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E5M-TRANSNET900MDS TransNet 900

GE MDS, LLC
MDS TransNet 900 - FCC ID E5M-TRANSNET900 - GE MDS, LLC
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Feb 03, 2002
Application Purpose
Original Equipment
Date of Application
Feb 03, 2002
Equipment Note
MDS TransNet 900
Frequency Range
902.20000000 - 927.60000000
Company
GE MDS, LLC
Country
United States

Documents & Files

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Users Manual

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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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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 05-2708A01 Rev. A September 2001 TransNET 900“ Spread Spectrum Data Transceiver MDS TransNET 900“ QUICK START GUIDE Below are the basic steps for installing the transceiver. Detailed instructions are given in INSTALLA- TION on page 24 of this guide. 1. Install and connect the antenna system to the radio ¥ Use good quality, low-loss coaxial cable. Keep the feedline as short as possible. ¥ Preset directional antennas in the direction of desired transmission. 2. Connect the data equipment to the radio s INTERFACE connector ¥ Connection to the radio must be made with a DB-9 Male connector. Connections for typical systems are shown below. ¥ Connect only the required pins. Do not use a straight-through RS-232 cable with all pins wired. ¥ Verify the data equipment is configured as DTE. (By default, the radio is configured as DCE.) 3. Apply DC power to the radio ¥ Observe proper polarity. The red wire is the positive lead; the black is negative. 4. Verify proper operation by observing the LED display ¥ Refer to Table 4 on page 32 for a description of the status LEDs. ¥ Refine directional antenna headings for maximum receive signal strength using the RSSI command. MDS 05-2708A01 Rev. AMDS TransNET 900 I/O Guidei TABLE OF CONTENTS 1.0 ABOUT THIS MANUAL ............................................................... 9 2.0 PRODUCT DESCRIPTION ......................................................... 9 Transceiver Features.................................................................... 10 Model Configuration Codes .......................................................... 10 2.1 Spread Spectrum Radios How Are They Different? .................... 10 2.2 Typical Applications ........................................................................ 11 Multiple Address Systems (MAS) ................................................. 11 Simplex Peer-to-Peer ................................................................. 11 Point-to-Point System ................................................................... 12 Tail-End Link ( MAS Extension )................................................... 12 Repeater System Traditional...................................................... 13 2.3 Accessories .................................................................................... 14 3.0 GLOSSARY OF TERMS............................................................ 14 4.0 INSTALLATION PLANNING ...................................................... 17 4.1 General Requirements ................................................................... 17 4.2 Site Selection ................................................................................. 18 Terrain and Signal Strength .......................................................... 18 4.3 A Word About Radio Interference ................................................... 20 4.4 Antenna & Feedline Selection ........................................................ 21 Antennas ...................................................................................... 21 Feedlines ...................................................................................... 22 4.5 How Much Output Power Can be Used? ....................................... 23 For All MDS TransNET 900“ Systems ........................................ 23 5.0 INSTALLATION.......................................................................... 24 5.1 Transceiver Installation .................................................................. 25 5.2 Peer-to-Peer Systems .................................................................... 27 Simplex Peer-to-Peer ................................................................... 27 5.3 Tail-End Links ................................................................................. 27 Interface Wiring ............................................................................ 27 5.4 Repeaters Traditional Method ..................................................... 28 Antennas ...................................................................................... 28 System Addresses ........................................................................ 29 Interface Wiring ............................................................................ 29 Interface Wiring ............................................................................ 29 Software Programming (TDD Command) .................................... 30 Limitations of Single-Radio Repeaters ......................................... 30 5.5 Using the Radio s Sleep Mode ....................................................... 30 MDS 05-2708A01 Rev. AMDS TransNET 900 I/O Guideii Sleep Mode Example ................................................................... 31 6.0 OPERATION.............................................................................. 31 6.1 Initial Start-up ................................................................................. 31 6.2 Performance Optimization .............................................................. 32 Antenna Aiming ............................................................................ 32 Antenna SWR Check.................................................................... 32 Data Buffer Setting ....................................................................... 33 Hoptime Setting ............................................................................ 33 Baud Rate Setting ........................................................................ 33 Radio Interference Checks ........................................................... 33 7.0 TRANCEIVER PROGRAMMING............................................... 33 7.1 Programming Methods ................................................................... 34 7.2 Keyboard Commands .................................................................... 34 Entering Commands ..................................................................... 35 7.3 Detailed Command De…

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Cover Letter(s)

