
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Universal Socket Connectivity Embedded Device Networking Solutions Hardware Guide for Developers Copyright and Technical Support Multi-Tech Systems, Inc. Universal Socket Hardware Guide for Developers (S000342G) 2 Universal Socket Connectivity Hardware Guide for Developers for HDSPA Approval Rev. A, 08/267/07 Copyright This publication may not be reproduced, in whole or in part, without prior expressed written permission from Multi- Tech Systems, Inc. All rights reserved. Copyright © 2004-7 by Multi-Tech Systems, Inc. Multi-Tech Systems, Inc. makes no representations or warranties with respect to the contents hereof and specifically disclaim any implied warranties of merchantability or fitness for any particular purpose. Furthermore, Multi-Tech Systems, Inc. reserves the right to revise this publication and to make changes from time to time in the content hereof without obligation of Multi-Tech Systems, Inc. to notify any person or organization of such revisions or changes. See the Multi-Tech Web site for current revisions of documentation. Trademarks Trademarks and Registered Trademarks of Multi-Tech Systems, Inc. are SocketModem,SocketWireless and the Multi-Tech logo. Patents This device covered by one or more of the following patents: 6,031,867; 6,012,113; 6,009,082; 5,905,794; 5,864,560; 5,815,567; 5,815,503; 5,812,534; 5,809,068; 5,790,532; 5,764,628; 5,764,627; 5,754,589; 5,724,356; 5,673,268; 5,673,257; 5,644,594; 5,628,030; 5,619,508; 5,617,423; 5,600,649; 5,592,586; 5,577,041; 5,574,725; 5,559,793; 5,546,448; 5,546,395; 5,535,204; 5,500,859; 5,471,470; 5,463,616; 5,453,986; 5,452,289; 5,450,425; 5,355,365; 5,309,562; 5,301,274. Other Patents Pending. World Headquarters Multi-Tech Systems, Inc. 2205 Woodale Drive Mounds View, Minnesota 55112 Phone: 763-785-3500 or 800-328-9717 Fax: 763-785-9874 Internet Address: http://www.multitech.com Technical Support Country By Email By Phone Europe, Middle East, Africa: [email protected] +(44) 118 959 7774 U.S., Canada, all others: [email protected] 800-972-2439 or 763-717-5863 Chapter 1 – Universal Socket Connectivity Multi-Tech Systems, Inc. Universal Socket Hardware Guide for Developers (S000342G) 3 Chapter 1 - Universal Socket Connectivity Multi-Tech Embedded Solutions Multi-Tech’s embedded device networking solutions instantly add communication ability to your existing or new product with minimal engineering effort giving you an edge on your competition while accelerating your time-to- market. Our universal socket family of embedded solutions is designed around a flexible comm-port architecture to provide analog or ISDN dial-up, cellular, Wi-Fi or Bluetooth wireless, or Ethernet socket connectivity with interchangeable modules. This means you can utilize one system design and populate it with your preferred connectivity option giving you flexibility and a seamless migration path to future technologies. Universal Socket Connectivity Features • Flexible comm-port architecture • Interchangeable socket modules • Cost-effective system design • Easy migration to future technologies • Complete global compliance The Universal Socket Design Each pin on a SocketModem corresponds to a particular function. The universal socket design provides a universal location for each function pin. This allows each SocketModem to be used in a common board. Chapter 1 – Universal Socket Connectivity Multi-Tech Systems, Inc. Universal Socket Hardware Guide for Developers (S000342G) 4 Universal Developer Kit Contents All products covered in this document can be evaluated using the MTSMI-UDK (Universal Developer Kit). • One MTSMI-UDK Developer Board • One 100-240V 9V-1A power supply w/IEC-320 connector • One IEC-320 power cord w/US type plug • One IEC-320 power cord w/EURO type plug • One IEC-320 power cord w/UK type plug • One RJ-45 cable (CARJ45NK-RJ45 7’8C non-keyed) • One 7 foot RJ-11 cable plug - plug/4C • One SMA jack to MMCX plug antenna cable (for CDMA and GPRS antennas) • One RSMA jack to MMCX plug antenna cable (for Bluetooth antenna) • One antenna 850/1900, right angle, 3-stripe (for CDMA and GPRS modules) • One antenna 900/1800, right angle 4-stripe (for GPRS modules) • One 2.4GHz ½ WAVE antenna with reverse polarity (for SocketWireless Bluetooth and SocketWireless Wi-Fi) • One DB9F-DB25M 6 foot modem serial cable • One generic CDMA Activation Notice • One