
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
AmpWave TM Microcell Installation Figure 4 shows a block schematic of the installation procedure for the Microcell Ampwave TM Installation. Your Kit should include the following equipment: A. MCELL2411A β Microcell Assembly, 11 Mbps (2). This unit is a fully weather proof enclosure and includes the 11 Mbps Access Point, Amplifier, and surge protector. The unit has a N-type connection for attaching the antenna (1). The antenna is attached via a small length of LMR400 Cable (3) supplied with your kit. B. At the bottom of the MCELL2411A there is a special sealed connector (4) which allows the cable assembly β MCELCAB (5) to be connected between the Microcell and the AC/DC converter unit β MCELPSA (8) C. An RJ45 Cable (7) connects to the switch or hub. D. A 120V AC Power cord (9) plugs into DC/DC converter. E. Bolts with hardware to mount Microcell to tower or mast (Supplied) F. Antenna β G. Hub H. Non-metallic clamps, or tie-wraps, or tape Detailed Instructions: Pretesting of system prior to permanent installation on Mast or Tower. 1. Connect the large circular connector of the cable to the Microcell (MCELL2411A). Make sure the keys line up and push the connector into the Microcell Socket. Turn the retaining ring until resistance is felt, then push the connector again into the socket. Turn the retaining ring and repeat until the connector is seated in the socket. 2. Connect the DB9 Connector (smaller connector) to the Power Supply Box (MCELPSA). 3. Plug the AC cord into a 120 VAC outlet. At this time the green LED should be illuminated on the Power Supply, and the amber LED should be illuminated on the Microcell. 4. The Microcell is in Access Point Mode when shipped and the Red LED should flash on the Power Supply and also on the Microcell. 5. A PC or Laptop with the Ethernet card on NIC should be loaded with the Access Point utility, which comes with the Microcell. Page 1 6. Connect the PC or Laptop to the RJ45 Connector of the Power Supply with a LAN Cable. You should have a link indication on your PC or Laptop. If no link is indicated us a crossover cable for the connection and verify link. 7. Double Click on the AP utility Icon. A scan should start and after completion an AP icon should appear. Double Click on the AP Icon and a password request window should appear. Enter βdefaultβ, lower case, and no quotes. 8. The 11 Mbps Wireless AP window should appear 9. Continue to follow the instructions for configuring of the network parameters. 10. After familiarizing yourself with configuring the Microcell in a local environment, you may dismantle and permanently install as follow. Detailed Instructions: Final Location β Mast or Tower 1. The Microcell, Antenna, bolts, LMR400 Cable, Cat5 Cable, Tie-wraps (or non-metallic clamp, or tape) are hoisted to the permanent location of the unit. 2. The Microcell is affixed to the mast or pole using the Clamps and bolts supplied. Insure that Microcell is mounted securely to the mast or pole. 3. Follow the instructions for mounting the Antenna, instructions below. 4. Connect the large circular connector of the cable to the Microcell (MCELL2411A). Make sure the keys line up and push the connector into the Microcell Socket. Turn the retaining ring until resistance is felt, then push the connector again into the socket. Turn the retaining ring and repeat until the connector is seated in the socket. The cable should have a service loop applied 5-10β from connectors. Note: the connector is water tight and does not need tape. 5. The cable should be run down the mast or pipe, and attached every 5β with non-metallic clamps, tie-wraps, or tape. 6. The Standard N-Connectors at each end of the LMR400 cable, (connecting the Antenna to the Microcell), should be taped to insure environmental integrity. 