
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
HICELLER100 instruction manual This product is not designed for end user. This product is used as a part of construction machinery. Therefore, this manual shows the technical information for engineers. 1. Overview Input voltage : DC+8 to +32 V Current consumption : Standby : 36 mA : Transmission : 120 mA Operating temperature/humidity ranges : -20C to 70C 5 to 95% Storage temperature/humidity ranges : -30C to 85C 5 to 95% 2. External terminal GPS antenna terminal : BNC-J (50 Ω) External interface : MX23A34NF1 (JAE) 3. Operation overview 1) Positioning by the GPS 2) Data I/O with the external interface (serial communication/external terminal) 3) Transmission of the data 1) and 2) through the mobile communication network 4. Configuration diagram of a mobile communication terminal DC24V supply Product Power control board HC25 communication module GPS antenna PC, etc. Built-in antenn a Mobile communication antenna I/O RS232C, etc. External antenna Power supply Serial data Photo of HICELLER100 Outline drawing of HICELLER100 4 - 8 φ For user installation GPS antenna connector External interface connector Name of each part 1. Statement according to Part 15.105 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: 1. Reorient or relocate the receiving antenna. 2. Increase the separation between the equipment and receiver. 3. Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. 4. Consult the dealer or an experienced radio/TV technician for help. 2. Statement according to Part 15.19 and Canada RSS-210 This device complies with Part 15 of the FCC Rules and with RSS-210 of Industry Canada. 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. 3. Statement according to Part 15.21 Changes or modifications made to this equipment not expressly approved by Hitachi Construction Machinery Co., Ltd. may void the FCC authorization to operate this equipment. 4. Statement according to RF Exposure Radiofrequency radiation exposure Information: This equipment complies with FCC radiation exposure limits set forth for an uncontrolled environment. This equipment should be installed and operated with minimum distance of 10 cm between the radiator and your body and at least 20 cm between the radiator and the head of all persons. This transmitter must not be co-located or operating in conjunction with any other antenna or transmitter.
Hitachi Construction Machinery Co.,Ltd Model:HICELLULAR100 FCC ID No:Y4XHCM2010M100H25 IC Certification No:329Q-HCM2010M100
HC25 Siemens Cellular Engine Model(s) S30960-S1050-XXXX Siemens IMEI S30960-S1060-XXXX Customer IMEI HC25 Top Site HC25 Bottom Site
SAR Test Report No.: SAR_ CET10_059_10501_rev1 Date of Report: 2010-09-29 Appendix A Plots Page 1 of 26 Plot 1: GSM 850, 836.6MHz, Top System / software: SARA2 / 2.54 VPM coloc Input Power Drift: Date / Time: 9/27/2010 11:37:13 AM DUT Battery Model/No: Filename: GSM836_Top.txt Probe Serial Number: 0116 Ambient Temperature: 20.6°C Liquid Simulant: 850 Device Under Test: Hitachi SN: 15 Relative Permittivity: 54.13 Relative Humidity: 50.4% Conductivity: 0.969 Phantom S/No: Head04_37.csv Liquid Temperature: 21°C Phantom Rotation: 180° Max SAR Y-axis Location: 0.00 mm DUT Position: Top 10cm Max SAR Z-axis Location: -473.70 mm Antenna Configuration: Integral Max E Field: 3.99 V/m Test Frequency: GSM 836.6MHz SAR 1g: 0.023 W/kg Air Factors: 936.77 / 700.45 / 673.31 SAR 10g: Conversion Factors: 0.24 / 0.27 / 0.26 SAR Start: 0.002 W/kg Type of Modulation: SAR End: 0.002 W/kg Modn. Duty Cycle: SAR Drift during Scan: -1.22 % Diode Compression Factors (V*200): 20 / 20 / 20 Probe battery last changed: 09/20/10 Input Power Level: 2 uplink timeslots Extrapolation: poly4 SAR Test Report No.: SAR_ CET10_059_10501_rev1 Date of Report: 2010-09-29 Appendix A Plots Page 2 of 26 Plot 2: GSM 850, 836.6MHz, Bottom System / software: SARA2 / 2.54 VPM coloc Input Power Drift: Date / Time: 9/27/2010 1:11:08 PM DUT Battery Model/No: Filename: GSM836_Bottom.txt Probe Serial Number: 0116 Ambient Temperature: 20.6°C Liquid Simulant: 850 Device Under Test: Hitachi SN: 15 Relative Permittivity: 54.13 Relative Humidity: 50.4% Conductivity: 0.969 Phantom S/No: Head04_37.csv Liquid Temperature: 21°C Phantom Rotation: 180° Max SAR X-axis Location: -43.82 mm DUT Position: Bottom 10cm Max SAR Y-axis Location: 75.33 mm Antenna Configuration: Integral Max E Field: 2.67 V/m Test Frequency: GSM 836.6MHz SAR 1g: 0.006 W/kg Air Factors: 936.77 / 700.45 / 673.31 SAR 10g: Conversion Factors: 0.24 / 0.27 / 0.26 SAR Start: 0.002 W/kg Type of Modulation: SAR End: 0.000 W/kg Modn. Duty Cycle: SAR Drift during Scan: 0.00 % Diode Compression Factors (V*200): 20 / 20 / 20 Probe battery last changed: 09/20/10 Input Power Level: 2 uplink timeslots Extrapolation: poly4 SAR Test Report No.: SAR_ CET10_059_10501_rev1 Date of Report: 2010-09-29 Appendix A Plots Page 3 of 26 Plot 3: GSM 850, 836.6MHz, Left System / software: SARA2 / 2.54 VPM coloc Input Power Drift: Date / Time: 9/27/2010 6:05:27 PM DUT Battery Model/No: Filename: GSM836_Left.txt Probe Serial Number: 0116 Ambient Temperature: 20.6°C Liquid Simulant: 850 Device Under Test: Hitachi SN: 25 Relative Permittivity: 54.13 Relative Humidity: 50.4% Conductivity: 0.969 Phantom S/No: Head04_37.csv Liquid Temperature: 21°C Phantom Rotation: 180° Max SAR X-axis Location: -48.00 mm DUT Position: Left 10cm Max SAR Y-axis Location: 41.40 mm Antenna Configuration: Integral Max E Field: 3.56 V/m Test Frequency: GSM 836.6MHz SAR 1g: 0.018 W/kg Air Factors: 936.77 / 700.45 / 673.31 SAR 10g: Conversion Factors: 0.24 / 0.27 / 0.26 SAR Start: 0.004 W/kg Type of Modulation: SAR End: 0.004 W/kg Modn. Duty Cycle: SAR Drift during Scan: -2.33 % Diode Compression Factors (V*200): 20 / 20 / 20 Probe battery last changed: 09/20/10 Input Power Level: 2 uplink timeslots Extrapolation: poly4 SAR Test Report No.: SAR_ CET10_059_10501_rev1 Date of Report: 2010-09-29 Appendix A Plots Page 4 of 26 Plot 4: GSM 850, 836.6MHz, Right System / software: SARA2 / 2.54 VPM coloc Input Power Drift: Date / Time: 9/27/2010 6:54:31 PM DUT Battery Model/No: Filename: GSM836_Right.txt Probe Serial Number: 0116 Ambient Temperature: 20.6°C Liquid Simulant: 850 Device Under Test: Hitachi SN: 25 Relative Permittivity: 54.13 Relative Humidity: 50.4% Conductivity: 0.969 Phantom S/No: Head04_37.csv Liquid Temperature: 21°C Phantom Rotation: 180° Max SAR X-axis Location: 48.00 mm DUT Position: Right 10cm Max SAR Y-axis Location: 20.30 mm Antenna Configuration: Integral Max E Field: 3.41 V/m Test Frequency: GSM 836.6MHz SAR 1g: 0.011 W/kg Air Factors: 936.77 / 700.45 / 673.31 SAR 10g: Conversion Factors: 0.24 / 0.27 / 0.26 SAR Start: 0.003 W/kg Type of Modulation: SAR End: 0.007 W/kg Modn. Duty Cycle: SAR Drift during Scan: 2.37 % Diode Compression Factors (V*200): 20 / 20 / 20 Probe battery last changed: 09/20/10 Input Power Level: 2 uplink timeslots Extrapolation: poly4 SAR Test Report No.: SAR_ CET10_059_10501_rev1 Date of Report: 2010-09-29 Appendix A Plots Page 5 of 26 Plot 5: GSM 850, 836.6MHz, Front System / software: SARA2 / 2.54 VPM coloc Input Power Drift: Date / Time: 9/27/2010 5:22:54 PM DUT Battery Model/No: Filename: GSM836_Side Bottom.txt Probe Serial Number: 0116 Ambient Temperature: 20.6°C Liquid Simulant: 850 Device Under Test: Hitachi SN: 15 Relative Permittivity: 54.13 Relative Humidity: 50.4% Conductivity: 0.969 Phantom S/No: Head04_37.csv Liquid Temperature: 21°C Phantom Rotation: 180° Max SAR X-axis Location: -11.00 mm DUT Position: Side Bottom 10cm Max SAR Y-axis Location: 35.20 mm Antenna Configuration: Integral Max E Field: 3.40 V/m Test Frequency: GSM 836.6MHz SAR 1g: 0.014 W/kg Air Factors: 936.77 / 700.45 / 673.31 SAR 10g: Conversion Factors: 0.24 / 0.27 / 0.26 SAR Start: 0.005 W/kg Type of Modulation: SAR End: 0.004 W/kg Modn. Duty Cycle: SAR Drift during Scan: -1.36 % Diode Compression Factors (V*200): 20 / 20 / 20 Probe battery last changed: 09/20/10 Input Power Level: 2 uplink timeslots Extrapolation: poly4 SAR Test Report No.: SAR_ CET10_059_10501_rev1 Date of Report: 2010-09-29 Appendix A Plots Page 6 of 26 Plot 6: GSM 850, 836.6MHz, Rear System / software: SARA2 / 2.54 VPM coloc Input Power Drift: Date / Time: 9/27/2010 5:46:58 PM DUT Battery Model/No: Filename: GSM836_Side Top.txt Probe Serial Number: 0116 Ambient Temperature: 20.6°C Liquid Simulant: 850 Device Under Test: Hitachi SN: 25 Relative Permittivity: 54.13 Relative Humidity: 50.4% Conductivity: 0.969 Phantom S/No: Head04_37.csv Liquid Temperature: 21°C Phantom Rotation: 180° Max SAR X-axis Location: -15.00 mm DUT Position: Side Top 10cm Max SA…
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SAR Test Report No.: SAR_ CET10_059_10501_rev1 Date of Report: 2010-09-29 Appendix B Page 1 of 7 Appendix B: Photos Setup Photos Photo 1. Top SAR Test Report No.: SAR_ CET10_059_10501_rev1 Date of Report: 2010-09-29 Appendix B Page 2 of 7 Photo 2. Bottom SAR Test Report No.: SAR_ CET10_059_10501_rev1 Date of Report: 2010-09-29 Appendix B Page 3 of 7 Photo 3. Left SAR Test Report No.: SAR_ CET10_059_10501_rev1 Date of Report: 2010-09-29 Appendix B Page 4 of 7 Photo 4. Right SAR Test Report No.: SAR_ CET10_059_10501_rev1 Date of Report: 2010-09-29 Appendix B Page 5 of 7 Photo 5. Front SAR Test Report No.: SAR_ CET10_059_10501_rev1 Date of Report: 2010-09-29 Appendix B Page 6 of 7 Photo 6. Back SAR Test Report No.: SAR_ CET10_059_10501_rev1 Date of Report: 2010-09-29 Appendix B Page 7 of 7 Photo 7. Photo to demonstrate 15 cm Z-axis flat phantom
SAR Test Report No.: SAR_ CET10_059_10501_rev1 Date of Report: 2010-09-29 Appendix C Page 1 of 3 1. Tissue Parameters SAR measurements were made within 24 hours of the measurement of liquid parameters. 850MHz Body Liquid: Recipe: The following recipe is provided in percentage by weight. 60.00% Distilled water 35.00% DGBE 5.00% Salt Date Frequency (MHz) Relative Permittivity Conductivity (S/m) 09/27/10 835 54.15 0.963 09/27/10 836.6 54.13 0.969 1900MHz Body Liquid: Recipe: The following recipe is provided in percentage by weight. 69.17% Distilled water 30.29% DGBE 0.44% Salt Date Frequency (MHz) Relative Permittivity Conductivity (S/m) 09/28/10 1880 51.4 1.552 SAR Test Report No.: SAR_ CET10_059_10501_rev1 Date of Report: 2010-09-29 Appendix C Page 2 of 3 2. Test Equipment Instrument description Supplier / Manufacturer Model Serial No. Calibration (date) Calibration Due (date) Bench top Robot Mitsubishi supplied by IndexSAR RV-E2 EA1030108 N/A N/A SAM Phantom Upright shell phantom made by Antennessa digitized and mounted by IndexSAR SAM 03FT26 04/03 N/A Flat Phantom IndexSAR HeadBox_1 N/A N/A N/A Software IndexSAR SARA2 v0.420 N/A N/A N/A 850 MHz Body Tissue Simulant Cetecom Inc. 850 Body N/A 09/27/2010 N/A 1900 MHz Body Tissue Simulant Cetecom Inc. 1900 Body N/A 09/28/10 N/A 850 MHz Dipole IndexSAR – IEEE 1528 design IXD-245 081 02/13/2009 02/13/2011 1900 MHz Dipole IndexSAR – IEEE 1528 design IXD-188 016 02/13/2009 02/13/2011 Directional coupler Werlatone C6529 11249 N/A N/A RF Amplifier Vectawave VTL5400 N/A N/A N/A SAR Probe IndexSAR IXP-050 S/N 0116 10/19/2009 10/19/2010 Dielectric Measurement Kit IndexSAR Di-Line N/A N/A N/A SAR Test Report No.: SAR_ CET10_059_10501_rev1 Date of Report: 2010-09-29 Appendix C Page 3 of 3 3. Equipment Calibration/Performance Documents: KDB 450824 states that the return-loss and impedance of dipoles should be measured at least annually to ensure dipoles meed specification. Section 1c) states the return loss should not deviate by more than 20% of the previuos measurement. Section 1d) states the real or imaginary parts of the impedance should not deviate by more than 5 Ω from the previous measurement. Measurements were made with the dipole against the flat phantom, filled with body liquid for the respective frequency. 835MHz Dipole Serial No 081 was measured on September 20, 2010. The return-loss is -20.577 dB, 0.4% deviation from calibration measurement. The real part impedance is 60.221Ω, 0.421 deviation from the calibration measurement. The imaginary part impedance is 1.3672Ω, 4.88 deviation from the calibration measurement. The 835MHz Dipole is within tolerances stated by KDB 450824. 1880MHz Dipole Serial No 016 was measured on September 20, 1010. The return-loss is -20.892 dB, . The return-loss is 0.2% deviation from calibration measurement. The real part impedance is 42.945Ω, -3.855 deviation from the calibration measurement. The imaginary part impedance is -4.5527, 3.65 deviation from the calibration measurement. The 1880MHz dipole is within tolerances stated by KDB 450824 The following pages are calibration reports for: • SAR Probe 0116 • 850MHz Dipole Serial No 081 • 1900MHz Dipole Serial No 016
7 layers AG Aufsichtsratsvorsitzenderh Registergerichth registered in: Borsigstrasse 11 Chairman of the Supervisory Board: Düsseldorf, HRB 44096 40880 Ratingen, Germany Markus Becker USt-IdNr h VAT Nr: Phone: +49 (0) 2102 749 0 Vorstandh Board: DE 203159652 Fax: +49 (0) 2102 749 350 Dr. Hans-Jürgen Meckelburg www.7Layers.com René Schildknecht InterLab is a registered trademark of 7 layers AG FCC Measurement/Technical Report on GSM/UMTS module Siemens Cellular Engine HC25 Report Reference: MDE_Siem_0605_FCCb Test Laboratory: 7 layers AG Borsigstrasse 11 40880 Ratingen Germany email: [email protected] DAT-P-192/99-01 Note: The following test results relate only to the devices specified in this document. This report shall not be reproduced in parts without the written approval of the testing laboratory. Test report Reference: MDE_Siem_0605_FCCb Page 2 of 67 Table of Contents 0 Summary 3 0.1 Technical Report Summary 3 0.2 Measurement Summary 4 1 Administrative Data 6 1.1 Testing Laboratory 6 1.2 Project Data 6 1.3 Applicant Data 6 1.4 Manufacturer Data 6 2 Testobject Data 7 2.1 General EUT Description 7 2.2 EUT Main components 8 2.3 Ancillary Equipment 8 2.4 EUT Setups 8 2.5 Operating Modes 9 3 Test Results 10 3.1 RF Power Output 10 3.2 Frequency stability 14 3.3 Spurious emissions at antenna terminals 20 3.4 Field strength of spurious radiation 24 3.5 Emission and Occupied Bandwidth 28 3.6 Band edge compliance 32 4 Test Equipment 35 5 Photo Report 38 6 Setup Drawings 42 7 Annex 44 Measurement Plots Test report Reference: MDE_Siem_0605_FCCb Page 3 of 67 0 Summary 0.1 Technical Report Summary Type of Authorization Certification for a GSM cellular radiotelephone device Applicable FCC Rules Prepared in accordance with the requirements of FCC Rules and Regulations as listed in 47 CFR Ch.1 Parts 0 to 19 and Parts 20 to 69 (10-1-06 Edition). The following subparts are applicable to the results in this test report. Part 2 Subpart J - Equipment Authorization Procedures, Certification § 2.1046 Measurement required: RF power output § 2.1049 Measurement required: Occupied bandwidth § 2.1051 Measurement required: Spurious emissions at antenna terminals § 2.1053 Measurement required: Field strength of spurious radiation § 2.1055 Measurement required: Frequency stability § 2.1057 Frequency spectrum to be investigated Part 22 Subpart C – Operational and Technical Requirements § 22.355 Frequency tolerance Subpart H – Cellular Radiotelephone Service § 22.913 Effective radiated power limits § 22.917 Emission limitations for cellular equipment Summary Test The EUT complied with all performed tests as listed in chapter 0.2 Measurement Summary. Test report Reference: MDE_Siem_0605_FCCb Page 4 of 67 0.2 Measurement Summary RF Power Output The measurement was performed according to FCC §2.1046 10-1-06 OP-Mode Setup Port Final Result op-mode 1 setup_a01 antenna connector passed op-mode 2 setup_a01 antenna connector passed op-mode 3 setup_a01 antenna connector passed op-mode 4 setup_a01 antenna connector passed op-mode 5 setup_a01 antenna connector passed op-mode 6 setup_a01 antenna connector passed op-mode 7 setup_a01 antenna connector passed op-mode 8 setup_a01 antenna connector passed op-mode 9 setup_a01 antenna connector passed Frequency stability The measurement was performed according to FCC §2.1055 10-1-06 OP-Mode Setup Port Final Result op-mode 2 setup_a01 antenna connector passed op-mode 5 setup_a01 antenna connector passed op-mode 8 setup_a01 antenna connector passed Spurious emissions at antenna terminals The measurement was performed according to FCC §2.1051 10-1-06 OP-Mode Setup Port Final Result op-mode 1 setup_a01 antenna connector passed op-mode 2 setup_a01 antenna connector passed op-mode 3 setup_a01 antenna connector passed op-mode 4 setup_a01 antenna connector passed op-mode 5 setup_a01 antenna connector passed op-mode 6 setup_a01 antenna connector passed op-mode 7 setup_a01 antenna connector passed op-mode 8 setup_a01 antenna connector passed op-mode 9 setup_a01 antenna connector passed Field strength of spurious radiation The measurement was performed according to FCC §2.1053 10-1-06 OP-Mode Setup Port Final Result op-mode 1 setup_a02 enclosure passed op-mode 2 setup_a02 enclosure passed op-mode 3 setup_a02 enclosure passed op-mode 4 setup_a02 enclosure passed op-mode 5 setup_a02 enclosure passed op-mode 6 setup_a02 enclosure passed op-mode 7 setup_a02 enclosure passed op-mode 8 setup_a02 enclosure passed op-mode 9 setup_a02 enclosure passed Test report Reference: MDE_Siem_0605_FCCb Page 6 of 67 1 Administrative Data 1.1 Testing Laboratory Company Name: 7 Layers AG Address Borsigstr. 11 40880 Ratingen Germany This facility has been fully described in a report submitted to the FCC and accepted under the registration number 96716 . The test facility is also accredited by the following accreditation organisation: - Deutscher Akkreditierungs Rat DAR-Registration no. DAT-P-192/99-01 Responsible for Accreditation Scope: Dipl.-Ing. Bernhard Retka Dipl.-Ing. Robert Machulec Dipl.-Ing. Thomas Hoell Report Template Version: 2006-12-18 1.2 Project Data Responsible for testing and report: Dipl.-Ing. Andreas Petz Date of Test(s): 2007-02-09 to 2007-03-02 Date of Report: 2007-03-15 1.3 Applicant Data Company Name: Siemens AG Address: Siemensdamm 50 13629 Berlin Germany Contact Person: Mr. Hussein Halawi 1.4 Manufacturer Data Company Name: please see applicant data Address: Contact Person: Test report Reference: MDE_Siem_0605_FCCb Page 7 of 67 2 Testobject Data 2.1 General EUT Description Equipment under Test: GSM/UMTS module Type Designation: Siemens Cellular Engine HC25 Kind of Device: (optional) GSM 850/900/1800/1900 + UMTS FDD I/II/V module Voltage Type: DC Nominal Voltage: 4.2 V Maximum Voltage: 4.2 V Minimum Voltage: 3.2 V General product description: The Equipment Under Test (EUT) is a GSM 850/900/1800/1900 module and supports EDGE and FDD I/II/V. The manufacturer declared that nominal voltage is equal …
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7 layers AG Aufsichtsratsvorsitzenderh Registergerichth registered in: Borsigstrasse 11 Chairman of the Supervisory Board: Düsseldorf, HRB 44096 40880 Ratingen, Germany Markus Becker USt-IdNr h VAT Nr: Phone: +49 (0) 2102 749 0 Vorstandh Board: DE 203159652 Fax: +49 (0) 2102 749 350 Dr. Hans-Jürgen Meckelburg www.7Layers.com René Schildknecht InterLab is a registered trademark of 7 layers AG FCC Measurement/Technical Report on GSM/UMTS module Siemens Cellular Engine HC25 Report Reference: MDE_Siem_0605_FCCa Test Laboratory: 7 layers AG Borsigstrasse 11 40880 Ratingen Germany email: [email protected] DAT-P-192/99-01 Note: The following test results relate only to the devices specified in this document. This report shall not be reproduced in parts without the written approval of the testing laboratory. Test report Reference: MDE_Siem_0605_FCCa Page 2 of 67 Table of Contents 0 Summary 3 0.1 Technical Report Summary 3 0.2 Measurement Summary 4 1 Administrative Data 6 1.1 Testing Laboratory 6 1.2 Project Data 6 1.3 Applicant Data 6 1.4 Manufacturer Data 6 2 Testobject Data 7 2.1 General EUT Description 7 2.2 EUT Main components 8 2.3 Ancillary Equipment 8 2.4 EUT Setups 8 2.5 Operating Modes 9 3 Test Results 10 3.1 RF Power Output 10 3.2 Frequency stability 14 3.3 Spurious emissions at antenna terminals 20 3.4 Field strength of spurious radiation 24 3.5 Emission and Occupied Bandwidth 28 3.6 Band edge compliance 32 4 Test Equipment 35 5 Photo Report 38 6 Setup Drawings 42 7 Annex 44 Measurement Plots Test report Reference: MDE_Siem_0605_FCCa Page 3 of 67 0 Summary 0.1 Technical Report Summary Type of Authorization Certification for a GSM cellular radiotelephone device Applicable FCC Rules Prepared in accordance with the requirements of FCC Rules and Regulations as listed in 47 CFR Ch.1 Parts 0 to 19 and Parts 20 to 69 (10-1-06 Edition). The following subparts are applicable to the results in this test report. Part 2 Subpart J - Equipment Authorization Procedures, Certification § 2.1046 Measurement required: RF power output § 2.1049 Measurement required: Occupied bandwidth § 2.1051 Measurement required: Spurious emissions at antenna terminals § 2.1053 Measurement required: Field strength of spurious radiation § 2.1055 Measurement required: Frequency stability § 2.1057 Frequency spectrum to be investigated Part 24 Subpart E - Broadband PCS § 24.232 Power and antenna height limits § 24.235 Frequency stability § 24.236 Field strength limits § 24.238 Emission limitations for Broadband PCS equipment Summary Test Results: The EUT complied with all performed tests as listed in chapter 0.2 Measurement Summary. Test report Reference: MDE_Siem_0605_FCCa Page 4 of 67 0.2 Measurement Summary RF Power Output The measurement was performed according to FCC §2.1046 10-1-06 OP-Mode Setup Port Final Result op-mode 1 setup_a01 antenna connector passed op-mode 2 setup_a01 antenna connector passed op-mode 3 setup_a01 antenna connector passed op-mode 4 setup_a01 antenna connector passed op-mode 5 setup_a01 antenna connector passed op-mode 6 setup_a01 antenna connector passed op-mode 7 setup_a01 antenna connector passed op-mode 8 setup_a01 antenna connector passed op-mode 9 setup_a01 antenna connector passed Frequency stability The measurement was performed according to FCC §2.1055 10-1-06 OP-Mode Setup Port Final Result op-mode 2 setup_a01 antenna connector passed op-mode 4 setup_a01 antenna connector passed op-mode 8 setup_a01 antenna connector passed Spurious emissions at antenna terminals The measurement was performed according to FCC §2.1051 10-1-06 OP-Mode Setup Port Final Result op-mode 1 setup_a01 antenna connector passed op-mode 2 setup_a01 antenna connector passed op-mode 3 setup_a01 antenna connector passed op-mode 4 setup_a01 antenna connector passed op-mode 5 setup_a01 antenna connector passed op-mode 6 setup_a01 antenna connector passed op-mode 7 setup_a01 antenna connector passed op-mode 8 setup_a01 antenna connector passed op-mode 9 setup_a01 antenna connector passed Field strength of spurious radiation The measurement was performed according to FCC §2.1053 10-1-06 OP-Mode Setup Port Final Result op-mode 1 setup_a02 enclosure passed op-mode 2 setup_a02 enclosure passed op-mode 3 setup_a02 enclosure passed op-mode 4 setup_a02 enclosure passed op-mode 5 setup_a02 enclosure passed op-mode 6 setup_a02 enclosure passed op-mode 7 setup_a02 enclosure passed op-mode 8 setup_a02 enclosure passed op-mode 9 setup_a02 enclosure passed Test report Reference: MDE_Siem_0605_FCCa Page 6 of 67 1 Administrative Data 1.1 Testing Laboratory Company Name: 7 Layers AG Address Borsigstr. 11 40880 Ratingen Germany This facility has been fully described in a report submitted to the FCC and accepted under the registration number 96716 . The test facility is also accredited by the following accreditation organisation: - Deutscher Akkreditierungs Rat DAR-Registration no. DAT-P-192/99-01 Responsible for Accreditation Scope: Dipl.-Ing. Bernhard Retka Dipl.-Ing. Robert Machulec Dipl.-Ing. Thomas Hoell Report Template Version: 2006-12-18 1.2 Project Data Responsible for testing and report: Dipl.-Ing. Andreas Petz Date of Test(s): 2007-02-09 to 2007-03-02 Date of Report: 2007-03-16 1.3 Applicant Data Company Name: Siemens AG Address: Siemensdamm 50 13629 Berlin Germany Contact Person: Mr. Hussein Halawi 1.4 Manufacturer Data Company Name: please see applicant data Address: Contact Person: Test report Reference: MDE_Siem_0605_FCCa Page 7 of 67 2 Testobject Data 2.1 General EUT Description Equipment under Test: GSM/UMTS module Type Designation: Siemens Cellular Engine HC25 Kind of Device: (optional) GSM 850/900/1800/1900 + UMTS FDD I/II/V module Voltage Type: DC Nominal Voltage: 4.2 V Maximum Voltage: 4.2 V Minimum Voltage: 3.2 V General product description: The Equipment Under Test (EUT) is a GSM 850/900/1800/1900 module and supports EDGE and FDD I/II/V. The manufacturer declared that nominal voltage is equal to maximum voltage. In P…
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Bluetooth Qualification Test Facility (BQTF) FCC listed: A2LA Accredited IC recognized # 3462B-1 CETECOM Inc. 411 Dixon Landing Road Milpitas, CA 95035 U.S.A. Phone: + 1 (408) 586 6200 Fax: + 1 (408) 586 6299 E-mail: [email protected] http://www.cetecom.com CETECOM Inc. is a Delaware Corporation with Corporation number: 2113686 Board of Directors: Dr. Harald Ansorge, Dr. Klaus Matkey, Hans Peter May V2.0 2009-10-30 The BLUETOOTH trademarks are owned by Bluetooth SIG, Inc., U.S.A. and licensed to CETECOM Inc. © Copyright by CETECOM FCC/IC Test Report FOR: Model Name: HICELLULAR100 Cellular data terminal equipment FCC ID: X7QHCM2010M100H25 IC ID: 329Q-HCM2010M100 47 CFR Part 2, 22, 24 RSS-132 Issue 2 RSS-133 Issue 5 TEST REPORT #: EMC_CET10_059_10501_FCC22_24 DATE: 2010-09-10 Test Report #: EMC_CET10_059_10501_FCC22_24 Date of Report: 2010-09-10 Page 2 of 49 Table of Contents 1 Assessment .............................................................................................................................. 3 2 Administrative Data ............................................................................................................... 4 2.1 IDENTIFICATION OF THE TESTING LABORATORY ISSUING THE EMC TEST REPORT...................... 4 2.2 IDENTIFICATION OF THE CLIENT .................................................................................................... 4 2.3 IDENTIFICATION OF THE MANUFACTURER ..................................................................................... 4 3 Equipment under Test (EUT) ............................................................................................... 5 3.1 SPECIFICATION OF THE EQUIPMENT UNDER TEST .......................................................................... 5 3.2 IDENTIFICATION OF THE EQUIPMENT UNDER TEST (EUT) ............................................................ 5 3.3 IDENTIFICATION OF ACCESSORY EQUIPMENT ................................................................................ 6 3.4 SUBJECT OF INVESTIGATION .......................................................................................................... 7 4 Measurements ......................................................................................................................... 8 4.1 RF POWER OUTPUT ........................................................................................................................ 8 4.1.1 References .............................................................................................................................. 8 4.1.2 FCC 2.1046 Measurements required: RF power output. ....................................................... 8 4.1.3 Limits: .................................................................................................................................... 8 4.1.3.1 FCC 22.913 (a) Effective radiated power limits. ............................................................... 8 4.1.3.2 FCC 24.232 (b)(c) Power limits. ........................................................................................ 8 4.1.4 Conducted Output Power Measurement procedure ............................................................... 8 4.1.5 Radiated Output Power Measurement procedure .................................................................. 9 4.1.6 RF Power Output 850MHz band .......................................................................................... 10 4.1.7 RF Power Output 1900MHz band ........................................................................................ 11 4.1.8 Results .................................................................................................................................. 12 4.2 RADIATED OUT OF BAND MEASUREMENT PROCEDURE: ............................................................... 22 4.2.1 Radiated out of band emissions results on EUT- Transmit Mode:....................................... 24 4.2.1.1 Test Results Transmitter Spurious Emission GSM850: ................................................... 24 4.2.1.2 Test Results Transmitter Spurious Emission PCS-1900: ................................................. 28 4.2.1.3 Test Results Transmitter Spurious Emission UMTS FDD2: ........................................... 33 4.2.1.4 Test Results Transmitter Spurious Emission UMTS FDD5: ..............…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 6 | 24E | 1.85 GHz - 1.91 GHz | 340.00 mW | 4M20F9W | 38 Hz |