Verizon Activation Notice • One Spring Activation Notice • One Cingular Activation Notice • One Universal Socket Connectivity Developer CD with BVRP Mobile PhoneTools • One Promo Screwdriver AT Commands Are Included on the Developer CD AT Commands Multi-Tech provides Reference Guides for each SocketModem's AT commands, fax commands, and voice commands. These reference guides are available on the CD included in the Developer Kit. They are also available by email at mailto:[email protected] or by using the Developer Guide Request Form on Multi-Tech's Web site. Fax Commands Fax Commands are included in the AT Command Reference Guide when applicable to the product. They are available on the CD included in the Developer Kit. Note: Fax Commands supported by product: • SocketModem MT5600SMI supports Class 1 & 1.0 • SocketModem MT5656SMI supports Class 1 & 2 (not 2.0/2.1) • SocketModem MT9234SMI supports all Class 1 and Class 2 commands (Class 1, 1.0, 2, 2.0/2.1) • SocketModem MT5634SMI supports all Class 1 and Class 2 commands (Class 1, 1.0, 2, 2.0/2.1) • Wireless SocketModem GPRS MTSMC-G supports Class 1 core commands only (defined by ITU T.31) • Wireless SocketModem CDMA MTSMC-C supports Class 2.0 Group 3 • Wireless SocketModem EDGE MTSMC-E supports Class 1 Group 3 • Wireless SocketModem HSDPA MTSMC-H supports Class 1 Group 3 Chapter 1 – Universal Socket Connectivity Multi-Tech Systems, Inc. Universal Socket Hardware Guide for Developers (S000342G) 5 Design Considerations Noise Suppression Design Considerations Engineering noise-suppression practices must be adhered to when designing a printe…
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2205 Woodale Drive, Mounds View MN. 55112 www.multitech.com August 29, 2007 Declaration of Model Differences Dear examiner, We the undersigned declare that the model MTSMC-H and MTSMC-H-U have identical RF radio circuitry. The only difference is the communication interface. Model MTSMC-H-U uses USB interface and model MTSMC-H uses serial interface Any questions contact: Thomas Hofstede [email protected] Multi-Tech Systems, Inc. 2205 Woodale Drive Mounds View, MN 55112 Or Terry Boe [email protected] Multi-Tech Systems, Inc. 2205 Woodale Drive Mounds View, MN 55112 Sincerely, Thomas Hofstede Compliance Application Engineer
2205 Woodale Drive, Mounds View MN. 55112 www.multitech.com Federal Communication Commission Equipment Authorization Division, Application Processing Branch 7435 Oakland Mills Road Columbia, MD 21048 August 3, 2007 TO WHOM IT MAY CONCERN Request for Confidentiality FCC-ID : AU792U07G30822 Please be advised that the following information is to be held confidential and behalf of Multi- Tech Systems, Inc. by the date indefinite. - Schematics - Block Diagrams - Parts List - Operational Description - Tune up procedure The application contains technical information which Multi-Tech Systems, Inc. deems to be trade secrets and proprietary. If made public. The information might be used to the advantage of the applicant in the market place. Sincerely, s Thomas Hofstede Compliance Applications Engineer
HC25 Siemens Cellular Engine Model(s) S30960-S1050-XXXX Siemens IMEI S30960-S1060-XXXX Customer IMEI HC25 Top Site HC25 Bottom Site
FCC-ID AU792U07G30822 IC-ID (Industry Canada) 125A-0030 PREDICTION OF MPE AT A GIVEN DISTANCE Calculations can be made to predict RF field strength and power density levels around typical RF sources using the general equations (3) a nd (4) on page 19 of the following FCC document: “OET Bulletin 65, Edition 97-01 - Evaluating Compli ance with FCC Guidelines for Human Exposure to Radio frequency Electromagnetic Fields”. These equations are generally accurate in the far field of an antenna but will over predict power density in the near field, where they could be used for making a “worst case” prediction. S = PG/4πR 2 (3) Where S = power density (in appropriate units, e.g. mW/cm 2 ) P = power input to the antenna (in appropriate units e.g. mW) G = power gain of the antenna in the direction of inte rest relative to the isotropic radiator R = distance to the center of radiation of the antenna (appropriate units e.g. cm) or, S = EIRP/4πR 2 (4) Where EIRP = Equivalent Isotropically radiated power General Limits: §1.1307 Cellular Radiotelephone Service (subpart H of part 22) Non-building-mounted antennas: height above ground level to lowest point of antenna < 10 m and total power of all channels > 100 0 W ERP (1640 W EIRP) §1.1307 Personal Communications Services (part 24) Broadband PCS (subpart E): non-building-mounted antennas: height above ground level to lowest point of antenna < 10 m and total power of all channels > 2000 W ERP (3280 W EIRP) §1.1310 LIMITS FOR MAXIMUM PERMISSIBLE EXPOSURE (MPE) (B) Limits for General Population/Uncontrolled Exposure 300–1500 MHz: f/1500 mW/cm² 1500–100,000 MHz: 1.0 mW/cm² §2.1091 No routine evaluation required when the device ...operate at frequencies of 1.5 GHz or below and their effective radiated power (ERP) is 1.5 watts or more, or if they operate at frequencies above 1.5 GHz and their ERP is 3 watts or more. §24.232 (a) Base stations are limited to 1640 watts peak equiv alent isotropically radiated power (e.i.r.p.) with an antenna height up to 300 meters HAAT. FCC-ID AU792U07G30822 IC-ID (Industry Canada) 125A-0030 b) Mobile/portable stations are limited to 2 watts e.i.r.p. peak power, ... §22.913 (a) Maximum ERP. The effective radiated power (ERP) of base transmitters and cellular repeaters m ust not exceed 500 Watts. The ERP of mobile transmitters and auxiliary test transmitters must not exceed 7 Watts. The table below is excerpted from Table 1B of 47 C FR 1.1310 titled “Limits for Maximum Permissible Exposure (MPE), Limits for General Population/Uncontrolled Exposure” Frequency Range (MHz) Power Density (mW/cm 2 ) 300 -1500 f/1500 1500 - 100000 1.0 Prediction for Part 22 Maximum conducted peak power: 32.3 0dBm. Lowest limit for 850 MHz fixed operations (@20cm ) where no routine evaluation is required is § 1.1310: (f/1500)mW/cm 2 =0.5659 mW/cm 2 Maximum allowed antenna gain: G = 10log(0.5659 * 4 * π * 20 2 ) – 32.30 = 2.24dBi Lowest limit for 850 MHz mobile operations (@20cm) where no routine evaluation is required is § 2.1091 : 1.5W ERP G = 10 log 1500mW [ERP] - 32.3 dBm + 2.14 dB = 1.6 dBi Prediction for Part 24 Maximum conducted peak power: 30.0dBm. Lowest limit for 1900 MHz fixed operations (@20cm ) where no routine evaluation is required is § 1.1310: 1 mW/cm 2 Maximum allowed antenna gain: G = 10log(1 * 4 * π * 20 2 ) – 30.0 dB = 7.0dBi Lowest limit for 1900 MHz mobile operations (@20cm) where no routine evaluation is required is § 24.232 : 2W EIRP G = 10 log 2000mW [EIRP] – 30.0 dB = 3.0dBi FCC-ID AU792U07G30822 IC-ID (Industry Canada) 125A-0030 Date: 2007-8-29 Name: Peter Mu Title: Project Engineer Company: Cetecom Inc. Address: 411 Dixon Landing Rd, Milpitas, CA 95035, USA Phone: +1 408 586 6221 Email: [email protected]
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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FCC Test Report FCC Part 22, 24 / RSS 132, 133 FOR: For the Multi-Tech Systems Inc. Model Number: MTSMC-H, MTSMC-H-U FCC ID: AU792U07G30822 IC ID: 125A-0030 TEST REPORT #: EMC_MULTI_022_07002_FCC22_24 DATE: 2007-8-28 Bluetooth Qualification Test Facility (BQTF) FCC listed: A2LA accredited IC recognized # 3462B 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 © Copyright by CETECOM Test Report #: EMC_MULTI_022_07002_FCC22_24 Date of Report: 2007-8-28 Page 2 of 92 This report shall not be reproduced except in full without the written approval of: CETECOM, Inc. Table of Contents 1 ASSESSMENT .....................................................................................................................................4 2 ADMINISTRATIVE DATA................................................................................................................5 2.1 IDENTIFICATION OF THE TESTING LABORATORY ISSUING THE EMC TEST REPORT......................5 2.2 IDENTIFICATION OF THE CLIENT....................................................................................................5 2.3 IDENTIFICATION OF THE MANUFACTURER.....................................................................................5 3 EQUIPMENT UNDER TEST (EUT) .................................................................................................6 3.1 SPECIFICATION OF THE EQUIPMENT UNDER TEST..........................................................................6 3.2 IDENTIFICATION OF THE EQUIPMENT UNDER TEST (EUT) ............................................................6 3.3 IDENTIFICATION OF ACCESSORY EQUIPMENT................................................................................6 4 SUBJECT OF INVESTIGATION......................................................................................................7 5 MEASUREMENTS..............................................................................................................................8 5.1 RF POWER OUTPUT........................................................................................................................8 5.1.1 FCC 2.1046 Measurements required: RF power output........................................................8 5.1.2 Limits: ....................................................................................................................................8 5.1.2.1 FCC 22.913 (a) Effective radiated power limits. ...............................................................8 5.1.2.2 FCC 24.232 (b)(c) Power limits. ........................................................................................8 5.1.3 Conducted Output Power Measurement procedure:..............................................................8 5.1.4 Radiated Output Power Measurement procedure:.................................................................9 5.1.5 ERP Results 850 MHz band: ................................................................................................10 5.1.6 EIRP Results 1900 MHz band:.............................................................................................10 5.2 OCCUPIED BANDWIDTH/EMISSION BANDWIDTH.........................................................................29 5.2.1 FCC 2.1049 Measurements required: Occupied bandwidth................................................29 5.2.2 Occupied / emission bandwidth measurement procedure:...................................................29 5.2.3 Occupied / Emission bandwidth results 850 MHz band: .....................................................29 5.3 FREQUENCY STABILITY................................................................................................................30 5.3.1 Limit .....................................................................................................................................30 5.3.2 Test Results GSM850 ...........................................................................................................31 5.3.3 Test Results UMTS FDD5 ....................................................................................................31 5.3.4 Test Results GSM1900 .........................................................................................................31 5.3.5 Test Results UMTS FDD2 ....................................................................................................31 5.4 SPURIOUS EMISSIONS CONDUCTED..............................................................................................32 5.4.1 FCC 2.1051 Measurements required: Spurious emissions at antenna terminals. ...............32 5.4.2 Limits: ..................................................................................................................................32 5.4.2.1 FCC 22.917 Emission limitations for cellular equipment. ..............................................32 5.4.2.2 FCC 24.238 Emission limitations for Broadband PCS equipment. ................................32 5.4.3 Conducted out of band emissions measurement procedure: ................................................33 5.4.4 Test Results: Conducted Emission: ......................................................................................33 5.5 SPURIOUS EMISSIONS RADIATED.................................................................................................34 5.5.1 FCC 2.1053 Measurements required: Field strength of spurious radiation........................34 5.5.2 Limits: ..................................................................................................................................34 5.5.2.1 FCC 22.917 Emission limitations for cellular equipment. ..............................................34 5.5.2.…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 6 | 24E | 1.85 GHz - 1.91 GHz | 490.00 mW | 4M20F9W | 2.5 ppm |

MTCAP3-L4G2D-AC3UVA-M, MTCAP3-L4G2D-AC3UWA-M
Equipment Class
DTS - Digital Transmission System
MTAC-003U00
Equipment Class
DTS - Digital Transmission System
MTCDTIP2
Equipment Class
DTS - Digital Transmission System
MTCAP2-915
Equipment Class
DTS - Digital Transmission System
MTAC-Lora-915
Equipment Class
DTS - Digital Transmission System