
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
1/1 CONFIDENTIALITY REQUEST FOR FCCID: OIWCCSR24891W70 Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 Gentlemen: This letter is to comply with Section 0.457(d)(2)(i) pertaining to confidential material. Dekolink Wireless would like the following documents regarding this submission for FCC ID: OIWCCSR24891W70 will to be kept confidential. 1. DEKO 2489 PRODUCT manuel 2. DEKO2489 Schematics. 3. Block Diagram The above material contains trade secrets or technical data, which would customarily be guarded from competitors. We do not want these documents to be accessible to the general public. Sincerely, Company Name: Dekolink Wireless. Technical Contact: Shmuel Bleichman Phone: +972-52-561-7502 Fax : +972 3 918-0190 Email: Email:[email protected] Address: 12 Bazel St Petach-Tikva Israel, 49001
1/1 CONFIDENTIALITY REQUEST FOR FCCID: OIWCCSR24891W70 Attn: Reviewing Engineer Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 To Whom It May Concern: This letter serves as an official request for confidentiality under FCC Rule Section 0.459. We have requested that the schematic diagrams, block diagrams, user manual and photos of circuits and amplifiers required to be submitted with this application be withheld from public review. The documents are company proprietary information that could never get into the possession of our competition. Please contact me if there is any information you may need. Sincerely, February 13, 2007 David Levy, Technical Support Manager Dekolink Wireless Ltd. 16 Bazel St. Qiryat-Arieh Petah-Tikva, Israel, 49510 Tel- 972-3-9180179 Fax-972-3-9180190 Petach-Tikva Israel, 49001
EXTERNAL pictures FCCID: OIWCCSR24891W70
R&D Group DEKO2489I Dual band Mini Repeater PDR Revision: A Release Date: 07/11/05 Drafted by: Yury A. Page 1 of 10 REVISIONS Rev ECN No. Date Name Signature A Released 07.11.05 Yury.A D D u u a a l l - - B B a a n n d d M M i i n n i i R R e e p p e e a a t t e e r r 8 8 0 0 0 0 / / 9 9 0 0 0 0 M M H H z z These drawings and specifications are the property of Dekolink Wireless Ltd. and shall not be reproduced or used without written permission from Dekolink Wireless Ltd. DATE NAME SIGN Engineer 07.11.05Yury. A P.Manager Amir. M R&D Manager Alex. B Operation Description File: Doc No : 300QB60010 Size: A4 PAGE 0 OF 7 R&D Group DEKO2489I Dual band Mini Repeater PDR Revision: A Release Date: 07/11/05 Drafted by: Yury A. Page 2 of 10 1 Introduction 1.1 Glossary For the purposes of the present document, the following abbreviations apply: DL Down Link UL Up Link HW Hardware SW Software LNA Low Noise Amplifier PRE Pre Power Amplifier CHN Channeler PAmp Power Amplifier PS Power Supply UUT Unit Under Test AGC Automatic Gain Control MS Mobile Station BTS Base Transceiver Station EVM Error Vector Magnitud RF Radio Frequency UARFCN UTRA Absolute Radio Frequency Channel Number UMTS Universal Mobile Telecommunication System UTRA Universal Terrestrial Radio Access CW Continuous Wave (un-modulated signal) CDMA Code Division Multiple Access GSM Global System for mobile communications SMR Security Mobile Radio NC Normal Conditions EX Extreme Conditions CFE Compact Front End CFED Dual band Compact Front End R&D Group DEKO2489I Dual band Mini Repeater PDR Revision: A Release Date: 07/11/05 Drafted by: Yury A. Page 3 of 10 2 General Description The Dual band mini repeater assembly provides an exceptional repeater to extend the coverage area of radio communications in buildings and in RF shadowed area. Dekolink’s new dual band programmable band selective RF repeaters, employ an advanced up/down conversion Intermediate Frequency (IF) Surface Acoustic