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E5MDS-SDM4MDS SDM4 Licensed Spectrum Module

GE MDS, LLC
MDS SDM4 Licensed Spectrum Module - FCC ID E5MDS-SDM4 - GE MDS, LLC
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Application Details

Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Date of Grant
Aug 20, 2015
Application Purpose
Original Equipment
Date of Application
Aug 20, 2015
Equipment Note
MDS SDM4 Licensed Spectrum Module
Frequency Range
454.00000000 - 512.00000000
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 05-6399A01, Rev. D MDS Master Station 1 MDS Master Station Modular Communications Platform MDS 05‐6399A01, Rev. D August 2015 Firmware Version 2.2.6 and higher. Technical Manual 2 MDS Master Station MDS 05-6399A01, Rev. D MDS 05-6399A01, Rev. D MDS Master Station 3 Quick-Start instructions for this product are contained in publication 05-6398A01. Visit our website for downloadable copies of all documentation at www.gemds.com. 4 MDS Master Station MDS 05-6399A01, Rev. D Table of Contents 1 INTRODUCTION 12 1.1 ORGANIZATION OF MANUAL 12 1.1.1 R ELATED PUBLICATIONS 13 2 KEY PRODUCT FEATURES 14 2.1 ACCESSORIES AND SPARE ITEMS 14 2.2 T ECHNICAL SPECIFICATIONS 16 2.2.1 FCC EMISSION DESIGNATORS: HOW TO FIND THEM 17 2.3 F RONT PANEL 18 2.4 R EAR ANTENNA CONNECTIONS 19 3 INSTALLATION PLANNING 20 3.1 APPLICATIONS 21 3.2 N ETWORK MANAGEMENT 21 3.3 R EDUNDANT VERSUS NON‐REDUNDANT OPERATION 22 3.4 A NTENNAS AND FEEDLINES 22 3.4.1 A NTENNAS 22 3.4.2 F EEDLINES 22 3.5 G ROUNDING CONSIDERATIONS 23 3.6 D ATA INTERFACE CONNECTIONS 24 3.6.1 E THERNET DATA INTERFACE (RJ‐45) 24 3.6.2 S ERIAL DATA INTERFACES 24 3.6.3 M INI USB 25 3.6.4 A LARM OUTPUT AND 4‐WIRE AUDIO 25 4 INSTALLATION PROCEDURES 26 4.1 UNPACKING AND INSPECTION 26 4.2 I NSTALLATION STEPS 26 4.2.1 I NITIAL STARTUP & OPERATION 30 5 DEVICE MANAGEMENT 32 5.1 PRE‐CONFIGURED SETTINGS 32 5.2 O NE‐TIME “RECOVERY” PASSWORDS 32 5.3 C ONFIGURATION VIA COMMAND LINE (CLI) 34 5.3.1 CLI QUICK REFERENCE TABLE 34 5.4 I NTERFACE NAMING 35 5.5 C ONFIGURATION VIA THE DEVICE MANAGER 36 5.5.1 G ENERAL CONFIGURATION 36 5.6 I NTERFACE CONFIGURATION 37 5.6.1 S ERIAL INTERFACES 37 5.6.2 LAN 41 5.6.3 VLAN OPERATION 44 MDS 05-6399A01, Rev. D MDS Master Station 5 5.6.4 BRIDGING 47 5.6.5 SDMS INTERFACE 49 6 MASTER STATION MODULES 65 6.1 AC POWER SUPPLY MODULE 65 6.2 DC POWER SUPPLY MODULE 66 6.3 P LATFORM MANAGER MODULE 67 6.3.1 P LATFORM MANAGER LED INDICATORS 68 6.3.2 E THERNET INTERFACES 68 6.3.3 COM1 INTERFACE 69 6.3.4 COM2 INTERFACE 69 6.3.5 M INI USB INTERFACE 71 6.3.6 W IFI ANTENNA INTERFACE (OPTIONAL) 71 6.3.7 GPS ANTENNA INTERFACE (OPTIONAL) 72 6.4 SD MASTER RADIO MODULES 72 6.4.1 SD MASTER RADIO MODULE LED INDICATORS 72 6.4.2 SD MASTER RADIO MODULE RF INTERFACE 72 6.4.3 SDM9 RADIO MODULE – 900MHZ 73 6.4.4 SDM4 RADIO MODULE ‐ 400 MHZ 73 6.5 A LARM AND ALARM/RELAY MODULES 74 6.5.1 A LARM MODULE LEDS 74 6.5.2 A LARM/AUDIO INTERFACE 75 6.5.3 A LARM/RELAY TOGGLE SWITCH (6847 ONLY) 76 6.5.4 A LARM/RELAY RF CONNECTIONS (6847 ONLY) 76 6.6 D UPLEXER TRAY 76 7 TROUBLESHOOTING 78 7.1 INTERPRETING MODULE LEDS 78 7.1.1 N ORMAL OPERATION 78 7.1.2 E XCEPTION AND ALARM STATES 79 7.2 R EDUNDANT UNITS 80 7.3 T ECHNICAL ASSISTANCE 80 7.4 R EPLACING MODULES 80 7.4.1 P OWER SUPPLY MODULES 80 7.4.2 P ERIPHERAL MODULES – INCLUDING PLATFORM MANAGER, RADIO, ALARM, AND ALARM RELAY MODULES. 