175 Science Parkway, Rochester, New York 14620 USA (585) 242-9600 Phone (585) 242-9620 Fax January 18, 2002 FEDERAL COMMUNICATIONS COMMISSION 7435 Oakland Mills Road Columbia, MD 21046 U.S.A. Subject: Request for withholding from public disclosure the schematic diagrams and system block diagrams pursuant to an application for certification. Applicant: Microwave Data Systems Inc. Product: TransNet Model: EL805 FCC ID: E5M-TRANSNET900 Dear Sir/Madam, We, Microwave Data Systems, would like to request that the schematic diagrams, system block diagram, Theory of Operation and Bill of Materials 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 us at 716 242-9600 Yours truly, Dennis McCarthy Agency Compliance Engineer Microwave Data Systems 175 Science Parkway Rochester NY 14620 Phone (585) 242-8440 Email [email protected]

Cover Letter(s)

3March 11, 2002 Federal Communications Commission Equipment Authorization Division 7435 Oakland Mills Road Columbia, MD 21046 FCC ID: TCB approval E5M-TRANSNET900 Applicant: Microwave Data Systems, Incorporated Correspondence Reference Number: 3632 731 Confirmation Number: TC194785 Date of Original Email: 03/04/2002 To whom it may concern: In response to the clarifications requested on the E5M-TRANSNET900 in the e-mail dated 03/04/2002 please accept the following explanations: FCC Issue 1: The Test Report (Page 14 System Receiver Hopping Capability) states that there is receiver synchronization. Is the hopping done in lock step at the same frequencies in TDMA or do they hop in lock step at different frequencies? MDS Response 1: The master station sends out a synchronizing message at a precise instant on each channel, which allow the remotes to know where time Zero is, and when they should move to the next channel in the table. If additional details are required please refer to the MDS TransNet 900 "Theory of Operations and Block Diagram" dated 1/10/02 which was supplied with the original submission package. Specifically, Section 3 "Description of Device Operation" Paragraphs 4 and 5 describe the hopping and synchronization process in detail. FCC Issue 2: The Test Report states that the dwell channel for each channel is 1.029 ms. With a CPFSK 2- level modulation, 118.6 ms 20 dB BW, a maximum of 336 bytes of data sent, SYNCH messages, and preamble/header for synchronization and addressing on each hop it is not clear that the data is the average dwell time required by Part 15.247(a)(1)(i). Please clarify that the data represents the average dwell time. MDS Response 2: The tests are correct, however the plots detail only the transmission of synchronization messages which is the least amount of data transmitted in a given hop. Attached (Figures 1-6) you will find plots that detail the hop dwell time measured with maximum data throughput. You will notice that these plots clearly show that the maximum amount of data sent during a 28 ms hop occupies 26.00 ms and during a 7 ms hop the maximum amount of data sent occupies 5.2 ms. It is worth noting here that in the limiting case, the TransNet supports a minimum of 64 channels and thus, the theoretical maximum amount of time spent on a given channel during any 20 second period is 312.5 ms. This is much less then the required maximum of 400 ms. The actual amounts are shown in figures 7-9 for the 7 ms hop period and figures 10-12 for the 28 ms hop period. Figures... Figure 1 (Dwell Time @ 902.2 MHz: 7 ms Hop Dwell Setting) Figure 2 (Dwell Time @ 915.0 MHz: 7 ms Hop Dwell Setting) Figure 3 (Dwell Time @ 927.8 MHz: 7 ms Hop Dwell Setting) Figure 4 (Dwell Time @ 902.2 MHz: 28 ms Hop Dwell Setting) Figure 5 (Dwell Time @ 915.0 MHz: 28 ms Hop Dwell Setting) Figure 6 (Dwell Time @ 927.8 MHz: 28 ms Hop Dwell Setting) Figure 7 (Worst Case Channel Occupancy @ 902.2 MHz: 7 ms Hop Dwell Setting) (20 second sweep: 45 hop dwells * 5.2 ms/dwell = 234 ms) Figure 8 (Worst Case Channel Occupancy @ 915.0 MHz: 7 ms Hop Dwell Setting) (20 second sweep: 45 hop dwells * 5.2 ms/dwell = 234 ms) Figure 9 (Worst Case Channel Occupancy @ 927.6 MHz: 7 ms Hop Dwell Setting) (20 second sweep: 45 hop dwells * 5.2 ms/dwell = 234 ms) Figure 10 (Worst Case Channel Occupancy @ 902.2 MHz: 28 ms Hop Dwell Setting) (20 second sweep: 11 hop dwells * 26 ms/dwell = 286 ms) Figure 11 (Worst Case Channel Occupancy @ 915.0 MHz: 28 ms Hop Dwell Setting) (20 second sweep: 11 hop dwells * 26 ms/dwell = 286 ms) Figure 12 (Worst Case Channel Occupancy @ 927.6 MHz: 28 ms Hop Dwell Setting) (20 second sweep: 11 hop dwells * 26 ms/dwell = 286 ms) FCC Issue 3: The User's Manual says that the number of hopping channels is selectable from 64 to 128 in increments of 16. Upload data/plots showing the minimum number of hopping channels. MDS Response 3: Figure 13 (Number of Hopping Channels (Minimum): Zones 1,2,7,8 Skipped) FCC Issue 4: The band frequencies are listed in the Grant. The Grant should have the lowest and highest fundamental frequency that the device transmits. Correct the Grant. MDS Response 4: The minimum frequency is 902.2 MHz and the maximum frequency is 927.6 MHz. FCC Issue 5: The Grant condition states that this is a “Limited Modular Approval” for use in the manufacturer products only. Please remove from the Grant conditions any reference to “module” or “limited modular approach”. Typically, the only mention of modules is “Modular Approval” when all conditions of A00-1407 have been met. MDS Response 5: The observation noted in FCC request 5 has been fully addressed by redrafting the grant notes as below. We further believe that this draft not only addresses the concerns expressed under Issue 5 but also is in accordance with FCC Public Notice DA 00-1407 of June 26th 2000 and previous grants by the bureau. Antennas used for this transmitter must be professionally installed on fixed mounted permanent outdoor structures. Users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance. This transmitter can only be used in enclosures designed by Microwave Data Systems, Inc. such that compliance of the end product is assured. Kind Regards, Dennis McCarthy Agency Compliance Engineer Microwave Data Systems 175 Science Parkway Rochester NY 14620 Phone (585) 242-8440 Email: [email protected]

Cover Letter(s)

May 21, 2002 FCC ID: TCB approval E5M-TRANSNET900 Applicant: Microwave Data Systems, Incorporated Correspondence Reference Number: 3842 731 Confirmation Number: TC194785 Date of Original Email: 04/17/2002 To whom it may concern: In response to the clarifications requested on the E5M-TRANSNET900 in an email first received by MDS on 05/21/2002, and dated 04/17/2002, please accept the following explanations: FCC Issue: Subject: Lock Step Hopping 1) The response to Question 1 of the previous request needs clarification. All transmitters in the network are not allowed to hop in sequence at the same time (lock step). The various links in the system must hop independent of each other. Is the hopping done in lock step at the same frequencies in TDMA or do they hop in lock step at different frequencies? MDS Response: The TransNET operates in half-duplex mode, typically in a poll/response fashion. The master station transmits a synchronization message psuedo-randomly on all channels at precise regular intervals. The synchronization message allows the remotes to know where time Zero is, and when they should move to the next pseudo-random channel in the table. All remotes synchronized to a given master, hop to the same frequency on the same channel at the same time and they change this frequency all together. These radios will occupy just one channel at a time, but not the whole frequency band, or a significant portion of it.

Cover Letter(s)

May 23, 2002 FCC ID: TCB approval E5M-TRANSNET900 Applicant: Microwave Data Systems, Incorporated Correspondence Reference Number: 4226 731 Confirmation Number: TC194785 Date of Original Email: 05/23/2002 To whom it may concern: In response to the clarifications requested on the E5M-TRANSNET900 in an email first received by MDS on 05/23/2002, please accept the following explanations: FCC Issue: 1) The latest response indicates that the master synchronizes with the remotes in the same system in a TDMA fashion which is fine. However the system can be configured with multiple masters that are interconnected through a null-modem cable. Please explain how systems with different masters comply with Part 15.247(h). There is some question of compliance since the Operational Description states "To insure that a radio does not start following the wrong master, each system has its own network address and hop pattern determined by the network address. The system address is used to identify all remote units intended to communicate with a particular master radio. The address must not be one that will be used in other systems that may be in the area in which the radio will be installed, since duplicate addresses can cause failure in, or incorrect data from, other master or remote units with the same address". This issue can be resolved by answering the following two questions: a) Do systems with multiple masters synchronize to avoid interference with each other? Yes or No b) Do systems with multiple masters hop in lock step with each other on different frequencies? Yes or No MDS Response: a.) No, systems with multiple masters do not synchronize to avoid interference with each other b.) No, systems with multiple masters do not hop in lock step with each other on different frequencies?

External Photos

EXTERNAL PHOTOS OF EUT Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 1 EXTERNAL PHOTOS OF EUT Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 2 EXTERNAL PHOTOS OF EUT Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 3

ID Label/Location Info

FCC ID Label LOCATION OF LABEL ON DEVICE

Internal Photos

ANNEX 4 – INTERNAL PHOTOS OF EUT Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A4 - 1 ANNEX 4 – INTERNAL PHOTOS OF EUT Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A4 - 2

Test Report

TransNet Model No.: EL805 FCC ID: E5M-TRANSNET900 Applicant: Microwave Data Systems Inc. 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 Transmitters Operating in the Frequency band 902 - 928 MHz UltraTech's File No.: MIC49-FTX This Test report is Issued under the Authority of Tri M. Luu, Professional Engineer, Vice President of Engineering UltraTech Group of Labs Date: January 28, 2002 Report Prepared by: Dan Huynh Tested by: Mr. Hung Trinh, EMI/RFI Technician Issued Date: January 28, 2002 Test Dates: January 2 - 4, 2002 The results in this Test Report apply only to the sample(s) tested, and the sample tested is randomly selected. UltraTech 3000 Bristol Circle, Oakville, Ontario, Canada, L6H 6G4 Telephone (905) 829-1570 Facsimile (905) 829-8050 Website: www.ultrat4ech-labs.com Email: [email protected] FCC Part 15, Subpart C, Section 15.247 - Frequency Hopping Spread Spectrum Transmitters Contents i TransNet, Model EL805 FCC ID: E5M-TRANSNET900 ULTRATECH GROUP OF LABS File #: MIC49-FTX 3000 Bristol Circle, Oakville, Ontario, Canada L6H 6G4 January 28, 2002 Tel. #: 905-829-1570, Fax. #: 905-829-8050, Email: [email protected] , Website: http://www.ultratech-labs.com • Assessed by ITI (UK) Competent Body, NVLAP (USA) Accreditation Body & ACA/AUSTEL (Australia), VCCI (Japan) • Accredited by Industry Canada (Canada) under ACC-LAB (Europe/Canada MRA and APEC/Canada MRA) • Recognized/Listed by FCC (USA) • All test results contained in this engineering test report are traceable to National Institute of Standards and Technology (NIST) TABLE OF CONTENTS EXHIBIT 1. SUBMITTAL CHECK LIST................................................................................................................... 1 EXHIBIT 2. INTRODUCTION .................................................................................................................................... 2 2.1. SCOPE.................................................................................................................................................................... 2 2.2. RELATED SUBMITTAL ( S )/ GRANT ( S ) .......................................................................................................................... 2 2.3. NORMATIVE REFERENCES .............................................................................................................................. 3 EXHIBIT 3. PERFORMANCE ASSESSMENT .........................................................................................................4 3.1. CLIENT INFORMATION ........................................................................................................................................ 4 3.2. E QUIPMENT UNDER T EST (EUT) INFORMATION................................................................................................. 4 3.3. EUT’S TECHNICAL SPECIFICATIONS............................................................................................................. 5 3.4. L IST OF EUT’ S P ORTS ............................................................................................................................................. 5 3.5. A NCILLARY EQUIPMENT .......................................................................................................................................... 6 EXHIBIT 4. EUT OPERATING CONDITIONS AND CONFIGURATIONS DURING TESTS .......................... 7 4.1. C LIMATE TEST CONDITIONS ..................................................................................................................................... 7 4.2. O PERATIONAL TEST CONDITIONS & ARRANGEMENT FOR TEST S .............................................................................. 7 EXHIBIT 5. SUMMARY OF TEST RESULTS .......................................................................................................... 8 5.1. LOCATION OF TESTS ......................................................................................................................................... 8 5.2. APPLICABILITY & S UMMARY OF EMC E MISSION T EST R ESULTS ...................................................................... 8 5.3. MODIFICATIONS INCORPORATED IN THE EUT FOR COMPLIANCE PURPOSES ............................................................... 8 EXHIBIT 6. MEASUREMENTS, EXAMINATIONS & TEST DATA FOR EMC EMISSIONS.......................... 9 6.1. T EST P ROCEDURES .................................................................................................................................................. 9 6.2. MEASUREMENT UNCERTAINTIES .............................................................................................................................. 9 6.3. MEASUREMENT EQUIPMENT USED ............................................................................................................................ 9 6.4. ESSENTIAL/PRIMARY FUNCTIONS AS DECLARED BY THE MANUACTURER ..................................... 9 6.5. UNLICENSED MODULAR TRANSMITETR APPROVAL REQUIREMENTS @ FCC P UBLIC N OTICE DA 00-1407 (JU NE 26, 2000).................................................................................................................................................... 10 6.6. COMPLI A NCE WITH FCC PART 15 – GENERAL TECHNICAL REQUIREMENTS ................................... 13 6.7. H OPPING C HANNEL C ARRIER F REQUENCY C HARACTERISTICS [47 CFR §§ 15.247( A )(1) & ( A )(1)( I )] ................. 17 6.7.1. Limits ............................................................................................................................................................ 17 6.7.2. Method of Measurements.............................................................................................................................. 17 6.7.3. Test Arrangement .................................…

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Test Report

ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 1 Plot # 1 20 dB Occupied Bandwidth ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 2 Plot # 2 20 dB Occupied Bandwidth ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 3 Plot # 3 20 dB Occupied Bandwidth ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 4 Plot # 4 Channel Hopping Frequency Separation ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 5 Plot # 5 Average Time of Occupancy Low End of Frequency Band ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 6 Plot # 6 Average Time of Occupancy Low End of Frequency Band ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 7 Plot # 7 Average Time of Occupancy Middle of Frequency Band ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 8 Plot # 8 Average Time of Occupancy Middle of Frequency Band ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 9 Plot # 9 Average Time of Occupancy High End of Frequency Band ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 10 Plot # 10 Average Time of Occupancy High End of Frequency Band ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 11 Plot # 11 Band-Edge Spurious Emissions at Antenna Terminals Low End of Frequency Band Single Frequency Mode ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 12 Plot # 12 Band-Edge Spurious Emissions at Antenna Terminals Low End of Frequency Band Pseudorandom Channel Hopping Mode ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 13 Plot # 13 Band-Edge Spurious Emissions at Antenna Terminals High End of Frequency Band Single Frequency Mode ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 14 Plot # 14 Band-Edge Spurious Emissions at Antenna Terminals High End of Frequency Band Pseudorandom Channel Hopping Mode

Test Report

ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 15 Plot # 15 Spurious Emissions at Antenna Terminals ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 16 Plot # 16 Spurious Emissions at Antenna Terminals ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 17 Plot # 17 Spurious Emissions at Antenna Terminals ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 18 Plot # 18 Spurious Emissions at Antenna Terminals ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 19 Plot # 19 Spurious Emissions at Antenna Terminals ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 20 Plot # 20 Spurious Emissions at Antenna Terminals ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 21 Plot # 21 Spurious Emissions at Antenna Terminals ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 22 Plot # 22 Spurious Emissions at Antenna Terminals ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 23 Plot # 23 Spurious Emissions at Antenna Terminals ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 24 Plot # 24 Spurious Emissions at Antenna Terminals ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 25 Plot # 25 Radiated Emissions ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 26 Plot # 26 Radiated Emissions ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 27 Plot # 27 Radiated Emissions ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 28 Plot # 28 Radiated Emissions ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 29 Plot # 29 Radiated Emissions ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 30 Plot # 30 Radiated Emissions ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 31 Plot # 31 Radiated Emissions ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 32 Plot # 32 Radiated Emissions ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 33 Plot # 33 Radiated Emissions ANNEX 1 - TEST DATA PLOTS Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A1 - 34 Plot # 34 Radiated Emissions

Test Setup Photos

ANNEX 2 - TEST SETUP PHOTOGRAPHS (Radiated Emissions at 3 Meters Distance) Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A2 - 1 ANNEX 2 - TEST SETUP PHOTOGRAPHS (Radiated Emissions at 3 Meters Distance) Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A2 - 2 ANNEX 2 - TEST SETUP PHOTOGRAPHS (Radiated Emissions at 3 Meters Distance) Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A2 - 3 ANNEX 2 - TEST SETUP PHOTOGRAPHS (Radiated Emissions at 3 Meters Distance) Microwave Data Systems Inc. TransNet, Model EL805 FCC ID: E5M-TRANSNET900 A2 - 4

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]877-747-6381Fax: 905-829-8050

Technical Specifications

#Rule PartsFrequency RangePower Output
115C902.2 MHz - 927.6 MHz1 W
Confidentiality
Long Term
Grant Notes
The antenna(s) used for this transmitter must be professionally installed and must be fixed-mounted on outdoor permanent structures with a separation distance of at least 2 meters from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter. Users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance. This transmitter can only be used in enclosures designed by Microwave Data Systems, Inc. such that compliance of the end product is assured.

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