Exhibit E Test Measurement Report per 2 1033 b6

FCC ID: HBW2168

Test Report

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FCCID_689354

                                                                     Engineering Test Report No. 36146-02




                                          Measurement of RF Interference from a Model
                                                    1A6226-1 Transmitter




                                    For            : Chamberlain Manufacturing
                                                     Elmhurst, IL

                                    P.O. No.       :   852241
                                    Date Received :    April 5, 2006
                                    Date Tested :      April 6 and 7, 2006
                                    Test Personnel :   Mark E. Longinotti
                                    Specification :    FCC "Code of Federal Regulations” Title 47
                                                       Part 15, Subpart C




                                                   Test Report By       :
                                                                            Mark E. Longinotti
                                                                            NARTE® Certified EMC Test
                                                                            Engineer, ATL-0154-E




                                                   Approved By          :
Elite Electronic Engineering Inc.
1516 Centre Circle
                                                                            Raymond J. Klouda
Downers Grove, IL 60515                                                     Registered Professional Engineer of
Tel : (630) 495-9770                                                        Illinois - 44894
Fax: (630) 495-9785
www.elitetest.com


                                                                                                               Engineering Test Report No. 36146-02



                                                                 TABLE OF CONTENTS
PARAGRAPH                                                     DESCRIPTION OF CONTENTS                                                                            PAGE NO.
1.0 INTRODUCTION ................................................................................................................................................ 4
   1.1 Description of Test Item.................................................................................................................................... 4
   1.2 Purpose............................................................................................................................................................. 4
   1.3 Deviations, Additions and Exclusions ............................................................................................................... 4
   1.4 Applicable Documents ...................................................................................................................................... 4
   1.5 Subcontractor Identification .............................................................................................................................. 4
   1.6 Laboratory Conditions..................................................................................................................................... 4
2.0 TEST ITEM SET-UP AND OPERATION............................................................................................................ 4
   2.1 Power Input ...................................................................................................................................................... 5
   2.2 Grounding......................................................................................................................................................... 5
   2.3 Peripheral Equipment........................................................................................................................................ 5
   2.4 Interconnect Cables........................................................................................................................................... 5
   2.5 Operational Mode ............................................................................................................................................. 5
   2.6 Test Item Modifications................................................................................................................................... 5
3.0 TEST EQUIPMENT ............................................................................................................................................. 5
   3.1 Test Equipment List .......................................................................................................................................... 5
   3.2 Calibration Traceability ................................................................................................................................... 5
   3.3 Measurement Uncertainty................................................................................................................................ 5
4.0 REQUIREMENTS, PROCEDURES AND RESULTS.......................................................................................... 6
   4.1 Powerline Conducted Emissions ..................................................................................................................... 6
      4.1.1 Requirements............................................................................................................................................ 6
      4.1.2 Procedures ................................................................................................................................................ 6
      4.1.3 Results ...................................................................................................................................................... 7
   4.2 Duty Cycle Factor Measurements .................................................................................................................. 7
      4.2.1 Procedures ............................................................................................................................................... 7
      4.2.2 Results ..................................................................................................................................................... 7
   4.3 Radiated Measurements................................................................................................................................... 8
      4.3.1 Requirements............................................................................................................................................ 8
      4.3.2 Procedures ................................................................................................................................................ 8
      4.3.3 Results ...................................................................................................................................................... 9
   4.4 Occupied Bandwidth Measurements ............................................................................................................... 9
      4.4.1 Requirement ............................................................................................................................................. 9
      4.4.2 Procedures ................................................................................................................................................ 9
      4.4.3 Results ...................................................................................................................................................... 9
5.0 CONCLUSIONS................................................................................................................................................. 10
6.0 CERTIFICATION .............................................................................................................................................. 10
7.0 ENDORSEMENT DISCLAIMER ...................................................................................................................... 10
TABLE I - EQUIPMENT LIST .............................................................................................................................................................11