81 7.4.3 H OT SWAP REDUNDANT MODULES 81 7.4.4 I NTERNAL DUPLEXER TRAY 81 7.5 T ESTING AND REMOVING AN INTERNAL DUPLEXER 83 8 TECHNICAL REFERENCE DATA 87 8.1 RF PROPAGATION PLANNING 87 8.1.1 F RESNEL ZONE CLEARANCE 87 8.1.2 F ORMULAS FOR SYSTEM PLANNING 88 8.2 DBM‐VOLTS‐WATTS CONVERSION CHART 90 9 GLOSSARY OF TERMS & ABBREVIATIONS 91 6 MDS Master Station MDS 05-6399A01, Rev. D Figures FIGURE 1‐1. MDS MASTER STATION ................................................................................................................................... 12 FIGURE 2‐1 COMPATIBLE REMOTES ..................................................................................................................................... 14 FIGURE 2‐2. MDS MASTER STATION, FRONT PANEL CONNECTIONS & INDICATORS ...................................................................... 18 FIGURE 2‐3. MDS MASTER STATION, REAR PANEL................................................................................................................. 19 FIGURE 3‐1 APPLICATION EXAMPLE ..................................................................................................................................... 20 FIGURE 3‐2. REAR PANEL GROUNDING SCREW ...................................................................................................................... 24 FIGURE 4‐1. INTERNAL DUPLEXER, TRIPLE N CONNECTORS ....................................................................................................... 27 FIGURE 4‐2. INTERNAL DUPLEXER (OR INTERNAL T/R SWITCH), SINGLE N CONNECTORS ................................................................ 27 FIGURE 4‐3 EXTERNAL DUPLEXER OR DUAL ANTENNAS ............................................................................................................. 28 FIGURE 4‐4 DC POWER CONNECTOR ................................................................................................................................... 29 FIGURE 4‐5 LED INDICATORS ............................................................................................................................................. 30 FIGURE 6‐1 AC POWER SUPPLY MODULE ............................................................................................................................. 65 FIGURE 6‐2. DC POWER SUPPLY MODULE ............................................................................................................................ 66 FIGURE 6‐3 PLATFORM MANAGER MODULE (PART NUMBERS 03‐6834AXX) ............................................................................. 67 FIGURE 6‐4 ETHERNET PORT (RJ‐45) PINOUT (AS VIEWED FROM THE OUTSIDE) ........................................................................ 68 FIGURE 6‐5 COM1 CONNECTOR (RJ‐45) AS VIEWED FROM OUTSIDE THE UNIT ........................................................................... 69 FIGURE 6‐6. COM2 CONNECTOR (RJ‐45) AS VIEWED FROM OUTSIDE THE RADIO ........................................................................ 70 FIGURE 6‐7. SD RADIO MODULE (PART NO. 03‐6846AXX—SDM9) .....................................................…

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Users Manual

MDS SDM4 Quick Start Guide (x790 Mode) The MDS SDM4 transceiver (Figure 1) is a software- configurable, industrial Master Station solution for use in wireless telemetry applications. In this guide, the term SD is used for information common to all models of the radio. This radio module is designed for use with a card cage and backplane similar to that shown in Figure 3, and to be used with a variety of data control equipment such as remote terminal units (RTUs), programmable logic controllers (PLCs), flow computers, and similar devices. Data interface connections may be made by both serial (RS- 232/485) and limited Ethernet protocols. Invisipbllhaeoc led er Figure 1. MDS SDM4 Data Transceiver 1.1 About This Guide This guide covers SDM4 transceivers operating in x710-Compatible Mode. All GE MDS manuals are available free of charge at www.gemds.com. Invisipbllhaeoc led er There are three main requirements for installing the transceiver: • Adequate and stable primary power • An efficient and properly installed antenna system • Correct interface connections between the transceiver and the data device. Figure 2 shows a chassis with card cage and backplane that this module would be typically installed in. The backplane provides the 24V power connection to this unit and provides the customer data interfaces through the card edge connector on the rear of the SDM4. Figure 2: Typical Orbit MPRS Master Station Chassis. The SDM4 modules may be installed in any free peripheral slot of this chassis. Figure 3 shows a typical installation of the radio. NOTE: Retrofit Kits are available to simplify installation at former MDS x710 digital and analog sites. Consult the Reference Manual for ordering details. Figure 3: Typical Master Station Chassis with SDM4 radio card installed. NOTE: Chassis has antenna connection in rear, with power and data connections in the front. 2.1 Installation Steps 1. Install the transceiver into chassis as shown in Figure 2. NOTE: To prevent damage to the SDM4 radio, wear a wrist strap to prevent ESD discharge to the card edge connector. Also, dress all cables as required to prevent moisture from running along the cables and into the radio. 1.0 INTRODUCTION 2.0 INSTALLATION MDS SDM4 Quick Start Guide (x790 Mode) 2. Install the antenna and feedline. The antenna used with the radio must be designed to operate in the radio’s frequency band, and be mounted in a location providing a clear path to the associated station(s). At Remote sites, aim directional antennas toward the Master Station. Low loss coaxial feedline should be used and it should be kept as short as possible. 3. Connect the data equipment. Connection may be made to the COM port using Serial protocols (RS- 232/RS-485). RJ45 to DB9/DB25 adapters may be required depending on physical data port connector type used on the data telemetry device to be attached as shown in Figure 3. 4. Connect primary power to the Orbit MPRS Chassis. Input power must within the ranges specified for the power supply module installed in the Orbit MPRS chassis: 12VDC, 24VDC, 48VDC, 125VDC, or 90-264VAC. These supplies all convert incoming power to +24V for SDM4 Module operation. 5. Set the radio’s configuration. Connect a PC to the radio’s COM1 and COM2 ports as shown in Figure 4. A straight-thru cable may be used for this connection with an RJ45 to DB9 adapter. NOTE: Consult your System Administrator if you are unsure of the settings required for your network. Figure 4. Setup for PC Configuration 2.1.1 Software Configuration There are two methods for communicating with the radio for configuration and management: Serial (COM1, COM2 RJ45 connector) and Telnet (ETHERNET RJ-45 connector). Both present identical functionality and use the same commands, but the method to configure access is different for each. NOTE: Transmitter and Receiver configuration are handled through separate DSP devices, thus two serial ports or two Telnet sessions will be required to handle configuration of these two functions. The focus here is on Serial access, but Telnet may be used by following these additional points, which replace Steps 1 and 2 below: • For Telnet, connect to the radio with a PC that is on the same IP network as the transceiver. Launch a Telnet program, and connect to the radio using its programmed IP address for the Transmitter and Receiver. • The default IP address of the Transmitter configuration is 192.168.1.1. The default IP address of the Receiver configuration is 192.168.1.2. If you do not know the IP address of the radio, use the serial configuration steps below to view the address with the IPCONFIG command. 1. With a PC connected to the COM1 serial port, launch a terminal program, such as HyperTerminal (included with most pre-Windows7 ®-based PCs) and set the following parameters: 8 bits, no parity, one stop bit (8N1), flow control disabled, VT100 emulation. The COM port automatically finds the connected baud rate (within 1200–115200 bps). 2. Press the ESCAPE key followed by a series of ENTER keypresses (at 1/2 second intervals) until the > prompt appears. The radio is now ready to accept commands. 3. Set/verify the RX (receive) and TX (transmit) frequencies. To set the receive frequency, enter RX followed by the correct frequency in MHz (xxx.xxxxx). Press ENTER . To set the transmit frequency, enter TX followed by the correct frequency in MHz (xxx.xxxxx). Press ENTER. 4. The factory default modem settings support 9600 bps transmission in a 12.5 kHz bandwidth channel. Many other options are available. The current setting may be viewed using the MODEM command. Use MODEM [xxxx] if changes are required. When finished with the steps above, review the other configuration options to determine if other settings are required for your system. Table 3 lists key software commands for the radio. 2.2 Initial Checkout In-service operation is completely automatic. The only operator actions required are to apply DC power and observe the LEDS for proper indicat…

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Attestation Statements

175 Science Parkway, Rochester, New York 14620 USA (585) 242-9600 Phone (585) 242-9620 Fax 6/19/2015 American Certification Body 6731 Whittier Ave, C110, McLean, VA 22101 Subject: GE MDS SDM4 digital radio part 90, 22 frequency bands Applicant: GE MDS LLC Product: SDM4 digital transceiver FCC ID: E5MDS-SDM4 Dear Sir/Madam, The SDM4 digital radio is software controlled into various frequency bands in the 406.1-512 MHz range. These bands are programmed depending on the customer frequency ordered, the customer order tracks the users FCC spectrum use license. This device is designed to operate under different FCC rule parts, 22, 90, with different bandwidths. FCC Part 90 telecommunication is for Private Land Mobile Radio Services, Part 22 is for Public Mobile Services PART 22 Part 22, 454-455MHz, 456-460MHz, 470-512MHz, using 6.25kHz, 12.5kHz, or 25kHz channels, @ 10 watts, PART 90 Part 90, 406.1-512MHz, using 6.25kHz, 12.5kHz, & 25kHz channels, @ 10 watts. This letter serves as attestation supporting evidence for the frequency banding. 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]

Attestation Statements

175 Science Parkway, Rochester, New York 14620 USA (585) 242-9600 Phone (585) 242-9620 Fax July 23, 2015 To Whom It May Concern: Subject: Manufacturer’s Declaration for Limited Modular approval for FCC part 90 licensed spectrum and IC RSS-119. FCC ID: E5MDS-SDM4, IC ID: 101D-SDM4 FCC KDB 996369 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 since this module is only designed to be used in the GE MDS Master Station 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. Yes, this is a 2 position polarized SMB FAKRA connector. To be only used in our host. 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 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)). Yes, the module was tested on the bench outside of the enclosure as a stand-alone device and complies with Part 15, & 90 emission requirements. 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 on the host device will be labeled with “Contains FCC ID: E5MDS-SDM4” Modular approval requirement Yes No (*) 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, 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, RSS-102 and 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 specific installation and operating instructions for users, installers and other interested parties to ensure compliance. The module meets this requirement for a Fixed device that shall be used at separation distance of more th…

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Attestation Statements

175 Science Parkway, Rochester, New York 14620 USA (585) 242-9600 Phone (585) 242-9620 Fax June 19th, 2015 FEDERAL COMMUNICATIONS COMMISSION 7435 Oakland Mills Road Columbia, MD 21046 U.S.A. Subject: GE MDS SDM4 digital radio part 90 Spectrum Efficiency Applicant: GE MDS LLC Product: SDM4 FCC ID: E5MDS-SDM4 Dear Sir/Madam, Applications for part 90 certification of transmitters designed to operate on frequencies in the 150.8– 162.0125 MHz, 173.2–173.4 MHz, and/or 421–512 MHz bands, received on or after January 1, 2005, must include a certification that the equipment meets a spectrum efficiency standard of one voice channel per 6.25 kHz of channel bandwidth. Additionally, if the equipment is capable of transmitting data, has transmitter output power greater than 500 mw, and has a channel bandwidth of more than 6.25 kHz, the equipment must be capable of supporting a minimum data rate of 4800 bits per second per 6.25 kHz of channel bandwidth. The SDM4 data transceiver operates in 3 bandwidths with modem “over the air” data rates. 6.25KHz channels @ 4800 bps 12.5KHz channels @ 9600 bps 25KHz channels @ 19200 bps This letter serves as attestation supporting evidence for spectrum efficiency. 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 [email protected]

Cover Letter(s)

175 Science Parkway, Rochester, New York 14620 USA (585) 242-9600 Phone (585) 242-9620 Fax June 5th, 2015 American Certification Body, Inc. 6731 Whittier Avenue Suite C110 McLean, VA 22101 Subject: Authority to Act as an Agent to FCC & IC (industry Canada) Applicant: GE MDS LLC. Product: MDS SDM4 To Whom It May Concern: _National Technical Systems – Silicon Valley_ is authorized to act on our behalf, until otherwise notified, for applications to American Certification Body, Inc. (ACB). We certify that we are not subject to denial of federal benefits, that includes FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 862. Further, no party, as defined in 47 CFR 1.2002 (b), to the application is subject to denial of federal benefits, that includes FCC benefits. Thank you, Agency Agreement Expiration Date: _____June 8, 2016_____ Yours truly, Dennis McCarthy Agency Compliance Engineer GE Digital Energy -MDS 175 Science Parkway Rochester NY 14620 Phone (585) 242-8440 Email [email protected] 175 Science Parkway, Rochester, New York 14620 USA (585) 242-9600 Phone (585) 242-9620 Fax Date: June 8, 2015 Subject: Confidentiality Request for FCC ID: E5MSDM9 Pursuant to FCC 47 CRF 0.457(d) and 0.459 and IC RSP-100, Section 10, the applicant requests that a part of the subject FCC application be held confidential. Type of Confidentiality Requested Exhibit Short Term Permanent Block Diagrams Short Term External Photos Short Term Permanent* 1 Internal Photos Short Term Permanent Operation Description/Theory of Operation Short Term Permanent Parts List & Placement/BOM Short Term Permanent Tune-Up Procedure Short Term Permanent Schematics Short Term Test Setup Photos Short Term Permanent* User’s Manual GE Microwave Data Systems, LLC has spent substantial effort in developing this product and it is one of the first of its kind in industry. Having the subject information easily available to "competition" would negate the advantage they have achieved by developing this product. Not protecting the details of the design will result in financial hardship. Permanent Confidentiality: The applicant requests the exhibits listed above as permanently confidential be permanently withheld from public review due to materials that contain trade secrets and proprietary information not customarily released to the public. Sincerely, Dennis McCarthy Agency Compliance Engineer GE Digital Energy -MDS 175 Science Parkway Rochester NY 14620 Phone (585) 242-8440 Email [email protected]

Cover Letter(s)

Page 1 of 1 American TCB 6731 Whittier Avenue, Suite C110 McLean, VA. 22101 FCC ID: E5MDS-SDM4 IC: 101D-SDM4 To whom it may concern: The enclosed documents constitute a formal submittal and application for Equipment Authorization for a licensed radio module pursuant to the following rules: Parts 22 and 90 of FCC Rules (CFR 47) RSS-Gen Issue 4, November 2014, “General Requirements for Compliance of Radio Apparatus” RSS-119, Issue 12, May 2015, “Land Mobile and Fixed Equipment Operating in the Frequency Range 27.41-960 MHz” The SDM4 operates in the 406.1 – 512 MHz bands under FCC Part 90, 454 0 512 MHz bands under FCC Part 22 and 406.1-430 MHz and 450-470 MHz bands in Canada per SRSP-501. National Technical Systems, as duly authorized agent prepared this submittal. A copy of the letter of our appointment as agent is included with the application. If there are any questions or if further information is needed, please contact National Technical Systems for assistance. Sincerely, David W. Bare Chief Engineer

ID Label/Location Info

MY CART $0.00 ( 0 Items) WELCOME TO BRADY Register/Login My Account 888-250-3082 Contact Us Find a Distributor Enter Search Term or Part # All Product Categories EMAIL PAGE PRINT PAGE Home Products Labels, Markers and Tapes Circuit Board and Component Identification Thermal Transfer Printable Labels T hermal Transfer Printable Labels - # THT-2-423-10 SIZE: 0.900" W x 0.250" H (22.860 mm W x 6.350 mm H) MATERIAL: Permanent Polyester QTY/UOM: 10,000/Roll CATALOG #: THT-2-423-10 PRODUCT #: 30119 $90.84 MSRP ($US) QTY: 1 OVERVIEW SPECIFICATIONS Specification Of Thermal Tr ansfer Printable Labels Application(s): Circuit Board & Component ID, Through Hole - Top Agency Approval (s)/Compliance: AGA Approved, CSA Approved, Halogen-Free (DIN VDE 0472/parts 815), UL Recognized Size: 0.900" W x 0.250" H (22.860 mm W x 6.350 mm H) Printable Area: 0.900" W x 0.250" H (22.860 mm W x 6.350 mm H) Web Width: 3.350" (85.09 mm) Label Type/Style: Label Vertical Repeat: 0.350" (8.89 mm) Horizontal Repeat: 1.125" (28.58 mm) Color: White PRODUCT SUPPORT Portable Label Printers Industrial Printers Label Design Software Printer Ribbons JetTab Set Up Sheets LaserTab Set Up Sheets All Brady Products Solutions by Regulation Solutions by In dustry Professional Services Customer & Product Support Pa g e 1 of 3 Thermal Transfer Printable Labels - THT-2-423-10 - BRADY 8/6/2012 http://www.brad y id.com/brad y id/pdpv/THT-2-423-10.html Finish: Gloss Qty Per Row: 3 Material Type: Polyester Material Description: Permanent Polyester Brady Material #: B-423 General ID Catalog: pg. 88 Recommended Ribbon Series: 6000 Suggested Ribbon Part#: R6002 Acceptable Ribbon Series: 4900, 6200 After Process: Yes, this material will work with this application Printer Compatibility: BBP81, Brady 1244, Brady 1344, Brady 200MVP Plus, Brady 2461, Brady 300MVP Plus, Brady 300X- Plus II, Brady 3481, Brady 360X-Plus II, Brady 60 0X-Plus II, Brady 6441, IP300, IP600, Tagus T200, Tagus T300, Thermal Transfer Printers Surface: Smooth Surface Mount Technology: No, this material does not work with this application Through Hole Technology: Top: Yes. In extreme high temp eratures, testing of this material is recommended, Bottom: No RoHS Compatibility: Compliant with RoHS Directive. NOTE: All statements concerning RoHS Directive compliance refer to 2005/618/EC MCV amendment to RoHS Directive 2002/95/EC. Product compliance is based upon information provided by suppliers of the raw materi als used by Brady to manufacture these products, or by independent laboratory testing of these products. As such, Brady makes no independent representations or warranties, expres s or implied, and assumes no liab ility in connection with the use of this information. QTY/UOM: 10,000/Roll Pa g e 2 of 3 Thermal Transfer Printable Labels - THT-2-423-10 - BRADY 8/6/2012 http://www.brad y id.com/brad y id/pdpv/THT-2-423-10.html Customer & Tech SupportFind a DistributorSubmit Product FeedbackSubmit Website FeedbackContact UsSite Map Distribution PartnersBradyserve.comBradyDistributor.comMinimum Advertised Price Policy Corporate InfoAbout BradyBradycorp.comPrivacy PolicyLegal InformationISO CertifiedTerms of UseTerms and Condit ions of Sale Brady International SitesCanadaCanada (Français)Latin America BrazilAsiaAustralia Europe, Africa, Middle East Brady identifies and protects pr oducts, people, and premises with high performa nce labels, industrial label printers, software, safety & facility identification, spill control, Lockout Tagout solutions and more. Brady help s you create and maintain sa fer work environments and co mply with regulatory stand ards. Our high-performance materials clearly identify products, components and other assets, even in the most extreme conditions. ©2012 Brady Worldwide, Inc. Safe & Secure Online Shopping Pa g e 3 of 3 Thermal Transfer Printable Labels - THT-2-423-10 - BRADY 8/6/2012 http://www.brad y id.com/brad y id/pdpv/THT-2-423-10.html Brady B-423 is UL Recognized for Outdoor Use on glass, thermoset polyester plastic and polyvinyl fluoride plastic surfaces to support solar panel identification applications. Print Technology: Thermal transfer. Materials type: White polyester. Finish: Glossy. white. Adhesive: Permanent acrylic. Recommended Ribbons: Brady series R6000, Brady series R6000HF (low halogen), Brady series R4400 (colors - red, blue, green, white), Brady series R4900 and R6200 (alternates). Regulatory/Agency Approvals: UL: B-423 is a UL Recognized Component to UL969 Labeling and Marking Standard when printed with Brady Series R6000 and R6000HF ribbons.

RF Exposure Info

EMC Test Data Client: Contact: Standard: Test Specific Details General Test Configuration No GE MDS LLCJob Number: J97895 Model: SD4 Master Module T-Log Number: T97900 Project Manager: Christine Krebill Dennis McCarthyProject Coordinator: - FCC Part 15, 22 & 90, EN 300 113-2Class: A Maximum Permissible Exposure Objective: Evaluate the RF Exposure requirements per FCC 1.1310, 2.1091 and RSS-102. Date performed: 6/16/2015 Device complies with Power Density requirements at 20cm ti Test Engineer: David Bare Calculation uses the free space transmission formula: S = (PG)/(4 πd 2 ) Where: S is power density (W/m 2 ), P is output power (W), G is antenna gain relative to isotropic, d is separation distance from the transmitting antenna (m). Summary of Results No 5.4m No deviations were made from the requirements of the standard. separa tion: If not, required separation distance (in cm): Deviations From The Standard T97900 GE MDS.xlsMPE CalculationPage 1 of 2 EMC Test Data Client: Contact: Standard: GE MDS LLCJob Number: J97895 Model: SD4 Master Module T-Log Number: T97900 Project Manager: Christine Krebill Dennis McCarthyProject Coordinator: - FCC Part 15, 22…

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Contact Information

Applicant

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

Test Firm

National Technical Systems (NTS)Cathy Rumble
[email protected]714-879-6110Fax: 7148796117

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
1222454 MHz - 512 MHz12.9 W17K0F3D0.3 ppm
Modular Type
Limited Single Modular Approval
Confidentiality
Long Term
Grant Notes
Limited Single Modular Approval. Output power listed is is the manufacturers rated power at the antenna terminal. This device is only authorized for installation in the GE MDS Master Station, and must be installed such that the minimum separation distance listed in the filing is maintained between it's antenna(s) and all persons during normal operation. This device must not be co-located with any other transmitters except in accordance with FCC multi-transmitter product procedures. Installers and end-users must be provided with transmitter operation conditions for satisfying RF exposure compliance.

Other Applications from GE MDS, LLC

Frequency Hopping Radio - FCC ID E5MDS-NET9S - GE MDS, LLC
E5MDS-NET9S

Frequency Hopping Radio

Jul 13, 2023

Equipment Class

DSS - Part 15 Spread Spectrum Transmitter
Frequency Hopping Radio - FCC ID E5MDS-NET9L - GE MDS, LLC
E5MDS-NET9L

Frequency Hopping Radio

Jul 11, 2023

Equipment Class

DSS - Part 15 Spread Spectrum Transmitter
Industrial Radio Module - FCC ID E5MDS-LN900 - GE MDS, LLC
E5MDS-LN900

Industrial Radio Module

Jan 27, 2016

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter
Industrial Radio Module - FCC ID E5MDS-LN400 - GE MDS, LLC
E5MDS-LN400

Industrial Radio Module

Jul 09, 2015

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter
Data Transceiver - FCC ID E5MDS-SD4-1 - GE MDS, LLC
E5MDS-SD4-1

Data Transceiver

Jun 18, 2015

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter