
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
THE INFORMATION CONTAINED HEREIN IS PROPRIETARY TO NEW CENTURION SOLUTIONS, INC. AND SHALL NOT BE REPRODUCED OR DISCLOSED IN WHOLE OR IN PART FOR ANY DESIGN OR MANUFACTURE EXCEPT WHEN SUCH USER POSSESSES DIRECT, WRITTEN AUTHORIZATION FROM NEW CENTURION SOLUTIONS, INC. Elliott Tech, LLC IREP Assembly Manual IREP New Centurion Solutions Project Number: 776 Reference: 776-91-03-REV-.docx Original Document: March 1, 2011 Revision A: March 16, 2011 Prepared for: Prepared by: New Centurion Solutions, Inc. Greg Williams 3011 Spring Garden St. Suite E Greensboro, NC 27403 (336) 617-5410 [email protected] Elliott Tech, LLC 346 Raleigh Street Holly Springs, NC 27540 (919) 342-6899 (888) 631-1795 Fax [email protected] IREP Assembly Manual 776-91-03-REV-A.docx THE INFORMATION CONTAINED HEREIN IS PROPRIETARY TO NEW CENTURION SOLUTIONS, INC. AND SHALL NOT BE REPRODUCED OR DISCLOSED IN WHOLE OR IN PART FOR ANY DESIGN OR MANUFACTURE EXCEPT WHEN SUCH USER POSSESSES DIRECT, WRITTEN AUTHORIZATION FROM NEW CENTURION SOLUTIONS, INC. ii Revision Page Rev Description Section A FCC Notification 3 IREP Assembly Manual 776-91-03-REV-A.docx THE INFORMATION CONTAINED HEREIN IS PROPRIETARY TO NEW CENTURION SOLUTIONS, INC. AND SHALL NOT BE REPRODUCED OR DISCLOSED IN WHOLE OR IN PART FOR ANY DESIGN OR MANUFACTURE EXCEPT WHEN SUCH USER POSSESSES DIRECT, WRITTEN AUTHORIZATION FROM NEW CENTURION SOLUTIONS, INC. iii Contents 1. Equipment List ......................................................................................................... 4 2. Assembly Instructions .............................................................................................. 5 3. FCC Notification ...................................................................................................... 7 IREP Assembly Manual 776-91-03-REV-A.docx THE INFORMATION CONTAINED HEREIN IS PROPRIETARY TO NEW CENTURION SOLUTIONS, INC. AND SHALL NOT BE REPRODUCED OR DISCLOSED IN WHOLE OR IN PART FOR ANY DESIGN OR MANUFACTURE EXCEPT WHEN SUCH USER POSSESSES DIRECT, WRITTEN AUTHORIZATION FROM NEW CENTURION SOLUTIONS, INC. 4 1. EQUIPMENT LIST A. IREP Enclosure - Inside (1) B. Tenergy Battery (1) C. IREP Enclosure - Outside (1) D. Double Sided Tape E. IREP Enclosure - Screws (4) F. IREP PCB (1) G. Coaxial Cable RF Plug-SMA Jack (1) H. SMA Antenna (1) IREP Assembly Manual 776-91-03-REV-A.docx THE INFORMATION CONTAINED HEREIN IS PROPRIETARY TO NEW CENTURION SOLUTIONS, INC. AND SHALL NOT BE REPRODUCED OR DISCLOSED IN WHOLE OR IN PART FOR ANY DESIGN OR MANUFACTURE EXCEPT WHEN SUCH USER POSSESSES DIRECT, WRITTEN AUTHORIZATION FROM NEW CENTURION SOLUTIONS, INC. 5 2. ASSEMBLY INSTRUCTIONS To begin, check the parts available against the equipment list, identifying any missing parts. If all parts are accounted for, proceed to the instructions below to begin assembling the indoor repeater (IREP). Step 1: The inside enclosure (A) should come inside of the outside enclosure (C) as indicated in the figure below. Place the PCB (F) over the inside enclosure so that the LED’s line up with the three consecutive holes and that the holes in each corner of the PCB line up over the screw