
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 23 of 68 APPENDIX H: MANUAL Please refer to the following pages. Drive By Reader for eTire User’s Manual 1. System overview The drive-by reader is part of the Michelin’s electronic tire (eTire) system. The eTire system consists of the components shown in the figure 1.1: y Tags: Passive (batteryless) devices mounted inside the tires (measurement tags) or on the body of tractors and trailers (Tractor/Trailer ID tags). The measurement tags capture the pressure and temperature of the tires, whereas the ID tags contain identification numbers for the vehicles. y Drive by reader: Captures the information transmitted by the tags and forwards the data to the host computer. y User interface: Michelin’s internet-based tire management program (BibTrack). Tractor ID tag Trailer ID tag Measurement tags Drive-By Reader Antennas Antennas Internet based User Interface Host Computer Figure 1.1. System overview In a typical configuration, a truck consisting of a tractor and a trailer drives through a lane consisting of reader antennas. Photo switches mounted close to the antennas provide additional information to help the reader determine the axle configuration and to detect the position of the tags, as the position information is not stored in the tag. Both tractor and trailer are equipped with ID tags. The drive by reader reads the ID and measurement tags and provides the tire management software through the host computer with the data such as the pressure, temperature and position. The drive by reader also drives a red traffic light for visual control. The drive by reader is bi-directional, I.e. that truck can enter the lane from both directions. 2. Installation and setup 2.1. Installation The drive-by reader consists of 3 main units: y 1 X The Digital Processing Unit (DPU) y 2 X The Antenna Driver Units (ADU) y 1 X The Power Supply Unit (PSU) y 4 X Antennas y 1 X Temerature sensor In addition, there are peripheral components such as 2 traffic lights, 2 photo switches, the host computer and connecting cables. For the drive by reader to function properly, it must be installed according to the following figure 2.1: ADU2 Reflector Photo switch ADU1 Reflector PSU Photo switch Light 1 Light 2 AC in DPUTS Host (RS232) Power in Light 1 Light 2 4040 0 330 ADU: Antenna Driver Unit DPU: Digital Processing Unit PSU: Power Supply Unit TS: Temperature Sensor All dimensions in cm, +/-10% unless specified otherwise The 2 sides are symmetrical Truck Drive By Reader System Overview (Not to scale!) Antenna 1Antenna 2 Antenna 2Antenna 1 540 Figure 2.1. The lane installation and the overview of the hardware modules y All dimensions are in cm, +/-10% unless specified otherwise. y The 2 sides are symmetrical. Important distances: y Antenna 1 - Antenna 2 (edge to edge): 40cm y Antenna 1 edge - Photo switch: 40cm y Distance between the 2 photo switches: 540cm y Left side antenna 2 to right side antenna 2: 0cm y Lane width: 330cm (subject to adjustment) Other installation issues: y Prior to the wiring, make sure non of the components is powered. Unplug all related AC cords. y Avoid installing cables in area of 30cm around the antennas, especially the photo switch and DPU-PSU cables. y The temperature sensor must be installed outside and protected from the direct sunlight. y The 2 Antenna Driver Units (ADU) and the Power Supply Unit (PSU) must be protected from direct sunlight, rain and water on the surface of the pavement. y The cables across the lane (light, PSU-ADU2) must be buried for protection. Do not use protection strips. A smooth lane surface will minimize the additional mechanical noise and increase the performance of the system. y The Digital Processing Unit (DPU) must be installed indoors . 