kg SAR(1 g) = 0.002 mW/g; SAR(10 g) = 0.0003 mW/g Maximum value of SAR (measured) = 0.003 mW/g Fig. 1: SAR distribution for DECT US, channel 2, Position 1, 0 mm distance (December 17, 2012; Ambient Temperature: 21.5°C; Liquid Temperature: 21.3°C). SAR_Report_Nemko_60320_6120431_FCC_DECT_Plots_TGA20 Page 4 of 5 dasy_report_fcc_DECT_1900_plots_1.0.doc/110.05.2006/ABo Test Laboratory: Imst GmbH, DASY Yellow (II); File Name: TGA20_yphm_2_back.da4 DUT: Panasonic; Type: KX-TGA20; Program Name: DECT Communication System: DECT US; Frequency: 1924.99 MHz;Duty Cycle: 1:24 Medium parameters used: f = 1924.99 MHz; σ = 1.56 mho/m; ε r = 54.6; ρ = 1000 kg/m 3 Phantom section: Flat Section DASY4 Configuration: - Probe: EX3DV4 - SN3536; ConvF(8.4, 8.4, 8.4); Calibrated: 24.09.2012 - 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 Body/Area Scan (6x7x1): Measurement grid: dx=15mm, dy=15mm Maximum value of SAR (measured) = 0.002 mW/g Body/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 1.02 V/m; Power Drift = 0.007 dB Peak SAR (extrapolated) = 0.006 W/kg SAR(1 g) = 0.001 mW/g; SAR(10 g) = 9.34e-005 mW/g Fig. 2: SAR distribution for DECT US, channel 2, Position 2, 0 mm distance (December 17, 2012; Ambient Temperature: 21.5°C; Liquid Temperature: 21.3°C). SAR_Report_Nemko_60320_6120431_FCC_DECT_Plots_TGA20 Page 5 of 5 dasy_report_fcc_DECT_1900_plots_1.0.doc/110.05.2006/ABo 2 SAR Z-axis Scans (Validation) Fig. 3: SAR versus liquid depth, 1900 MHz, body (December 17, 2012; Ambient Temperature: 21.5°C; Liquid Temperature: 21.3°C). 3 SAR Z-axis Scans (Measurements) The following picture shows the plot of SAR versus liquid depth for the worst case values. Fig. 4: SAR versus liquid depth, body: DECT US, channel 2, Position 1, 0mm distance (December 17, 2012; Ambient Temperature: 21.5°C; Liquid Temperature: 21.5°C).
SAR_Report_Nemko_60320_6120431_FCC_DECT_TGA20_Conf_1 Page 1 of 26 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. Report Dosimetric Assessment of the Portable Device Panasonic KX-TGA20 (FCC ID: ACJ96NKX-TGA20) (IC 216A-KXTGA20) According to the FCC Requirements December 18, 2012 IMST GmbH Carl-Friedrich-Gauß-Str. 2 D-47475 Kamp-Lintfort Customer Panasonic System networks Co., Ltd. 1-62, 4-come, Minoshima, Hakata-ku 5215 MC ́s-Hertogenbosch Fukuoka 812-5831 Japan This revised version replaces all previous versions of the report. 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. Dasy_Report_FCC_DECT_1900_1.2.doc/16.05.2008/ABo SAR_Report_Nemko_60320_6120431_FCC_DECT_TGA20_Conf_1 Page 2 of 26 Dasy_Report_FCC_DECT_1900_1.2.doc/16.05.2008/ABo Executive Summary The KX-TGA20 is a cordless Keyfinder (Portable Device) from Panasonic operating in the 1920 MHz frequency range (US DECT Standard). The objective of the measurements done by IMST was the dosimetric assessment of one device in body worn configuration. The module was set to use one specific frequency and maximum output power during the measurement. Therefore a connection with a Panasonic KX-TGA680 was set. The examinations have been carried out with the dosimetric assessment system „DASY4“. The measurements were made 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 emission. All measurements have been performed in accordance to the recommendations given by SPEAG. Compliance Statement The Panasonic KX-TGA20 cordless DECT Keyfinder (FCC ID: ACJ96NKX-TGA20; IC: 216A-KXTGA20) is in compliance with the Federal Communications Commission (FCC) Guidelines [OET 65] for uncontrolled exposure. prepared by: ........................................... reviewed by: ..................................... Alexander Rahn André van den Bosch test engineer quality assurance engineer IMST GmbH Carl-Friedrich-Gauß-Straße 2 D-47475 Kamp-Lintfort Tel. +49- 2842-981 378 Fax +49- 2842-981 399 email: [email protected] SAR_Report_Nemko_60320_6120431_FCC_DECT_TGA20_Conf_1 Page 3 of 26 Dasy_Report_FCC_DECT_1900_1.2.doc/16.05.2008/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 ................................................................................................................…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15D | 1.92 GHz - 1.92 GHz | 76.00 mW |
Digital Wireless Stereo Headphones
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterContactless Smart Card Reader
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
Car AV Control Unit for CDC
Equipment Class
DTS - Digital Transmission SystemDECT Handset
Equipment Class
PUE - Part 15 Unlicensed PCS portable Tx held to earDECT Base Unit
Equipment Class
PUB - Part 15 Unlicensed PCS Base Station