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E5MDS-NX915NX915 900 MHz OEM DTS / FHSS Module

GE MDS, LLC
NX915 900 MHz OEM DTS / FHSS Module - FCC ID E5MDS-NX915 - GE MDS, LLC
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Apr 22, 2013
Application Purpose
Original Equipment
Date of Application
Apr 22, 2013
Equipment Note
NX915 900 MHz OEM DTS / FHSS Module
Frequency Range
902.70000000 - 927.30000000
Company
GE MDS, LLC
Country
United States

Documents & Files

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Users Manual

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Attestation Statements

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

MDS NX915 Integrator’s Guide Part No. 05-6697A01 1.0 INTRODUCTION The MDS NX915 (Figure 1), is a multi-modem modular system offering both Frequency Hopping Spread Spectrum and DTS transceiver modes that are designed for use in the license-free 902-928 MHz band. The unit is designed for use inside data equipment to provide reliable connectivity in wireless networks. The NX915 power control circuit ensures that the RF output never exceeds +30 dBm at the antenna connector. The module is designed for OEM use only. Host systems, if used with antennas having standard connectors, must be professionally installed. Host systems using integrated antennas or unique antenna connectors must be factory configured by the OEM to operate at the correct output power setting. Refer to the table at the end of this guide to determine applicable antenna types and the RF output power allowed. 1.1 Transceiver Features The NX915 maximizes performance and flexibility in wireless networks, offering the following key features: •Up to 81 channels over 902–928 MHz, divided into multiple zones •User-selectable option to skip sub-bands with interference •Multiple available network addresses •Network-wide configuration from the Master station, eliminating most trips to Remote sites •RSSI and LQI readback indicators •Poor load VSWR detection alarm indicator •Store-and-Forward repeater operation •Same hardware for Master, Remote, or Store-and-Forward configurations •Supports RS/EIA-232(TTL), Ethernet, and USB user interfaces •Operates at 4.5 Vdc at the MiniPCIe card edge power connections Figure 1. NX915 Transceiver Module (Mini PCI-Express Card Edge for Data/Power/& I/O and J300 Antenna) NOTE: Some features may not be available on all units, based on the options purchased, or regulatory constraints in the country of operation. 2.0 INSTALLATION The transceiver is designed for installation in existing electronic equipment. The I/O and power connections are made through the Mini PCI-Express card edge and it mounts to the host heatsink assembly using two #4 screws inside the RF can area. The required heatsink contact area on the bottom surface of the PCB has the solder mask removed for proper heat transfer. Only one cable connection is required to the radio for the J300 Antenna connector. Note that the module does have four optionally populated status LEDs (CR100, 101, 200, and 201) that indicate operating mode details. These LEDs provide important information that is useful during startup and optimization of the radio link. Antennas used with the radio can be either a Yagi directional type (often used at remote sites) or an omni-directional type used for short range applications or at Master stations. Contact your sales representative for information on available antennas. Follow these steps to install the transceiver module: 1. Power down the Host assembly the module is being installed in to. 2. Mate the MiniPCIe card edge of the module into the socket on the Host assembly. 3. Secure the module to the heatsink surface using two #4 screws through the mounting holes in the corners of the RF can area on the radio’s PC board. 3. Install the RF shield over the transceiver section. 4. Select and install an appropriate antenna and feedline for your system coverage requirements. 5. Connect the antenna coaxial lead to J300 on the module. It accepts a Type-TNC male coaxial connector. - For antenna gains higher than 6dBi, the system has been approved only with the following types: a. MDS PN: 97-3194A23 (Manuf. PN: Z2402 from PCTEL, Inc.), 7dBd (9.15 dBi), Omnidirectional b. MDS PN: 97-3194A14E (Manuf. PN: Z2342 from PCTEL, Inc.), 10dBd (12.15 dBi) Yagi 6. Host Power Supply Requirement: The input power applied to the unit must be 4.5 Vdc (-/+0.05 V). See Table 1 for power supply interface connections. Table 1. NX915 Power Supply Connections 7. Set the radio’s basic configuration with a PC terminal through the Host system. The three essential settings for all transceivers are (See Section 3 for commands): •Frequency •Power •Modem 8. In a normally operating system, you will see the CR100 POWER LED turn on at start-up. 9. Optimize the installation by checking: •Antenna aiming and SWR check •Optimal baud rate setting •Radio interference checks 3.0 RADIO PROGRAMMING There are no manual adjustments on the radio. All programming and control is performed through a PC connected to the Host platform that interfaces with the radio’s J200 MiniPCIe card edge connector. 3.1 User Commands The following tables provide descriptions of the various user commands for the transceiver. Table 2. NX915 User Commands 4.0 DC INPUT REQUIREMENTS 4.1 Power Consumption Ratings The module has the following nominal power consumption ratings when operated at the required input voltage of 4.5 Vdc (-0.05/+0.05 V tolerance) at the power connections: Active Receive Mode: 130mA, Transmit Mode (Worst Case Load): 1.3 Amperes 4.5 VDC Power Regulation must be met by OEM to satisfy LMA conditions: OEM Integrator should consult with Product Support for individual circuit implementations. At minimum, OEM Integrators must regulate the DC voltage applied to the NX915 module at +4.5 Vdc (V_NIC), with a tolerance of - 0.05/+0.05 Vdc. This can be achieved using a voltage regulator similar to the Texas Instruments LMR12020, which is a precision DC regulator. The external +4.5 VDC input is connected via pins 2, 24, 39, 41, and 52 of the 52 pin MiniPCIe card edge connector. The transmitter uses a closed-loop power detection circuit that ensures the peak RF power will never exceed +30dBm. The input voltage range of the LMR12020 device in this configuration is 10V to 15V. Using switched-mode power- conversion technology, the LMR12020 can step down to voltages as low as 1.13V from a 10V input bus, with typically less than 1 W of power dissipation. The output voltage must be set to a voltage of 4.5V, using an external trim resistor. Operating features of the TI device include cycle-by-cycle…

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Attestation Statements

175 Science Parkway, Rochester, New York 14620 USA (585) 242-9600 Phone (585) 242-9620 Fax April 8th, 2013 Federal Communications Commission Authorization and Evaluation Division 1435 Oakland Mills Road Columbia, MD 21046 Date: April 1, 2013 SUBJECT: FCC Application for E5MDS-NX915 To Whom It May Concern: We, the undersigned, hereby attest to the fact that we will apply the Verification Authorization procedure to the Part 15B - Unintentional Radiator portion of this composite filing. Regards, If you have any queries, please do not hesitate to contact me at 585 242-8440: Yours truly, Dennis W McCarthy T +1 (585) 242-8440 Agency Compliance Engineer E [email protected] GE Digital Energy – MDS

Attestation Statements

175 Science Parkway, Rochester, New York 14620 USA (585) 242-9600 Phone (585) 242-9620 Fax Feb 27th, 2013 To Whom It May Concern: Subject: Limited Modular approval request & Professional Installation Applicant: GE MDS LLC. Product: MDS NX915 FCC ID: E5MDS-NX915, IC: 101D-NX915 Professional Installation The NX915 radio must be professionally (OEM) installed and thus is exempt from the antenna restrictions of FCC Part 15.203. The NX915 is not designed for use by the general public, and will be sold through the GE MDS sales force to OEM systems integrators only. These companies will either use their professional telecommunications engineering staff to carry out the installation or will subcontract to professional installation firms. Due to the unique technical expertise required in installing and setting up the system, the product is not suitable for distribution to retail channels. In spite of this, GE MDS will warn integrators against selling to retail channels in compliance to FCC regulations. The NX915 radio will be OEM integrated into systems used for fixed, permanent or temporary, outdoor environment. The equipment and their antennas will need professional installers to mount and setup. The output power and cable feed loss for an installation of the NX915 radio will be set to meet the +36dBm EIRP limits by the professional installer during installation. The method of adjusting the output power is described in the integrators instructions for incorporation in their end product manual for use by professionally trained installers. The NX915 radio is sold without an antenna and the customer and/or installation engineer chooses from commercially available antennas within the approved antenna scope. The professional installation engineer is responsible to install only those commercially available antenna(s) (or similar) as listed in the filing. From time to time, GE MDS may sell a commercially available antenna as listed in the filing along with the NX915 radio upon customer request and the instruction remind the integrator that only antenna(s) covered in the filing are to be used with the device. GE MDS has also included detailed instructions on how to determine the maximum output power based on EIRP limits for all professional installers to follow. GE MDS LLC is also requesting that FCC ID E5MDS-NX915 is granted the LMA Limited Modular Approval. None of MDS’s products are for sale to the general public, and are for Industrial applications only, examples, SCADA applications, traffic control, flow rate applications. Thus MDS has a trained staff of technical personnel that work with our industrial customers to ensure “professional installation” is achieved. In all cases the FCC EIRP limits are maintained. When the Limited Modular approval is granted, MDS will perform training on it’s staff, inform them of the “Limited Modular Approval” requirements, and list the technical differences between “Modular and LMA”, to ensure it’s staff keep the installations in compliance. All the FCC module testing was performed with antennas that we currently are going to offer for professional installation of this product. The antenna and cable interfaces, are standard “TNC” connectors, and the cable interconnects do not fulfill the FCC’s Modular requirements. Thus this is being requested as a Limited Modular approval. All the antennas that will be used with the Professional installation grant, will be installed by trained/qualified personnel to ensure the strictest compliance with FCC rules. All supporting manuals and sales literature reflect the regulatory issues. The following text will be placed in the NX915 installation and user manual, and is being “requested” on the FCC grant. We support this wording on the actual FCC grant and will follow these restrictions “Power listed is conducted. The module may only be installed in professionally installed hosts systems containing the appropriate voltage regulation circuitry and marketed by the OEM detailed in the filing. Marketing to the general public is prohibited. The antenna installation and operating configurations of this transmitter, including antenna gain and cable loss must be in accordance with configurations described in this filing. The antennas used for this transmitter must be installed to provide a separation distance of at least 23 cm from all persons and must not be co- located or operating in conjunction with any other antenna or transmitter, except in accordance with FCC multi- transmitter product procedures. End -users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance. If you have any queries, please do not hesitate to contact me at 585 242-8440: Yours truly, Dennis W McCarthy T +1 (585) 242-8440 Agency Compliance Engineer E [email protected] GE Digital Energy – MDS