2.2. System power-up Please follow the following steps for the first system power-up: y Make sure all components are properly wired and the photo switch reflectors in place. y Verify that the voltage input switch (110/220V) for the power supply unit (PSU) is set properly. The switch is located on the back of the PSU and can be set accordingly after unscrewing the transparent protection plate. y Connect the power to the PSU. The green light on PSU’s front panel must go on. y Adjust the position of the photo switches and the reflectors properly. A red indicator light at the photo switch will go on when the reflector is in correct, in-beam position. y Power up the Digital Processing Unit (DPU) by pressing the on/off switch. If the DPU was already on, turn it off and on again. y The on/off indicator light on the DPU’s front panel must start flashing. While the indicator light is flashing, the system performs a check on all installed components and the auto-tuning of the antennas. y The indicator light must stop flashing after about 15-30 seconds and stay on. If it keeps flashing, make sure the PSU is on, check all cables, the distances between the antennas, the reflectors and restart the DPU. The system starts only when all components are in place and powered up. A permanent flashing means that the system check routine has discovered a problem. y Test the system by triggering one of the photo switches. The DPU’s indicator light must start flashing (indicating that a measurement is taking place) and stay on after about 20-30 seconds. 3. Normal operation 3.1. Measurement cycle The system is immediately functional after a successful power up. With the exception of the line voltage selector, the drive by reader contains no user adjustable components and requires no maintenance or calibration. In the idle mode, that is, when the drive by reader is waiting for a truck, there is no RF activity and all antennas are off. When a truck enters the lane it triggers the system by activating the photo switch. The system then turns on the RF powe…
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Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 15 of 68 APPENDIX A: ANTENNA SPECIFICATIONS Please refer to the following pages. General antenna specifications Each antenna consists of 2 windings of wire on a plastic frame. This results in a loop antenna transmitting magnetic energy (H-field). The transmit antenna acts at the same time as the receiver antenna (Full-Duplex RFID technology). Antenna parameter Value Number of windings 2 Wire 2.5 sqmm speaker wire Inductance 18uH +- 10% Frame size 95cm X 95cm Cable length 1.5m +- 10% Nominal voltage 100Vpp +- 25% Distance between 2 adjacent antennas 40cm +- 10% Gain 4.5dB Start up and auto-tuning The following figure 1 shows the position of 2 antennas on one side of the drive-by lane. Upon start-up, the system performs an auto-tuning of each pair of antennas in a way that the voltages are balanced and the phases are in opposite directions, as shown in figure 1. This minimizes the far field radiation of the antennas. The auto-tuning process is performed also automatically every 2 hours as part of a periodical system check. Should the mismatch of voltage and phases exceed defined values, the system aborts and shuts down itself automatically. Hence, The drive-by reader operates only when the antennas are all in place and successfully tuned. Y Z X X Y X Z phi theta H-field vector Ant. 1Ant. 2 Figure 1. Position of a pair of antennas and the flux of the magnetic field Antenna radiation patterns The figures 2 and 3 show the radiation patterns of the antenna as functions of the Phi and Theta angles as defined in figure 1. The patterns are valid for a perfectly phase- and amplitude matched pair of antennas. In reality, slight variations may occur. 0 30 60 90 120 150 180 210 240 270 300 330 Phi |H| Radiation pattern of a dual-antenna (H-field) as a function of Phi-angle Antennas X Y Figure 2. Radiation pattern of a perfectly matched pair of antennas in the XY plane as a function of the angle Phi 0 30 60 90 120 150 180 210 240 270 300 330 Radiation pattern of a dual-antenna (H-field) as a function of Theta-angle Antennas Z X Theta |H| Figure 3. Radiation pattern of a perfectly matched pair of antennas in the XZ plane as a function of the angle Theta
Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 16 of 68 APPENDIX B: AGENCY AUTHORIZATION LETTER Please refer to the following page.
Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 17 of 68 APPENDIX C: CONFIDENTIALITY REQUEST LETTER Please refer to the following page.
Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 30 of 68 APPENDIX J: EXTERNAL PHOTOGRAPHS PHOTOGRAPH 9: ADU 1–FRONT VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 31 of 68 PHOTOGRAPH 10: ADU 1–TOP VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 32 of 68 PHOTOGRAPH 11: ADU 1-SIDE VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 33 of 68 PHOTOGRAPH 12: ADU 1–BOTTOM VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 34 of 68 PHOTOGRAPH 13: POWER SUPPLY–TOP VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 35 of 68 PHOTOGRAPH 14: ADU 2–FRONT VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 36 of 68 PHOTOGRAPH 15: ADU 2–TOP VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 37 of 68 PHOTOGRAPH 16: ADU 2-SIDE VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 38 of 68 PHOTOGRAPH 17: ADU 2–BOTTOM VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 39 of 68 PHOTOGRAPH 18: POWER SUPPLY–TOP VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 40 of 68 PHOTOGRAPH 19: POWER SUPPLY–FRONT VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 41 of 68 PHOTOGRAPH 20: AC/DC CONVERTER–TOP VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 42 of 68 PHOTOGRAPH 21: AC/DC CONVERTER–BOTTOM VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 43 of 68 PHOTOGRAPH 22: SENSOR-TOP VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 44 of 68 PHOTOGRAPH 23: SENSOR–BOTTOM VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 45 of 68 PHOTOGRAPH 24: DPU–TOP VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 46 of 68 PHOTOGRAPH 25: ANTENNA–FRONT VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 47 of 68 PHOTOGRAPH 26: ANTENNA–REAR VIEW
Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 18 of 68 APPENDIX D: LABEL AND LABEL LOCATION This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: 1. this device may not cause harmful interference, and 2. this device must accept any interference received, including interference that may cause undesired operation. FCC ID: RT5-MXDBR10 IC: 4892A-MXDBR10 FIGURE 1: FCC ID LABEL SAMPLE Please refer to the following page for a photograph of the label location. Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 19 of 68 PHOTOGRAPH 2: LOCATION OF FCC ID LABEL ON DPU UNIT FCC ID LABEL HERE
Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 48 of 68 APPENDIX K: INTERNAL PHOTOGRAPHS PHOTOGRAPH 27: ADU 1–GENERAL INSIDE VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 49 of 68 PHOTOGRAPH 28: ADU 1–TOP VIEW PCB Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 50 of 68 PHOTOGRAPH 29: ADU 1–BOTTOM VIEW PCB Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 51 of 68 PHOTOGRAPH 30: ADU 1–SECOND BOARD INSIDE UNIT Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 52 of 68 PHOTOGRAPH 31: ADU 1–SECOND BOARD TOP VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 53 of 68 PHOTOGRAPH 32: ADU 1–SECOND BOARD BOTTOM VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 54 of 68 PHOTOGRAPH 33: ADU 2–GENERAL INSIDE VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 55 of 68 PHOTOGRAPH 34: ADU 2–TOP VIEW PCB Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 56 of 68 PHOTOGRAPH 35: ADU 2–BOTTOM VIEW PCB Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 57 of 68 PHOTOGRAPH 36: ADU 2–SECOND BOARD INSIDE UNIT Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 58 of 68 PHOTOGRAPH 37: ADU 2–SECOND BOARD TOP VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 59 of 68 PHOTOGRAPH 38: ADU 2–SECOND BOARD BOTTOM VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 60 of 68 PHOTOGRAPH 39: POWER SUPPLY–GENERAL INSIDE VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 61 of 68 PHOTOGRAPH 40: POWER SUPPLY–TOP VIEW CONVERTER Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 62 of 68 PHOTOGRAPH 41: POWER SUPPLY–BOTTOM VIEW CONVERTER Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 63 of 68 PHOTOGRAPH 42: POWER SUPPLY–TOP VIEW AC/DC CONVERTER Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 64 of 68 PHOTOGRAPH 43: POWER SUPPLY–BOTTOM VIEW AC/DC CONVERTER Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 65 of 68 PHOTOGRAPH 44: SENSOR–TOP VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 66 of 68 PHOTOGRAPH 45: DPU–INSIDE VIEW OF UNIT Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 67 of 68 PHOTOGRAPH 46: DPU–TOP VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 68 of 68 PHOTOGRAPH 47: DPU–BOTTOM VIEW
Engineering and Testing for EMC and Safety Compliance 360 Herndon Parkway, Suite 1400 Herndon, VA 20170 Phone: 703-689-0368; Fax: 703-689-2056; Metro: 703-471-6441 CERTIFICATION APPLICATION REPORT FCC PART 15 CERTIFICATION Test Lab: Rhein Tech Laboratories, Inc. Phone: 703-689-0368 360 Herndon Parkway Fax: 703-689-2056 Suite 1400 Web Site: www.rheintech.com Herndon, VA 20170 E-Mail: [email protected] Applicant: SARACOM s.a.r.l. 52 Blvd Riss o Phone: (33) 6-71-2258-84 06300 Nice, France Fax: (33) 1-5301-4680 Contact: Pourang Mahdavi Email: [email protected] FCC ID: RT5-MXDBR10 GRANTEE FRN NUMBER: 0010306389 PLATFORM: N/A RTL WORK ORDER NUMBER: 2004002 MODEL: MXDBR10 RTL QUOTE NUMBER: QRTL04-027 DATE OF TEST REPORT: February 11, 2004 American National Standard Institute: ANSI C63.4: Methods of Measurement of Radio-Noise Emissions from Low-Voltage Electrical and Electronic Equipment in the Range of 9 kHz to 40 GHz FCC Classification: DCD - Part 15 Low Power Transmitter Below 1705 kHz FCC Rule Part(s): Part 15 Industry Canada Standard: N/A Digital Interface Information Digital Interface was found to be compliant Receiver Information Receiver was found to be compliant Frequency 133.3 kHz I, the undersigned, hereby declare that the equipment tested and referenced in this report conforms to the identified standard(s) as described in this test report. No modifications were made to the equipment during testing in order to achieve compliance with these standards. Furthermore, there was no deviation from, additions to, or exclusions from the FCC Part 2, FCC Part 15, and ANSI C63.4. Signature: Date: February 11, 2004 Typed/Printed Name: Desmond A. Fraser Position: President Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 2 of 68 TABLE OF CONTENTS 1 GENERAL INFORMATION ................................................................................................................................................. 5 1.1 SCOPE .............................................................................................................................................................................5 1.2 TEST FACILITY .............................................................................................................................................................5 1.3 RELATED SUBMITTAL(S)/GRANT(S)........................................................................................................................5 2 TEST INFORMATION........................................................................................................................................................... 6 2.1 TEST JUSTIFICATION ..................................................................................................................................................6 2.2 EXERCISING THE EUT .................................................................................................................................................6 2.3 TEST RESULT SUMMARY ...........................................................................................................................................6 2.4 MODIFICATIONS ..........................................................................................................................................................6 2.5 TEST SYSTEM DETAILS ..............................................................................................................................................7 2.6 CONFIGURATION OF TESTED SYSTEM ...................................................................................................................8 3 CONDUCTED LIMITS - §15.207 .......................................................................................................................................... 9 3.1 TEST METHODOLOGY FOR CONDUCTED LINE EMISSIONS MEASUREMENTS .............................................9 3.2 CONDUCTED LINE EMISSION TEST .........................................................................................................................9 3.3 CONDUCTED LINE EMISSIONS TEST DATA FOR MAIN UNIT...........................................................................10 3.4 CONDUCTED LINE EMISSIONS TEST DATA FOR DPU........................................................................................11 4 RADIATED EMISSION LIMITS - §15.209 ........................................................................................................................ 12 4.1 DIGITAL DEVICE EMISSIONS TEST DATA ............................................................................................................12 4.2 SPURIOUS AND FUNDAMENTAL EMISSIONS ......................................................................................................13 4.3 TEST EQUIPMENT ......................................................................................................................................................14 5 CONCLUSION ...................................................................................................................................................................... 14 Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 3 of 68 FIGURE INDEX FIGURE 1: FCC ID LABEL SAMPLE ........................................................................................................................................18 TABLE INDEX TABLE 2-1: EQUIPMENT UNDER TEST (EUT) .....................................................................................................................7 TABLE 2-2: AUXILIARY EQUIPMENT .........................................................................................…
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Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 24 of 68 APPENDIX I: TEST PHOTOGRAPHS PHOTOGRAPH 3: RADIATED EMISSIONS FRONT VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 25 of 68 PHOTOGRAPH 4: RADIATED EMISSIONS REAR VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 26 of 68 PHOTOGRAPH 5: CONDUCTED EMISSIONS FRONT VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 27 of 68 PHOTOGRAPH 6: CONDUCTED EMISSIONS REAR VIEW Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 28 of 68 PHOTOGRAPH 7: CONDUCTED EMISSIONS FRONT VIEW DPU Rhein Tech Laboratories Client: SARACOM s.a.r.l. 360 Herndon Parkway Model: MXDBR10 Suite 1400 FCC ID: RT5-MXDBR10 Standard aFCC Part 15 Herndon, VA 20170 http://www.rheintech.com Report Number: 2004002 Page 29 of 68 PHOTOGRAPH 8: CONDUCTED EMISSIONS REAR VIEW
360 Herndon Parkway Suite 1400 · Herndon, Virginia · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 0.133 MHz - 0.133 MHz | - |