DIR-2005-36b
CITY OF CUPERTINO
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10300 Torre Avenue, Cupertino, California 95014 (408) 777-3308
To: Mayor and City Councilmembers
Chair and Planning Commission
From: Steve Piaseckil Director of Community Developme~
Date: December 22, 2005
Subj: File No. DIR-200S-36: Minor Modification to allow the installation of a
microwave dish antenna on a 20-foot tall guyed tower on the roof of 10400
Ridgeview Court for a point to point wireless communications system link with
an office/ industrial building at 1 Infinite Loop.
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Chapter 19.132 of the Cupertino Municipal Code allows for administrative
approval of minor changes to a project. The Director reports his decision to the
City Council and Planning Commission in time to allow any Councilmember or
Planning Commissioner to appeal the decision within fourteen calendar days.
Application:
File No. DIR-200S-36: Minor Modification to allow the installation of a
microwave dish antenna on a 20-foot tall guyed tower on the roof of 10400
Ridgeview Court for a point to point wireless communications system link with
an office/industrial building at 1 Infinite Loop.
The applicantl Chris Foster of Pacific Communicationsl on behalf of Apple
Computers, has proposed a point to point wireless, microwave communications
system between its headquarters campus at 1 Infinite Loop and a rented
office/industrial building at 10400 Ridgeview Court (Exhibit A).
This application covers just the installation of the microwave dish antenna on the
roof of 10400 Ridgeview Court. The companion microwave antenna installation
on the roof of 1 Infinte Loop is covered by application file no. DIR-200S-37.
The antenna is a 2-foot diameter microwave dish mounted on a 20-foot tall
guyed tower on the roof of the building. Because of the height of a tall
equipment screen, the visible height of the tower is only 10 feet. Based on its
height and 6S-foot setback from the edge of the roof, it is within the height and
setback requirements of the City's wireless communications facilities ordinance.
Several visual simulations from different vantage points are enclosed (Exhibit B).
The technology relies on line of sight transmission between the two dish
antennas mounted at +65 feet (on the 1 Infinity Loop Building) and +51 feet (on
the 10400 Ridgeview Court Building). The transmission line (Exhibit C) is
unobstructed by tall buildings. The closest building will be the proposed Vallco
condominiums at a maximum height of 45 feet, which will be approximately 10
feet below the transmission line.
The attached RF study demonstrates that the expected radio frequency
emissions, in a worst case situation, 0.0058 m W! cm21 is below the federal safety
standard of 1.0 mW /cm2 (Exhibit D).
Action:
The Director of Community Development deems the modification minor and
approves the rooftop aerial facility and associate equipment based on the
attached plan set titled IIWireless Ethernet Antenna Mounting! Apple
Computer/Building 2/10400 Ridgeview Court/Cupertino, CAli consisting of 3
sheets dated 11/13/05 and labeled CVK A-I and 5-1 and the following
additional conditions of approval:
1) PERMIT EXPIRATION
This Directorls approval is valid for a period of 5 years from the effective date
of the approvaL The applicant may apply for a renewal of this approval upon
a City review
of the state of the PCS technology to determine if visibility can be further
reduced.
2) AERIAL ABANDONMENT
The aerial and associated facilities shall be removed by the applicant or
property owner at its sole cost if the aerial facility is not used for its permitted
purpose for a period of 18 months.
This approval of the modification is effective December 221 2005. The fourteen
calendar day appeal period will expire on January 5, 2006.
Enclosures:
Exhibit A: Project Description
Exhibit B: Photosimulation
Exhibit C: Line of Transmission Aerial Photo
Exhibit 0: RF Test Report prepared by Compliance Certification Services dated 7/21/05
G:CUPERTIN ONTSER VER/ Planning/ PDREPORT / DIRreports /2005/ DIR-2005-37
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WIRELESS ETHERNET ANTENNA MOUNTING
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10400 RIDGE VIEW COURT
CUPERTINO, CA
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Sunnyvale, CA 94086
City of Cupertino Pla.nning Application
Cover Sheet
Project Description:
Entire Project:
Pacific Communication is proposing to provide Apple Computer with a point to
point wireless communications system to link their campus at 1 Infinite Loop to a
building they will be renting at 10400 Ridgeview Court. This particular wireless
link will use BridgeWave's GE60X that operates within the FCC's unlicensed 60
GHz spectrum, has a built-in parabolic antenna that is two feet in diameter, and
requires a clear line of sight with no obstructions along the length of the path.
FCC Certification documents have been included in this application that shows
both FCC compliance as well as the RF characteristics of the proposed equipment.
Section 7.5 of this report (pages 22 - 23) shows that this equipment operates well
below the Maximum Permissible Exposure (MPE) for both Occupational Exposures
and General Population Exposures. Specifically, the worst case maximum power
density is 5.5 uW jcm^2 (or 0.0055 mW jcm^2) and the MPE for this frequency
range (1,500 MHz to 100,000MHz or 1.5 GHz to 100 GHz) is 5.0 mW jcm^2 for
Occupational Exposures and 1.0 mW jcm^2 for General Population Exposures.
This means that the worst case output of this device will be approximately 180
times less than the MPE for General Population Exposures.
1 Infinite Loop:
Pacific Communication is proposing to place a non-penetrating gravity mount on
the rooftop of Building 2 at 1 Infinite Loop that is less than six feet high and will
weight less than four hundred pounds with all equipment attached. This mount
will be located on the rooftop near the existing cell phone antennas but will not
interfere with existing systems. Due to the height of the building, the short nature
of the mount, and the placement of the mount towards the middle of the rooftop,
this installation will be less visible then current cell phone antennas on this
rooftop.
The exact location on the rooftop will be determined at time of installation to
provide the link with the best possible clear line of sight; however the mount will be
a minimum of twenty feet away from the edge of the building. Photo simulations
and site plans have been included in this application that reflects the approximate
location of the proposed mount.
10400 Ridgeview Court:
Pacific Communication is proposing to erect a twenty foot guyed tower on the
rooftop with the equipment mounted towards the top of the tower. This tower will
be located over a roof support column at a minimum of forty feet from all parapet
walls. This forty foot minimum distance from the ten foot parapet walls will allow
for the tower to fall within the guidelines of Chapter 19.108 of the city of Cupertino
Zoning Ordinance, specifically section 19.108.060.B.l that an aerial may extend
six feet above the parapet wall plus one foot for every ten feet that the aerial is set
back from the parapet.
To ensure this tower height and location will provide our wireless link with a clear
line of sight, a three foot red balloon was floated at the proposed tower height and
location and was clearly seen from the rooftop of Building 2 at 1 Infinite Loop.
While the balloon was at the proposed height and location, Pacific Communications
employees drove around the vicinity taking pictures from any position where the
proposed tower would be visible. These photos were then used to generate the
photo simulations included in this application; the position of the balloon was used
to determine the location of the tower, and the size of the balloon was used to
create the correct scale of the tower and antenna in the photo. Due to the height of
surrounding trees, the same trees that are requiring us to go twenty feet above the
rooftop to achieve a clear line of sight, the tower will be visible only to a minor
extent.
Application Materials:
The following materials have been included in each of these two applications for a
Director's Minor Modification, one application for each site:
1. This Project Application Cover Sheet.
2. Pre~Application Form.
3. Application Form.
4. Full Size Plans including a Cover Page, Site Plan, Elevation, and Engineering
Drawings folded to 8W' xII",
5. Two 11" x 17" sets of drawings including all pages from above.
6. Photo Simulations.
7. CD-ROM with digital copies of this cover letter and Photo Simulations.
One copy of the following has been included with these applications and the one
copy applies to both applications:
1. FCC CFR47 Part 15 Subpart C Certification Test Report.
If there are any questions about any information provided in this document or either
applications, please contact Chris Foster with Pacific Communications at (408) 830-
9550
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FCC CFR47 PART 15 SUBPART C
CERTIFICA TION
TEST REPORT
FOR
MICROWAVE LINK
MODEL NUMBER: GE60X, FE60X, AR60X*
FCC ID: RWM-GE60X
REPORT NUMBER: 05U3616-1B
ISSUE DATE: JULY 21, 2005
Preparedfor
BRIDGEW A VE COMMUNICATIONS
3350 THOMAS ROAD
SANT A CLARA, CALIFORi~IA 95054
Prepared by
COMPLIANCE ENGINEERING SERVICES, INC.
d.h.a.
COMPLIANCE CERTIFICATION SERVICES
561F MONTEREY ROAD,
MORGAN HILL, CA 95037, USA
TEL: (408) 463-0885
FAX: (408) 463-0888
*Details of specific model(s) tested and model differences shall be identified in body of report
LAB CODE:200065-0
REPORT NO: 05U36I6-h
EUT: MICROWAVE I,TNK
DATE: AUGUST 1 I, 2005
FCC In: RWM-GE60X
Revision History
Issue
Rev. Date
A 7/25/05
B 8/1 1105
Revisions
Revised By
MH
Initial Issue
Corrected typos for antenna diameter and subsequent
calculations. Corrected typos for measurement distance and
field strength limit above 40 GHz, for both system noise
floor and test results.
MH
Page 2 of2
COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP4031A
561F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except infull, without the written approval ofCCS.
REPORT NO: 05U3616-1L
El iT MTCROW A VB LINK
DATE: AUGUST 11,2005
FCC TO: RWM-GEhOX
TABLE OF CONTENTS
1. ATTESTATION OF TEST RESUL TS............................................................................................. 4
2. TES T METH 0 DO LOG Y ... ..... ............. .................. .......... ..... ....... ........... ..................... ........... .......... 5
3. FACILITIES AND ACCREDITATION .......................................................................................... 5
4. CALIBRATION AND UNCERT AINTY.......................................................................................... 5
4.1. MEASURING INSTRUMENT CALIBRATION................ ........ ......... ...... ..... ........... ..... ........ ..........5
4.2. MEASUREMENT UNCERTAINTy.... ..... .... .... ...... ................ ........ .... ....... ............... ........ ....... ....... 5
5. E U T D ESC RIPTI ON .............. ....................... .......... .......... ............ ..................... ........... ........ ............. 6
5.1. DESCRIPTION OF EUT ...... ...,. ..................... .......... .......... .............. ........... ........ ...... ........ ... ........ 6
5.2. DESCRIPTION OF MODEL DIFFERENCES.............................................................................6
5.3. TEST AND MEASUREMENT EQUIPMENT....,...........................................................................7
6. SE TUP OF EQ U IPME NT UNDER TE ST .................. ....... ............ ............. ........ ................... .......... 8
7. APPLICABLE LIMITS AND TEST RESULTS ...........................................................................10
7.1. MEASUREMENT FUNDAMENTALS .......... ....... ............... ............................ ..... ................. ...... 10
7. 2. 6 dB BANDWIDTH................. .................................... ................... ................ ..... ................. .......14
7.3. POWER DENSITY. ................................... ........ ....... .......... ..... .............. ....... ........... ... ........... .......19
7. 4. PEAK POWER..................... ....................... .......... ............... ................................. ... ........... ........21
7.5. RF EXPOSURE................. .................... ........ ... .......... .......... ......... ..... ................ .............. ... ........22
7.6. FREQUENCY STABILITY.. ....... ........ ........ .................... ..... ..... ............. ............... ......... ..... ...... ...24
7. 7. FIELD STRENGTH.. .............. ..... ..... ... ........ .......... ..... ..... .............. ..... ......... ..... ..........................26
7.7.1. APPLICABLE RULES .......................................................................................................26
7.7.2. TEST PROCEDURE ..........................................................................................................29
7.7.3. SYSTEM NOISE FLOOR WITH EXTERNAL MIXERS ................................................30
7.7.4. SPURIOUS FIELD STRENGTH RESULTS ABOVE 1 GHz........................................... 31
7.7.5. WORST-CASE RADIATED EMISSIONS BELOW 1 GHz.............................................34
7. 8. POWERLINE CONDUCTED EMISSIONS.. ... ....... ................. ............. .......... ..... ......... .............. 36
8. S ETU P PH OTOS . ......... ..... ......... .......... ........ ..... ........ ............... .............. ........... ................... ...... ...... 40
REPORT NO: 05U3616-lb
El IT' MICROWA VB LINK
DATE: AUGUST II, 2005
FCC In' RWM-GE60X
1. ATTESTATION OF TEST RESU L TS
COMPANY NAME:
BRIDGEW AVE COMMUNICATIONS
3350 THOMAS ROAD
SANTA CLARA, CA 95054
EUT DESCRIPTION:
MICROWAVE LINK TRANSCEIVER
MODEL TESTED:
AR60X, AR60
DATE TESTED:
JUL Y 18-20, 2005
APPLICABLE STANDARDS
I
STANDARD
FCC PART 15 SUBPART C
TEST RESULTS
NO NON-COMPLIANCE NOTED
Compliance Certification Services, Inc. tested the above equipment in accordance with the requirements
set forth in the above standards. The test results show that the equipment tested is capable of
demonstrating compliance with the requirements as documented in this report.
Note: The results documented in this report apply only to the tested sample, under the conditions and
modes of operation as described herein. This document may not be altered or revised in any way
unless done so by Compliance Certification Services and all revisions are duly noted in the revisions
section. Any alteration of this document not carried out by Compliance Certification Services will
constitute fraud and shall nullify the document. No part of this report may be used to claim product
certification, approval, or endorsement by NVLAP, NIST, or any government agency.
Approved & Released For CCS By:
Tested By:
~I:J
tj2r~
MIKE HECKROTIE
ENGINEERING MANAGER
COMPLIANCE CERTIFICATION SERVICES
JOSEPH CHUNG
EMC ENGINEER
COMPLIANCE CERTIFICATION SERVICES
Page 4 of 4
COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP4031 A
561F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except infull, without the written approval ofCCS.
REPORT NO: 05U3616-1B
EUT' MTCROW AVE T ,INK
DATE: AUGUST 11,2005
FCC TD: R WM-GE60X
2. TEST METHODOLOGY
The tests documented in this report were performed in accordance with ANSI C63,4-2003, FCC CFR 47
Part 2 and FCC CFR 47 Part 15.
3. FACILITIES AND ACCREDITATION
The test sites and measurement facilities used to collect data are located at 561 F Monterey Road, Morgan
Hill, California, USA. The sites are constructed in conformance with the requirements of ANSI C63,4,
ANSI C63. 7 and CISPR Publication 22. All receiving equipment conforms to CISPR Publication 16-1,
"Radio Interference Measuring Apparatus and Measurement Methods."
CCS is accredited by NVLAP, Laboratory Code 200065-0. The full scope of accreditation can be viewed
at http://www.ccsemc.com.
4. CALIBRATION AND UNCERTAINTY
4.1. MEASURING INSTRUMENT CALIBRATION
The measuring equipment utilized to perfonn the tests documented in this report has been calibrated in
accordance with the manufacturer's recommendations, and is traceable to recognized national standards.
4.2. MEASUREMENT UNCERTAINTY
Where relevant, the following measurement uncertainty levels have been estimated for tests performed on
the apparatus:
Radiated Emission, 30 to 200 MHz
Radiated Emission, 200 to ] 000 MHz
Radiated Emission, 1000 to 2000 MHz
Power Line Conducted Emission
+1- 3.3 dB
+4.5 1 -2.9 dB
+4.5 1 -2.9 dB
+1- 2.9 dB
Uncertainty figures are valid to a confidence level of95%.
Page 5 of 5
COMPLIANCE CERTIFICA TTON SERVICES DOCUMENT NO: CCSUP4031A
56 IF MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except infull, without the written approval ofCCS.
REPORT NO: 05U3616-L
BUT' MICROWAVE LINK
DATE: AUGUST 11,2005
FCC ID: RWM-GRhOX
5. EUT DESCRIPTION
5.1. DESCRIPTION OF EUT
The EUT is a 60 GHz transceiver intended for microwave link applications.
The transmitter has a maximum peak conducted output power as follows:
The radio utilizes an Integral Directional Cassegrain AntelU1a with a gain of 46 dBL
5.2. DESCRIPTION OF MODEL DIFFERENCES
The GE60X operates at a data rate of I Gbit/sec, the FE60X operates at a data rate of 100 Mbits/sec, and
the AR60X is a dual rate 100 Mbit/sec or I Gbit/sec.
The hardware for all three models is identical; changes are made via firmware.
All testing was performed with the dual rate version.
The frequency stability tests were performed using a model AR60. The AR60 uses the identical circuitry
as the AR60X; the only difference is that the AR60 has a smaller, lower gain antenna that fits inside the
environmental chamber.
All other tests were performed using a model AR60X.
Page 6 of6
COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP4031A
561f MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except infull, without the written approval ofCCS.
REPORT NO: 05U3616-1t1
El IT- MTCROW AVE T ,INK
DATE: AUGUST 11, 2005
FCC TO' RWM-GEfiOX
5.3. TEST AND MEASUREMENT EQUIPMENT
The following test and measurement equipment was utilized for the tests documented in this report:
TEST EOUIPMENT LIST
Descrintion Manufacturer Model Serial Number Cal Due
Harmonic Mixer, 26.5 - 40 GHz HP 11970A 3008A04 I 90 10/14/05
Harmonic Mixer, 33 ~ 50 GHz HI' 11970Q 3003A03363 4/20/07
Harmonic Mixer, 50 - 75 GHz HI' 11970V 2521A01163 J 0/22/05
Harmonic Mixer, 75 - 110 GHz HP 11970W 2521A01314 10/25/05
Hannonic Mixer, 90 - 140 GHz OML M08HW A F90519-2 CNR
Harmonic Mixer, 140 - 220 GHz OML M05HWA G90519-1 CNR
Mixer Diplexer for HP OML DPL.3 BB N02429 CNR
USN, 10 kHz ~ 30 MHz FCC USN-50/250-25-2 2023 8/30/2005
USN, 10 kHz - 30 MHz Solar 80 12-50-R-24-BNC 8379443 10/21/2005
EM! Test Receiver R&S ESHS 20 827129/006 10/22/2005
Spectrum Analyzer 3 Hz - 44 GHz Agilent E4446A US42510266 8/25/2005
AC Power Source Elgar 1751 COI042 CNR
Temperature / Humidity Chamber Thennotron SE 600-10-10 29800 6/10/06
Antenna, Horn 1 - 18 GHz ETS 3117 29310 4/22/06
Preamplifier, 1 ~ 26.5 GHz HP 8449B 3008A00369 8/17/05
Antenna, Hom I 8 - 26 GHz AM MWH-1826/B ]049 9112/05
Antenna, Bilog 30MHz - 2Ghz Sunol Sciences JBI Al21003 3/3/06
EMI Receiver, 9 kHz- 2.9 GHz HP 8542E 3942A00286 3/29/06
RF Filter Section HP 85420E 3705A00256 3/29/06
Power Meter Agi]ent E4419B GB40202203 CNR
Power Sensor Agilent V8486A 170891 CNR
Page 7 of7
COMPLIANCE CERTIF]CA TION SERVICES DOCUMENT NO: CCSUP4031A
561F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except infull, without the written approval oICCS.
REPORT NO: 05U36I6-IL
EOT- MICROWAVE LINK
DATE: AUGUST 11,2005
FCC ID: RWM-GE60X
6. SETUP OF EQUIPMENT UNDER TEST
SUPPORT EQUIPMENT
FCC ID
N/A
I/O CABLES
I/O CABLE LIST
Cable Port # of Connector Cable Cable Remarks
No. Identical Type Type Length
Ports
1 AC PWR I AC PWR UNSHIELDED L86M US (3 PRONG)
2 DC PWR 1 TERMINAL UNSHIELDED 1. 86M N/A
TEST SETUP
During the testing process the EUT was set to transmit continuously.
Page 8 of8
COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: ccSUP4031A
56IF MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except infull, without the written approval qfCCS.
REPORT NO: 05U3616.1B
RUT: MICROW A VB J ,INK
.JATE: AUGUST 11,2005
FCC Tn: RWM.GR60X
SETUP DIAGRAM FOR TESTS
EUT
AC ADAPTER
115V AC/60Hz
Page 9 of9
COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP4031A
561F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463.0888
This report shall not be reproduced except in/ull, without the written approval o/ces.
REPORT NO: 05U36l6-lB
PI JT: MICROW A VB I :INK
JATE: AUGUST 11,2005
FCC m. RWM-GEnOX
7. APPLICABLE LIMITS AND TEST RESULTS
7.1. MEASUREMENT FUNDAMENTALS
TEST PROCEDURE
The EUT was mounted on a tower and the measurement instrumentation was placed in the far field. The
far field distance was detennined from calculations described below.
Using a level and a laser pointer, the EUT antenna and measurement antennas were brought into
alignment. The measurement antenna/mixer assembly was hand held and was very slowly moved with
small horizontal and vertical motions to capture the maximum signal level from the EUT.
NEAR FIELD BOUNDARY CALCULATIONS
For the high-gain antenna used with the EUT, the 3m distance is within the antenna's near field or Fresnel
region. This is confinned from the equation for near-field boundary given in OET 65 (p. 27):
(12) R(near field) = (D^2) I (4 * A)
where
D = Largest Antenna Dimension, including the reflector, in meters
A. = wavelength in meters
For a parabolic reflector antenna with D = 0.6096 m and A. = 300 I f(MHz) equation (3) predicts a near-
field boundary of
R (near field) = 17.99 m at 58.1 GHz, and 19.48 mat 62.9 GHz.
Page 10 of I 0
COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP4031A
561 f MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except infull, without the written approval ofCCS.
REPORT NO: 05U3616-lB
Fl JT' MTCROW A VB T .INK
DATE: AUGUST 11,2005
FCr: YD' RWM-GE60X
FAR FIELD BOUNDARY CALCULATIONS
The far-field boundary is given in OET 65 (page 29) as:
(16) R(far field) = (0.6 * D^2) / ^
where
D = Largest Antenna Dimension, including the reflector, in meters
^ = wavelength in meters
For a parabolic reflector antenna with D = 0.6096 m and ^ = 300 / f (MHz) equation (16) predicts a far-
field boundary of
R (far field) = 43.18 m at 58.1 GHz, and 46.75 m at 62.9 GHz.
POWER DENSITY AS A FUNCTION OF DISTANCE FROM ANTENNA
The equations are given in OET 65 pages 27 ~ 29 as follows:
(5) at the surface of the antenna with aperture area A:
S( surface) = 4P / A
(6) in the near field, with antenna maximum dimension D:
S(near field) = l6"PhtD^2
where" = aperture efficiency
(7) in the transition region R (near field) < R < R (far field) at distance R:
S(transition) = (S(near field) * R(near field)) / R
(8) in the far field or Fraunhofer region:
S(far field) = PG/41tR^2
where G = transmitter antenna gain
Page 11 ofl1
COMPLIANCE CERTIf]CA TION SERVICES DOCUMENT NO: CCSUP4031 A
561F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except injull, without thevl'ritten approval oICCS.
REPORT NO: 05U3616-lB
FT JT. MICROWAVE I.INK
DATE: AUGUST 1 J, 2005
FCC ID' RWM-GR60X
The equations (5) ~ (8) indicate that the variation of power density with distance R from the Cassegrain
antenna is:
a) constant from the antenna surface to the near-field boundary Rnr;
b) decreases as 1/R in the transition region Rnr< R < Rrr;
c) decreases as l/R. in the far field, for R> fur.
~:
...
Snr= 1611P/nDl
near field
S,urface = 4P/A
SI = SnrRnr/R
transition
8rr= PG/41tRl
far field
constant
S
1/R2
R=O Zw>> Zo
R=D2/4A Zw>Zo
(Rnr)
R=O.6 D2/A Zw = Zo = 120n = 3770.
(fur)
When the near field boundary is greater than 3m, as it is for this EDT, the power density can be calculated
from far field measurements according to the following relationship:
Seat 3m) = Seat measurement distance) + 2010g(R/R(far field)) + 1010g (R(far field) / R(near field))
where S = Power Density in dBuW Icm2
R = measurement distance in far field
R(far field) = from equation (16) and
R(near field) = from equation (12) above
Correction Factor from far field boundary to near field region = 10 * log (R(far field) / R(near field))
Correction Factor from far field boundary to near field region (the near field region includes 3 meters) =
3.8 dB at 58.1 GHz and 62.9 GHz.
The correction Factor from the 50 meter measuring distance to near field region (the near field
region includes 3 meters) = 5.1 dB at 58.1 GHz and 4.4 dB at 62.9 GHz.
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POWER DENSITY AND FIELD STRENGTH RELATIONSHIP
From OET 40, the relationship between field strength, power at the spectrum analyzer input, and test
antenna gain is given by
E = (2nIA)* (l20Prx/Grx)I/2
where
Prx = power at receiver input, watts
Grx = antenna gain with impedance matching receiver, numeric
A = wavelength, meters
Power density in the far field is related to field strength:
S= (E^2) 1120 n = (E^2) 1377
where
S is the Power Density in W Im^2
and
E is the Field Strength in Vim
POWER DENSITY LIMITS EXPRESSED AS FIELD STRENGTH
Rearranging terms from above,
E = Sqrt (377 * S)
where E is the field strength in V 1m and S is the power density in W Im^2
For S = 18 uW/cm^2,
S = 0.18 W/m^2 and E = 8.24 Vim or ]38 dBuV/m
For S = 9 uW/cm^2,
S = 0.09 W/m^2 and E = 5.82 Vim or ]35 dBuV/m
For S = 90 pW/cm^2,
S = 9 * 10 ^ (-II) W/m^2 and E = 0.000] 84 V 1m or 45.3 dBuV/m
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7.2. 6 dB BANDWIDTH
APPLICABLE RULE
S 15.255 (e) ..... .For the purposes of this paragraph, emission bandwidth is defined as the
instantaneous frequency range occupied by a steady state radiated signal with modulation, outside
which the radiated power spectral density never exceeds 6 dB below the maximum radiated power
spectral density in the band, as measured with a 100 kHz resolution bandwidth spectrum analyzer.
The center frequency must be stationary during the measurement interval, even ifnot stationary
during normal operation (e.g. for frequency hopping devices).
LIMIT
None; for reporting purposes only.
TEST PROCEDURE
The spectrum analyzer and external mixer are set up to measure the radiated output ofthe transmitter. The
RBW is set to 100 kHz and the VBW is set to 100 kHz. The sweep time is coupled.
In the 1 Mb/s data rate mode, the falloff from the peak to 6 dB below the peak occurs in less than one
horizontal bin on the spectrum analyzer. Therefore, the markers are set to the signal peaks corresponding
to the maximum frequency deviation. Also the emission bandwidth is greater than the image frequency
separation of the external mixer. Therefore, the actual signal and the image signal overlap. On the
analyzer display the actual signal is to the right and the image signal is to the left. The Signal ID trace
only displays the actual signal, however the Max Hold function is not supported in the Signal ID mode.
The portion of the display that shows the image signal is ignored when placing the delta markers for the
emission bandwidth measurement.
RESULTS
No non-compliance noted:
Low 58.1 100M 307
Low 58.1 1G 1380
High I 62.9 100M 305
High 62.9 1G 1380
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6 dB BANDWIDTH
6 dB BANDWIDTH LOW CH, 100 M bits/see
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SIGNAL ID FOR LOW CH, 1 G bits/see
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6 dB BANDWIDTH HIGH CH, 100 M bits/see
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SIGNAL ID FOR HIGH CH, I G bits/see
6 DB BANDWIDTH HIGH CH, 1 G bits/see
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7.3. POWER DENSITY
LIMIT
g15.255 (b) Within the 57-64 GHz band, emission levels shall not exceed the following:
(I) For products other than fixed field disturbance sensors, the average power density of any emission,
measured during the transmit interval, shall not exceed 9 uW/cm^2, as measured 3 meters from the
radiating structure, and the peak power density of any emission shall not exceed 18 u W /cm^2, as
measmed 3 meters from the radiating structure.
(4) Peak power density shall be measured with an RF detector that has a detection bandwidth that
encompasses the 57-64 GHz band and has a video bandwidth of at least 10 MHz, or using an equivalent
measurement method.
(5) The average emission limits shall be calculated, based on the measured peak levels, over the actual
time period during which transmission occurs.
TEST PROCEDURE
Refer to the Measurement Fundamentals section of this report for the derivation of equations and
calculations.
The power meter mount and corresponding horn antenna are set up at the far field distance to measure the
radiated output of the transmitter. The frequency range of the measuring instrumentation is 50 to 75 GHz,
which encompasses the authorized band of 57 to 64 GHz. No video filtering is used.
The measured power level at the far field distance is converted to field strength using:
Power (dBuV) = Power (dBm) + 107
and
Field strength (dBuV/m) = Power (dBuV) + Antenna Factor (dB/m).
This field strength is extrapolated to the field strength at 3 meters using the near field correction factors
derived in the Measurement Fundamentals section of this report.
The 3 meter field strength is then converted to power density for comparison to the 3 meter power density
limit.
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No non-compliance noted:
58.1 100 M -24.80 45.50 127.7 132.8 135 -2.2
58.1 1 G -24.20 45.50 128.3 133.4 135 -1.6
62.9 100 M -24.30 46.20 128.9 133.3 135 -1.7
62.9 IG -25.50 46.20 127.7 132.1 135 -2.9
For reference, the measured field strength is also converted to power density for direct comparison to the
power density limit:
58.1 100 M l32.8 5.1 18.0 9.0
58..1 IG l33.4 5.8 18.0 9.0
62.9 100M 133.3 5.7 18.0 9.0
62.9 IG 132.1 4.3 18.0 9.0
The Peak Power Density is less than both the Peak and Average limits.
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FCC JD' R WM-GEfiOX
7.4. PEAK POWER
LIMIT
15.255(e) Except as specified below, the total peak transmit output power shall not exceed
500 mW.
(2) Peak transmit output power shall be measured with an RF detector that has a detection
bandwidth that encompasses the 57-64 GHz band and has a video bandwidth of at least 10 MHz,
or using an equivalent measurement method.
(3) For the purpose of demonstrating compliance with this paragraph, corrections to the
transmitter output power may be made due to the antenna and circuit loss.
PROCEDURE
The 3 meter field strengths from the peak power density measurements are converted to EIRP
and peak output power using the following formulas:
EIRP (dBm) = field strength (dBuV) - 95.2
Output Power (dBm) = EIRP - Antenna Gain (dBi)
RESULT
No non-compliance noted:
58.1
62.9
133.4
133.3
38.2
38.1
46.00
46.00
-7.8
-7.9
0.166
0.162
500.0
500.0
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FCC 10: RWM-GE60X
7.5. RF EXPOSURE
LIMITS
~ 1. I 3 T 0 The criteria listed in Table 1 shall be used to evaluate the environmental impact of human
exposure to radio-frequency (RF) radiation as specified in ~ 1.1307(b), except in the case of portable
devices which shall be evaluated according to the provisions of ~2.1 093 ofthis chapter.
TABLE 'l-L1MITS FOR MAXIMUr", PERMISS!BLE EXPOSURE (ldPE)
Fr6quency rsnge
(MHz)
E:lectric field
s:trenQth
(Vim)
M agneti:: fiel::l
strength
(Nm)
Power densiLy
(m'Wk:m2)
Ave~ing time
(min utes)
0.3-3.0 ............................................................ 614 1.63 '(100) IS
3.0-30 .................................,,,........................ 1B421T 4.89if '1:900/1'2) 6
30-'200 .................."........................................ 61 .4 0.163 1.0 IS
300-15CO .......................................................... ............,.................. ,.".......................... flUlO I.)
1500-1 CO.COO ................................................. ............................." ............................... 5 6
(A) Limits for Oceupation~I!Corltf"lled EXPOSllf<1>S
(E) Limits for General PopulatimiL!ncontroHed Exposure
0.3-1.34 .........................................................
'1.34-20 .........................................................
614
824/1
1.63
2.1!l.f
'(100)
'(1SOifI)
30
30
TABLE 1-UMITS FOR 1,,'lAXIMUM PERMISSIBLE EXPOSURE (MPE)-Conlinuecl
Frequen~ range Electric field M agnelb fieij Po'\Br densily "vela;Jing time
strength strength
(M z) (Vim) (Aim) ~mWkm1"J i;min utes)
30-'300 ..<.......,................................................. 27.5 0.073 0.2 2>0
300-1500 ...".................................."HU............ .................................. ...................,............ If1 000 3D
1500-1oo.0JO ..........................-...................... .............,.................... ................................. 1.0 ?D
f.. frequency in MHz
. .. P Isne-\i\i'3v'e equ i~'ahmt paw8r density
Non;: 11Tl TABlG1: Occupationallconlrdled limii$ apply in situatioos in which p3rsons a~ exposed as a conseq!uence af their
empbym~nt provided iIl05-8 persoos are ful",. aW3re of iIle potential for B'Xp05Ure' and can exercis;e coolrol O~'er fueir expO'iiu re.
Limils for occupationaV'cootrolled exposure also apply in situations ymen an individual is transient through a location where occuo
pationallcontrdled limits apply prDllided he cr she is made aYlllre cl the potential fer exposure.
NOIE 2 K) TlIIllEt: G=neral popubti:mlunccnlrolled exposures apply in situaHons in ymi:::h the general public may be e".
posed. or in Vtn i::h perrone that at~ e~p:lsed as a consequence of Lh< ampbyment may no! be fully aware 01' the p:ltential lor
ey.posu re or can not elteroisa control over theit elQlC!&u reo
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CALCULATIONS
From ~1.1310 Table I (B), S = 1.0 mW/cm^2
The maximum allowed exposure for uncontrolled exposure is 1 mW/cm^2.
RESULTS
No non-compliance noted:
Maximum power density at 3m is 5.5 uW/cm^2 at 62.9 GHz and 100 Mbitlsec data rate.
S = 5.8 uW/cm^2 = 0.0058 mW/cm^2
This is constant from the antenna surface to the near field boundary (3.66 m at 58.1 GHz, and 3.96 m at
62.9 GHz.)
NOTE: For mobile or fixed location transmitters, the minimum separation distance is 20 em, even if
calculations indicate that the MPE distance would be less.
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7.6. FREQUENCY STABILITY
APPLICABLE RULES
15.255(f) Fundamental emissions must be contained within the frequency bands specified in this section
during all conditions of operation. Equipment is presumed to operate over the temperature range -20 to
+50 degrees Celsius with an input voltage variation of 85% to 115% of rated input voltage, unless
justification is presented to demonstrate otherwise.
TEST PROCEDURE
The EDT is placed in an environmental chamber and set for CW operation. The EDT frequency
was measured over the specified ranges of temperature and operating voltages.
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RESULTS
:'J'ijmp(~c;~ ::V<>ltagi!(~c;l' ~ ,E"~g.(Gl:'flJ !;:4fr<>m25.:d~a'c;;.~1'~\(.(MHzlH
-20 1 1 5 60 57.55850 -6.30
-1 0 1 1 5 60 57.5541 7 -10.63
0 1 1 5 60 57.55292 -1 1 .88
1 0 1 1 5 60 57.55308 -1 1 .72
20 1 1 5 60 57.5531 7 -1 1 .63
25 97.75 60 57.56484 0.04
25 1 1 5 60 57.56480 0.00
25 1 32 60 57.5641 7 -0.63
30 1 1 5 60 57.55359 -1 1 .21
40 1 1 5 60 57.55684 -7.96
50 1 1 5 60 57.561 84 -2.96
The maximum carrier frequency delta is +0.04/.11.88 MHz. All emissions remain within the 57 to 64
GHz authorized band for both modulation rates.
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7..7. FIELD STRENGTH
7.7.1. APPLICABLE RULES
915.255 Operation within the band 57-64 GHz.
(c) Limits on spurious emissions:
(1) The power density ofany emissions outside the 57-64 GHz band shall consist solely of spurious
emissions.
(2) Radiated emissions below 40 GHz shall not exceed the general limits in Section 15.209 of this part.
(3) Between 40 GHz and 200 GHz, the level ofthese emissions shall not exceed 90 pW/cm^2 at a
distance of 3 meters.
(4) The levels of the spurious emissions shall not exceed the level of the fundamental emission.
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S 15.205 (a) Except as shown in paragraph (d) of this section, only spurious emissions are permitted in any
of the frequency bands listed below:
MHz MHz MHz GHz
0.090 - 0.110 16.42 - ] 6.423 399.9 ~ 4]0 4.5 ~ 5.]5
10.495 - 0.505 ]6.69475 - 16.69525 608 - 614 5.35-5.46
2.1735 - 2.1905 16.80425 - 16.80475 960 - 1240 7.25 - 7.75
4.125 - 4.128 25.5 - 25.67 1300 - 1427 8.025 - 8.5
4.17725 - 4.17775 37.5 - 38.25 ]435 - 1626.5 9.0 - 9.2
4.20725 - 4.20775 73 - 74.6 1645.5 - 1646.5 9.3 - 9.5
6.215 - 6.218 74.8 - 75.2 1660 - 1710 10.6-12.7
6.26775 - 6.26825 108 - 121.94 1718.8 -1722.2 13.25 - 13.4
6.31175 - 6.31225 123 - 138 2200 ~ 2300 14.47 - 14.5
8.291 - 8.294 149.9 - 150.05 2310 - 2390 15.35 - ]6.2
8.362 - 8.366 156.52475 - 156.52525 2483.5- 2500 17.7 - 21.4
8.37625 - 8.38675 156.7 - 156.9 2655 - 2900 22.01 - 23.12
8.41425.8.41475 162.0125 - 167.17 3260 ~ 3267 23.6 - 24.0
12.29 - 12.293 167.72 - 173.2 3332 - 3339 31.2-31.8
12.51975- 12.52025 240 - 285 3345.8 - 3358 36.43 - 36.5
]2.57675 - ]2.57725 322 - 335.4 3600 - 4400 e)
13.36 - 13.41
1 Until February 1, 1999, this restricted band shall be 0.490-0.510 MHz.
2 Above 38.6
S 15.205 (b) Except as provided in paragraphs (d) and (e), the field strength of emissions appearing within
these frequency bands shall not exceed the limits shown in Section 15.209. At frequencies equal to or
less than 1000 MHz, compliance with the limits in Section ]5.209 shall be demonstrated using
measurement instrumentation employing a CISPR quasi-peak detector. Above 1000 MHz, compliance
with the emission limits in Section 15.209 shall be demonstrated based on the average value of the
measured emissions. The provisions in Section 15.35 apply to these measurements.
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S15.209 (a) Except as provided elsewhere in this Subpart, the emissions from an intentional radiator shall
not exceed the field strength levels specified in the following table:
Frequency
(MHz)
Field Strength
(microvolts/meter)
Measurement Distance
(meters)
30 - 88
88 - 216
216-960
Above 960
100 **
150 **
200 **
500
"
.)
3
"
.)
3
* * Except as provided in paragraph (g), fundamental emissions from intentional radiators operating under
this Section shall not be located in the frequency bands 54-72 MHz, 76-88 MHz, 174-216 MHz or
470-806 MHz. However, operation within these frequency bands is pennitted under other sections of this
Part, e.g., Sections 15.231 and 15.241.
S 15.209 (b) In the emission table above, the tighter limit applies at the band edges.
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7.7.2. TEST PROCEDURE
The EUT is mounted on a tower. It is set to the worst-case operating condition; worst-case is determined
as the frequency and data rate which yields the highest fundamental power density.
For measurements below 1 GHz the resolution bandwidth is set to 100 kHz for peak detection
measmements or 120 kHz for quasi-peak detection measurements. Peak detection is used unless
otherwise noted as quasi-peak.
For measurements above 1 GHz the resolution bandwidth is set to 1 MHz, then the video bandwidth is set
to 1 MHz for peak measmements and 10Hz for average measurements.
The spectrum from 30 MHz to 200 GHz is investigated.
The frequency range of interest is monitored at a fixed antenna height and EUT azimuth. The frequency
span is set small enough to easily differentiate between broadcast stations, intermittent ambient signals
and EUT emissions. The EUT is rotated through 360 degrees to maximize emissions received. The
antenna is scanned from 1 to 4 meters above the ground plane to further maximize the signal. Measurements
are made with the antenna polarized in both the vertical and the horizontal positions.
For spurious measurements above 26.5 GHz, the maximum distance from the EUT that yields a minimum
system noise floor at least 6 dB below the 15.209 limit, or 15.255 limit, whichever is lower, is calculated
for each separate harmonic mixer band. This distance is shown in the noise floor calculations below. The
antenna is scanned around the entire perimeter surface of the EUT, in both horizontal and vertical
polarizations. During this perimeter scan, the antenna is kept no further from the EUT than the maximum
distance calculated for each mixer band.
For harmonic measurements above 26.5 GHz, the above scanning procedure is used to detect hannonic
emissions. For all emissions detected, the antenna is moved away from the EUT in a 1/3/10 sequence, as
far as possible to maintain a 6 dB signal to noise ratio. Each emission is then maximized by rotating the
EUT and varying the antenna height.
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FCC m. RWM-GE60X
7.7.3. SYSTEM NOISE FLOOR WITH EXTERNAL MIXERS
SYSTEM NOISE FLOOR FROM 26.5 TO 200 GHz
Worst Case Radiated Emissions System Noise Floor, 26.5 to 200 GHz.
External Hannonic Mixers are used for this frequency range. The preamplifier is internal to the spectrum
analyzer, with gain factors built into firmware. The antenna is mounted directly on the harmonic mixer
therefore there is no cable loss.
Each band below corresponds to each harmonic mixer band.
Specification Distance: 3 meters
Freq I SA I AF I Dis~nce Distance Field Limit Margin
GHz dBuV dB/m dB dBuvtm dBuV/m dB
26.5 to 40 GHz
RBW = 1 MHz, peak detection I
40 I 39.2 1 42.31 0.3 -20.0 61.50 74 -12.50
RBW = 1 MHz, averaQe detection
40 1 27.2 I 42.31 0.3 -20.0 49.50 54 -4.50
33 to 50 GHz
RBW = 1 MHz, peak detection I
50 I 39.2 1 44.21 0.1 -29.5 53.86 65.3 -11.44
RBW =1 MHz, averaqe detection
'50 1 27.2 I 44.21 0.03 -40..0 31.40 45.3 -13.90
50 to 75 GHz
RBW = 1 MHz, peak detection I
75 1 39.2 1 47.71 0.1 -29.5 57.36 65.3 -7.94
RBW = 1 MHz, averaqe detection
75 1 27.2 I 47.71 0.03 -40.0 34.90 45.3 -10.40
75 to 110 GHz
RBW = 1 MHz, peak detection I
110 I 39.2 1 51.01 0.1 -29.5 60.66 65.3 -4.64
RBW - 1 MHz, average detection
110 1 27.2 I 51.01 0.03 -40.0 38.20 45.3 -7.10
90 to 140 GHz
RBW = 1 MHz, peak detection I
140 1 39.2 I 50.21 0.1 -29.5 59.86 65.3 -5.44
RBW = 1 MHz, averaqe detection
140 I 27.2 1 50.21 0.03 -40.0 37.40 45.3 -7.90
140 to 200 GHz
RBW - 1 MHz, peak detection 1
200 1 39.2 I 53.31 0.03 -40.0 52.50 65.3 -12.80
RBW = 1 MHz, averaqe detection
200 1 27.2 I 53.31 0.01 -49.5 30.96 45.3 -14.34
Page 30 of30
COMPLIANCE CERTIFICA T]ON SERVICES DOCUMENT NO: CCSUP403] A
56]F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except infull, without the written approval ofCCS
REPORT NO: 05U361 6-IL
EUT: MICROWAVE I ,INK
DATE: AUGUST 11,2005
FCC TO' RWM-GEflOX
7.7.4. SPURIOUS FIELD STRENGTH RESULTS ABOVE 1 GHz
I to 18 GHz
07/19105 HiglL Fnllqnfr,ltry J..feMlnemeut
CoOJflpUaU['li" CE'I1ifi>l;''lIItJOll Sf'l,,-iflps.I\Iorr~ll Hill Open Fi(l(d Sitt"
:TfI~t Ellgl": J05il*pl, Clnmg
:Pr(ljE'([ #~05U3616~1
: Co,.np:UL).: Bi1de:i(I' 'V..,:",
:EUT DE'S{lip.;Miu-u~":'tv@< llilk
;EUT MiNGEtiOX. FEOOX. ARWX
'T~5't T"U"~@lt.: 15.209
},lo,de Op~l'; W-orst Ca~Eo
T~:ft ElJ\umlnE'nt:
flUo; SIN,-i9310
""f1~;(yC4Jl~
P'n'IolI1l,Wlr 1-26GHz
1"34 HI' 84.98 .1
-'
Pre-:ampllfi!r :u....OGHJ
Hun > 18GH:l
Liml1
r FCC 15.209
-1
j
H.......1o
I 'k_j.... 'fH,.>\. I _.~~~'cU. J.
3_1Im! ",'! .J 11,_r.. .1
. _ -l
rl. HPF I ~RrJ<clFlliori
'J .
.:1 .J
PE'"k i\ffQJI;m'l1'IIil~I\t;"t
flBW- VBW=I MH!
AV...";l!t@,lI,J-{t.;'tsw"eJmmfS
R8W~IMHz; VBW~] OH<
Di.t : R..d Pk ,Rood A"l:.! AF i ('1. AJ1I~, D COli'! FIn' P."": A,'~ I Fk I.im : A,,~ I.i1n I Fk M.. : Av~ M., i Not..
(m) i dBnY . ,IBnY i dB.~n! lIB lIB i dB 'dB .IBnV... I dBnV)" I dB"V'n i ,IBuV~n! dB I dB I (ViHI
~f~=Qt!-F$i+~.~~~=~
f Moo.wern",,! Frequency
Dist Distan.c~ to AnteImll
Rood An>lY""' Reading
~ .Ante:nna F act:o.r
CL Cabl. Lo",
Amp Preamp Gain
D Coer Ihstanr.:e Corr~ct to 3 meters
Avg Avoroge Fi,ld Sjre11glh @ 3 rn
Pook Caltul.al.d Pool< Fi.ld Sjr,11glh
BPF High Pa" Filter
Avg Lim Avcr"lle Field Slnngth Limit
Pk Lim Pook Field Sjr,ngth Lumt
AvgMar ~v,. Avuage Linut
Pk Mar Margin v.,. Peok Limit
Page 31 of31
CO!\.1PLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP403IA
56IF MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408)463-0885 FAX: (408) 463-0888
This report shall not be reproduced except inJull, without the written approval olCes.
REPORT NO; 05U3616-11-
BUT: MlCROW AVE LINK
DATE: AUGUST 11,2005
FCC Tn' RWM-GE60X
18 to 26 GHz
01!19ro5 Riell Fr.i"JIl'P'ury 11e..s:m'flnfollt
COL"nI,li",ur" C~rtif1('~tinn S(.lniU5~ 1-IOl":",l\. Hill o})!.'" Fi("ld Sitf'
T fost Engr: JOS'E'pb Chu-"i
Project #:05U3li16-1
C Oli"lpffit)": Eridg:i@~W..."e-
E'UT De !i(lip,; J\.1itlOw:t....t linl::
EUT MN:GEtiIlX. FE60X. AROOX
Te~t T.'u-gE't: FCC l~.::OQ
J\'Iode Oppr: \'~.Dn:t C;'tl'lif'
Tf'st EQulI.llll1eut;
EMCO ltn.. 1.IHGHz
I P....""'l'llltrl.26GIU I p,......,li&r26..40Glh I
~I rmHPS4<9B .1 r----'-"--]
.. -'
HDn > lBGfb.
Llmlt
T39; ARA 18-26;GHz; 51N:1013
FCC 15.209
IlPf
I RoJoo'f'dlor.....1
.:) .
P\!":lk ~-f'e-:.,n\1f~Ulli'l:'U
R.BW~VBW~I MHz
AV"'r;)2~' 'J'l.l~'lslu,.pUl.~uh:
RBW~I MH. ; Y6W:j OK.
'Di,.t R."rlPkIR"'IAv~'1 AF. i PkLuu :A'~LimiI,\;M...:Avgr.h': 1'1.,..
Gfu i (lnl dB,,,V I ,IB"V "lB'", lIB dB: dB dB I ,IB,,\' ,"' ,m"v',,"' ,IBoV11l ' dBuVlm I dB dB (ViHi
.~g~~ijmll~:::f-,?JE)=~~=~~"iij-'j_.j~~::l:::;:~:.t-..~.ti~:~t~~~"-1~~::~~:i=:~~~".".i...--~~~j-=~~-~f~~~.~:=j==..."""._-,.X. ..~:--::::::....
f Mell-llurement Frequt:ncy
Dist D:nstance to Antenna
R..d haly.., Reading
AP J..menna F a~tor
CL Cable r..",
Amp Preamp Gain
D COlT Distance COI'l'.ed to 3 meters
Avg Average Field Stttoglh @ 3 m
Foal< Calculated Peal< Field 5lteoglh
HPF High Pm Filter
Avg Lim Average Field Streoglh Limlt
Pk Lim Peal< Field Str,oglh Limlt
Avg Mar Margin v,. Average Limit
Pk Mar Margin v.. Peal< Lumt
Page 32 of 32
COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP403IA
561 F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except infull, without the written approval ofCeS.
REPORT NO: 05U3616-1l
RUT' MICROW A VR LINK
DATE: AUGUST 11,2005
FCC TO: R WM-GE60X
26.5 to 200 GHz
07lJ9A1S H;gh Freqiiellcy M.f:;iiSUr'(lmefJ;l
Co:mpl~.a:nce Cer1:il'ics1ion Servkes, Mor'gan Hill Open FIeld Site
Test Engr~ Joseph Chung
Pr,ojed #:051J3616--J
Company:BtideeW.a,ve
EUT Oescrip.:MicrawAve link
EUT MIN:GE6OX, f'E6lJX, AR60X
Test Target: FCC 15.209 below 40(;: Hz, 15.255 .nbove 4OGHz.
Mode Op,er: Worst Clt:'j;~
'T.est Equipment: EJ:ternal H.!Irmon~1[ miurs
Peak Measurements
RBW'"'VBW-IMHz
Aver02e Measurements
RBW-IMHz : VBW=IOH.
r IOi.t I Read Pk I Re.d Avg. i AF CL
GHz. (m) dBuV dBuV I dBlm dB
"''''.96(1 I 0.10 I 4..tO .,u.5
~.t960 ! O.OJ. I 36.] ~ 43.:1
Amp
dB
D CO'IT
dB
.2~.5
_<<to
Fltr I Peak I Avg ~ Pk Lim A't'g Urn I Pk Mar Avg Mal' II
dB I dBuV/m I dB.V/m I dB. Vim dB.Vlm I dB ' dB i
I SlUt 4i5.J .7.J
I I 39.' 45.3 -5..7
Notes
(VIII)
H
H
f
Disl
Read
AF
CL
Measurement Frequ.ency
Dis.tance to Antenna
Ana'lyzer Reading
Antenna Factor
C.ble 1.0"
Amp Preamp Gain
D Corr D~stanee Correct to 3 meters
Avg Average Field Strengtb@ 3 m
P""k Calculated P""k Field Strengtb
HPF High Pass Filte,
Avg Lim
PkLim
Avg Mar
Pk Mar
Average Field Strenglh Umlt
Peak Field Slrength Limit
r..1a,rgln VS, Average Liliijt
:MargIn vs Peak Limrt
Page 33 of 33
COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP403IA
561F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except infull, }j'ithout the written approval oICCS.
REPORT NO: 05U3616-H
EUT' MICROWAVE UNK
DATE: AUGUST 1 I, 2005
FCC TO: RWM-GEoOX
7.7.5. WORST~CASE RADIATED EMISSIONS BELOW 1 GHz
SPURIOUS EMISSIONS 30 TO 1000 MHz (WORST-CASE CONFIGURATION.)
Vertical
,~.OOMPUAHCE
'"'..~
.".\,~~,t',i'fli!''''',i:;;,
~~t;y","i~
S61P Malterey Road
Hot"gan Hill, CA 95037
Tel: (40B) 4'53-0888
F<l.X, (40a) 463-0885
Data#: ZS
FllcQ~h EW,::::e:.SOX-7200S.ENI Dat'" , 07-21-2005 Tim>9: 14:46:15
/in t-l (.tnuVJm)
4t~~..IJ,.~,.,..,
I.A '
O!J()
2U
:i18 lilZ
11""'1"*_" (Mlb)
00ti
1000
(AIiiIb.Al'C)
Trace: 27
R;;;f TracQ,
Condition: PCC CLASS-B VERTICAL
'lest Operator: Jos",ph Chung
Project t: 05U361G-l
company: EridgeWave
EUT: Microwave link
Model No. GE/FE/AR GOY.
configuration Pole stand
Target of Test FCC, Class B
Melde of operCltion: 1 G bits/sE<C
Rsad Limit Over
Freq Lavel Fdctol' Lav.,l Lioo Limit Remark
Page: 1
- MHz dBUV -"""'dB dBUV /m dBuV!m - dB
1
82 .380 30 ,97 8.60 39. 57 40, 00 -0.43 Peak
121 .180 23.00 15 .16 3B. 16 43. 50 -s.. 34 P;.ak
230 . 79'J 30 ,60 13. OS 43 68 46. 00 -2. 32 Peak
255 .040 25.97 14..09 40. C1G 46. 00 -5. 94 Peak
407 .330:) 24 .26, 18 .21 42.47 46, 00 - 3. 53 Peak
G20 730 19.65 2l ..88 41. 54 46. 00 -4 ,46 Pe",k
-.
.<.
J
4,
5
6
Page 34 of 34
COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP403IA
561F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except inJull. without the written approval oJCCs.
REPORT NO: 05U3616-lB
ElJT MJr:ROW AVE T JNK
DATE: AUGUST 11,2005
FCC fD' RWM-fiE60X
Horizontal
5GlF l-lOnti\?rlilY p..oad
IoI01'9<1n Hill, CA 9 5 037
Tlih {40e) 4G3-0SB8
Fax, <40S) 463-0885
Datalt: ]0
File#, B'&GE50X-72005.E[.a Dat~: (17~21~200S TimQ, 14:58,21
1_...HotOu'':;'''.)
6U
30
FCC C fiSSJ't
__"~~':~=~'~:'~-J-'-'
o 3ll
224
418 6l:!
1"."""IO<"Y (Mlh)
lOti
lOOO
(AAidi'l.: .A.TC~
Tri'lCQ, :25<
RQf TraCie:
condition, FCC CLA.SS-B HORIZONTAL
T€lst Op9rator: Josi!ph Chung
projQct t, 05U3616-1
Compau)': Br1dgewave
BUT: Microwave link
Nodel No. GB lFE/ AR 60 X
configuration pole stand
Tar<;;I'..t of Test FCC, Class B
Mode or Operation, 1 G bits/see
page: 1
Read Limit Over
Freq L"ve1 Factor Level Line Limit Remark
-~ deuv -dB dBuv/m dBU'I!l1l - . ,:iB --
4
5
6
85 ~290 28. 56 .8 .25 36. 81 40 00 -3. 19 Pe>:tk
119 .240 21.11 15. OS 36.16 43 .50 -7. 34 peak
230 ~ 79q) 26 5!? 13. 08 39,67 46, 00 -6. :n peak
303 ..540 20,B9 15 75 36. 64 46,00 ..,Si. ?,6 Peak
407.330 20.19 18.21 38.40 46 00 -7, 60 Peak
61.8 .79!) 18 ,91 21.85 40.76 46. 00 - 5. 24 peak
1
:::
3
Page 35 of35
COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP4031 A
561F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except infull, without the written approval ofCCS.
REPORT NO: 05U3616-lB
RUT' M1CROW AVE LINK
DATE: AUGUST 11, 2005
FCC TO' RWM-GE60X
7..8. POWERLlNE CONDUCTED EMISSIONS
LIMIT
S 15.207 (a) Except as shown in paragraphs (b) and (c) of this section, for an intentional radiator that is
designed to be connected to the public utility (AC) power line, the radio frequency voltage that is
conducted back onto the AC power line on any frequency or frequencies within the band 150 kHz to 30
MHz shall not exceed the limits in the following table, as measured using a 50 IlH/50 ohms line
impedance stabilization network (LISN). Compliance with the provisions of this paragraph shall be based
on the measurement of the radio frequency voltage between each power line and ground at the power
terminal.
The lower limit applies at the boundary between the frequency ranges.
Frt1(lUCnCV pf Emi!>$ion (MHz) CtmduC!cd Limit (aBnV)
Ouasi-peak A \Cril$.C
0.15-0.5 66 to 56 56 to 46
0.5.5 56 46
5-30 60 50
Dccrcrt:>Cs With the logullthm ofthc fTcqucncy.
TEST PROCEDURE
The EUT is placed on a non-conducting table 40 em from the vertical ground plane and 80 em above the
horizontal ground plane. The EUT is configured in accordance with ANSI C63.4. EUT was continually
transmitting modulated signal during test.
The resolution bandwidth is set to 9 kHz for both peak detection and quasi-peak detection measurements.
Peak detection is used unless otherwise noted as quasi-peak.
Line conducted data is recorded for both NEUTRAL and HOT lines.
RESULTS
No non-compliance noted:
Page 36 of 36
COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP4031 A
561f MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except infull, ],jlithout the written approval ofceS.
REPORT NO: 05U3616-1B
HIT' MICROWAVE LINK
DATE: AUGUST 11,2005
FCC ID: RWM-GE60X
6 WORST EMISSIONS
0.15
0.25
21.15
0.17
Oj4
25.59
Ii WOfstData
Page 37 of37
Remark
L 1/12
L1
L1
L1
12
12
12
COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP4031A
561F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except infull, without the written approval ofCCS
REPORT NO: 05U361 6-] B
BUT: MTCROW A VB LINK
DATE: AUGUST 11, 2005
FCC Tf). RWM-GE60X
LINE 1 RESULTS
~':-"':,A"l~;l;" L';~rq,r.:'r.
\A.c:~;,EU'
561F t4:nten~}' R-:;ad
M:n~a,n Hill r ('jO!,;. 9E;037 USA
1',:,1: 1<t08:1 <t63- OBSS
Fax: ~4,OG) 461',~ OH8.fi
co MPJIANCE
Dat,3#: 14 .-He#'; BRIDGE.IiI'l!
:tl!J L~vB-'l ( dg'UV~l
Dat~: 07~lB~~OO$ Tl~j l5~15;4&
CCiTI ,11anc:~ C,ffirtj'fjcat:~<:'11 SeI"!~"~C':::S
35 r
ClSPR CI. OS,S ~ E
.15
2.
:f't"Equ~nc:r ~NHz; ~
10
'Ira.:::.., ".
liT<:'Ject H':.,
'Ja s t E:ngr
Company
EU'.!'
l<l::d=l No. ;
Tast C011f19.;
M:)da .:;.f '='P. :
1''1'1''" of Ti,' st :
]?l':;-wer I'f'~ lns
:Ref T;r~a,=e:;
051.DG1G-1
,J.:;.s"'ph chung
:a:rldg~w8ve
Mlcr,:;~'a\'e 11nk
G..E/ F~/ J~J.'tfj 0
Pc.I.;; t't!~iullt.;;d. rad1.a ted UI: H.
c~ntj:a.::<u.s tr~,n$m]E:gic-rl
FCC cl<lsS B
11SVA.C/6Q Hz
",1, p.",ak ( BIZlck I, "''''] t Grc~en )
Page 38 of 38
COMPLTANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP4031A
56IF MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except injull, without the written approval ojCCS.
REPORT NO: 05U36I6-1B
EUT- MICROW A VR T JNK
DATE: AUGUST 11,2005
FCC ID' RWM-GE60X
LINE 2 RESULTS
selF r~nterey ~~ad
M:'l'gan H.i 11, Cl\. 9$017 USA
'1',,,1, (40B) 461~Og05
~'ax, (40B) 463-IHi~!';
Datal/:n l"lle#, llRII:.~E.fi!~r
iloLP';v'2l ldBuV)
!J4t~: 07-,lB-2005 '!':)'t1b>--:J': 15:52:::501
Ccnl ,.],:1a:ru:::e CeI~t::~ f:,~C.-Z'ttl;::>Jl ,s€!r'."J,C':::S
35
<.:rSFR CL \,Sl,~~~E
:!.
rrwqu€:;t1cy (MHz;
IG'
20
:;0
Tr'2K:a ',::
F-rc:.jec:t u':?~
T,;;st En':Jr
Cornp'iiny
EU7
r"i=d,e:l .11':::1. ;:
Te=Et C:nf 19 . :
M::"d.:? .:f: C"p~
,;;f '!';;,st
M3111S
Re f 'Trac;;,;
05tDG16-1
w;:.s:eph chung
ar1dg;;,w.;;v.,
M.1CrC<\\'8'1'iore l1nF~
(l.E./i'"l1:il\.FlGO
Pel;;, m:;un:",d, radiated un1 t
'::'::>n t }l1J:1'U S t r"'3n r~~rn ~ 8 S ~.c~n
= Class B
115VAC/CO Hz
L~; !'\:"d'i ( B1.ad, .I, l.v'~ ( Green I
Page 39 of39
COMPLIANCE CERTIFICA TION SERVICES DOCUMENT NO: CCSUP403IA
561F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except infull, without the written approval ofCCS.
REPORT NO: 05U3616-lB
RUT: MICROW A VR LTNK
DATE: AUGUST] 1, 2005
FCC m. RWM-GE60X
8. SETUP PHOTOS
RADIATED RF MEASUREMENT SETUP
RADIA TED FUNDAMENTAL SETUP
Page 40 of 40
COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP4031A
561 F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except in/ull, without the written approval ofCCS.
REPORT NO: 05U3616-IB
El JT' MlCROW A VE LINK
DATE: AUGUST 11,2005
FCC In: RWM-GE60X
RADIATED SPURIOUS FRONT PHOTO
Page 41 of 41
COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP4031A
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This report shall not be reproduced except infull, without the written approval ofCCS.
REPORT NO: 05U3616-Ih
EUT' MICROWAVE UNK
DATE: AUGUST 11,2005
FCC m. R WM-GE60X
RADIA TED SPURlOUS BACK PHOTO
Page 42 of 42
COMPLIANCE CERTIFICA TION SERVICES DOCUMENT NO: CCSUP4031A
561F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888
This report shall not be reproduced except in full, without the written approval of ccs.
REPORT NO: 05U3616~IB
El IT- MICROW A VB 1 ,INK
DATE: AUGUST 11,2005
FCC 10: RWM-GEoOX
FREQUENCY STABILITY MEASUREMENT SETUP
ENVIRONMENTAL CHAMBER PHOTO
Page 43 of 43
COMPLIANCE CERTIfICATION SERVICES DOCUMENT NO: CCSUP4031 A
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This report shall not be reproduced except infull, without the written approval ofCCS.
REPORT NO: 05U3616-1B
HIT: MICROWA VE LINK
DATE: AUGUST 11,2005
FCC TO: RWM-GE()OX
POWERLINE CONDUCTED EMISSIONS MEASUREMENT SETUP
LINE CONDUCTED FRONT PHOTO
Page 44 of 44
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This report shall not be reproduced except infull, without the written approval ofCCS.
REPORT NO: 05U3616-IB
HIT' MICROWAVE LlNK
DATE: AUGUST] 1, 2005
FCC TD: RWM-GE60X
LINE CONDUCTED BACK PHOTO
END OF REPORT
Page 45 of 45
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This report shall not be reproduced except injull, without the written approval ojCCs.