holes on the enclosure. Insert the enclosure screws (E) into each corner of the PCB attaching the board to the enclosure. Step 2: Put the washer on the end of the RF cable (G) with the jack and feed it through the opening in the enclosure from the inside out. Rotate the nut clockwise around the outside of the RF jack until it is flush against the enclosure. Step 1 Step 2 IREP Assembly Manual 776-91-03-REV-A.docx THE INFORMATION CONTAINED HEREIN IS PROPRIETARY TO NEW CENTURION SOLUTIONS, INC. AND SHALL NOT BE REPRODUCED OR DISCLOSED IN WHOLE OR IN PART FOR ANY DESIGN OR MANUFACTURE EXCEPT WHEN SUCH USER POSSESSES DIRECT, WRITTEN AUTHORIZATION FROM NEW CENTURION SOLUTIONS, INC. 6 Step 3: Take the SMA plug end of the RF cable and attach it to the RF port labeled J1 on the PCB by laying the plug over the port and pressing down. The plug should snap right into place. Step 4: Attach the SMA Antenna to the RF jack by screwing it in clockwise to the outside of the enclosure. Step 5: Insert the Tenergy battery (B) connector into the 3 pin header on the PCB beside the “on” switch. After doing so, apply a piece of double sided tape (D) to either side of the battery, and press the battery against the metal shields on the PCB. Step 3 Step 4 Step 5 IREP Assembly Manual 776-91-03-REV-A.docx THE INFORMATION CONTAINED HEREIN IS PROPRIETARY TO NEW CENTURION SOLUTIONS, INC. AND SHALL NOT BE REPRODUCED OR DISCLOSED IN WHOLE OR IN PART FOR ANY DESIGN OR MANUFACTURE EXCEPT WHEN SUCH USER POSSESSES DIRECT, WRITTEN AUTHORIZATION FROM NEW CENTURION SOLUTIONS, INC. 7 3. FCC NOTIFICATION NOTE: THE MANUFACTURER IS NOT RESPONSIBLE FOR ANY RADIO OR TV INTERFERENCE CAUSED BY UNAUTHORIZED MODIFICATIONS TO THIS EQUIPMENT. SUCH MODIFICATIONS COULD VOID THE USER’S AUTHORITY TO OPERATE THE EQUIPMENT. 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.
THE INFORMATION CONTAINED HEREIN IS PROPRIETARY TO NEW CENTURION SOLUTIONS, INC. AND SHALL NOT BE REPRODUCED OR DISCLOSED IN WHOLE OR IN PART FOR ANY DESIGN OR MANUFACTURE EXCEPT WHEN SUCH USER POSSESSES DIRECT, WRITTEN AUTHORIZATION FROM NEW CENTURION SOLUTIONS, INC. Elliott Tech, LLC IREP Installation Manual IREP New Centurion Solutions Project Number: 776 Reference: 776-91-06-REV-IREP_INSTALLATION_MANUAL.docx Original Document: March 1, 2011 Revision A: March 16, 2011 Prepared for: Prepared by: New Centurion Solutions, Inc. Greg Williams 3011 Spring Garden St. Suite E Greensboro, NC 27403 (336) 617-5410 [email protected] Elliott Tech, LLC 346 Raleigh Street Holly Springs, NC 27540 (919) 342-6899 (888) 631-1795 Fax [email protected] IREP Installation Manual 776-91-06-REV-A_IREP_INSTALLATION_MANUAL.docx THE INFORMATION CONTAINED HEREIN IS PROPRIETARY TO NEW CENTURION SOLUTIONS, INC. AND SHALL NOT BE REPRODUCED OR DISCLOSED IN WHOLE OR IN PART FOR ANY DESIGN OR MANUFACTURE EXCEPT WHEN SUCH USER POSSESSES DIRECT, WRITTEN AUTHORIZATION FROM NEW CENTURION SOLUTIONS, INC. ii Revision Page Rev Description Section A FCC Notification 3 IREP Installation Manual 776-91-06-REV-A_IREP_INSTALLATION_MANUAL.docx THE INFORMATION CONTAINED HEREIN IS PROPRIETARY TO NEW CENTURION SOLUTIONS, INC. AND SHALL NOT BE REPRODUCED OR DISCLOSED IN WHOLE OR IN PART FOR ANY DESIGN OR MANUFACTURE EXCEPT WHEN SUCH USER POSSESSES DIRECT, WRITTEN AUTHORIZATION FROM NEW CENTURION SOLUTIONS, INC. iii Contents 1. Equipment List ......................................................................................................... 4 2. Installation Prerequisties ........................................................................................ 5 3. Installation Instructions .......................................................................................... 5 4. FCC Notification ...................................................................................................... 6 IREP Installation Manual 776-91-06-REV-A_IREP_INSTALLATION_MANUAL.docx THE INFORMATION CONTAINED HEREIN IS PROPRIETARY TO NEW CENTURION SOLUTIONS, INC. AND SHALL NOT BE REPRODUCED OR DISCLOSED IN WHOLE OR IN PART FOR ANY DESIGN OR MANUFACTURE EXCEPT WHEN SUCH USER POSSESSES DIRECT, WRITTEN AUTHORIZATION FROM NEW CENTURION SOLUTIONS, INC. 4 1. EQUIPMENT LIST A. Antenna, helical short ¼ wave (1) B. IREP Assembly (1) C. Double-gang box installation (pre-requisite) D. #6-32 pan head screw (4) – included with IREP assembly E. #6-32 x 1” button-head screw (1) – included with IREP assembly IREP Installation Manual 776-91-06-REV-A_IREP_INSTALLATION_MANUAL.docx THE INFORMATION CONTAINED HEREIN IS PROPRIETARY TO NEW CENTURION SOLUTIONS, INC. AND SHALL NOT BE REPRODUCED OR DISCLOSED IN WHOLE OR IN PART FOR ANY DESIGN OR MANUFACTURE EXCEPT WHEN SUCH USER POSSESSES DIRECT, WRITTEN AUTHORIZATION FROM NEW CENTURION SOLUTIONS, INC. 5 2. INSTALLATION PREREQUISTIES Ensure that the following installation prerequisite is met: Wiring and installation of double-gang box 3. INSTALLATION INSTRUCTIONS To begin, check the parts available against the equipment list, identifying any missing parts. If all parts are accounted for, proceed to the instructions below to begin installing the IREP. Step 1: Identify the Antenna, helical short ¼ wave (A). Screw the antenna into the gold coaxial antenna connector on the top of the IREP assembly (B). Ensure that the antenna is screwed onto the connector snugly, but take care not to over-tighten the antenna as it will damage the connector or the IREP assembly enclosure. Step 2: Identify the power supply wires located within the double-gang installation. Ensure that the positive and negative wires are identified before proceeding with the installation. Identify the green and orange terminal block on the IREP Printed Circuit Board (PCB). Note the “+” silkscreen market on the PCB just to the lower right of the terminal block. Connect the positive power supply wire to the terminal block connection distinguished by the “+” marker, and connect the negative power supply wire to the opposite terminal block connection. The green LED on the front of the IREP enclosure should illuminate when power is correctly connected. Type-A (+) (-) Step 1 Step 2 IREP Installation Manual 776-91-06-REV-A_IREP_INSTALLATION_MANUAL.docx THE INFORMATION CONTAINED HEREIN IS PROPRIETARY TO NEW CENTURION SOLUTIONS, INC. AND SHALL NOT BE REPRODUCED OR DISCLOSED IN WHOLE OR IN PART FOR ANY DESIGN OR MANUFACTURE EXCEPT WHEN SUCH USER POSSESSES DIRECT, WRITTEN