Attestation Statements

175 Science Parkway, Rochester, New York 14620 USA (585) 242-9600 Phone (585) 242-9620 Fax Feb 27, 2013 To Whom It May Concern: Subject: Manufacturer’s Declaration for compliance with FCC PART 15 UNLICENSED MODULAR TRANSMITTER APPROVAL of Sec 15.212 & Pubic Notice # DA 00-1407 FCC ID: E5MDS-NX915 Dear Si/Madam: The applicant hereby confirms that the following requirements per FCC PART 15 Unlicensed Modular Transmitter Approval of Sec 15.212 & Pubic Notice # DA 00-1407 are met for Limited Modular Approval certification: Modular Approval Checklist: Modular approval requirement Yes No (*) 1. The modular transmitter must have its own RF shielding. This is intended to ensure that the module does not have to rely upon the shielding provided by the device into which it is installed in order for all modular transmitter emissions to comply with Part 15 limits. It is also intended to prevent coupling between the RF circuitry of the module and any wires or circuits in the device into which the module is installed. Such coupling may result in non- compliant operation. YES, the RF circuitry is shielded on the PCB 2. The modular transmitter must have buffered modulation/data inputs (if such inputs are provided) to ensure that the module will comply with Part 15 requirements under conditions of excessive data rates or over-modulation. YES, the Data is buffered through communication drivers to the processors 3. The modular transmitter must have its own power supply regulation. This is intended to ensure that the module will comply with Part 15 requirements regardless of the design of the power supplying circuitry in the device into which the module is installed. No, we will control the host integration and DC regulation as described in Integrator’s Guide. 4. The modular transmitter must comply with the antenna and transmission system requirements of §§ 15.203, 15.204(b) and 15.204(c). The antenna must either be permanently attached or employ a ‘‘unique’’ antenna coupler (at all connections between the module and the antenna, including the cable). The ‘‘professional installation’’ provision of § 15.203 is not applicable to modules but can apply to limited modular approvals under paragraph (b) of this section. No, we use standard TNC antenna connector, hence Limited Modular Approval is being sought with Professional Installation. 5. The modular transmitter must be tested in a stand-alone configuration, i.e., the module must not be inside another device during testing. This is intended to demonstrate that the module is capable of complying with Part 15 emission limits regardless of the device into which it is eventually installed. Unless the transmitter module will be battery powered, it must comply with the AC line conducted requirements found in Section 15.207. AC or DC power lines and data input/output lines connected to the module must not contain ferrites, unless they will be marketed with the module (see Section 15.27(a)). The length of these lines shall be length typical of actual use or, if that length is unknown, at least 10 centimeters to insure that there is no coupling between the case of the module and Yes, the module was tested on the bench outside of the enclosure as a stand-alone device and complies with Part 15 emission requirements. supporting equipment. Any accessories, peripherals, or support equipment connected to the module during testing shall be unmodified or commercially available (see Section 15.31(i)). 