                            THIS REPORT SHALL NOT BE REPRODUCED, EXCEPT IN FULL, WITHOUT THE
                            WRITTEN APPROVAL OF ELITE ELECTRONIC ENGINEERING INCORPORATED.
                                                                                                                                                                 Page 2 of 25


                                      Engineering Test Report No. 36146-02




                      REVISION HISTORY

Revision    Date                  Description
  —      04/14/2006              Initial release




                                                               Page 3 of 25


                                                                Engineering Test Report No. 36146-02




                     Measurement of RF Emissions from a 1A6226-1 transmitter

1.0 INTRODUCTION:
        1.1 Description of Test Item - This document represents the results of the series of radio
interference measurements performed on a Model No. 1A6226-1, Serial No. None Assigned, transmitter,
(hereinafter referred to as the test item). The test item was designed to transmit at approximately 433MHz
using an internal antenna. The test item was manufactured and submitted for testing by Chamberlain
Manufacturing located in Elmhurst, IL.
        1.2 Purpose - The test series was performed to determine if the test item meets the conducted and
radiated RF emission requirements of the FCC "Code of Federal Regulations" Title 47, Part 15, Subpart
C, Sections 15.207 and 15.231 for Intentional Radiators. Testing was performed in accordance with
ANSI C63.4-2003.
        1.3 Deviations, Additions and Exclusions - There were no deviations, additions to, or exclusions
from the test specification during this test series.
        1.4 Applicable Documents - The following documents of the exact issue designated form part of
this document to the extent specified herein:
        - Federal Communications Commission "Code of Federal
          Regulations", Title 47, Part 15, Subpart C, dated 1 October 2005

        - ANSI C63.4-2003, "American National Standard for Methods
          of Measurement of Radio-Noise Emissions from Low-Voltage
          Electrical and Electronic Equipment in the Range of 9 kHz to 40 GHz"

        1.5 Subcontractor Identification - This series of tests was performed by Elite Electronic
Engineering Incorporated of Downers Grove, Illinois. The laboratory is accredited by the National
Institute of Standards and Technology (NIST) under the National Voluntary Laboratory Accreditation
Program (NVLAP). NVLAP Lab Code: 100278-0.
        1.6 Laboratory Conditions The temperature at the time of the test was 24°C and the relative
humidity was 18%.
2.0 TEST ITEM SET-UP AND OPERATION:
        The test item is a transmitter, Part No. 1A6226-1. The test item was installed in a Model No. G3800
Garage Door Opener.
A block diagram of the test item set-up is shown as Figure 1.

                                                                                              Page 4 of 25


                                                                 Engineering Test Report No. 36146-02



         2.1 Power Input - The Model No. G3800 Garage Door Opener in which the test item was
installed, obtained 115V, 60Hz power via a 3 wire, 1.8 meter long, unshielded power cord. The high and
low leads were connected through a line impedance stabilization network (LISN) which was located on
the copper ground plane. The network complies with the requirements of Paragraph 4.1.2 of ANSI
C63.4-2003.
         2.2 Grounding - The test item was grounded only through the third wire of its input power cord.
         2.3 Peripheral Equipment - The following peripheral equipment was submitted with the test
item:
             Item                                               Description
          IR Sensors                                     2 each - Infrared Sensors
    Wall Mount Switch                                       Wall Mount Switch


         2.4 Interconnect Cables - The following interconnect cables were submitted with the test item:
             Item                                               Description
        IR Sensor Cables                        2 each – 10.5 meter long, unshielded cables
Wall Mount Switch Cables                          1 each – 8 meter long, unshielded cable


         2.5 Operational Mode - For all tests, the test item was placed on an 80cm high non-conductive
stand. The test item was set up so that upon power up it would continuously transmit at approximately
433MHz.
         2.6 Test Item Modifications - No modifications were required for compliance to the emission
requirements of the FCC "Code of Federal Regulations" Title 47, Part 15, Subpart C, Sections 15.207
and 15.231 for Intentional Radiators
3.0 TEST EQUIPMENT:
         3.1 Test Equipment List - A list of the test equipment used can be found on Table I. All
equipment was calibrated per the instruction manuals supplied by the manufacturer.
         3.2 Calibration Traceability Test equipment is maintained and calibrated on a regular basis.
All calibrations are traceable to the National Institute of Standards and Technology (NIST).
         3.3 Measurement Uncertainty - All measurements are an estimate of their true value. The
measurement uncertainty characterizes, with a specified confidence level, the spread of values which


                                                                                               Page 5 of 25


                                                                 Engineering Test Report No. 36146-02



may be possible for a given measurement system.
       The measurement uncertainty budgets were based on guidelines in "ISO Guide to the Expression
of Uncertainty in Measurements" and NAMAS NIS81 "The Treatment of Uncertainty in EMC
Measurements".
        The measurement uncertainty for these tests is presented below:
                                       Conducted Emission Measurements
                       Combined Standard Uncertainty                 1.07           -1.07
                 Expanded Uncertainty (95% confidence)               2.1             -2.1


                                    Radiated Emission Measurements
                       Combined Standard Uncertainty                2.26            -2.18
                 Expanded Uncertainty (95% confidence)               4.5            -4.4


4.0 REQUIREMENTS, PROCEDURES AND RESULTS:
       4.1 Powerline Conducted Emissions
                        4.1.1 Requirements – All radio frequency voltages on the power lines for any
frequency or frequencies of an intentional radiator shall not exceed the limits in the following table:
                   CONDUCTED LIMITS FOR UNITENTIONAL RADIATORS
           Frequency                 RFI Voltage                         RFI Voltage
             MHz                     dBuV(QP)                           dBuV(Average)
                                  66 decreasing with                  56 decreasing with
            0.15-0.5
                             logarithm of frequency to 56        logarithm of frequency to 46
              0.5-5                       56                                   46
              5-30                        60                                   40

Note 1: The lower limit shall apply at the transition frequencies.
Note 2: If the levels measured using the QP detector meet both the QP and the Average limits, the test
item is considered to have met both requirements and measurements do not need to be performed using
the Average detector.
               4.1.2 Procedures - The interference on each power lead was measured by connecting the
measuring equipment to the appropriate meter terminal of the LISN. The meter terminal of the LISN not
under test was terminated with 50 ohm. Measurements were first made over the entire frequency range
from 150kHz through 30MHz with a peak detector and the results were automatically plotted. The data

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                                                                Engineering Test Report No. 36146-02



thus obtained was then searched by the computer for the highest levels. Quasi-peak measurements were
automatically performed at the frequencies selected from the highest peak measurements, and the results
printed.
               4.1.3 Results - The plots of the peak preliminary conducted voltage levels on each power
line are presented on pages 15 and 16. The conducted limit for intentional radiators is shown as a
reference. The final quasi-peak results are presented on pages 17 and 18. The emissions level closest to
the limit (worst case) occurred at 199kHz. The emissions level at this frequency was 7.9dB within the
limit. Photographs of the test configuration which yielded the highest or worst case, conducted emission
levels are shown on Figure 2.
       4.2 Duty Cycle Factor Measurements:
               4.2.1 Procedures: The duty cycle factor is used to convert peak detected readings to
average readings. This factor is computed from the time domain trace of the pulse modulation signal.
       With the transmitter set up to transmit for maximum pulse density, the time domain trace is
displayed on the spectrum analyzer. This trace is obtained by tuning center frequency to the transmitter
frequency and then setting a zero span width with 10msec/div. The amplitude settings are adjusted so
that the on/off transitions clear the 4th division from the bottom of the display. The markers are set at
the beginning and end of a word period. If the word period exceeds 100 msec the word period is set to
100 msec. The on-time and off-time are then measured. The on-time is total time signal level exceeds
the 4th division. Off-time is time under for the word period. The duty cycle is then computed as the (On-
time/ word period) where the word period = (On-time + Off-time).
               4.2.2 Results: A representative plot of the duty cycle is shown on data page 19. Since
the transmitter uses a rolling code, the duty cycle correction factor used was calculated based on the
average case. The following average case information was supplied by Chamberlain Manufacturing:
       An average ON time is used because of the ever changing rolling code.
               For 100 msec period:
                      1msec average sync pulse (50% of the time the sync pulse is 0.5msec and 50% of
                      the time the sync pulse is 1.5msec)

                      20 digits for a total time of 40 msec, but only half of them are ON (oscillator
                      running) for an average of 20 msec.

                      59msec average blanktime


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                                                               Engineering Test Report No. 36146-02



                       The total is 100msec.

                       20 log 21/100 = -13.55

        With the test item transmitting at 390MHz, the average case duty cycle correction factor would
be -13.55dB.
        4.3 Radiated Measurements
               4.3.1 Requirements - The test item must comply with the requirements of FCC "Code of
Federal Regulations Title 47", Part 15, Subpart C, Section 15.205 et seq.
        Paragraph 15.231(e) has the following radiated emission limits:
        Fundamental                                                Field Strength
        Frequency                    Field Intensity               Harmonics and
        MHz                          uV/m @ 3 meters               Spurious @ 3 meters
        260 to 470                   1,500 to 5,000*                150 to 500*
* - Linear Interpolation
        For 433.89MHz, the limit at the fundamental is 4398.2uV/m @ 3m and the limit on the
harmonics is 439.8uV/m @ 3m.
        In addition, emissions appearing in the Restricted Bands of Operation listed in paragraph
15.205(a) shall not exceed the general requirements shown in paragraph 15.209.
               4.3.2 Procedures - Open field measurements were performed in a 32ft. x 20ft. x 14ft.
high shielded enclosure. The shielded enclosure prevents emissions from other sources, such as radio
and TV stations from interfering with the measurements. All powerlines and signal lines entering the
enclosure pass through filters on the enclosure wall. The powerline filters prevent extraneous signals
from entering the enclosure on these leads.
        A preliminary radiated emissions test was performed to determine the emission characteristics of
the test item. For the preliminary test, a broadband measuring antenna was positioned at a 3 meter
distance from the test item. The entire frequency range from 30MHz to 5.0GHz was investigated using a
peak detector function. The data was then processed by the computer to calculate equivalent field
intensity.
        The final open field emission tests were then manually performed over the frequency range of
30MHz to 5000MHz. Between 30MHz and 1000MHz, a tuned dipole antenna was used as the pick-up
device. A broadband double ridged waveguide antenna was used as the pick-up device for all
frequencies above 1GHz. All significant broadband and narrowband signals were measured and
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                                                                Engineering Test Report No. 36146-02



recorded. The peak detected levels were converted to average levels using a duty cycle factor which was
computed from the pulse train.


         To ensure that maximum or worst case, emission levels were measured, the following steps were
taken:
                (1)    The test item was rotated so that all of its sides were exposed to the receiving
                       antenna.
                (2)    Since the measuring antenna is linearly polarized, both horizontal and vertical
                       field components were measured.
                (3)    The measuring antenna was raised and lowered from 1 to 4 meters for each
                       antenna polarization to maximize the readings.
                (4)    For hand-held or body-worn devices, the test item was rotated through three
                       orthogonal axes to determine which orientation produces the highest emission
                       relative to the limit.

                4.3.3 Results - The preliminary plots, with the test item transmitting at 433MHz, are
presented on data pages 20 through 23. The plots are presented for a reference only, and are not used to
determine compliance.
         The final open area radiated levels, with the test item transmitting at 433MHz, are presented on
data page 24. As can be seen from the data, all emissions measured from the test item were within the
specification limits. The emissions level closet to the limit (worst case) occurred at 433.90MHz. The
emissions level at this frequency was 2.7dB within the limit. See data page 24 for details. Photographs
of the test configuration which yielded the highest, or worst case, radiated emission levels are shown on
Figure 3.
         4.4 Occupied Bandwidth Measurements
                4.4.1 Requirement - In accordance with paragraph 15.231(c), all emissions within 20dB
of the peak amplitude level of the center frequency are required to be within a band less than 0.25% of
the center frequency wide.
                4.4.2 Procedures - The test item was placed on an 80cm high non-conductive stand. The
unit was set to transmit continuously. With an antenna positioned nearby, occupied bandwidth emissions
were displayed on the spectrum analyzer. The resolution bandwidth was set to 30 kHz and span was set
to 2 MHz. The frequency spectrum near the fundamental was plotted.
                4.4.3 Results - The plot of the emissions near the fundamental frequency are presented
on data page 25. As can be seen from this data page, the transmitter met the occupied bandwidth

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                                                                  Engineering Test Report No. 36146-02



requirements. In addition, the 99% emission bandwidth measured 143 kHz when using the analyzer’s
special function key with the measurement BW set to 30 kHz.
5.0 CONCLUSIONS:
        It was determined that the Chamberlain Manufacturing, Part No. 1A6226-1, Serial No. None
Assigned, did fully meet the conducted and radiated emission requirements of the FCC "Code of Federal
Regulations" Title 47, Part 15, Subpart C, Section 15.205 et seq. for Intentional Radiators, when tested
per ANSI C63.4-2003.
6.0 CERTIFICATION:
        Elite Electronic Engineering Incorporated certifies that the information contained in this report was
obtained under conditions which meet or exceed those specified in the test specifications.
        The data presented in this test report pertains to the test item at the test date. Any electrical or
mechanical modification made to the test item subsequent to the specified test date will serve to invalidate
the data and void this certification.
7.0 ENDORSEMENT DISCLAIMER:
        This report must not be used to claim product endorsement by NVLAP or any agency of the US
Government.




                                                                                              Page 10 of 25


                                                                                      Engineering Test Report No. 36146-02




TABLE I: TEST EQUIPMENT LIST
                                               ELITE ELECTRONIC ENG. INC.                                        Page: 1
========================================================================================================================
Eq ID Equipment Description      Manufacturer    Model No.    Serial No.   Frequency Range Cal Date Cal Inv Due Date
----- -------------------------- --------------- ------------ ------------ ---------------- -------- -------- --------

Equipment Type: ACCESSORIES, MISCELLANEOUS
---------------
XZG2 ATTENUATOR/SWITCH DRIVER    HEWLETT PACKARD 11713A            2223A01751   ---                        N/A
XZG3 ATTENUATOR/SWITCH DRIVER    HEWLETT PACKARD 11713A            2421A03059   ---                        N/A
Equipment Type: AMPLIFIERS
---------------
APK2 PREAMPLIFIER                 AGILENT TECHNOL 8449B            3008A01595   1-26.5GHZ       04/10/06 12      04/10/07
APK3 PREAMPLIFIER                 AGILENT TECHNOL 8449B            3008A01593   1-26.5GHZ       06/03/05 12      06/03/06

Equipment Type: ANTENNAS
---------------
NDQ1 TUNED DIPOLE ANTENNA         EMCO                3121C-DB4    313          400-1000MHZ     03/10/06 12      03/10/07
NTA0 BILOG ANTENNA                CHASE EMC LTD.      BILOG CBL611 2057         0.03-2GHZ       08/15/05 12      08/15/06
NWF0 RIDGED WAVE GUIDE            EMCO                3105         2035         1-12.4GHZ       10/01/05 12      10/01/06
Equipment Type: ATTENUATORS
---------------
T1D2 10DB, 20W ATTENUATOR         NARDA               768-10       6            DC-11GHZ        07/27/05 12      07/27/06

Equipment Type: CONTROLLERS
---------------
CDS1 COMPUTER                     GATEWAY             MFATXPNT NMZ 0028483110   1.8GHZ                     N/A
CDS2 COMPUTER                     GATEWAY             MFATXPNT NMZ 0028483108   1.8GHZ                     N/A
CMA0 MULTI-DEVICE CONTROLLER      EMCO                2090         9701-1213    ---                        N/A

Equipment Type: PROBES; CLAMP-ON & LISNS
---------------
PLLC 50UH LISN 462D              ELITE                462D/70A     013          0.01-400MHZ     08/11/05 12      08/11/06
PLLD 50UH LISN 462D              ELITE                462D/70A     014          0.01-400MHZ     01/19/06 12      01/19/07
Equipment Type: PRINTERS AND PLOTTERS
---------------
HRE1 LASER JET 5P                HEWLETT PACKARD C3150A            USHB061052   ---                        N/A
HRL1 PRINTER LASERJET 2200D      HEWLETT PACKARD C7058A            CNGRG90023   ---                        N/A
Equipment Type: RECEIVERS
---------------
RAC0 SPECTRUM ANALYZER            HEWLETT   PACKARD   85660B       2449A01117   100HZ-22GHZ     02/11/06   12    02/11/07
RAC2 SPECTRUM ANALYZER            HEWLETT   PACKARD   85660B       3638A08770   100HZ-22GHZ     02/10/06   12    02/10/07
RACD RF PRESELECTOR               HEWLETT   PACKARD   85685A       3010A01205   20HZ-2GHZ       12/23/05   12    12/23/06
RACE RF PRESELECTOR W/ RECEIVER   HEWLETT   PACKARD   85685A       3010A01194   20HZ-2GHZ       08/26/05   12    08/26/06
RAF1 QUASIPEAK ADAPTER            HEWLETT   PACKARD   85650A       2043A00271   0.01-1000MHZ    02/13/06   12    02/13/07
RAF4 QUASIPEAK ADAPTER            HEWLETT   PACKARD   85650A       2043A00320   0.01-1000MHZ    02/10/06   12    02/10/07
RAKG RF SECTION                   HEWLETT   PACKARD   85462A       3549A00284   0.009-6500MHZ   11/22/05   12    11/22/06
RAKH RF FILTER SECTION            HEWLETT   PACKARD   85460A       3448A00324   ---             11/22/05   12    11/22/06




========================================================================================================================
Cal. Interval: Listed in Months I/O: Initial Only    N/A: Not Applicable
Note 1: For the purpose of this test, the equipment was calibrated over the specified frequency range, pulse rate, or
        modulation prior to the test or monitored by a calibrated instrument.




                                                                                                                   Page 11 of 25


                                                               Engineering Test Report No. 36146-02




Anechoic Ferrite Chamber

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                        FIGURE 1 BLOCKDIAGRAM OF TEST SETUP




                                                                                       Page 12 of 25


                           Engineering Test Report No. 36146-02




             Figure 2




Test Set-up for Conducted Emissions




                                                   Page 13 of 25


                                               Engineering Test Report No. 36146-02




                                 Figure 3




Test Set-up for Radiated Emissions, 30MHz to 1GHz – Horizontal Polarization




 Test Set-up for Radiated Emissions, 30MHz to 1GHz – Vertical Polarization

                                                                             Page 14 of 25


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                                           PRELIMINARY LINE CONDUCTED EMISSIONS
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                             i             MANUFACTURER: CHAMBERLAIN MANUFACTURING
                                           MODEL No.    : 106226—1 TRANSMITTER
                   90                      S/N          : NONE ASSIGNED                 mveenetienbnnoninenmmemeer n
                                           LINE TESTED : 115V, 60Kz RETURN
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                                           NOTES        : TESTED IN 63800 GARAGE DOOR OPENER

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                            ETR No.
                   ELITE ELECTRONIC ENGINEERING CO.

MANUFACTURER   :   CHAMBERLAIN MANUFACTURING
MODEL          :   1A6226—1 TRANSMITTER
S/N            :   NONE ASSIGNED
SPECIFICATION :    EN 55022, CLASS B
TEST           :   LINE CONDUCTED EMISSIONS
LINE TESTED    :   115V, 60Hz HIGH
MODE           :   Tx @ 433.92MH2
DATE          :     6 Apr 2006
NOTES         :    TESTED IN G3800 GARAGE DOOR OPENER
RECEIVER      :    HP 8566 w/ HP8B5650A QP ADAPTOR
VALUES MEASURED    WITH QP DETECTOR USING 9kHz BANDWIDTH

   FREQUENCY        METER RDG.   QP LIMIT     AVG RDG      AVG LIMIT
      MHz              dBuy        dBuv        dBuv          dBuvy NOTES

        .199          45 .8       63 .7                      53.7
        337           27 .0       59.3                       49.3
        .480          25.3        56.3                       46.3
        .800          26 .8       56 .0                      46 .0
        .818          25.3        56 .0                      46 .0
      1.281           25 .1       56.0                       46 .0
      2 .987          25 .1       56 .0                      46 .0
      4 .542          25 .1       56 .0                      46 .0
      6.563           23 .8       60 .0                      50 .0
      9.479           23 .8       60 .0                      50 .0
     11.855           27 .5       60 .0                      50.0
     IS5.558          23 .8       60 .0                      50 .0
     17.712           24 .0       60 .0                      50 .0
     22 .473          24 .0       60 .0                      50 .0
     24 .736          24 .0       60 .0                      50 .0
     26 .691          23 .8       60 .0                      50 .0




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                            ETR No.
                   ELITE ELECTRONIC ENGINEERING CO.

MANUFACTURER       CHAMBERLAIN MANUFACTURING
MODEL          :   1A6226—1 TRANSMITTER
S/N                NONE ASSIGNED
SPECIFICATION      EN 55022, CLASS B
TEST               LINE CONDUCTED EMISSIONS
LINE TESTED        115V, 60Hz RETURN
MODE               Tx @ 433.92MHz
DATE                6 Apr 2006
NOTES              TESTED IN G3800 GARAGE DOOR OPENER
RECEIVER       :   HP 8566 w/ HPS5650A QP ADAPTOR
VALUES MEASURED    WITH QP DETECTOR USING 9kHz BANDWIDTH

   FREQUENCY        METER RDG.   QP LIMIT     AVG RDG        AVG LIMIT
      MHz              dBuvy       dBuv        dBuy            dBuvy   NOTES

        .162          37 .6        65 .4                       55.4
        .300          24 .0        60 .2                       50 .2
        .358           8 .1        58 .8                       48 .8
        .608          23 .9        56.0                        46 .0
        .669          25.3         56.0                        46 .0
        .781          20 .1        56.0                        46 .0
        .828          25 .9        56 .0                       46 .0
        .939          25 .1        56 .0                       46 .0
      1.920           25.2         56 .0                       46 .0
      3 .472          25 .2        56 .0                       46 .0
      5.224           23 .6        60 .0                       50 .0
      7 .903          26 .0        60 .0                       50 .0
      8.875           23 .8        60 .0                       50 .0
     12 .622          24 .0        60 .0                       50 .0
     15.034           24 .0        60 .0                       50 .0
     17 .927          24 .1        60 .0                       50 .0
     20 .830          24 .0        60 .0                       50 .0
     23.310           24 .0        60 .0                       50 .0
     26 .992          23 .8        60 .0                       50 .0




                                                                         6


                                     CHECKED BY:
                                                      M.   LONGINO


                                       ELITE ELECTRONIC ENGINEERING Co.
                                                Downers Grove,          Il 68515




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                FREQUENCY: 433.8997 MHz
                ON TIME : 20.18 mSEC            S/N
                                                TEST DATE
                                                             :
                                                             :
                                                                    ASSIGNED
                                                                  Apr 2006              #
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                                                              WKAB   84/12/05          Downers Grove                II1. 60515             UNTU_EM   RUN 2
                                                        110                               T
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                                                                                     MODEL No.       A6226~—1 TRANSMITTER
                                                                                     S/N             ONE ASSIGNED
                                                        90                           MODE            x @ 433.9MHz                      mJ
                                                                                     DATE TESTED     7 Apr 2006 13:32:32 M. LONGINQTTI
               RADIATED NARROWBAND EMISSIONS — dBuU/m




                                                                                     NOTES           ESTED IN G3800 GARAGE DOOR OPENER




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                                     ETR No.
                                       DATA PAGE

SPECIFICATION   FCC PART 15C TRANSMITTER OPEN FIELD DATA
MANUFACTURER    CHAMBERLAIN MANUFACTURING
MODEL           1A6226—1 TRANSMITTER
S/N             NONE ASSIGNED
TEST DATE       10 Apr 2006
NOTES           TESTED IN G3800 GARAGE DOOR OPENER
TEST ANTENNA    ROBERTS DIPOLE & DRWG ANTENNAS
 (PERIODIC RATES EXCEEDED)

FREQUENCY   ANT    MTR        CBL      ANT     DUTY      TOTAL         TOTAL     LIMIT NOTES
            POL    RDG        FAC      FAC     CYCLE     dBuV/m         uV/m      uv/m
   MHz            dBuy        dB        dB      dB        @3m           @3m        @3m

  433 .89   H     59 .7       1.5     21.3    —13.5      69 .0        2826 .7    4398   .2
  433 .89   V     60 .9       1 .5    21.3    —13.5      70 .2        3245 .4    4398   .2
  867.80    H     10 .5       1.9     27.4    —13.5      26.3           20 .6     439   .8
  867.80    M     11.7        1.9     27.4    —13.5      27 .5          23 .7     439   .8
 1301.67    H     17.0        2 .4    26.4    —13.5      32 .3          41 .2     500   .0   *
 1301.67    V     17 .7       2 .4    26.4    —13.5      33 .0          44 .7     500   .0   *
 1735.50    H     31.1        2 .8    27.8    —13.5      48 .2         255 .9     500   .0
 1735.50    V     33 .1       2 .8    27.8    —13.5      50 .2         322.1      500   .0
 2169.40    H     14.1        3 .2    29.5    —13.5      33.3           46 .0     500   .0
 2169 .40   V     14 .0       3 .2    29.5    —13.5      33 .2          45 .5     500   .0
 2603 .30   H     11.0        3 .7    31.0    —13.5      32 .1          40 . 4    500 .0
 2603 .30   V     13.3        3 .7    31.0    —13.5      34 .4          52 .6    500 .0
 3037 .23   H     14 .2       4 .0    32.3    —13 .5     37 .0          71.0     500 .0
 3037.23    V     12.4        4 .0    32.3    ~13.5      35.2           57.7     5000
 3471.12    H      8 . OAMB   4.3     32.3      0 .0     44 .6         169 .5    500 .0
 3471.12    V      9 . 1AMB   4 .3    32.3      0 .0     45 .7         192 .4    500 .0
 3905 .01   H      8 . OAMB   4.5     32 .9     0 .0     45 .4         186 .0    500 .0      *
 3905 .01   V      8 . IAMB   4.5     32 .9     0 .0     46.3          206.3     5o0 .0      *
 4338 .90   H     19 .2       4 .7    32.9    —13.5      43.3          146 .0    500 .0      *
 4338 .90   V     19 .9       4 .7    32.9    —13.5      44 .0         158 .2    500 .0      *




* DENOTES A FREQUENCY CONFLICT WITH RESTRICTED BANDS

                                         checked by:
                                                                 M.   LONGINO


                                                ELITE ELECTRONIC ENGINEERING Inc.
                                                                                    MKR 433.880 MHz
               hbp      REF —30.1    dBm         ATTEN 0 dB                              —59.90 dBm
                                 t                               i                         M. LONGINOTTI
               10 dB/      MANUFACTURER:    CHAMBERLAIN                                     7 fpr 2006
                           MODEL NO.    :   1A6226—1 TRANSMITTER                           19:17:29
                         m SERIAL NO. _:    NONE ASSIGNED
               OFFSET      MODE         :   Tx @ 433.9MHz
               —20 .0      ¥0TES        :   TESTED IN 63800 GARAGE DOOR OPENER
                dB          EST         :   OCCUPIED BANDWIDTH

                                               —l—————9.§87, tw




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Document Created: 2006-08-02 17:02:48
Document Modified: 2006-08-02 17:02:48

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