AUTHORIZATION FROM NEW CENTURION SOLUTIONS, INC. 6 Step 3: Identify the #6-32 pan head screw (D). Ensure that the outer half of the enclosure is detached from the inner half. Secure the inner half of the IREP (connected to wires) assembly to the double-gang box with four of these screws. Step 4: Identify the outer half of the IREP enclosure. Secure this half over the first half using the #6-32 x 1” button-head screw (E) at the top center of the IREP. 4. FCC NOTIFICATION NOTE: THE MANUFACTURER IS NOT RESPONSIBLE FOR ANY RADIO OR TV INTERFERENCE CAUSED BY UNAUTHORIZED MODIFICATIONS TO THIS EQUIPMENT. SUCH MODIFICATIONS COULD VOID THE USER’S AUTHORITY TO OPERATE THE EQUIPMENT. 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. Step 3 Step 4
NCS-0201-0910 HUB NCS-0301-0910 IREP NCS-0401-0910 OREP NCS-0101-0910 PAS NCS-0501-0910 NCS-0601-0910 NCS-0701-0910 NCS-0801-0910 NCS-0901-0910 Company NCS Device 0000 Date 0910
Indoor Repeater External Photo’s Indoor Repeater Antenna Secure device to double gang box LED Lights Reset Button Hole Top Cover
FCC ID: X9INCS03010910 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 Label Location
Indoor Repeater Internal Photo’s Indoor Repeater Active GPS Antenna GPS Module – pre-FCC certified RF Module – pre-FCC certified RF Interconnect Digital Circuitry – can be shielded Radio Circuitry - Shielded Backup Battery Radio Circuitry - Shielded Digital Circuitry – can be shielded Bottom side of Board
HUB: X9INCS02010910 The HUB is designed such that the UMC RF connector on the board outputs to an antenna (SMA connector) on the outside of the enclosure via an internal RF plug-SMA jack coaxial cable. The antenna connector for the HUB complies with FCC part 15.203 in that the antenna uses a unique coupling to the intentional radiator. Only the antenna furnished by ELLTC shall be used with the device. IREP: X9INCS03010910 The internal repeaters are designed such that the UMC RF connector on the board outputs to an antenna (SMA connector) on the outside of the enclosure via an internal RF plug-SMA jack coaxial cable. The external antenna connector for the IREP complies with FCC Part 15.203 in that the antenna uses a unique coupling to the intentional radiator. Only the antenna furnished by ELLTC shall be used with the device. OREP: X9INCS04010910 The outdoor repeaters are designed such that the UMC RF connector on the board outputs to a Type N antenna (Type N connector) on the outside of the enclosure via an internal bulkhead-RF plug coaxial cable. The external antenna connector for the OREP complies with FCC part 15.203 in that the antenna uses a unique coupling to the intentional radiator. Only the antenna furnished by ELLTC shall be used with the device.
IREP Device Item QTYDes i g n at o r Des c r i p t i o n 1 M an u f ac t u r er M an u f ac t u r er Par t Nu m b er So u r c e/Rep /Di s t 11ANT1 1 Stage 15dB SMT Mount Active GPS Patch Antenna TaoglasAP.10C.01Arrow 21BT1 BATTERY LITHIUM 3.1V RECHARGE Seiko InstrumentsMS518SE-FL35ESeiko 31C1 CAP 2200PF 25V CERAMIC 0402 SMD Panasonic - ECGECJ-0EB1E222KArrow 45C4, C5, C46, C47, C221 CAP 22PF 50V CERAMIC 0402 SMD Panasonic - ECGECJ-0EC1H220JArrow 53C7, C201, C214 CAP CER 47PF 50V NP0 0402 Johanson Dielectrics Inc500R07N470JV4TArrow 615 C10, C12, C15, C17, C19, C22, C24, C26, C28, C30, C32, C40, C42, C115, C222CAP .1UF 10V CERAMIC X5R 0402 Panasonic - ECGECJ-0EB1A104KArrow 73C11, C21, C34 CAP CERAMIC 10UF 10V 0603 X5R Panasonic - ECGECJ-1VB1A106MArrow 85C13, C35, C37, C39, C41 CAP CER 4.7UF 10V Y5V 0603 Murata Electronics North AmericaGRM188F51A475ZE20DArrow 912 C14, C16, C18, C20, C23, C25, C27, C29, C31, C33, C36, C38CAP CERAMIC 1UF 10V X5R 0402 Panasonic - ECGECJ-0EB1A105MArrow 101C44 CAP .01UF 25V CERAMIC X7R 0402 Panasonic - ECGECJ-0EB1E103KArrow 116C45, C100, C101, C202, C203, C208 CAP 100PF 50V CERAMIC 0402 SMD Panasonic - ECGECJ-0EC1H101JArrow 121C114 CAP CER 5.1PF 50V C0G 0402 Murata Electronics North AmericaGRM1555C1H5R1DZ01DArrow 135C116, C204, C212, C213, C215 CAP CER 33PF 25V S 0402 UHI Q Johanson Technology Inc250R07S330GV4TArrow 142C205, C207 CAP CER 3.6PF 50V S 0402 UHI Q Johanson Technology Inc500R07S3R6BV4TArrow 151C206 CAP CER 6.2PF 50V S 0402 UHI Q Johanson Technology Inc500R07S6R2CV4TArrow 162C209, C226 CAP 10000PF 16V CERAMIC 0402 SMD Panasonic - ECGECJ-0EB1C103KArrow 171C210 CAP 1000PF 25V CERAMIC 0402 SMD Panasonic - ECGECJ-0EB1E102KArrow 184C211, C223, C224, C225 CAP 27PF 50V CERAMIC 0402 SMD Panasonic - ECGECJ-0EC1H270JArrow 191C216 CAP CER 10PF 50V S 0402 UHI Q Johanson Technology Inc500R07S100JV4TArrow 201C217 CAP CER 5.6PF 50V S 0402 UHI Q Johanson Technology Inc500R07S5R6CV4TArrow 211C218 CAP CER 3.3PF 50V S 0402 UHI Q Johanson Technology Inc500R07S3R3BV4TArrow 221C219 CAP 1.5PF 50V CERAMIC 0402 SMD Panasonic - ECGECJ-0EC1H1R5CArrow 231C220 CAP CER 10UF 16V X5R 20% 0805 AVX Corporation0805YD106MAT2AArrow 241C227 CAP CER 15PF 50V S 0402 UHI Q Johanson Technology Inc500R07S150JV4TArrow 253D4, D5 DIODE SCHOTTKY 500MA 20V 0603 Comchip TechnologyCDBU0520Arrow 261D6 DIODE SW 250MA 80V 150W SOT-523 Micro Commercial CoMMBD4448HT-TPArrow 271FB200 FERRITE CHIP 30 OHM 2200MA 0402 Murata Electronics North AmericaBLM15PD300SN1DArrow 282FLT200, FLT201 FILTER SAW ISM 915MHZ RFID SMD Murata Electronics North AmericaSAFEB915MAL0F00R12Arrow 291J1 CONN JACK UMC VERTICLE SMDEmerson Network Power Connectivity Solutions 128-0711-201Arrow 301J3 CONN HEADER VERT SGL 5POS GOLD 3M961105-0711-201Molex 311J4 ITW PANCON - JSA41G0 - Jumper Switch ITW PANCONJSA41G0Arrow 323L1, L2, R23 RES 0.0 OHM 1/16W 5% 0402 SMD, RES 0.0 OHM 1/16W 0402 SMD YageoRC0402JR-070RLArrow 333L201, L202, L206 INDUCTOR 10NH 500MA 0402 Murata Electronics North AmericaLQW15AN10NJ00DArrow 341L203 INDUCTOR 11NH .64A WW 0402 Wurth Electronics Inc744765111AArrow 351L204 CER INDUCTOR 27NH 0402 Johanson Technology IncL-07C27NJV6TArrow 361L205 CER INDUCTOR 2.2NH 0402 Johanson Technology IncL-07C2N2SV6TArrow 371L207 INDUCTOR MULTILAYER 1.6NH 0402 TDK CorporationMLG1005S1N6SArrow 381L208 CER INDUCTOR 15NH 0402 Johanson Technology IncL-07C15NJV6TArrow 391LS1 BUZZER MAGNETIC 3V 5MM SMD PUI AudioSMT-0540-S-RPUI Audio 401MD1 MODULE GPS Wi2Wi W 2SG0006-006F-11W W Roy Zappia 411MD100 MOD 802.15.4/ZIGB 900MHZ RF OUT PanasonicENW-59611N3AArrow 421MP1RF Shield, 27.89 x 17.96 x 2.5 mm (48 MHz)GenesisGTI09-60347 Rev6Ken Erickson 431MP2RF Shield, 18.97 x 23.47 x 2.5 mm (900 