7. The Lug near the circular connector of the Microcell is for grounding. A minimum 12 gauge copper wire should be connected here to a low impedence ground. 8. Once back on the ground, connect the DB9 Connector (smaller connector) to the Power Supply Box (MCELPSA). 9. Plug the AC cord into a 120 VAC outlet. At this time the green LED should be illuminated on the Power Supply, and the amber LED should be illuminated on the Microcell. 10. The Microcell is in Access Point Mode when shipped and the Red LED should flash on the Power Supply and also on the Microcell. 11. A PC or Laptop with the Ethernet card on NIC should be loaded with the Access Point utility, which comes with the Microcell. 12. Connect the PC or Laptop to the RJ45 Connector of the Power Supply with a LAN Cable. You should have a link indication on your PC or Laptop. If no link is indicated us a crossover cable for the connection and verify link. 13. Double Click on the AP utility Icon. A scan should start and after completion an AP icon should appear. Double Click on the AP Icon and a password request window should appear. Enter βdefaultβ, lower case, and no quotes. Page 2 14. The 11 Mbps Wireless AP window should appear 15. Continue to follow the instructions for configuring of the network parameters. a. AOM5 b. AOM8 c. INET-AOM-10 d. INET-ANT-15 e. APN-7 The FCC warning relate to all Antennas used. Please refer to instructions in your kit. WARNING: The AMPDNET TM Antenna should be installed only by an experienced antenna installer familiar with local building and safety codes and, wherever necessary, licensed by appropriate government regulatory bodies. Failure not to do so, may void the Product Warrantee, as well as expose the end user to legal and financial liabilities. Amplidyne, Inc., itβs agents, resellers, or distributors, are not liable of injury, damage or violation of government regulations associated with the installation of the antenna. The installer is responsible for ensuring that the public is not exposed to radio energy levels in excess of the FCC guidelines. Those guidelines imply that no human may conceivably be found within one foot of the front of the antenna. If such a situation is likβ¦
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Retlif Testing Laboratories R Retlif Job Number R-8903-1 Data Sheet 1 of 1 Test Method: FCC Part 15 Subpart C, Restricted Band Radiated Emissions, Paragraph 15.247(c) Customer: Amplidyne Inc. Job No. R-8903-1 Test Sample: 2.4GHz Direct Sequence Spread Spectrum Transmitter/ Parabolic Antenna Model No.: Micro Cell/INET-ANT-15 Serial No. N/A . Operating Mode: Continuously transmitting a signal at 2.412GHz CH1, through a 15dBi Parabolic antenna. Technician: Peter Lananna Date: April 3, 2001 Notes: Test Distance: 3 Meters Temp:18C Humidity:34% Detector: Quasi-Peak Below 30 MHz to 1 GHz, Peak above 1 GHz Test Freq. Antenna Position EUT Orientation Meter Readings Correction Factor Corrected Reading Converted Reading LIMIT MHz (V/H) / Meters Degrees dBuV dB dBuV/m uV/m uV/m 30.00 100 | | 88.00 100 88.00 150 l | 216.00 150 216.00 200 | | 960.00 200 960.00 500 | | 2390.0 V/1.0 180 46.5 2.8 49.3 291.7* | | | 2483.5 V/1.0 180 46.2 3.6 49.8 309.0* | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | l | 25000.0 500 The EUT was scanned from 30 MHz to 25 GHz The emissions observed from the EUT do not exceed the specified limits. Emissions not recorded were more than 10dB under the specified limit *= Denotes minimum system sensitivity. Retlif Testing Laboratories R Retlif Job Number R-8903-1 Data Sheet 2 of 2 Test Method: FCC Part 15 Subpart C, Restricted Band Radiated Emissions, Paragraph 15.247(c) Customer: Amplidyne Inc. Job No. R-8903-1 Test Sample: 2.4GHz Direct Sequence Spread Spectrum Transmitter/ Parabolic Antenna Model No.: Micro Cell/INET-ANT-15 Serial No. N/A . Operating Mode: Continuously transmitting a signal at 2.437GHz CH6, through a 15dBi Parabolic antenna. Technician: Peter Lananna Date: April 3, 2001 Notes: Test Distance: 3 Meters Temp:18C Humidity:34% Detector: Quasi-Peak Below 30 MHz to 1 GHz, Peak above 1 GHz Test Freq. Antenna Position EUT Orientation Meter Readings Correction Factor Corrected Reading Converted Reading LIMIT MHz (V/H) / Meters Degrees dBuV dB dBuV/m uV/m uV/m 30.00 100 | | 88.00 100 88.00 150 l | 216.00 150 216.00 200 | | 960.00 200 960.00 500 | | 2390.0 V/1.0 180 46.5 2.8 49.3 291.7* | | | 2483.5 V/1.0 180 46.2 3.6 49.8 309.0* | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | l | 25000.0 500 The EUT was scanned from 30 MHz to 25 GHz The emissions observed from the EUT do not exceed the specified limits. Emissions not recorded were more than 10dB under the specified limit *= Denotes minimum system sensitivity. Retlif Testing Laboratories R Retlif Job Number R-8903-1 Data Sheet 3 of 3 Test Method: FCC Part 15 Subpart C, Restricted Band Radiated Emissions, Paragraph 15.247(c) Customer: Amplidyne Inc. Job No. R-8903-1 Test Sample: 2.4GHz Direct Sequence Spread Spectrum Transmitter/ Parabolic Antenna Model No.: Micro Cell/INET-ANT-15 Serial No. N/A . Operating Mode: Continuously transmitting a signal at 2.462GHz CH11, through a 15dBi Parabolic antenna. Technician: Peter Lananna Date: April 3, 2001 Notes: Test Distance: 3 Meters Temp:18C Humidity:34% Duty cycle correction, from Peak Detector: Quasi-Peak Below 30 MHz to 1 GHz, Peak above 1 GHz to Average=-44.4dB Test Freq. Antenna Position EUT Orientation Meter Readings Correction Factor Corrected Reading Converted Reading Peak/Avg Limit MHz (V/H) / Meters Degrees dBuV dB dBuV/m uV/m uV/m 30.00 100 | | 88.00 100 88.00 150 l | 216.00 150 216.00 200 | | 960.00 200 960.00 500 | | 1691.0 V/1.0 180 44.0 4.6 48.6 269.2* | | | 2390.0 V/1.0 180 46.5 2.8 49.3 291.7* | | | 2483.5 V/1.3 180 62.7 3.6 66.3/21.9 2065.4/12.4 5000/500 | | 4926.0 V/1.0 180 31.0 12.5 43.5 149.6* | | | 7386.0 V/1.0 180 43.3 9.4 52.7 431.5* | | | | | | | | | | | | | | | | | | | l | 25000.0 5000/500 The EUT was scanned from 30 MHz to 25 GHz The emissions observed from the EUT do not exceed the specified limits. Emissions not recorded were more than 10dB under the specified limit *= Denotes minimum system sensitivity. Retlif Testing Laboratories R Retlif Job Number R-8903-1 Data Sheet 4 of 4 Test Method: FCC Part 15 Subpart C, Restricted Band Radiated Emissions, Paragraph 15.247(c) Customer: Amplidyne Inc. Job No. R-8903-1 Test Sample: 2.4GHz Direct Sequence Spread Spectrum Transmitter/ Omni-directional Antenna Model No.: Micro Cell/INET-OMNI-10 Serial No. N/A . Operating Mode: Continuously transmitting a signal at 2.412GHz CH1, with a 10dBi Omni-directional antenna. Technician: Peter Lananna Date: April 3, 2001 Notes: Test Distance: 3 Meters Temp:18C Humidity:34% Detector: Quasi-Peak Below 30 MHz to 1 GHz, Peak above 1 GHz Test Freq. Antenna Position EUT Orientation Meter Readings Correction Factor Corrected Reading Converted Reading LIMIT MHz (V/H) / Meters Degrees dBuV dB dBuV/m uV/m uV/m 30.00 100 | | 88.00 100 88.00 150 l | 216.00 150 216.00 200 | | 960.00 200 960.00 500 | | 2390.0 V/1.0 180 46.5 2.8 49.3 291.7* | | | 2483.5 V/1.0 180 46.2 3.6 49.8 309.0* | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | l | 25000.0 500 The EUT was scanned from 30 MHz to 25 GHz The emissions observed from the EUT do not exceed the specified limits. Emissions not recorded were more than 10dB under the specified limit * =Denotes minimum system sensitivity. Retlif Testing Laboratories R Retlif Job Number R-8903-1 Data Sheet 5 of 5 Test Method: FCC Part 15 Subpart C, Restricted Band Radiated Emissions, Paragraph 15.247(c) Customer: Amplidyne Inc. Job No. R-8903-1 Test Sample: 2.4GHz Direct Sequence Spread Spectrum Transmitter/ Omni-directional Antenna Model No.: Micro Cell/INET-OMNI-10 Serial No. N/A . Operating Mode: Continuously transmitting a signal at 2.437GHz CH6, with a 10dBi Omni-directional antenna. Technician: Peter Lananna Date: April 3, 2001 Notes: Test Distance: 3 Meters Temp:18C Humidity:34% Detector: Quasi-Peak Below 30 MHz to 1 GHz, Peak above 1 GHz Test Freq. Antenna Position EUT Orientation Meter Readings Correction Factor Corrected Reading Converted Reading LIMIT MHz (V/H) / Meters Degrees dBuV dB dBuV/m uV/m uV/m 30.00 100 β¦
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TABULAR DATA SHEET CUSTOMER: MODEL No.: TEST SAMPLE: SERIAL No.: TEST SPECIFICATION: TEST METHOD: OPERATING MODE: TECHNICIAN:DATE: RETLIF TESTING LABORATORIES NOTES: DATA SHEETOF JOB No.: PARAGRAPH: Limit based on highest antenna gain of 16 dBi 2.4 GHz Direct Sequence Spread Spectrum Transmitter R-8903-1 The peak output power at the antenna terminals of the EUT was measured utilizing a peak power meter. The transmitter complies wth the FCC power output requirements of 15.247(c)(3)(i). 26.7 26.7 26.7 22.6 22.8 23.4 2412 2437 2462 1 6 11 dBmdBmMHz LimitOutput PowerFrequencyChannel Continuously transmitting at the frequency specified below. 15.247(b)(3)(i) FCC Part 15 T. Schneider TransmitterPeak Output Power R-8903-1Amplidyne MicrocellN/A 11
Test Report Number R-8903-1 APPLICANT Amplidyne Inc. 59 LaGrauge Street Raritan, NJ 08869 MANUFACTURER Amplidyne Inc. 59 LaGrauge Street Raritan, NJ 08869 TEST SPECIFICATION: FCC Rules and Regulations Part 15, Subpart C TEST PROCEDURE: ANSI C63.4:1992 TEST SAMPLE DESCRIPTION BRANDNAME: Amplidyne Inc. MODEL: MICROCELL FCC ID: OZMMCELL2411A TYPE: 2.4 GHz Direct Sequence Spread Spectrum Transmitter System FREQUENCY RANGE: 2400 MHz TO 2483.5 MHz POWER REQUIREMENTS: 12 VDC derived from DC Injection TESTS PERFORMED - 15.207(a) Conducted Emissions, AC Power - 15.209(a) Spurious Case Radiated Emissions, Restricted Bands - 15.247(a)(2) Occupied Bandwidth - 15.247(b)(1) Power Output - 15.247(c) Spurious Emissions, Antenna Conducted Emissions - 15.247(d) Power Density - 15.247(e) Processing Gain Data Test Report Number R-8903-1 REPORT OF MEASUREMENTS Applicant: Amplidyne Inc. Device: 2.4 GHz Direct Sequence Spread Spectrum Transmitter System FCC ID: OZMMCELL2411A Power Requirements: 12 VDC derived from DC Injection Applicable Rule Section: Part 15, Subpart C, Section 15.247 TEST RESULTS 15.207(a): The radio frequency voltage that was conducted back on to the AC power line on any frequency/frequencies within the bandwidth of 450kHz to 30MHz did not exceed 250 microvolts. 15.247(a)(2): The minimum 6dB bandwidth was no less than 500 kHz. 15.247(b)(1): The maximum peak output power of the transmitter did not exceed 1 watt. The test samples peak power measured 213.8 mW(23.3 dBm) at the antenna terminals. 15.247(b)(3) The system utilizes antennas which have directional gain greater than 6 dBi. The device operates in the 2400 to 2483.5 MHz band and is used exclusively for fixed point to point operations. The maximum gain antenna used with this system has a gain of 16 dBi. Therefore the output power was reduced 1 dB for every 3 dB above a gain of 6dBi yielding a maximum allowable output power at the antenna terminal of 26.7 dBm= 464 mW. 15.247(b)(4) The device does not operate in such a manner that causes the public to be exposed to levels in excess of the commissions guidelines. The device is used for fixed point to point operations where the transmit antenna is located on a mast external to a building well away from public exposure. In addition the installation guide states that the installer should keep the antenna at least 1 foot from possible human exposure and if this is not possible, appropriate warning signs shall be posted. 15.247(c): The antenna conducted emissions were found to be at least 20dB down from the fundamental frequencies. All other emissions within the restricted bands specified in 15.205 did not exceed the general radiated emissions limits specified in 15.209(a). 15.247(d): The power density did not exceed 8dBm in any 3 kHz bandwidth averaged over 1 second. 15.247(e) The process gain information was supplied by Amplidyne Inc. and can be found as a separate e-file attachment named Processing Gain.pdf. Test Report Number R-8903-1 GENERAL NOTES 1. All readings were taken using a peak detector function at a distance of 3 meters. 2. The duty cycle was applied to the peak readings in order to determine the average value of emissions. 3. The device operates from 2400 MHz TO 2483.5 MHz. Therefore, where applicable, measurements were taken at three center frequencies; low, middle and high (2422 MHz, 2447 MHz and 2462 MHz). 4. The frequency range was scanned form 30 MHz to 25 GHz. All emissions not reported were more than 10dB below the specified limit. 5. Spurious Radiated Emissions located in the restricted bands listed in Paragraph 15.205 were measured with each of the following antennas attached to the system: 1). AOM - 5 2). AOM - 8 3). INET-OMNI-10 4). INET-ANT-15 5). Flat βwall mountβ APN - 7 6. The device is a spread spectrum transmission system consisting of a spread spectrum transmitter (FCC ID: M4Y-WL2450), a DC Injector, a lightning arrestor, an RF amplifier/transmitter, and the five antennas listed above. In accordance with Paragraph 15.204, this device is being marketed as a system and will only be used in this configuration. Test Report Number R-8903-1 EXHIBIT 4 Conducted Emissions Para. 15.207(a) (Please see separate e-file attachments named CEdata.pdf) Test Report Number R-8903-1 EXHIBIT 4 Occupied Bandwidth Para. 15.247(a)(2) (Please see separate e-file attachments named OccBw.pdf) Test Report Number R-8903-1 EXHIBIT 4 Power Output Para. 15.247(b) (Please see separate e-file attachments named pwrout.pdf) Test Report Number R-8903-1 EXHIBIT 4 Antenna Conducted Emissions Para. 15.247(c) (Please see separate e-file attachments named antce2.462 GHz, 1-7.pdf, antce2.462 GHz, 8-14.pdf antce2.412 GHz, 1-7.pdf, antce2.412 GHz, 8-14.pdf, antce2.437 GHz, 1-7.pdf, antce2.437 GHz, 8-14.pdf) Test Report Number R-8903-1 EXHIBIT 4 Spurious Case Radiated Emissions, Restricted Bands Para. 15.209(a) (Please see separate e-file attachments named Radiated Emissions.pdf) Test Report Number R-8903-1 EXHIBIT 4 Power Density Para. 15.247(d) (Please see separate e-file attachments named pwrden.pdf) Test Report Number R-8903-1 EXHIBIT 4 Processing Gain Data Para. 15.247(e) (Please see separate e-file attachments named ProcessGain1.pdf, ProcessGain2.pdf, ProcessGain3.pdf) Test Report Number R-8903-1 EQUIPMENT LISTS Radiated Emissions Fundamental and Harmonics, 30MHz-25GHz EN Type Manufacturer Description Model No. Cal Date Due Date 032G H.P. Filter Microlab/FXR 3 GHz - 6 GHz HA-30N 05/02/2000 05/02/2001 067 Open Area Test Site Retlif 3 Meter RNY 09/20/2000 09/20/2003 128C Double Ridge Guide Eaton Corporation 1 GHz - 18 GHz 96001 09/18/2000 09/18/2001 133 Broadband Pre-Amplifier Electro-Metrics 10 kHz - 1 GHz, 26dB BPA-1000 06/13/2000 06/13/2001 141 Spectrum Analyzer Hewlett Packard 100 Hz - 40 GHz 8566B 02/20/2001 08/20/2001 141A Graphics Plotter Hewlett Packard N/A 7470A 03/05/2001 03/05/2002 141B Quasi-Peak Adaptor Hewlett Packard 100 Hz - 1 GHz 85650A 02/20/2001 08/20/2001 333 Attenuator Narda DC - β¦
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795 Marconi Avenue Β· Ronkonkoma, New York Β· United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 220.00 mW |

DSS - Part 15 Spread Spectrum Transmitter
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
AmpDNet System
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter