
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Dekolink Wireless Ltd., 16 Bazel St., Qiryat-Arieh Petah-Tikva Israel, 49510 Tel: 972-3-9180-180; Fax: 972-3-9180190 Email: [email protected] INSTALLATION AND OPERATING INSTRUCTIONS FOR MW-IBDB 10W40 BOOSTER ; Web site: www.dekolink.com Rev 0 02/03 Page 1 of 9 Dekolink Wireless Ltd., 16 Bazel St., Qiryat-Arieh Petah-Tikva Israel, 49510 Tel: 972-3-9180-180; Fax: 972-3-9180190 Email: [email protected] TABLE OF CONTENTS PARAGRAPH PAGE No BOOSTER OVERVIEW 3 BLOCK DIAGRAM DESCRIPTION 3 BOOSTER OPERATION 4 AGC FUNCTION 4 AGC AND GAIN CONTROLS 5 ELECTRICAL SPECIFICATIONS 6 ENVIRONMENTAL CONDITIONS 7 MECHANICAL SPECIFICATIONS 7 RF EXPOSURE WARNING 7 DEKOLINK WIRELESS LIMITED WARRANTY 9 LIST OF DRAWINGS DRAWING PAGE No BOOSTER RF BLOCK DIAGRAM 4 AGC AMPLIFIER 5 MECHANICAL OUTLINE 8 ; Web site: www.dekolink.com Rev 0 02/03 Page 2 of 9 Dekolink Wireless Ltd., 16 Bazel St., Qiryat-Arieh Petah-Tikva Israel, 49510 Tel: 972-3-9180-180; Fax: 972-3-9180190 Email: [email protected] :BOOSTER OVERVIEW The Booster provides an exceptional performances to extend the coverage area of radio communications in buildings and RF shielded environments. The unit is based on a duplexed path configuration, having sharp out of band attenuation for improved isolation between the receiving and transmitting paths. :BLOCK DIAGRAM DESCRIPTION The Downlink path receives the RF signals from base station, amplifies them and transmits them for further distribution to the subscriber. The Uplink path receives the RF signals from the subscribers, amplifies them and transmits them to the base station. Two duplexers separate the signals to the proper amplifying path and isolate between the the two paths. For each path there is a 40dB gain and a 30 dB step attenuator to set the Booster gain. The power amplifiers in the Booster have an AGC option switch. When switched on, the AGC circuit limits the amplifier output power. The AGC circuit senses the output power and introduces more attenuation, when the output power exceeds the preset level. This way the gain of the amplifier is reduced, its output power is limited and the intermodulations products are kept below the desired level. The AGC amplifier has a Power LED lamp that illuminates when the output power has reached the preset power limit. ; Web site: www.dekolink.com Rev 0 02/03 Page 3 of 9 Dekolink Wireless Ltd., 16 Bazel St., Qiryat-Arieh Petah-Tikva Israel, 49510 Tel: 972-3-9180-180; Fax: 972-3-9180190 Email: [email protected] BOOSTER OPERATION The RF connection is made via two type “N” female connectors. The RF connector labeled “Base” is connected to the base station. The RF connection labeled “Mobile” is connected to the antenna of area to be covered by the Booster; such as inside the building. Duplexer Downlink Duplexer Uplink LNA Attenuator Power Monitor PA AGC Attenuator Power Monitor PA AGC IBDB-10W40 RF BLOCK DIAGRAM TO BASE TO MOBILE AGC FUNCTION The Booster has AGC function on both paths that serve to prevent the saturation of the power amplifier. Their amplifier has a directional coupler and a detector at the output of the high power amplifier to monitor the output power. When a high signal is received the automatic level control detects the amplitude and sends a feedback signal to a voltage variable attenuator which attenuates ; Web site: www.dekolink.com Rev 0 02/03 Page 4 of 9 Dekolink Wireless Ltd., 16 Bazel St., Qiryat-Arieh Petah-Tikva Israel, 49510 Tel: 972-3-9180-180; Fax: 972-3-9180190 Email: [email protected] the signal level so that the output power of the amplifier does not exceed the preset limit. The LED on the amplifier illuminates when the power output of the amplifier is within the set limit (either when the AGC is On or OFF). The switch on the RF amplifier enables the AGC function. If the AGC is disabled then the amplifier gives maximum gain . AGC AND GAIN CONTROLS The AGC ON/OFF and GAIN SETTING functions for the up link path are reached by opening the small slide door located on the Booster left side, adjacent to the BASE antenna port. For the down link path the door is on the right side adjacent to the MOBILE antenna port. RF Power LED : The LED illuminates when the output power exceeds the AGC Set . AGC ON / OFF Switch : When OFF the amplifier works with its highest gain (AGC Function OFF). When set to ON (AGC Function ON) the amplifier power output cannot exceed the set limit. Warning: T he AGC switch must be always ON in order to limit the spurious signals. Gain setting : By using the rotary knob, the attenuation can be adjusted in 2 dB steps. ; Web site: www.dekolink.com Rev 0 02/03 Page 5 of 9 Dekolink Wireless Ltd., 16 Bazel St., Qiryat-Arieh Petah-Tikva Israel, 49510 Tel: 972-3-9180-180; Fax: 972-3-9180190 Email: [email protected] :ELECTRICAL SPECIFICATIONS Frequency Range (MHz) See table Passband Gain @Min attenuation 40 dB nominal Passband Ripple +/- 1.5 dB typical Manual Attenuation Range 0 to 30 dB in 2 dB step Isolation between up and down link 70 dB min Noise Figure 6.0 dB max 3rd Order output Intercept point Downlink +50 dBm typical Uplink +43 dBm typical 3rd Order IMD Downlink @2 tone +27 dBm each Uplink @2 tone +20 dBm each 45 dBc typical 45 dBc typical AGC Factory Power Preset Downlink +30 dBm nom. Uplink +24 dBm nom. Impedance level 50 ohms V.S.W.R In/Out 1.5 : 1 max AGC Attenuation Range 25 dB typical AGC Selection By ON/OFF Switch AGC LED Indication LED turn ON when power reaches AGC Set Power Level. (both at On and Off Positions). Power Supply : 110/220V AC, 50-60 Hz System Frequency Range SYSTEM TYPE MODEL No DOWN- LINK UP- LINK E-SMR (iDEN) MW-IBDB-ESMR-10W40A 851-866 806-821 SMR - 900 MHz MW-IBDB-SMR-10W40A-PS9 935-941 896-902 ; Web site: www.dekolink.com Rev 0 02/03 Page 6 of 9 Dekolink Wireless Ltd., 16 Bazel St., Qiryat-Arieh Petah-Tikva Israel, 49510 Tel: 972-3-9180-180; Fax: 972-3-9180190 Email: [email protected] :L CONDITIONSENVIRONMENTA Operating temperature : - 10 ° C to + 50 ° C …
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13.06.04 FCC ID FOR IBDB ESMR 10W40
IBDB ESMR 10W40 CIRCUITS DOWNLINK AMP- DC SECTION Title SizeDocument NumberRev Date:Sheet of 300PA10504 1 Power Amplifier 10W A 22Monday, February 09, 2004 U8 RLT1054 FB/SD 1 OSC 7 VREF 6 CAP+ 2 CAP- 4 VOUT 5 GND 3 V+ 8 U5C LM124 10 9 8 4 11 SW2 SW SPDT U6 LM78L05 B 8 C 2 D 3 E 6 F 7 A 1 U5B LM124 5 6 7 4 11 U5A LM124 3 2 1 4 11 +12V U5D LM124 12 13 14 4 11 R2810kR271k R30 1k + C23 1uF C22 0.1uF TP1 ATT 1 TP3 -5V 1 TP2 DV 1 R321k R29NC R331k +12V +12V R362kR3710k K15k R35 3k +12V R391k R381k +12VR311k +5V R26 1k R25 30 R34 4k + C24 470uF C31 1uF C28 0.1uF C29 1uF +12V TP5 +15V 1 TP4 +5V 1 C27 1uF R40 80 R41 80 +12V +5V +5V + C32 33uF + C25 33uF -5V + C26 33uF +5V U7 LM7812/TO VIN 1 GND 3 VOUT 2 TP6 +12V 1 D3 LED D2 DIODE +15V + C30 470pF DC VOLTAGE- 14 V CURRENT- 3A DOWNLINK AMP FR SECTION Title SizeDocument NumberRev Date:Sheet of 300PA10504 1 POWER AMPLIFIER 10W A 12Monday, February 09, 2004 C15 0.1uF L5 33nH U3 FLL120 31 4 2 L3 33nH C9 0.1uF C2 22pF R4 51 L1 33nH C5 22pF U4 COUPLER B 1 C 3 D 4 A 2 R8 270 C4 22pF R6 68R5 100 R9 100 C14 51pF R15 80 C7 0.1uF R10 1k L2 33nH U2 SHF-0289 31 4 2 R24 0 R17 0 R16 0 C21 0.1uF C10 0.1uF Output Input C12 0.1uF C19 0.1uF R14 80 R18 80 C11 0.1uF C8 0.1uF 0.1uF R19 80 C18 0.1uF L4 33nH R11 200 R7 270 R20 2 R22 2 R21 2 R23 2 U1 SGA-6489 31 4 2 R13 100 R12 750 C16 1uF SW1 AT-108 1 2 3 4 8 7 6 5 C1 22pF C6 0.1uF D1 Detector C13 0.1uF C20 0.1uF R3 Opt R1 0 R2 Opt C3 22pF -5V -5V DV+12V ATT+5V UPLINK AMPLIFIER CIRCUIT +12V +5V +15V 300DA48004 4 Amp Circuit 1W - 45 dB Gain +15V A 11Thursday, August 02, 2001 Title SizeDocument NumberRev Date:Sheet of +12V +12V +15V +12V +5V +12V +5V +12V +5V +12V +12V K2 100 U1B LM124 5 6 7 4 11 U7 LM78L05 8 2 3 6 7 1 B C D E F A SW1 SW SPDT U1C LM124 10 9 8 4 11 U1A LM124 3 2 1 4 11 C16 51pF D3 Detector L2 33nH R310kR21k R1 1k + C15 1uF C1 0.1uF R41k R51000k R296k R72kR610k K15k U4 SGA-6486 31 4 2 L1 33nH R14 270 R28 3k C9 0.1uF R13 270 C12 51pF R11 160 J2 CONN D4 LED J1 CONN C3 0.1uF C4 1uF C23 1uF D1 DIODE D2 DIODE R251k R81k R27 0 R21 50 C14 0.1uF U1D LM124 12 13 14 4 11 U6 1 3 4710 11 13 59 A C DG J K L EI U8 COUPLER 1 34 2 B CD A R301k U2 LM7812/TO 1 3 2 VIN GND VOUT R18 1k R20 100 R19 30 C11 1uF C5 51pF + C17 100uF + C19 100uF R26 4k + C18 100uF C6 51pF C7 51pF C2 1uF C16 51pF R12 0 R10 160 C13 1uF R9100k U3 AT-108 1 2 3 4 8 7 6 5 + C21 33uF R24 170 R23 170 R22 0 R17 12 Q-BIT QBH-9077 DC VOLTAGE- 28 V CURRENT – 0.7 A PRAMPLIFIER STEP ATTENUATOR(UPLINK OR DOWNLINK) 1/ 300HA65004 Preamplif ier Step Attenuator A 11Tuesday , August 01, 2000 Tit le SizeDocument NumberRev Date:Sheet of U2 RF AMP 31 4 2 U5 UA7812KC 13 2 INOUT GN D R13 240 D1 1N5376D S1 4 Bit Switch 1 2 3 5 4 6 A8 C2 A2 C1 A4 A1 C1 51pF C2 51pF + C114.7uF R2 68 R3 100 R1 100 C4 51pF L2 0.1uH L3 22nH R8 270 R7 270 R9 270 R10270 R15 10K R11 10KR12 10K R14 10K C7 0.1uF C8 0.1uF U1 RF AMP31 4 2 C10 0.1uF R4 10K C13 1pF AA264 12345678 910111213141516 Gn d Gn d V1V2V3V4Gn d Gn d O u t Gn d Gn d Gn d Gn d Gn d Gn d In + C9 .1uF U4 RF AMP 31 4 2 C5 51pF C6 51pF R5 270 R6 270 L1 0.1uH Input Output U3 1/4 W 1/4 W 4 W 1/4 W T4 T2 T1 T3 +5V+5V +5V +5V T2 T4 T1 T3 +5V +15V+12V +12V +12V +12V DC VOLTAGE – 14 V CURRENT – 0.2 A
Dekolink WIRELESS Ltd. 16 Bazel St. Qiryat-Arieh Petah-Tikva, Israel, 49510 Tel- 972-3-9180-180 Fax-972-3-190-9180 e-mail: [email protected] web www.dekolink.com 30.06.04 AGC tune up procedure for CBDA-ESMR-10W80(40) 1. Required test equipment: a. Spectrum Analyzer – HP 8563E or equivalent b. Signal Generator - Agilent E4432B or equivalent c. Power Meter – HP E4419B or equivalent 2. Test setup EUT SIGNAL GENERATOR DIRECTIONAL COUPLER POWER METER AC BASE MOBILE SPECTRUM ANALYZER -30dB 3. Downlink AGC tuning: a. Set downlink GAIN to maximum (ATTN. at position “0”). b. Set downlink AGC switch to OFF. c. Turn AC power ON. d. Set signal generator to (-)50 dBm at 858 MHz with iDEN modulated carrier. e. Increase input signal to get (+)33 dBm at output. f. Set downlink AGC switch ON. g. Adjust AGC trimmer to get (+)30 dBm reading on the power meter. h. Decrease input power by 3 dB, then increase the input power by 15dB in 1dB steps. Make sure that output power is within ± 1dB of the nominal value. i. Turn power OFF Page 1 of 2 AGC tune up procedure for CBDA Dekolink WIRELESS Ltd. 16 Bazel St. Qiryat-Arieh Petah-Tikva, Israel, 49510 Tel- 972-3-9180-180 Fax-972-3-190-9180 e-mail: [email protected] web www.dekolink.com 4. Uplink AGC tuning: a. Exchange MOBILE and BASE ports connections. b. Set uplink GAIN to maximum (ATTN. at position “0”). c. Set uplink AGC switch to OFF. d. Turn AC power ON. e. Set signal generator to (-)60 dBm at 813 MHz with iDEN modulated carrier. f. Increase input signal to get (+)27 dBm at output. g. Set Uplink AGC switch ON. h. Adjust AGC trimmer to get (+)24 dBm reading on the power meter. i. Decrease input power by 3 dB, then increase the input power by 20 dB in 1dB steps. Make sure that output power is within ±1dB of the nominal value. j. Turn power OFF. Page 2 of 2 AGC tune up procedure for CBDA
Prediction of MPE limit at a given distance Base,Uplink prediction at 20cm. Equation from page 18 of OET Bulletin 65, Edition 97-01where: S = power density P = power input to the antennaG = power gain of the antenna in the direction of interest relative to an isotropic radiatorR = distance to the center of radiation of the antenna Maximum peak output power at antenna input terminal: 24.00 (dBm) Maximum peak output power at antenna input terminal: 251.1886432 (mW) Antenna gain(typical): 10 (dBi) Maximum antenna gain: 10 (numeric) Prediction distance: 20 (cm) Prediction frequency: 806-821 (MHz) MPE limit for uncontrolled exposure at prediction frequency: 0.6 (mW/cm^2) Power density at prediction frequency: 0.499724 (mW/cm^2) Maximum allowable antenna gain: 10.79421106 (dBi) Margin of Compliance: 0.794211057 2 4 R PG S π =
Prediction of MPE limit at a given distance Mobile, Downlink prediction at 20cm. Equation from page 18 of OET Bulletin 65, Edition 97-01where: S = power density P = power input to the antennaG = power gain of the antenna in the direction of interest relative to an isotropic radiatorR = distance to the center of radiation of the antenna Maximum peak output power at antenna input terminal: 30.00 (dBm) Maximum peak output power at antenna input terminal: 1000 (mW) Antenna gain(typical): 2 (dBi) Maximum antenna gain: 1.584893192 (numeric) Prediction distance: 20 (cm) Prediction frequency: 851-866 (MHz) MPE limit for uncontrolled exposure at prediction frequency: 0.6 (mW/cm^2) Power density at prediction frequency: 0.315304 (mW/cm^2) Maximum allowable antenna gain: 4.794211057 (dBi) Margin of Compliance: 2.794211057 2 4 R PG S π =
13.06.04 IBDB-ESMR-10W40 Frequency response of duplexers. iDEN Duplexer - UL Channel iDEN Duplexer - DL Channel
Master: Generic FCC Date: October 16, 2001 Test Report: 4W06835 Applicant: Dekolink Wireless LTD. 16 Bazel St. Qiryat-Arieh Petah-Tikva, 49510 Israel Equipment Under Test: MW-IBDB-ESMR 10W40 (EUT) Indoor Bi-Directional Amplifier FCC ID: OIWIBDBESMR10W40 In Accordance With: FCC Part 90 Tested By: Nemko Canada Inc. 303 River Road, R.R. 5 Ottawa, Ontario K1V 1H2 Authorized By: Kevin Carr, EMC/EMI/Wireless Specialist. Date: 22 June 2004 Total Number of Pages: 21 Nemko Canada Inc. FCC Part 90 PROJECT NO.:4W06835 EQUIPMENT: MW-IBDB-ESMR 10W40 Page 2 of 21 Table of Contents Section 1. Summary of Test Results ...................................................................................3 Section 2. General Equipment Specification......................................................................5 Section 3. RF Power Output ................................................................................................6 Section 4. Occupied Bandwidth ..........................................................................................7 Section 5. Spurious Emissions at Antenna Terminals ....................................................10 Section 6. Field Strength of Spurious Emissions .............................................................14 Section 7. Out of Band Rejection .......................................................................................16 Section 8. Block Diagrams ..................................................................................................18 Section 9. Test Equipment List ..........................................................................................21 Nemko Canada Inc. FCC Part 90 PROJECT NO.:4W06835 EQUIPMENT: MW-IBDB-ESMR 10W40 Page 3 of 21 Section 1. Summary of Test Results General All measurements are traceable to national standards. These tests were conducted on a sample of the equipment for the purpose of demonstrating compliance with FCC Part 90. THIS TEST REPORT RELATES ONLY TO THE ITEM(S) TESTED. THE FOLLOWING DEVIATIONS FROM, ADDITIONS TO, OR EXCLUSIONS FROM THE TEST SPECIFICATIONS HAVE BEEN MADE. TESTED BY: ______________________________ DATE: 22 June 2004 Glen Westwell, Wireless Specialist. Nemko Canada Inc. authorizes the above named company to reproduce this report provided it is reproduced in its entirety and for use by the company’s employees only. Any use which a third party makes of this report, or any reliance on or decisions to be made based on it, are the responsibility of such third parties. Nemko Canada Inc. accepts no responsibility for damages, if any, suffered by any third party as a result of decisions made or actions based on this report. This report applies only to the items tested. Nemko Canada Inc. FCC Part 90 PROJECT NO.:4W06835 EQUIPMENT: MW-IBDB-ESMR 10W40 Page 4 of 21 Summary Of Test Data Name Of Test Para. No. Result RF Power Output 2.1046 Complied Modulation Characteristics 2.1047 N/A(1) Occupied Bandwidth 2.1049 Complied Spurious Emissions at Antenna Terminals 2.1051 Complied Field Strength of Spurious Emissions 2.1053 Complied Out of Band Rejection Complied Frequency Stability 2.1055 N/A(2) Note: (1) This device does not modulate or demodulated the carrier and therefore does not contain any modulation circuitry. (2) This device contains no frequency translation capabilities. Indoor Temperature: 22.9°C Humidity: 36% Outdoor Temperature: 23°C Humidity: 44% Nemko Canada Inc. FCC Part 90 PROJECT NO.:4W06835 EQUIPMENT: MW-IBDB-ESMR 10W40 Page 5 of 21 Section 2. General Equipment Specification Manufacturer: Dekolink Wireless LTD. Model No.: MW-IBDB-ESMR-10W40 Serial No.: 04057581 Date Received In Laboratory: 16 June 2004 Nemko Identification No.: #1 Supply Input Voltage: 110/220 VAC Frequency Range: Downlink: 851-866MHz Uplink: 806-821MHz Rated Output Power: Downlink: 1.0Watts, 30dBm Uplink: 0.25Watts, 24dBm Emission Designator G7W (iDen) Nemko Canada Inc. FCC Part 90 PROJECT NO.:4W06835 EQUIPMENT: MW-IBDB-ESMR 10W40 Page 6 of 21 Section 3. RF Power Output Para. No.: 2.1046 Test Performed By: Glen Westwell Date of Test: 18 June 2004 Minimum Standard: 90.205 Test Results: Complied. Measurement Data: The maximum RF output power is within +1dB of the manufacturer’s rating. The Composite RF output power is de-rated according to the number of channels via AGC and is equal to Pmax –10LogN. Pmax = Maximum Composite RF Output Power N = Number Of Channels The power levels were measured at maximum input drive and gain. This device uses AGC to prevent saturation or over-modulation. Downlink Channel Frequency (MHZ) Measured Power (dBm) Rated Power (dBm) 851 29.0 30.0 858 30.0 30.0 866 29.3 30.0 Uplink Channel Frequency (MHZ) Measured Power (dBm) Rated Power (dBm) 806 23.1 24.0 813 24.0 24.0 821 23.2 24.0 Nemko Canada Inc. FCC Part 90 PROJECT NO.:4W06835 EQUIPMENT: MW-IBDB-ESMR 10W40 Page 7 of 21 Section 4. Occupied Bandwidth Para. No.: 2.1049 Test Performed By: Glen Westwell Date of Test: 18 June 2004 Minimum Standard: 90.209 Test Results: Complies. Measurement Data: See attached graphs. The occupied bandwidth was measured by comparison of input from the signal generator to the output signal from the amplifier. This was done in order to determine if there was any degradation to the output signal due to the amplification and conversion through the repeater. Nemko Canada Inc. FCC Part 90 PROJECT NO.:4W06835 EQUIPMENT: MW-IBDB-ESMR 10W40 Page 8 of 21 Downlink, Input vs Output Ref 40 dBm OBW,D/L,Output * * Offset 40 dB 1 RM VIEW A LVL Ref 0 dBm OBW,D/L,Input * * 1 AP VIEW B Att 25 dB RBW 300 Hz VBW 3 kHz SWT 560 ms Att 25 dB RBW 300 Hz VBW 3 kHz SWT 560 ms Center 860 MHzSpan 50 kHz5 kHz/ Center 860 MHzSpan 50 kHz5 kHz/ -50 -40 -30 -20 -10 0 10 20 30 -90 -80 -70 -60 -50 -40 -30 -20 -10 Date: 17.JUN.2004 04:11:34 Nemko Canada Inc. FCC Part 90 PROJECT NO.:4W06835 EQUIPMENT: MW-IBDB-ESMR 10W40 Page 9 of 21 Uplink, Input vs Output Ref 30 dBm OBW,U/L,Output* * Offset 40 dB 1 RM VIEW A LVL Ref -10 dBm OBW,U/L,…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 2 | 90.21 | 851 MHz - 866 MHz | 1 W | GXW | Amp |

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Equipment Class
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