Waves (SAW) filtering architecture. This new technology offers distinct advantages over conventional band selective repeaters, when high adjacent selectivity and spectrum purity is required. The use of the technology is required to meet iDEN standard requirements. Features such as high linearity power amplifiers are contributing for the overall improved system linearity performances. Special design of the wide band power amplifiers and quad duplexer in each side of the repeater enable operation in both 800 and 900 bands of SMR. Figure 1: Dual band Mini Repeater Operating band is Rebandable at 800MHz, allowing for future customer needs, even after field installation has been taken place. The repeaters also can be used for multi operator’s applications. If required, Dekolink can provide Operation and Maintenance System (RMS), which provides local or remote monitoring and control features. • Covers both SMR800 & SMR900 in one product. • Rebandable 800MHz band allowing 18/7MHz. • Very high out of band rejection. • Exceptionally high linear operation. • Smart ALC, for network transparent. • Remote or local access for control. • Cost effective. • Compact design. • Ideal for in-building coverage solutions. • Wall mounted easy installation. • Relatively small size and light weight. R&D Group DEKO2489I Dual band Mini Repeater PDR Revision: A Release Date: 07/11/05 Drafted by: Yury A. Page 4 of 10 The unit will be based on Mini-Repeater structure includes modified Up/Down converter with active SAW switcher and a new CFED unit. The CFED unit will be based on a quadra-plexer configuration, which combines 800 MHz and 900 MHz bands. Together with SAW diplexers consist of sharp out of band attenuation SAW filters to achieve better sensitivity and isolation between the receiving and transmitting paths. CFED will consist of 4 LNA and 4 PA routes with an ability between band gain offset calibration. Using the Up/Down converter each path is down-converted to an Intermediate Frequency (IF) and will filtered with use of SAW switcher which is configured as Rebandable SAW filter to block out the adjacent band power and to ensure out of band gain according to the iDEN standard, using up/down conversion architecture. The power amplifiers have power-monitoring circuits (Automatic Level Control - ALC) for output power limitation. The ALC circuit will be based on Dekolink’s Smart ALC algorithm for gain control. The downlink power amplifier will include Dekolink’s Smart ALC power-monitoring circuits (patent pending) to prevent “cell coverage shrinking” and to limit the output power, while maintaining the power amplifier linearity. The Smart ALC ensures network transparency, auto gain adjustment as well as prevention of oscillations in case of improper installation. The Smart ALC automatically maintains downlink and uplink gain balancing. The repeater will be housed in a decorative metal moulded enclosure to fit for wall mount as well for easy installation. The enclosure is suitable for indoor environment. Figure 2: Mini Repeater RF routes R&D Group DEKO2489I Dual band Mini Repeater PDR Revision: A Release Date: 07/11/05 Drafted by: Yury A. Page 5 of 10 3 Design Considerations and Operation Description The RF routes of UL and DL are quite similar except for customer defined between bands gain offset. Figure 3: Mini Repeater detailed preliminary Block diagram 3.1 Compact Front (CFED_LNA): At the input we use a quadra-plexer to separate the bands, to isolate the out of band spectrum to prevent feedbacks and oscillations. Each band RX amplified with separate 1dB NF LNA. The LNA outputs are combined via SAW diplexer which was designed especially for the dual band products. Attenuation pads will be placed immediately after the LNA to provide fine tuning of LNA gain. 3.2 Up/Down converter The Up/Down converter provides gain of up to 45dB (5dB temperature compensation spare). By using up/down conversion architecture the bands are converted separately to IF (Intermediate frequency), filtered to provid…
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18.01.07 Prediction of MPE limit at a given distance Mini-Repeater DEKO 2489 fccid: OIWCCSR24891W70 with 2 dBi Omni-directional Antenna (DownLink) Equation from page 18 of OET Bulletin 65, Edition 97-01 where: P = power input to the antenna S = power density G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Maximum peak output power at antenna input terminal: 24.10 (dBm) Maximum peak output power at antenna input terminal: 257.0395783 (mW) Antenna gain(typical): 2 (dBi) Maximum antenna gain: 1.584893192 (numeric) Prediction distance: 20 (cm) Prediction frequency: 860 (MHz) MPE limit for uncontrolled exposure at prediction frequency: 0.573333333 (mW/cm^2) Power density at prediction frequency: 0.081046 (mW/cm^2) Maximum allowable antenna gain: 10.49677048 (dBi) Margin of Compliance: 8.496770475 (dB)
18.01.07 Prediction of MPE limit at a given distance Mini-Repeater DEKO 2489 fccid: OIWCCSR24891W70 with 13 dBi Directional Antenna (UpLink) Equation from page 18 of OET Bulletin 65, Edition 97-01 where: P = power input to the antenna S = power density G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Maximum peak output power at antenna input terminal: 24.20 (dBm) Maximum peak output power at antenna input terminal: 263.0267992 (mW) Antenna gain(typical): 13 (dBi) Maximum antenna gain: 19.95262315 (numeric) Prediction distance: 30 (cm) Prediction frequency: 815 (MHz) MPE limit for uncontrolled exposure at prediction frequency: 0.543333333 (mW/cm^2) Power density at prediction frequency: 0.464032 (mW/cm^2) Maximum allowable antenna gain: 13.68518723 (dBi) Margin of Compliance: 0.685187231 (dB)
Deko 2489 Mini REPEATER Dekolink Test Report REV ∆ Description Sheet Effected Date Drawn Checked A 18/1/07 S.Cohen S.Cohen B 01/02/2007 S.Cohen S.Cohen 1/192 EMC/30020FC07063 EMC Laboratory Manufactured by dekolink Ltd. EMC Test Report-corrected According FCC Part 15 and Part 90 Requirements January 07 Function/Title Name Signature Date Prepared by Test Engineer S.Kozliner 01/02/2007 Checked by Test Engineer S.Cohen 01/02/2007 Approved by EMC Lab. Manager S.Cohen 01/02/2007 Deko 2489 Mini REPEATER Dekolink Test Report Table of Contents Para Page 1 GENERAL INFORMATION.......................................................................................................................3 2 TEST SUMMARY AND SIGNATURES.....................................................................................................4 3 EUT DESCRIPTION....................................................................................................................................6 4 UNINTENTIONAL RADIATED EMISSION TEST ACCORDING TO 15.109.....................................8 5 OUTPUT POWER OF CARRIER 90.205................................................................................................18 6 CONDUCTED SPURIOUS EMISSION MEASUREMENTS ACCORDING TO 90.210....................32 7 RADIATED EMISSION MEASUREMENTS ACCORDING TO 90.210..............................................73 8 FREQUENCY STABILITY TEST ACCORDING TO 90.213..............................................................174 9 RF OCCUPIED BANDWIDTH...............................................................................................................176 10 EMISSION LIMIT ACCORDING 90.669 REQUIREMENTS........................................................185 11 RF OUT OF BAND REJECTION 90.691...........................................................................................186 12 CORRECTION FACTORS..................................................................................................................190 13 ABBREVIATIONS AND ACRONYMS..............................................................................................192 2/192 EMC/30020FC07063 Deko 2489 Mini REPEATER Dekolink Test Report 1 GENERAL Information a. Description of equipment under test Equipment under Test: DEKO 2489 FCCID: OIWCCSR2489IW70 Manufacturer: DECOLINK WIRELESS . Serial Numbers: 002 Mode of Operation: TX MODE Operating frequency: Up-link: 806-824MHz 896-901MHz Down-link: 851-869MHz 935-940MHz Year of Manufacture: 2006 b. Applicant Information: Applicant: DECOLINK WIRELESS Ltd. Applicant Address: 16 Bazel St. Petach Tikva 49510 ISRAEL Telephone: +972-3-9180180 FAX: +972-3-9180190 The testing was observed by: Mr. Shmuel Bliechman Following applicant's personnel: c. Test Performance: Date of reception for testing: 1.1.07 Dates of testing 3.1.07-9.1.07 Test Laboratory Location TADIRAN EMC LAB, Hashoftim 26 Holon 58102 ISRAEL Tel: 972-3-5574476 Fax: 972-3- 5575320 Applicable EMC Specification: Federal Communication Commission (FCC), Code of Federal Regulations 47,FCC, Part 15: Radio Frequency Devices, Sections 15.109, FCC, Part 90: sections 90.205, 90.209, 90.210, 90.213 3/192 EMC/30020FC07063 Deko 2489 Mini REPEATER Dekolink Test Report 2 Test Summary and Signatures. TADIRAN EMC Laboratory has completed testing of E.U.T in accordance with the requirements of the FCC part 15 and FCC part 90 The E.U.T was found to comply with the requirements of the FCC Part 15.109 Regulations given below Test Description Specificati on Referen ce Date of Testing Test Report Paragraph Complianc e PASS/FAI L Unintentional radiated emission 15.109 02/01/07 9 PASS The E.U.T was found to comply with the requirements of the FCC Part 90 Regulations given below Clause Test Method Test Description Required Result 90.205 2.1046 Output power Y PASS 90.210 2.1051 Conducted spurious emissions Y PASS 90.210 2.1051 Radiated spurious emissions Y PASS 90.213 2.1055 Frequency stability Y PASS 90.214 Transient Behavior N N/A 90.219 Use of boosters Y PASS 2-11-04/EAB/RF 2.1049 Occupied bandwidth Y PASS 2-11-04/EAB/RF Out of band rejection Y PASS 4/192 EMC/30020FC07063 Deko 2489 Mini REPEATER Dekolink Test Report a. Test performed by: Mr. S. Kozliner Test Engineer b. Test Report prepared by: Mr. Samuel Cohen EMC Lab. Manager c. Test Report Approved by: Mr. Samuel Cohen EMC Lab. Manager 5/192 EMC/30020FC07063 Deko 2489 Mini REPEATER Dekolink Test Report 3 EUT Description The Deko2489 Mini-Repeater is a dual-band RF repeater for both SMR 800 MHz and SMR 900 MHz bands. This repeater is band selectable in the 800 MHz range [18 MHz or 7 MHz bandwidth] and fixed band in the 900 MHz range [5 MHz bandwidth]. These capabilities make the Mini-Repeater fully-rebandable ready. a. E.U.T Normal Operational Configuration EUT Normal operational configuration is shown in figure bellow b. E.U.T Operation description (1) Operating Frequency: • Downlink: 851-869 MHz 935-940MHz • Uplink: 806-824 MHz 896-901MHz (2) Emission Designator: GXW (3) Rated Power: 24.0 dBm (4) Measured Power: 24.2 dBm (5) Modulation: iDEN (16-QAM, Data Rate: 64 kbps) (6) Power Source: 100 to 240 VAC 6/192 EMC/30020FC07063 Deko 2489 Mini REPEATER Dekolink Test Report c. E.U.T Test Configuration EUT test configuration is shown in figure bellow EUT d. E.U.T Mode of Operation description (1) Operating transmit Frequencies: • Downlink: 851-869 MHz 935-940MHz • Uplink: 806-824 MHz 896-901MHz (2) The EUT was operated with 50Ω termination or load attenuator at it’s ports according the test requirements (3) The EUT was fed with iDEN modulated or CW RF signal at a level required to normal operation or max level according to test requirements 7/192 EMC/30020FC07063 Deko 2489 Mini REPEATER Dekolink Test Report 4 Unintentional radiated emission test according to 15.109 E.U.T: DEKO2489 S/N: 002 Test Method: ANSI 63.4 Date: 04/01/07 Relative Humidity: 25% Ambient Temperature: 23c Air Pressure: 1047hpa Testing Engineer: Shimon Kozliner…
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Deko 2489 Mini REPEATER Dekolink Test Report 7 Radiated Emission Measurements According to 90.210 E.U.T: DEKO2489 S/N: 002 Test Method: ANSI 63.4 Date: January 07, 2007 Relative Humidity: 26% Ambient Temperature: 22c Air Pressure: 1047hpa Test Setup: Figure 13.e Testing Engineer: Shimon Kozliner Date 7.1.07 a. Test Results Summary & Conclusions The E.U.T was found in compliance effective radiated power test b. Limits of radiated emission The test unit shall meet the limits of Table 13.b Mask Transmit Freq, (MHz) Limit (dbc)ERP (dbm) Equivalent field strength limit 3m dbμV/m H 0.009 – 10 th Harmonics 43+10logP -13 84 G 0.009 – 10 th Harmonics 43+10logP -13 84 J 0.009 – 10 th Harmonics 50+10logP -20 77.4 Table 13.b Limits For radiated emission *Equivalent field strength limit was calculated as follows: 64.130 1 / xx d PE W wV = P=ERP in W E=field strength in V/m 1.64=gain of ideal dipole D=test distance in meter 73/192 EMC/30020FC07063 Deko 2489 Mini REPEATER Dekolink Test Report c. Test Results d. Test Results for radiated emission structure shows max radiated field more than 20dB below requirement level therefore no ERP measurement is required. Table 13.b Results for Radiated Emission Structure Channels Band Freq. (MHz) Transmit Freq (MHz) Position Freq. Range (MHz) Plot No. Pass/Fail Hor Rad Emis Struc/ 1 Pass Vert 0.009 – 0.15 Rad Emis Struc/ 2 Pass Hor Rad Emis Struc/ 3 Pass Vert 0.15 -30 Rad Emis Struc/ 4 Pass 30 – 1,000 Rad Emis Struc/ 5 Pass 1,000 – 2,900 Rad Emis Struc/ 6 Pass 806 Vert 2,900 – 10,000 Rad Emis Struc/ 7 Pass Hor Rad Emis Struc/ 8 Pass Vert 0.009 – 0.15 Rad Emis Struc/ 9 Pass Hor Rad Emis Struc/ 10 Pass Vert 0.15 -30 Rad Emis Struc/ 11 Pass 30 – 1,000 Rad Emis Struc/ 12 Pass 1,000 – 2,900 Rad Emis Struc/ 13 Pass 815 Vert 2,900 – 10,000 Rad Emis Struc/ 14 Pass Hor Rad Emis Struc/ 15 Pass Vert 0.009 – 0.15 Rad Emis Struc/ 16 Pass Hor Rad Emis Struc/ 17 Pass Vert 0.15 -30 Rad Emis Struc/ 18 Pass 30 – 1,000 Rad Emis Struc/ 19 Pass 1,000 – 2,900 Rad Emis Struc/ 20 Pass Uplink 806 - 824 824 Vert 2,900 – 10,000 Rad Emis Struc/ 21 Pass Hor Rad Emis Struc/ 22 Pass Vert 0.009 – 0.15 Rad Emis Struc/ 23 Pass Hor Rad Emis Struc/ 24 Pass Vert 0.15 -30 Rad Emis Struc/ 25 Pass 30 – 1,000 Rad Emis Struc/ 26 Pass 1,000 – 2,900 Rad Emis Struc/ 27 Pass 896 Vert 2,900 – 10,000 Rad Emis Struc/ 28 Pass Hor Rad Emis Struc/ 29 Pass Vert 0.009 – 0.15 Rad Emis Struc/ 30 Pass Hor Rad Emis Struc/ 31 Pass Vert 0.15 -30 Rad Emis Struc/ 32 Pass 30 – 1,000 Rad Emis Struc/ 33 Pass 1,000 – 2,900 Rad Emis Struc/ 34 Pass 898.5 Vert 2,900 – 10,000 Rad Emis Struc/ 35 Pass Hor Rad Emis Struc/ 36 Pass Vert 0.009 – 0.15 Rad Emis Struc/ 37 Pass Uplink 896 - 901 901 Hor 0.15 -30 Rad Emis Struc/ 38 Pass 74/192 EMC/30020FC07063 Deko 2489 Mini REPEATER Dekolink Test Report Channels Band Freq. (MHz) Transmit Freq (MHz) Position Freq. Range (MHz) Plot No. Pass/Fail Vert Rad Emis Struc/ 39 Pass 30 – 1,000 Rad Emis Struc/ 40 Pass 1,000 – 2,900 Rad Emis Struc/ 41 Pass Vert 2,900 – 10,000 Rad Emis Struc/ 42 Pass Hor Rad Emis Struc/ 43 Pass Vert 0.009 – 0.15 Rad Emis Struc/ 44 Pass Hor Rad Emis Struc/ 45 Pass Vert 0.15 -30 Rad Emis Struc/ 46 Pass 30 – 1,000 Rad Emis Struc/ 47 Pass 1,000 – 2,900 Rad Emis Struc/ 48 Pass 851 Vert 2,900 – 10,000 Rad Emis Struc/ 49 Pass Hor Rad Emis Struc/ 50 Pass Vert 0.009 – 0.15 Rad Emis Struc/ 51 Pass Hor Rad Emis Struc/ 52 Pass Vert 0.15 -30 Rad Emis Struc/ 53 Pass 30 – 1,000 Rad Emis Struc/ 54 Pass 1,000 – 2,900 Rad Emis Struc/ 55 Pass 860 Vert 2,900 – 10,000 Rad Emis Struc/ 56 Pass Hor Rad Emis Struc/ 57 Pass Vert 0.009 – 0.15 Rad Emis Struc/ 58 Pass Hor Rad Emis Struc/ 59 Pass Vert 0.15 -30 Rad Emis Struc/ 60 Pass 30 – 1,000 Rad Emis Struc/ 61 Pass 1,000 – 2,900 Rad Emis Struc/ 62 Pass Downlink 851 - 869 869 Vert 2,900 – 10,000 Rad Emis Struc/ 63 Pass Hor Rad Emis Struc/ 64 Pass Vert 0.009 – 0.15 Rad Emis Struc/ 65 Pass Hor Rad Emis Struc/ 66 Pass Vert 0.15 -30 Rad Emis Struc/ 67 Pass 30 – 1,000 Rad Emis Struc/ 68 Pass 1,000 – 2,900 Rad Emis Struc/ 69 Pass 935 Vert 2,900 – 10,000 Rad Emis Struc/ 70 Pass Hor Rad Emis Struc/ 71 Pass Vert 0.009 – 0.15 Rad Emis Struc/ 72 Pass Hor Rad Emis Struc/ 73 Pass Vert 0.15 -30 Rad Emis Struc/ 74 Pass 30 – 1,000 Rad Emis Struc/ 75 Pass 1,000 – 2,900 Rad Emis Struc/ 76 Pass 937.5 Vert 2,900 – 10,000 Rad Emis Struc/ 77 Pass Hor Rad Emis Struc/ 78 Pass Vert 0.009 – 0.15 Rad Emis Struc/ 79 Pass Hor Rad Emis Struc/ 80 Pass Vert 0.15 -30 Rad Emis Struc/ 81 Pass 30 – 1,000 Rad Emis Struc/ 82 Pass Downlink 935 - 940 940 Vert 1,000 – 2,900 Rad Emis Struc/ 83 Pass 75/192 EMC/30020FC07063 Deko 2489 Mini REPEATER Dekolink Test Report Channels Band Freq. (MHz) Transmit Freq (MHz) Position Freq. Range (MHz) Plot No. Pass/Fail 2,900 – 10,000 Rad Emis Struc/ 84 Pass 76/192 EMC/30020FC07063 Deko 2489 Mini REPEATER Dekolink Test Report Test Results Plot No 4 FCC Part 90 0.009-0.15MHz (UL-1 f=806MHz,Input Pwr=-20dBm). HOR Test & EUT General Information Receiver Setting EUT Name: DEKO 3189 Spect Analyzer AGILENT E7405A DC COUPLING S/N: 07013031 Ref. Level: 80 dBμV Date of Test: RBW: 300 Hz Test Engineer: SHIMON KOZLINER VBW: 300 Hz Antenna: H FIELD ANT R&S 0.01- 30MHz Sweep Time: Auto: 6.3 s Polarization: Horizontal Pre Amplifier LNA MITEQ 0.01-1GHz No-1 TEST REMARKS:Tuesday, January 30, 2007 1:57:37 PM -50 -25 0 25 50 75 20 k 30 k 50 k 100 k 9 k 150 k Frequency (Hz) Level (dBμV/ m) Peak CC Part 90 Radiated Emission Struc. For DEKOLIN MAXIMUM RESULT DEVIATION: Detect all peaks above 6 dB below the limit line with a maximum of 6 peaks. None 77/192 EMC/30020FC07063 Deko 2489 Mini REPEATER Dekolink Test Report Test Results Plot No 5 FCC Part 90 0.009-0.15MHz (UL-1 f=806MHz,Input Pwr=-20dBm). VER Test & EUT General Information Receiver Setting EUT Name: DEKO 3189 Spect Analyzer AGILENT E7405A DC COUPLING S/N: 07013031 Ref. Level: 80 dBμV Date of Test: RBW: 300 Hz Test Engineer: SHIMON KOZLINER VBW: 300 Hz Antenna: H FIELD ANT R&S 0.01- 30MHz Sweep Time: Auto: 6.3 s Polari…
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Setup pictures
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 4 | 9 | 935 MHz - 940 MHz | 250.00 mW | GXW | 2.5 ppm |

Digital Channel Selective Amplifier-UHF (DCSA-UHF)
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
DUAL BAND IDEN REPEATER
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
CDMA MIDI REPEATER UNIT 80DB/30DBM WITH CCD
Equipment Class
PCB - PCS Licensed Transmitter
Digital Channel Selective Amplifier � UHF
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Multi-Band iDEN and WPCS Booster
Equipment Class
PCB - PCS Licensed Transmitter