MHz)GenesisGTI09-60348 Rev5Ken Erickson 441P2 CONN HEADER 3POS 1.25MM VERT SMD Molex Connector Corporation53398-0371Arrow 451P3 SAMTEC - FTSH-105-01-L-DV-K - .050 X .050 SAMTECFTSH-105-01-L-DV-KArrow 465P4, P5, P6, P7, P8 CONN HEADER 2POS .100 VERT GOLD Molex Connector Corporation22-29-2021Arrow 471P200 CONN RECEPT COAX SWITCHING SMT Hirose Electric Co LtdMS-147(06)Arrow 483Q1, Q2, Q3 MOSFET N-CH 20V 200MA 3-DFN Diodes IncDMN2005LP4K-7Arrow 491Q4 MOSFET P-CH 20V 1.5A 3-DFN Diodes IncDMP2104LP-7Arrow 501Q5 MOSFET P-CH 20V 3.7A SOT23-3 Vishay/SiliconixSI2323DS-T1-E3Arrow 511R2 RES 174K OHM 1/10W 1% 0402 SMD Panasonic - ECGERJ-2RKF1743XArrow 526R3, R42, R100, R101, R200, R202 RES 1.0K OHM 1/16W 5% 0402 SMD Rohm SemiconductorMCR01MZPJ102Arrow 533R7, R201, R203 RES 0.0 OHM 1/16W 5% 0402 SMD Rohm SemiconductorMCR01MZPJ000Arrow 541R8 RES 20K OHM 1/10W 5% 0402 SMD Panasonic - ECGERJ-2GEJ203XArrow 551R10 RES 2.10K OHM 1/10W 1% 0402 SMD Panasonic - ECGERJ-2RKF2101XArrow 561R11 RES 71.5K OHM 1/10W 1% 0402 SMD Panasonic - ECGERJ-2RKF7152XArrow 576R12, R25, R26, R27, R28, R30 RES 10K OHM 1/10W 5% 0402 SMD Panasonic - ECGERJ-2GEJ103XArrow 581R13 RESISTOR 1.0 OHM 1/10W 5% 0603 Panasonic - ECGERJ-3GEYJ1R0VArrow 592R14, R15 RES 27.0 OHM 1/10W 1% 0402 SMD Panasonic - ECGERJ-2RKF27R0XArrow 601R16 RES 100K OHM 1/10W 5% 0402 SMD Panasonic - ECGERJ-2GEJ104XArrow 611R17 RES 1.00M OHM 1/10W 1% 0402 SMD Panasonic - ECGERJ-2RKF1004XArrow 621R18 RES 3.74M OHM 1/16W 1% 0402 SMDVishay/DaleCRCW 04023M74FKED Arrow 633R20, R21, R22 RES 300 OHM 1/10W 5% 0402 SMD Panasonic - ECGERJ-2GEJ301XArrow 641R24 RES 249K OHM 1/10W 1% 0402 SMD Panasonic - ECGERJ-2RKF2493XArrow 651R31 RES 200 OHM 1/10W 5% 0402 SMD Panasonic - ECGERJ-2GEJ201XArrow 661R36 RES 82 OHM 1/10W 5% 0603 SMD Panasonic - ECGERJ-3GEYJ820VArrow 671R37 RES 59.0 OHM 1/10W 1% 0603 SMD Panasonic - ECGERJ-3EKF59R0VArrow 682R40, R41 RES 5.1K OHM 1/10W 5% 0402 SMD Panasonic - ECGERJ-2GEJ512XArrow 691R43 RES 270 OHM 1/10W 5% 0603 SMD Panasonic - ECGERJ-3GEYJ271VArrow 702R204, R205 RES 120 OHM 1/10W 5% 0402 SMD Panasonic - ECGERJ-2GEJ121XArrow 711SEN1 Omnidirectional Tilt and Vibration Sensor SignalQuest Precision MicrosensorsSQ-SEN-200SignalQuest 721SW1 SWITCH TACT SPST W/O GND SMD Omron Electronics Inc-ECB DivB3U-1000PArrow 731SW2 SWITCH LIGHT TOUCH …
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Report Number: 11CA14739-Indoor Repeater File Number: MC16660 Page 1 of 3 Model Number: Indoor Repeater Client Name: Elliott Tech, LLC (FCC ID: X9INCS03010910) Page 1 of 3 1.1 Test Conditions and Results – MAXIMUM PERMISSIBLE EXPOSURE Test Description Maximum Permissible Exposure calculation is performed to ensure that this device meets RF exposure limits for its intended environment. This device is required to meet the General Population/Uncontrolled exposure limits. Basic Standard 47 CFR Part 1.1307 Industry Canada IC Safety Code 6 FCC Limits for Occupational/Controlled Exposure Frequency Range (MHZ) Electric Field Strength (E) (V/M) Magnetic Field Strength (H) (A/M) Power Density (S) (MW/CM 2 ) Averaging Time E 2 , H 2 . or S (MINUTES) 0.3 – 3.0 614 1.63 (100)* 6 3.0 - 30 1824/F 4.89/F (900/F 2 )* 6 30 - 300 61.4 0.163 1.0 6 300 – 1500 - - F/300 