6. The modular transmitter must be labeled with its own FCC ID number, and, if the FCC ID is not visible when the module is installed inside another device, then the outside of the device into which the module is installed must also display a label referring to the enclosed module. This exterior label can use wording such as the following: “Contains Transmitter Module FCC ID: XYZMODEL1” or “Contains FCC ID: XYZMODEL1.” Any similar wording that expresses the same meaning may be used. The Grantee may either provide such a label, an example of which must be included in the application for equipment authorization, or, must provide adequate instructions along with the module which explain this requirement. In the latter case, a copy of these instructions must be included in the application for equipment authorization. Yes, there will be a FCC label on the module and final host device also will be labeled with “Contains FCC ID: E5MDS-NX915” 7. The modular transmitter must comply with any specific rule or operating requirements applicable to the transmitter and the manufacturer must provide adequate instructions along with the module to explain any such requirements. A copy of these instructions must be included in the application for equipment authorization. For example, there are very strict operational and timing requirements that must be met before a transmitter is authorized for operation under Section 15.231. For instance, data transmission is prohibited, except for operation under Section 15.231(e), in which case there are separate field strength level and timing requirements. Compliance with these requirements must be assured. Yes, The module complies with FCC part 15C requirements. Instructions to the OEM installer regarding such requirements for use in host device(s) are included in this application. 8. The modular transmitter must comply with any applicable RF exposure requirements. For example, FCC Rules in Sections 2.1091, 2.1093 and specific Sections of Part 15, including 15.319(i), 15.407(f), 15.253(f) and 15.255(g), require that Unlicensed PCS, UNII and millimeter wave devices perform routine environmental evaluation for RF Exposure to demonstrate compliance. In addition, spread spectrum transmitters operating under Section 15.247 are required to address RF Exposure compliance in accordance with Section 15.247(b)(4). Modular transmitters approved under other Sections of Part 15, when necessary, may also need to address certain RF Exposure concerns, typically by providing s…

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Cover Letter(s)

April 12, 2013 Ultratech Engineering Labs, Inc. 3000 Bristol Circle Oakville, Ontario L6H 6G4 Subject: FCC Certification Authorization Application Under FCC Part 15, Subpart C, Section 15.247 - Frequency Hopping Spread Spectrum (FHSS) Operating in 902-928 MHz Band. Applicant: GE MDS LLC Product: 900 MHz OEM DTS / FHSS Module Model No.: NX915 FCC ID: E5MDS-NX915 Dear Sir/Madam: As appointed agent for GE MDS LLC, we submit the application for certification of the above product. Kindly review all files uploaded to your electronic filing site. NOTE: This application is subject to Limited Modular Approval; see Applicant’s cover letter requesting for LMA. If you have any queries, please do not hesitate to contact us. Yours truly, Dharmajit Solanki Dharmajit Solanki Authorized Agent UltraTech Group of Labs Ultratech’s Accreditations: 0685 FCC 91038 1309 46390-2049 NvLap Lab Code 200093-0 SL2-IN-E-1119R Korea KCC-RRL CA2049 3000 Bristol Circle, Oakville, Ontario, Canada L6H 6G4 Tel.: (905) 829-1570 Fax.: (905) 829-8050 Website: www.ultratech-labs.com Email: [email protected]

Cover Letter(s)

175 Science Parkway, Rochester, New York 14620 USA (585) 242-9600 Phone (585) 242-9620 Fax Feb 14th, 2013 To Whom It May Concern Subject: Authority to Act as an Agent to FCC Applicant: GE MDS LLC. Product: MDS NX915 FCC ID: E5MDS-NX915 Dear Sir/Madam, I hereby appoint UltraTech Engineering Labs Inc. (UltraTech) to act as my agent in preparation of this application for authorization of above equipment under F.C.C. Rules. The applicant hereby certify that neither the applicant nor any party to the application is subject to a denial of Federal benefits, that include FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. §862 because of a conviction for possession or distribution of a controlled substance. See 47 CFR 1.2002(b) for the definition of a “party” for these purposes. I also certify that the information provided, properly describe the device or system for which authorization is required. If you have any queries, please do not hesitate to contact me at 585 242-8440: Yours truly, Dennis W McCarthy T +1 (585) 242-8440 Agency Compliance Engineer E [email protected] GE Digital Energy – MDS

Cover Letter(s)

175 Science Parkway, Rochester, New York 14620 USA (585) 242-9600 Phone (585) 242-9620 Fax Feb 14th, 2013 To Whom It May Concern: Subject: Request for withholding from public disclosure the following confidential documents pursuant to an application for certification . Applicant: GE MDS LLC. Product: NX915 Model: MDS NX915 FCC ID: E5MDS-NX915 Dear Sir/Madam, We, GE MDS LLC, would like to request that the schematic diagrams, system block diagram, part lists and Theory of Operation submitted with the application for certification be withheld from public disclosure as per Section 0.459 of FCC Rules. This request is made under the provisions of Section 0.457(d) of the Commission's Rules, and Section 552(b)(4) of the Freedom of Information Act. These sections authorize as a withholding from public inspection materials which would be privileged as a matter of law if retained by the person submitting them, and materials which would not customarily be released to the public by that person. If you have any queries, please do not hesitate to contact me at 585 242-8440: Yours truly, Dennis McCarthy Agency Compliance Engineer GE MDS LLC 175 Science Parkway Rochester NY 14620 Phone (585) 242-8440 Email [email protected]

External Photos

ANNEX 2 – EXTERNAL PHOTOS GE MDS LLC. 900MHz OEM DTS / FHSS Module, Model: NX915 FCC ID: E5MDS-NX915, IC: 101D-NX915 A2 - 1 ANNEX 2 – EXTERNAL PHOTOS GE MDS LLC. 900MHz OEM DTS / FHSS Module, Model: NX915 FCC ID: E5MDS-NX915, IC: 101D-NX915 A2 - 2

External Photos

ANNEX 2 – EXTERNAL PHOTOS of ANTENNAS GE MDS LLC. 900MHz OEM DTS / FHSS Module, Model: NX915 FCC ID: E5MDS-NX915, IC: 101D-NX915 A2 - 1 (12.15 dBi Gain Yagi Antenna) ANNEX 2 – EXTERNAL PHOTOS of ANTENNAS GE MDS LLC. 900MHz OEM DTS / FHSS Module, Model: NX915 FCC ID: E5MDS-NX915, IC: 101D-NX915 A2 - 2 (9.15 dBi Gain Omni Directional Antenna)

Internal Photos

ANNEX 3 – INTERNAL PHOTOS GE MDS LLC. 900MHz OEM DTS / FHSS Module, Model: NX915 FCC ID: E5MDS-NX915, IC: 101D-NX915 A3 - 1 ANNEX 3 – INTERNAL PHOTOS GE MDS LLC. 900MHz OEM DTS / FHSS Module, Model: NX915 FCC ID: E5MDS-NX915, IC: 101D-NX915 A3 - 2 ANNEX 3 – INTERNAL PHOTOS GE MDS LLC. 900MHz OEM DTS / FHSS Module, Model: NX915 FCC ID: E5MDS-NX915, IC: 101D-NX915 A3 - 3

RF Exposure Info

FCC Part 15, Subpart C, Section 15.247 – FHSS Page 72 900 MHz OEM DTS / FHSS Module, Model NX915 FCC ID: E5MDS-NX915 ULTRATECH GROUP OF LABS File #: MIC-165Q_F15C247DSS 3000 Bristol Circle, Oakville, Ontario, Canada L6H 6G4 April 12, 2013 Tel. #: 905-829-1570, Fax. #: 905-829-8050, Email: [email protected] , Website: http://www.ultratech-labs.com All test results contained in this engineering test report are traceable to National Institute of Standards and Technology (NIST) 5.7. RF EXPOSURE REQUIRMENTS [§§ 15.247(i), 1.1310 & 2.1091] The criteria listed in the following table shall be used to evaluate the environmental impact of human exposure to radio-frequency (RF) radiation. FCC 47 CFR § 1.1310: 5.7.1. Method of Measurements Refer to Sections 1.1310, 2.1091 In order to demonstrate compliance with MPE requirements (see Section 2.1091), the following information is typically needed: (1) Calculation that estimates the minimum separation distance (20 cm or more) between an antenna and persons required to satisfy power density limits defined for free space. (2) Antenna installation and device operating instructions for installers (professional/unskilled users), and the parties responsible for ensuring compliance with the RF exposure requirement (3) Any caution statements and/or warning labels that are necessary in order to comply with the exposure limits (4) Any other RF exposure related issues that may affect MPE compliance FCC Part 15, Subpart C, Section 15.247 – FHSS Page 73 900 MHz OEM DTS / FHSS Module, Model NX915 FCC ID: E5MDS-NX915 ULTRATECH GROUP OF LABS File #: MIC-165Q_F15C247DSS 3000 Bristol Circle, Oakville, Ontario, Canada L6H 6G4 April 12, 2013 Tel. #: 905-829-1570, Fax. #: 905-829-8050, Email: [email protected] , Website: http://www.ultratech-labs.com All test results contained in this engineering test report are traceable to National Institute of Standards and Technology (NIST) Calculation Method of RF Safety Distance: 22 44r EIRP r GP S ⋅⋅ = ⋅⋅ ⋅ = ππ Where: P: power input to the antenna in mW EIRP: Equivalent (effective) isotropic radiated power S: power density mW/cm 2 G: numeric gain of antenna relative to isotropic radiator r: distance to centre of radiation in cm 5.7.2. RF Evaluation Evaluation of RF Exposure Compliance Requirements RF Exposure Requirements Compliance with FCC Rules Minimum separation distance between antenna and persons required: 22.98 cm Manufacturer’ instruction for separation distance between antenna and persons required: 23 cm Antenna installation and device operating instructions for installers (professional/unskilled users), and the parties responsible for ensuring compliance with the RF exposure requirement Antenna installation and device operating instructions shall be provided to installers to maintain and ensure compliance with RF exposure requirements. Caution statements and/or warning labels that are necessary in order to comply with the exposure limits Refer to User’s Manual for RF Exposure Information. Any other RF exposure related issues that may affect MPE compliance None. *The minimum separation distance between the antenna and bodies of users are calculated using the following formula: RF EXPOSURE DISTANCE LIMITS S EIRP S GP r ⋅⋅ = ⋅⋅ ⋅ = ππ44 S = 0.6 mW/cm 2 EIRP = 36.0 dBm = 10 36/10 mW = 3981 mW (Worst Case) (Minimum Safe Distance, r) = cm S EIRP 98.22 )6.0(4 3981 4 ≈ ⋅⋅ = ⋅⋅ ππ

Test Report

900 MHz OEM DTS / FHSS Module Model: NX915 FCC ID: E5MDS-NX915 Applicant: GE MDS LLC 175 Science Parkway Rochester, NY USA, 14620 In Accordance With Federal Communications Commission (FCC) Part 15, Subpart C, Section 15.247 Frequency Hopping Spread Spectrum (FHSS) UltraTech's File No.: MIC-165Q_F15C247DSS This Test report is Issued under the Authority of Tri M. Luu Vice President of Engineering UltraTech Engineering Labs Inc. Date: April 12, 2013 Report Prepared by: Dharmajit Solanki Issued Date: April 12, 2013 Tested by: Mr. Hung Trinh Test Dates: February 5 - March 5 & April 12, 2013 The results in this Test Report apply only to the sample(s) tested, and the sample tested is randomly selected. This report must not be used by the client to claim product endorsement by NVLAP or any agency of the US Government. UltraTech 3000 Bristol Circle, Oakville, Ontario, Canada, L6H 6G4 Tel.: (905) 829-1570 Fax.: (905) 829-8050 Website: www.ultratech-labs.com , Email: [email protected], Email: [email protected] FCC Korea KCC-RRL 91038 1309 46390-2049 NvLap Lab Code 200093-0 SL2-IN-E-1119R CA2049 FCC Part 15, Subpart C, Section 15.247 – FHSS Contents i 900 MHz OEM DTS / FHSS Module, Model NX915 FCC ID: E5MDS-NX915 ULTRATECH GROUP OF LABS File #: MIC-165Q_F15C247DSS 3000 Bristol Circle, Oakville, Ontario, Canada L6H 6G4 April 12, 2013 Tel. #: 905-829-1570, Fax. #: 905-829-8050, Email: [email protected] , Website: http://www.ultratech-labs.com All test results contained in this engineering test report are traceable to National Institute of Standards and Technology (NIST) TABLE OF CONTENTS EXHIBIT 1. INTRODUCTION ......................................................................................................................................... 1 1.1. SCOPE......................................................................................................................................................................... 1 1.2. RELATED SUBMITTAL(S)/GRANT(S) .................................................................................................................. 1 1.3. NORMATIVE REFERENCES ................................................................................................................................... 1 EXHIBIT 2. PERFORMANCE ASSESSMENT .............................................................................................................. 2 2.1. CLIENT INFORMATION .......................................................................................................................................... 2 2.2. EQUIPMENT UNDER TEST (EUT) INFORMATION ............................................................................................ 2 2.3. EUT’S TECHNICAL SPECIFICATIONS ................................................................................................................. 3 2.4. MODULE MODULATION CHARACTERISTICS (FHSS) ..................................................................................... 3 2.5. ASSOCIATED ANTENNA DESCRIPTIONS........................................................................................................... 3 2.6. LIST OF EUT’S PORTS............................................................................................................................................. 4 2.7. ANCILLARY EQUIPMENT ...................................................................................................................................... 4 EXHIBIT 3. EUT OPERATING CONDITIONS AND CONFIGURATIONS DURING TESTS ............................... 5 3.1. CLIMATE TEST CONDITIONS ............................................................................................................................... 5 3.2. OPERATIONAL TEST CONDITIONS & ARRANGEMENT FOR TESTS ............................................................ 5 EXHIBIT 4. SUMMARY OF TEST RESULTS ............................................................................................................... 6 4.1. LOCATION OF TESTS.............................................................................................................................................. 6 4.2. APPLICABILITY & SUMMARY OF EMC EMISSION TEST RESULTS ............................................................. 6 4.3. MODIFICATIONS INCORPORATED IN THE EUT FOR COMPLIANCE PURPOSES....................................... 6 EXHIBIT 5. MEASUREMENTS, EXAMINATIONS & TEST DATA FOR EMC EMISSIONS............................... 7 5.1. POWER LINE CONDUCTED EMISSIONS [§15.207(A)]…

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Contact Information

Applicant

John Barenys(Senior Operations Manager)
[email protected]585-683-4254Fax: 585-241-5590

Test Firm

UltraTech Engineering Labs Inc.Tri Luu
[email protected]905-829-1570Fax: 905-829-8050

Technical Specifications

#Rule PartsFrequency RangePower Output
115C902.7 MHz - 927.3 MHz1 W
Modular Type
Limited Single Modular Approval
Confidentiality
Long Term
Grant Notes
Limited modular approval. Power listed is conducted. The module may only be installed in professionally installed hosts systems containing the appropriate voltage regulation circuitry and marketed by the OEM detailed in the filing. Marketing to the general public is prohibited. The antenna installation and operating configurations of this transmitter, including antenna gain and cable loss must be in accordance with configurations described in this filing. The antennas used for this transmitter must be installed to provide a separation distance of at least 23 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter, except in accordance with FCC multi- transmitter product procedures. End -users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF Exposure compliance.

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