6 1500 – 100,000 - - 5.0 6 FCC Limits for General Population/Uncontrolled Exposure Frequency Range (MHz) Electric Field Strength (E) (V/m) Magnetic Field Strength (H) (A/m) Power Density (S) (mw/cm 2 ) Averaging Time E 2 , H 2 . or S (minutes) 0.3 - 1.34 614 1.63 (100)* 30 1.34 - 30 824/F 2.19/F (180/F 2 )* 30 30 - 300 27.5 0.073 0.2 30 300 – 1500 - - F/1500 30 1500 – 100,000 - - 1.0 30 Figure 1 MPE - EUT Configuration Settings Calculation is performed from conducted power and antenna gain measurements documented within this report. Report Number: 11CA14739-Indoor Repeater File Number: MC16660 Page 2 of 3 Model Number: Indoor Repeater Client Name: Elliott Tech, LLC (FCC ID: X9INCS03010910) Page 2 of 3 Background: Per the following guidance from OET Bulletin 65 Supplement C required minimum spacings are provided to the professional installer. Transmitter or Device Type 18 Output 19 Applicable Methods to Ensure Compliance 20 Transmitters using indoor antennas that operate at 20 cm or more from nearby persons >2.5 W at 915 MHz If the MPE distance is greater than that required for normal operation of the device, operating instructions, warning instructions and/or warning labels may be used to ensure compliance by indicating the minimal separation distance to comply with MPE limits. If the antennas are professionally installed to ensure compliance, warning instructions and warning labels are not necessary. = 2.5 W at 915 MHz or =< 4 W at 2450 MHz Transmitters operating at 2.5 W EIRP (1.5 W ERP) or less at 915 MHz, or at 4 W EIRP (2.4 W ERP) or less at 2450 MHz, generally are not expected to exceed MPE limits when nearby persons are 20 cm or more from most antennas. Therefore, special instructions and warnings are normally not necessary to ensure compliance. Figure 2 Duty Cycle Correction Factor (100 ms) Mode ON Duration (ms) Total Duration (ms) Duty Cycle Correction (dB) )log(20 100 )( ms msTX Comments Short Pulse 14 101.4 Long Transmission 38 171.6 Total 52 273.0 -14.4 dB 52ms / 273ms = 19.0% Report Number: 11CA14739-Indoor Repeater File Number: MC16660 Page 3 of 3 Model Number: Indoor Repeater Client Name: Elliott Tech, LLC (FCC ID: X9INCS03010910) Page 3 of 3 Figure 3 MPE - Calculation MPE Calculation with highest EIRP: The highest conducted power was observed to be 617 mW and this measurement is used for the calculation. Limit is calculated at low channel (902.5 MHz) as exposure limit increases slightly with frequency in the operating band. Duty cycle is 14.4%. S = EIRP / (4 * Pi * R 2 ), Power Density = EIRP / (4 * Pi * R 2 ), where EIRP = Output Power * Antenna Gain Uncontrolled/General Exposure 0.617 Watt, 0.00 dBi antenna (Unity Gain), 20 cm spacing Operating Frequency 902.5 MHz Output Power (Peak) 0.617 Watts Antenna Gain 0.0 dB or (linear) 1.000(unitless) Separation Distance 0.2 m -or- 7.874inches Peak Power Density 1.227 W/m 2 - or - 0.1227mW/cm 2 Exposure % (over 6 min timespan for uncontrolled) 100% Transmit Duty Cycle (Peak-to-Average Ratio) 14.4% Average Power Density 0.1767 W/m 2 - or - 0.01767 mW/cm 2 Limit for Uncontrolled Exposure at Operating Frequency 6.01667 W/m 2 - or - 0.60167 mW/cm 2 The product was found to comply with this requirement.
Underwriters Laboratories Inc. A not-for-profit organization dedicated 12 Laboratory Dr. to public safety and committed to Research Triangle Park, NC 27709 quality service for over 100 years Tel: (919) 549-1400 Underwriters Laboratories Inc. 12 Laboratory Dr. Research Triangle Park, NC 27709 www.ul.com/emc (919) 549-1400 Report Number: R11CA14739-Indoor Repeater Project Number: 11CA14739 File Number: MC16660 Date: March 28, 2011 (Revised April 18, 2011) Model: Indoor Repeater (FCC ID: X9INCS03010910) Electromagnetic Compatibility Test Report For Elliott Tech LLC Raleigh, NC Copyright 2010 Underwriters Laboratories Inc. Underwriters Laboratories Inc. authorizes the above-named company to reproduce this Report provided it is reproduced in its entirety. Report Number: 11CA14739-Indoor Repeater File Number: MC16660 Page 2 of 59 Model Number: Indoor Repeater Client Name: Elliott Tech, LLC (FCC ID: X9INCS03010910) Page 2 of 59 Test Report Details Tests Performed By: Underwriters Laboratories Inc. 12 Laboratory Dr. Research Triangle Park, NC 27709 Tests Performed For: Elliott Tech, LLC 346 Raleigh Street Holly Springs, NC 27540 Applicant Contact: Krista L. Larrison Title: Project Administrator Phone: +1 (919) 342-6899 Fax: +1 (888) 631-1795 E-mail: [email protected] Test Report Date: March 28, 2010 Product Type: Unlicensed Transmitter Product standards FCC Part 15, Subpart C, 15.247 Model Number: Indoor Repeater Sample Serial Number: Unserialized, pre-production sample EUT Category: Low Power Transmitter 902-928 MHz Testing Start Date: March 7, 2011 Date Testing Complete: March 11, 2011 Overall Results: Compliant Underwriters Laboratories Inc. reports apply only to the specific samples tested under stated test conditions. All samples tested were in good operating condition throughout the entire test program. It is the manufacturer's responsibility to assure that additional production units of this model are manufactured with identical electrical and mechanical components. Underwriters Laboratories Inc. shall have no liability for any deductions, inferences or generalizations drawn by the client or others from Underwriters Laboratories Inc. issued reports. This report shall not be used to claim, constitute or imply product certification, approval, or endorsement by NVLAP, NIST, A2LA, or any agency of the US government. This report may contain test results that are not covered by the NVLAP or A2LA accreditation. The scope of accreditation is limited to the specific tests that are listed on the NVLAP and/or A2LA websites referenced at the end of this report. Report Number: 11CA14739-Indoor Repeater File Number: MC16660 Page 3 of 59 Model Number: Indoor Repeater Client Name: Elliott Tech, LLC (FCC ID: X9INCS03010910) Page 3 of 59 Report Directory 1.0 G E N E R A L - Product Description ................................................................................................................. 4 1.1 Equipment Description .................................................................................................................................. 4 1.2 Device Configuration During Test ................................................................................................................. 5 1.2.1 Equipment Used During Test: ................................................................................................................... 5 1.2.2 Input/Output Ports: .................................................................................................................................... 5 1.2.3 EUT Internal Operating Frequencies: ....................................................................................................... 6 1.2.4 Power Interface: ........................................................................................................................................ 6 1.3 Block Diagram: .............................................................................................................................................. 6 1.4 EUT Configurations ....................................................................................................................................... 6 1.5 EUT Operation Modes .................................................................................................................................. 6 1.6 Detailed Description of Operation during Test .............................................................................................. 7 1.7 Test Setup Photos ......................................................................................................................................... 7 2.0 Summary ........................................................................................................................................................... 8 2.1 Deviations from standard test methods ........................................................................................................ 8 2.2 Device Modifications Necessary for Compliance .......................................................................................... 8 2.3 Reference Standards .................................................................................................................................... 9 2.4 Results Summary .......................................................................................................................................... 9 3.0 Calibration of Equipment Used for Measurement ........................................................................................... 10 4.0 EMISSIONS TEST RESULTS ......................................................................................................................... 10 4.1 Test Conditions and Results – RADIATED SPURIOUS EMISSIONS ........................................................ 11 4.2 Test Conditions and Results – CONDUCTED SPURIOUS EMISSIONS ................................................... 21 4.…
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Test Setup Photos – Indoor Repeater (FCC ID: X9INCS03010910) Radiated Spurious Emissions/Unintentional Emissions – Upright (Worst‐case arrangement, from rear) Note: Polystyrene foam and duct tape is used for positioning only. Radiated Spurious Emissions/Unintentional Emissions – Upright (Worst‐case arrangement, from front) Worst‐case orientation is shown. Flat and Side orientations are similar. AC Conducted Emissions
HUB Indoor Repeater Outdoor Repeater PAS HUB Active GPS Antenna Switcher @ 550KHz Power Switch USB Connection Antenna Indoor Repeater Active GPS Antenna GPS Module – pre-FCC certified RF Module – pre-FCC certified RF Interconnect Digital Circuitry – can be shielded Radio Circuitry - Shielded Outdoor Repeater Antenna Connector Type - N GPS Module – pre-FCC certified RF Module – pre-FCC certified Digital Circuitry – can be shielded Radio Circuitry - Shie…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 902.5 MHz - 927.5 MHz | 640.00 mW |

HANDHELD SECURITY DEVICE
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
HANDHELD SECURITY DEVICE
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
HANDHELD SECURITY DEVICE
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter