RF Exposure SAR Report

FCC ID: PD9130BNHU

RF Exposure Info

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FCCID_1455420

          FCC OET BULLETIN 65 SUPPLEMENT C
                   IEEE STD 1528:2003
               RSS-102 Issue 4, March 2010
RSS-102 Supplementary Procedures (SPR)-001, January 1, 2011

                SAR EVALUATION REPORT

                             For
               Intel Centrino Wireless-N 1030

              MODEL: 130BNHMW & 130BNHU

            FCC ID: PD9130BNH & PD9130BNHU
           IC: 1000M-130BNH & 1000M-130BNHU

              REPORT NUMBER: 11U13738-1A

                ISSUE DATE: April 26, 2011


                        Prepared for
                   INTEL CORPORATION
                  2111 N.E. 25TH AVENUE
                HILLSBORO, OR 97124, USA


                        Prepared by
     COMPLIANCE CERTIFICATION SERVICES (UL CCS)
               47173 BENICIA STREET
             FREMONT, CA 94538, U.S.A.
                 TEL: (510) 771-1000
                 FAX: (510) 661-0888


REPORT NO: 11U13738-1A                                                                DATE: April 26, 2011
FCC ID: PD9130BNH & PD9130BNHU                                        IC: 1000M-130BNH & 1000M-130BNHU

                                             Revision History


 Rev.     Issue Date                Revisions                                             Revised By
 --       April 19, 2011            Initial Issue                                         --

 A        April 26, 2011            Added WiFi and Bluetooth simultaneous                 Sunny Shih
                                    transmission statement in section 5




                                          Page 2 of 30
COMPLIANCE CERTIFICATION SERVICES (UL CCS)                                         FORM NO: CCSUP4031B
47173 BENICIA STREET, FREMONT, CA 94538, USA                    TEL: (510) 771-1000   FAX: (510) 661-0888
         This report shall not be reproduced except in full, without the written approval of CCS.


REPORT NO: 11U13738-1A                                                                                                 DATE: April 26, 2011
FCC ID: PD9130BNH & PD9130BNHU                                                                         IC: 1000M-130BNH & 1000M-130BNHU

                                                       TABLE OF CONTENTS
1.     ATTESTATION OF TEST RESULTS.................................................................................................. 4

2.     TEST METHODOLOGY ...................................................................................................................... 5

3.     FACILITIES AND ACCREDITATION.................................................................................................. 5

4.     CALIBRATION AND UNCERTAINTY................................................................................................. 6
     4.1.       MEASURING INSTRUMENT CALIBRATION ............................................................................. 6
     4.2.       MEASUREMENT UNCERTAINTY.............................................................................................. 7

5.     EQUIPMENT UNDER TEST ............................................................................................................... 8

6.     ANTENNA LOCATIONS AND SEPARATION DISTANCES .............................................................. 9
     6.1.       ANTENNA POSITIONED VERTICALLY ..................................................................................... 9
     6.2.       ANTENNA POSITIONED HORIZONTALLY ............................................................................. 10

7.     SYSTEM SPECIFICATIONS ............................................................................................................. 11

8.     COMPOSITION OF INGREDIENTS FOR TISSUE SIMULATING LIQUIDS .................................... 12

9.     TISSUE DIELECTRIC PARAMETERS ............................................................................................. 13
     9.1.       TISSUE PARAMETERS CHECK RESULTS ............................................................................ 14

10.          SYSTEM VERIFICATION ............................................................................................................. 16
     10.1.      SYSTEM CHECK RESULTS .................................................................................................... 16

11.          SAR MEASUREMENT PROCEDURES ....................................................................................... 17

12.          OUTPUT POWER VERIFICATION............................................................................................... 18

13.          SUMMARY OF SAR TEST RESULTS ......................................................................................... 19
     13.1.      Antenna Vertical Up .................................................................................................................. 19
     13.2.       Antenna Vertical Down............................................................................................................. 20
     13.3.      Antenna Horizontal Up .............................................................................................................. 21
     13.4.      Antenna Horizontal Down (Worst-case) .................................................................................... 22
     13.5.      Antenna Horizontal Front .......................................................................................................... 23
     13.6.      Antenna Horizontal Back........................................................................................................... 24

14.          WORST CASE SAR TEST PLOTS .............................................................................................. 25

15.          ENHANCED ENERGY COUPLING.............................................................................................. 27

16.          ATTACHMENTS ........................................................................................................................... 28

17.          EUT PHOTOS ............................................................................................................................... 29


                                          Page 3 of 30
COMPLIANCE CERTIFICATION SERVICES (UL CCS)                                                                      FORM NO: CCSUP4031B
47173 BENICIA STREET, FREMONT, CA 94538, USA                                                 TEL: (510) 771-1000   FAX: (510) 661-0888
                This report shall not be reproduced except in full, without the written approval of CCS.


REPORT NO: 11U13738-1A                                                                DATE: April 26, 2011
FCC ID: PD9130BNH & PD9130BNHU                                        IC: 1000M-130BNH & 1000M-130BNHU

1. ATTESTATION OF TEST RESULTS
 Company name:                 INTEL CORPORATION
                               2111 N.E. 25TH AVENUE
                               HILLSBORO, OR 97124, USA
 EUT Description:              Intel Centrino Wireless-N 1030
 Model number:                 130BNHMW & 130BNHU
 Device Category:              Portable
 Exposure category:            General Population/Uncontrolled Exposure
 Date of tested:               April 4 and 19, 2011
    FCC / IC Rule Parts        Freq. Range [MHz]            The Highest 1g SAR              Limit (W/kg)
                                                               0.355 W/kg
     15.247 / RSS-102             2412 - 2462                                                 1.6
                                                      (Antenna Horizontal Down)
 The most conservative antenna-to-user            0.8 cm
 separation distances used during the test:       (refer to setup diagram in section 6.1 & 6.2)
                                Applicable Standards                                     Test Results
 FCC OET Bulletin 65 Supplement C Edition 01-01, IEEE STD 1528,
 RSS-102 Issue 4, March 2010 and RSS-102 Supplementary Procedures (SPR)-001,                 Pass
 January 1, 2011
 Compliance Certification Services, Inc. (UL CCS) tested the above equipment in accordance with the
 requirements set forth in the above standards. All indications of Pass/Fail in this report are opinions
 expressed by UL CCS based on interpretations and/or observations of test results. Measurement
 Uncertainties were not taken into account and are published for informational purposes only. 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 UL CCS and all revisions are duly noted in the revisions section. Any alteration of
 this document not carried out by UL CCS will constitute fraud and shall nullify the document. This
 report must not be used by the client to claim product certification, approval, or endorsement by
 NVLAP, NIST, any agency of the Federal Government, or any agency of any government (NIST
 Handbook 150, Annex A). This report is written to support regulatory compliance of the applicable
 standards stated above.

 Approved & Released For UL CCS By:                   Tested By:



 Sunny Shih                                           Devin Chang
 Engineering Team Leader                              EMC Engineer
 Compliance Certification Services (UL CCS)           Compliance Certification Services (UL CCS)




                                          Page 4 of 30
COMPLIANCE CERTIFICATION SERVICES (UL CCS)                                         FORM NO: CCSUP4031B
47173 BENICIA STREET, FREMONT, CA 94538, USA                    TEL: (510) 771-1000   FAX: (510) 661-0888
         This report shall not be reproduced except in full, without the written approval of CCS.


REPORT NO: 11U13738-1A                                                                DATE: April 26, 2011
FCC ID: PD9130BNH & PD9130BNHU                                        IC: 1000M-130BNH & 1000M-130BNHU

2. TEST METHODOLOGY
The tests documented in this report were performed in accordance with FCC OET Bulletin 65
Supplement C 01-01, IEEE STD 1528-2003 RSS-102 Issue 4, March 2010, RSS-102 Supplementary
Procedures (SPR)-001, January 1, 2011 and the following specific FCC Test Procedures.
-      KDB 248227 SAR measurement procedures for 802.11a/b/g transmitters
-      KDB 616217 Appendix Configuring Conservative SAR Test Conditions


3. FACILITIES AND ACCREDITATION
The test sites and measurement facilities used to collect data are located at 47173 Benicia Street,
Fremont, California, USA.
UL CCS is accredited by NVLAP, Laboratory Code 200065-0. The full scope of accreditation can be
viewed at http://www.ccsemc.com.




                                          Page 5 of 30
COMPLIANCE CERTIFICATION SERVICES (UL CCS)                                        FORM NO: CCSUP4031B
47173 BENICIA STREET, FREMONT, CA 94538, USA                   TEL: (510) 771-1000   FAX: (510) 661-0888
         This report shall not be reproduced except in full, without the written approval of CCS.


REPORT NO: 11U13738-1A                                                                    DATE: April 26, 2011
FCC ID: PD9130BNH & PD9130BNHU                                            IC: 1000M-130BNH & 1000M-130BNHU

4. CALIBRATION AND UNCERTAINTY
   4.1.        MEASURING INSTRUMENT CALIBRATION
The measuring equipment utilized to perform the tests documented in this report has been calibrated in
accordance with the manufacturer's recommendations, and is traceable to recognized national
standards.
                                                                                           Cal. Due date
Name of Equipment                   Manufacturer     Type/Model        Serial No.
                                                                                 MM DD              Year
Robot - Six Axes                      Stäubli            TX90           C01209               N/A
Robot Remote Control                  Stäubli           CS8C              N/A                N/A
DASY5 Measurement Server              SPEAG         SEUMS014AA            1064               N/A
Probe Alignment Unit                  SPEAG            LB5 / 80            N/A               N/A
SAM Phantom                           SPEAG         QP 000 P40 CC         1602               N/A
Oval Flat Phantom (ELI 4.0)           SPEAG         QD OVA001 BB          1099               N/A
Dielectronic Probe kit                   HP            85070C             N/A                N/A
ESA Series Network Analyzer           Agilent          E5071B         MY42100131  8       2         2011
Synthesized Signal Generator             HP            83732B         US34490599  7      14         2012
E-Field Probe                         SPEAG            EX3DV3             3686    1      24         2012
Thermometer                           ERTCO            639-1S             1718    7      19         2011
Data Acquisition Electronics          SPEAG           DAE3 V4             1239    11     17         2011
System Validation Dipole              SPEAG           D2450V2             706     4      19         2012
Power Meter                         Giga-tronics        8651A           8651404   3      13         2012
Power Sensor                        Giga-tronics       80701A           1834588   3      13         2012
Amplifier                           Mini-Circuits      ZVE-8G            90606               N/A
Amplifier                           Mini-Circuits     ZHL-42W          D072701-5             N/A
Simulating Liquid                     SPEAG             M2450             N/A    Within 24 hrs of first test

Note: Per KDB 450824 D02 requirements for dipole calibration, UL CCS has adopted two years calibration
intervals. On annual basis, each measurement dipole has been evaluated and is in compliance with the following
criteria:
1.     There is no physical damage on the dipole
2.     System validation with specific dipole is within 10% of calibrated value.
3.     Return-loss is within 20% of calibrated measurement (test data on file in UL CCS)
4. Impedance is within 5Ω of calibrated measurement (test data on file in UL CCS)




                                          Page 6 of 30
COMPLIANCE CERTIFICATION SERVICES (UL CCS)                                            FORM NO: CCSUP4031B
47173 BENICIA STREET, FREMONT, CA 94538, USA                       TEL: (510) 771-1000   FAX: (510) 661-0888
          This report shall not be reproduced except in full, without the written approval of CCS.


REPORT NO: 11U13738-1A                                                                             DATE: April 26, 2011
FCC ID: PD9130BNH & PD9130BNHU                                                     IC: 1000M-130BNH & 1000M-130BNHU


   4.2.          MEASUREMENT UNCERTAINTY
Measurement uncertainty for 300 MHz to 3 GHz averaged over 1 gram
Component                                                            error, % Probe Distribution   Divisor Sensitivity U (Xi), %
Measurement System
Probe Calibration (k=1) @ Body 2450 MHz                                 5.50             Normal         1          1       5.50
Axial Isotropy                                                          1.15   Rectangular          1.732     0.7071       0.47
Hemispherical Isotropy                                                  2.30   Rectangular          1.732     0.7071       0.94
Boundary Effect                                                         0.90   Rectangular          1.732          1       0.52
Probe Linearity                                                         3.45   Rectangular          1.732          1       1.99
System Detection Limits                                                 1.00   Rectangular          1.732          1       0.58
Readout Electronics                                                     0.30             Normal         1          1       0.30
Response Time                                                           0.80   Rectangular          1.732          1       0.46
Integration Time                                                        2.60   Rectangular          1.732          1       1.50
RF Ambient Conditions - Noise                                           3.00   Rectangular          1.732          1       1.73
RF Ambient Conditions - Reflections                                     3.00   Rectangular          1.732          1       1.73
Probe Positioner Mechanical Tolerance                                   0.40   Rectangular          1.732          1       0.23
Probe Positioning with respect to Phantom                               2.90   Rectangular          1.732          1       1.67
Extrapolation, Interpolation and Integration                            1.00   Rectangular          1.732          1       0.58
Test Sample Related
Test Sample Positioning                                                 2.90           Normal           1           1      2.90
Device Holder Uncertainty                                               3.60           Normal           1           1      3.60
Output Power Variation - SAR Drift                                      5.00 Rectangular            1.732           1      2.89
Phantom and Tissue Parameters
Phantom Uncertainty (shape and thickness)                               4.00 Rectangular           1.732          1     2.31
Liquid Conductivity - deviation from target                             5.00 Rectangular           1.732      0.64      1.85
Liquid Conductivity - measurement                                       1.51             Normal        1      0.64      0.97
Liquid Permittivity - deviation from target                             5.00 Rectangular           1.732        0.6     1.73
Liquid Permittivity - measurement                                      -2.83             Normal        1        0.6    -1.70
                                                                             Combined Standard Uncertainty Uc(y) =      9.64
                                       Expanded Uncertainty U, Coverage Factor = 2, > 95 % Confidence =   19.28     %
                                       Expanded Uncertainty U, Coverage Factor = 2, > 95 % Confidence =    1.53     dB




                                          Page 7 of 30
COMPLIANCE CERTIFICATION SERVICES (UL CCS)                                                  FORM NO: CCSUP4031B
47173 BENICIA STREET, FREMONT, CA 94538, USA                             TEL: (510) 771-1000   FAX: (510) 661-0888
           This report shall not be reproduced except in full, without the written approval of CCS.


REPORT NO: 11U13738-1A                                                                DATE: April 26, 2011
FCC ID: PD9130BNH & PD9130BNHU                                        IC: 1000M-130BNH & 1000M-130BNHU


5. EQUIPMENT UNDER TEST
 Intel Centrino Wireless-N 1030
 Antenna tested:                             Manufactured                  Part number
                                             Shanghai Universe             IntelWiMax/WLAN
                                                                           Reference Antenna
 The most conservative antenna-to-user       0.8 cm from antenna-to-user (refer to setup diagram in
 separation distances used during the        section 6.1 and 6.2)
 test:
 Antenna-to-antenna physical separation      Only one antenna provided.
 distances used during the test with
 Vertical placement:
 Antenna-to-antenna physical separation      Only one antenna provided.
 distances used during the test with
 Horizontal placement:
 The most conservative physical              Only one antenna provided.
 separation distance between Main/Aux
 antennas to avoid SAR distribution
 overlap:
 Simultaneous transmission:                  WiFi vs Bluetooth
                                             WiFi (chain A) can transmit simultaneously with Bluetooth
                                             (Chain B)
 Assessment for SAR evaluation for           Due to Bluetooth’s maximum output is 5.5 mW <60/f(GHz)
 Simultaneous transmission:                  and stand-alone SAR is not required, thus simultaneous
                                             transmission evaluation is not required.




                                          Page 8 of 30
COMPLIANCE CERTIFICATION SERVICES (UL CCS)                                        FORM NO: CCSUP4031B
47173 BENICIA STREET, FREMONT, CA 94538, USA                   TEL: (510) 771-1000   FAX: (510) 661-0888
         This report shall not be reproduced except in full, without the written approval of CCS.


REPORT NO: 11U13738-1A                                                                       DATE: April 26, 2011
FCC ID: PD9130BNH & PD9130BNHU                                               IC: 1000M-130BNH & 1000M-130BNHU

6. ANTENNA LOCATIONS AND SEPARATION DISTANCES
   6.1.        ANTENNA POSITIONED VERTICALLY
                                               Setup diagram




                                Flat Phantom
                                                                SAR
                                                                probe



                                               0.8 cm

                             Styrofoam                    Antenna




                                                          50 ohm coaxial cable length: 500 mm
                                            > 10 cm




                                              WiFi
                                             Module




                                          Host Computer




Test setup: The WiFi module is installed in a host laptop computer during the tests. Test software
exercised the radio card.
Test software: DRTU, Version 1.2.12-0197




                                          Page 9 of 30
COMPLIANCE CERTIFICATION SERVICES (UL CCS)                                             FORM NO: CCSUP4031B
47173 BENICIA STREET, FREMONT, CA 94538, USA                        TEL: (510) 771-1000   FAX: (510) 661-0888
          This report shall not be reproduced except in full, without the written approval of CCS.


REPORT NO: 11U13738-1A                                                                        DATE: April 26, 2011
FCC ID: PD9130BNH & PD9130BNHU                                                IC: 1000M-130BNH & 1000M-130BNHU


   6.2.        ANTENNA POSITIONED HORIZONTALLY
                                              Setup diagram




                                        Flat Phantom
                                                                    SAR
                                                                    probe


                                                 0.8 cm

                                                                    Antenna

                                                        Styrofoam

                                           > 10 cm
                                                      50 ohm coaxial cable length: 500 mm




                                              WiFi
                                             Module




                                          Host Computer




Test setup: The WiFi module is installed in a host laptop computer during the tests. Test software
exercised the radio card.
Test software: DRTU, Version 1.2.12-0197




                                          Page 10 of 30
COMPLIANCE CERTIFICATION SERVICES (UL CCS)                                               FORM NO: CCSUP4031B
47173 BENICIA STREET, FREMONT, CA 94538, USA                          TEL: (510) 771-1000   FAX: (510) 661-0888
          This report shall not be reproduced except in full, without the written approval of CCS.


REPORT NO: 11U13738-1A                                                                DATE: April 26, 2011
FCC ID: PD9130BNH & PD9130BNHU                                        IC: 1000M-130BNH & 1000M-130BNHU

7. SYSTEM SPECIFICATIONS




   The DASY4 system for performing compliance tests consists of the following items:
   • A standard high precision 6-axis robot (Stäubli RX family) with controller, teach pendant and
      software. An arm extension for accommodating the data acquisition electronics (DAE).
   • A dosimetric probe, i.e., an isotropic E-field probe optimized and calibrated for usage in tissue
      simulating liquid. The probe is equipped with an optical surface detector system.
   • A data acquisition electronics (DAE) which performs the signal amplification, signal multiplexing,
      AD-conversion, offset measurements, mechanical surface detection, collision detection, etc. The
      unit is battery powered with standard or rechargeable batteries. The signal is optically transmitted
      to the EOC.
   • The function of the measurement server is to perform the time critical tasks such as signal
      filtering, control of the robot operation and fast movement interrupts.
   • A probe alignment unit which improves the (absolute) accuracy of the probe positioning.
   • A computer operating Windows 2000 or Windows XP.
   • DASY4 software.
   • Remote controls with teach pendant and additional circuitry for robot safety such as warning
      lamps, etc.
   • The SAM twin phantom enabling testing left-hand and right-hand usage.
   • The device holder for handheld mobile phones.
   • Tissue simulating liquid mixed according to the given recipes.
   • Validation dipole kits allowing validating the proper functioning of the system.




                                          Page 11 of 30
COMPLIANCE CERTIFICATION SERVICES (UL CCS)                                        FORM NO: CCSUP4031B
47173 BENICIA STREET, FREMONT, CA 94538, USA                   TEL: (510) 771-1000   FAX: (510) 661-0888
         This report shall not be reproduced except in full, without the written approval of CCS.


REPORT NO: 11U13738-1A                                                                                 DATE: April 26, 2011
FCC ID: PD9130BNH & PD9130BNHU                                                         IC: 1000M-130BNH & 1000M-130BNHU


8. COMPOSITION OF INGREDIENTS FOR TISSUE SIMULATING LIQUIDS
The following tissue formulations are provided for reference only as some of the parameters have not
been thoroughly verified. The composition of ingredients may be modified accordingly to achieve the
desired target tissue parameters required for routine SAR evaluation.

      Ingredients                                                  Frequency (MHz)
     (% by weight)                450                 835                  900              1800 - 1900           2450
      Tissue Type         Head          Body   Head         Body    Head         Body      Head    Body    Head      Body
         Water            38.56     51.16      41.45        52.4    41.05        56.0      54.9    40.4     62.7     73.2
      Salt (NaCl)          3.95         1.49   1.45         1.4     1.35         0.76      0.18     0.5     0.5      0.04
         Sugar            56.32     46.78      56.0         45.0    56.5      41.76         0.0    58.0     0.0          0.0
          HEC              0.98         0.52    1.0         1.0      1.0         1.21       0.0     1.0     0.0          0.0
      Bactericide          0.19         0.05    0.1         0.1      0.1         0.27       0.0     0.1     0.0          0.0
      Triton X-100         0.0          0.0     0.0         0.0      0.0         0.0        0.0     0.0     36.8         0.0
         DGBE              0.0          0.0     0.0         0.0      0.0         0.0      44.92     0.0     0.0      26.7
  Dielectric Constant     43.42         58.0   42.54        56.1    42.0         56.8      39.9    54.0     39.8     52.5
  Conductivity (S/m)       0.85         0.83   0.91         0.95     1.0         1.07      1.42    1.45     1.88     1.78

Salt: 99+% Pure Sodium Chloride              Sugar: 98+% Pure Sucrose
Water: De-ionized, 16 MΩ+ resistivity        HEC: Hydroxyethyl Cellulose
DGBE: 99+% Di(ethylene glycol) butyl ether, [2-(2-butoxyethoxy)ethanol]
Triton X-100 (ultra pure): Polyethylene glycol mono [4-(1,1, 3, 3-tetramethylbutyl)phenyl]ether

Simulating Liquids for 5 GHz, Manufactured by SPEAG
 Ingredients                (% by weight)
 Water                      78
 Mineral oil                11
 Emulsifiers                9
 Additives and Salt         2




                                          Page 12 of 30
COMPLIANCE CERTIFICATION SERVICES (UL CCS)                                                     FORM NO: CCSUP4031B
47173 BENICIA STREET, FREMONT, CA 94538, USA                                TEL: (510) 771-1000   FAX: (510) 661-0888
           This report shall not be reproduced except in full, without the written approval of CCS.


REPORT NO: 11U13738-1A                                                                    DATE: April 26, 2011
FCC ID: PD9130BNH & PD9130BNHU                                            IC: 1000M-130BNH & 1000M-130BNHU

9. TISSUE DIELECTRIC PARAMETERS
The simulating liquids should be checked at the beginning of a series of SAR measurements to
determine of the dielectric parameters are within the tolerances of the specified target values. For
frequencies in 300 MHz to 2 GHz, the measured conductivity and relative permittivity should be within ±
5% of the target values. For frequencies in the range of 2–3 GHz and above the measured conductivity
should be within ± 5% of the target values. The measured relative permittivity tolerance can be relaxed to
no more than ± 10%.
Reference Values of Tissue Dielectric Parameters for Head & Body Phantom
The body tissue parameters that have not been specified in P1528 are derived from the tissue dielectric
parameters computed from the 4-Cole-Cole equations and extrapolated according to the head
parameters specified in IEEE Standard 1528.
                                         Head                                  Body
 Target Frequency (MHz)
                                 εr             σ (S/m)               εr               σ (S/m)
           150                  52.3             0.76                61.9                 0.8
           300                  45.3             0.87                58.2                0.92
           450                  43.5             0.87                56.7                0.94
           835                  41.5              0.9                55.2                0.97
           900                  41.5             0.97                 55                 1.05
           915                  41.5             0.98                 55                 1.06
          1450                  40.5              1.2                 54                  1.3
          1610                  40.3             1.29                53.8                 1.4
      1800 – 2000                40               1.4                53.3                1.52
          2450                  39.2              1.8                52.7                1.95
          3000                  38.5              2.4                 52                 2.73
          5800                  35.3             5.27                48.2                  6
(εr = relative permittivity, σ = conductivity and ρ = 1000 kg/m3)
Reference Values of Tissue Dielectric Parameters for Body Phantom (for 3000 MHz – 5800 MHz)
In the current guidelines and draft standards for compliance testing of mobile phones (i.e., IEEE P1528,
OET 65 Supplement C), the dielectric parameters suggested for head and body tissue simulating liquid
are given only at 3.0 GHz and 5.8 GHz. As an intermediate solution, dielectric parameters for the
frequencies between 5 to 5.8 GHz were obtained using linear interpolation (see table below).

SPEAG has developed suitable head and body tissue simulating liquids consisting of the following
ingredients: de-ionized water, salt and a special composition including mineral oil and an emulgators.
Dielectric parameters of these liquids were measured suing a HP 8570C Dielectric Probe Kit in
conjunction with HP 8753ES Network Analyzer (30 kHz – 6G Hz). The differences with respect to the
interpolated values were well within the desired ±5% for the whole 5 to 5.8 GHz range.
                                 Body Tissue
    f (MHz)                                                         Reference
                    rel. permitivity       conductivity
      3000                52.0                 2.73                  Standard
      5100                49.1                 5.18                Interpolated
      5200                49.0                 5.30                Interpolated
      5300                48.9                 5.42                Interpolated
      5400                48.7                 5.53                Interpolated
      5500                48.6                 5.65                Interpolated
      5600                48.5                 5.77                Interpolated
      5700                48.3                 5.88                Interpolated
      5800                48.2                 6.00                  Standard
(εr = relative permittivity, σ = conductivity and ρ = 1000 kg/m3)



                                          Page 13 of 30
COMPLIANCE CERTIFICATION SERVICES (UL CCS)                                             FORM NO: CCSUP4031B
47173 BENICIA STREET, FREMONT, CA 94538, USA                        TEL: (510) 771-1000   FAX: (510) 661-0888
           This report shall not be reproduced except in full, without the written approval of CCS.


REPORT NO: 11U13738-1A                                                                               DATE: April 26, 2011
FCC ID: PD9130BNH & PD9130BNHU                                                       IC: 1000M-130BNH & 1000M-130BNHU


   9.1.          TISSUE PARAMETERS CHECK RESULTS
     Date       Freq. (MHz)              Liquid Parameters                  Measured     Target   Delta (%)   Limit ±(%)
                              e'   51.2108    Relative Permittivity (єr):    51.21       52.70      -2.83         5
   4/4/2011    Body 2450
                              e"   14.5299            Conductivity (σ):       1.98        1.95      1.51          5
 Liquid Check
 Ambient temperature: 24 deg. C; Liquid temperature: 23 deg. C; Relative humidity = 37%
 April 04, 2011 10:03 AM
 Frequency               e'                      e''
 2410000000.              51.3530                 14.3670
 2415000000.              51.3369                 14.3891
 2420000000.              51.3185                 14.4105
 2425000000.              51.3010                 14.4298
 2430000000.              51.2842                 14.4506
 2435000000.              51.2648                 14.4718
 2440000000.              51.2482                 14.4933
 2445000000.              51.2300                 14.5118
 2450000000.              51.2108                 14.5299
 2455000000.              51.1923                 14.5472
 2460000000.              51.1710                 14.5669
 2465000000.              51.1516                 14.5861
 2470000000.              51.1319                 14.6056
 2475000000.              51.1099                 14.6243
 2480000000.              51.0933                 14.6419
 2485000000.              51.0747                 14.6592
 The conductivity (σ) can be given as:
 σ = ωε0 e''= 2 π f ε0 e''
 where f = target f * 106
       ε0 = 8.854 * 10-12




                                          Page 14 of 30
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            This report shall not be reproduced except in full, without the written approval of CCS.


REPORT NO: 11U13738-1A                                                                               DATE: April 26, 2011
FCC ID: PD9130BNH & PD9130BNHU                                                       IC: 1000M-130BNH & 1000M-130BNHU



     Date       Freq. (MHz)              Liquid Parameters                  Measured     Target   Delta (%)   Limit ±(%)
                              e'   51.5817    Relative Permittivity (єr):    51.58       52.70      -2.12         5
  4/192011     Body 2450
                              e"   14.4965            Conductivity (σ):       1.97        1.95      1.27          5
 Liquid Check
 Ambient temperature: 24 deg. C; Liquid temperature: 23 deg. C; Relative humidity = 41%
 April 19, 2011 09:52 AM
 Frequency               e'                      e''
 2410000000.              51.7152                 14.3421
 2415000000.              51.6965                 14.3622
 2420000000.              51.6850                 14.3828
 2425000000.              51.6671                 14.4033
 2430000000.              51.6503                 14.4231
 2435000000.              51.6342                 14.4434
 2440000000.              51.6180                 14.4600
 2445000000.              51.5983                 14.4785
 2450000000.              51.5817                 14.4965
 2455000000.              51.5631                 14.5132
 2460000000.              51.5464                 14.5317
 2465000000.              51.5266                 14.5484
 2470000000.              51.5079                 14.5686
 2475000000.              51.4906                 14.5833
 2480000000.              51.4676                 14.6036
 2485000000.              51.4515                 14.6224
 The conductivity (σ) can be given as:
 σ = ωε0 e''= 2 π f ε0 e''
 where f = target f * 106
       ε0 = 8.854 * 10-12




                                          Page 15 of 30
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            This report shall not be reproduced except in full, without the written approval of CCS.


REPORT NO: 11U13738-1A                                                                     DATE: April 26, 2011
FCC ID: PD9130BNH & PD9130BNHU                                             IC: 1000M-130BNH & 1000M-130BNHU

10.      SYSTEM VERIFICATION
The system performance check is performed prior to any usage of the system in order to verify SAR
system accuracy. The system performance check verifies that the system operates within its
specifications of ±10%.
System Performance Check Measurement Conditions
•     The measurements were performed in the flat section of the SAM twin phantom filled with Body
      simulating liquid of the following parameters.
•     The DASY4 system with an Isotropic E-Field Probe EX3DV3-SN: 3531 was used for the
      measurements.
•     The dipole was mounted on the small tripod so that the dipole feed point was positioned below the
      center marking of the flat phantom section and the dipole was oriented parallel to the body axis (the
      long side of the phantom). The standard measuring distance was 10 mm (above 1 GHz) and
      15 mm (below 1 GHz) from dipole center to the simulating liquid surface.
•     The coarse grid with a grid spacing of 15 mm was aligned with the dipole.
      For 5 GHz band - The coarse grid with a grid spacing of 10 mm was aligned with the dipole.
•     Special 7x7x7 (2.4 GHz) fine cube was chosen for cube integration and Special 8x8x10 (5 GHz) fine
      cube was chosen for cube integration
•     Distance between probe sensors and phantom surface was set to 3 mm.
      For 5 GHz band - Distance between probe sensors and phantom surface was set to 2.5 mm
•     The dipole input powers (forward power) were 100 mW.
•     The results are normalized to 1 W input power.

Reference SAR Values for HEAD & BODY-tissue from calibration certificate of SPEAG.
      System                                                         SAR Avg (mW/g)
                     Cal. certificate #   Cal. date
 validation dipole                                        Tissue:          Head                     Body
                                                            1g SAR:         51.6                    52.4
     D2450V2       D2450V2-706_Apr10      04/19/10
                                                           10g SAR:         24.4                    24.5

      10.1.        SYSTEM CHECK RESULTS
         System                   Measured (Normalized to 1 W)                                    Tolerance
                      Date Tested                                         Target     Delta (%)
    validation dipole              Tissue:          Body                                             (%)
                                     1g SAR:        53.0                   52.4         1.15
        D2450V2        04/04/11                                                                      ±10
                                    10g SAR:        24.3                   24.5         -0.82
                                           1g SAR:         52.8            52.4         0.76
       D2450V2           04/19/11                                                                    ±10
                                          10g SAR:         24.4            24.5         -0.41




                                          Page 16 of 30
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REPORT NO: 11U13738-1A                                                                DATE: April 26, 2011
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11.    SAR MEASUREMENT PROCEDURES
Step 1: Power Reference Measurement
The Power Reference Measurement and Power Drift Measurements are for monitoring the power drift of
the device under test in the batch process. The Minimum distance of probe sensors to surface
determines the closest measurement point to phantom surface. The minimum distance of probe sensors
to surface is 2.1 mm. This distance cannot be smaller than the Distance of sensor calibration points to
probe tip as defined in the probe properties (for example, 1.2 mm for an EX3DV3 probe type).

Step 2: Area Scan
The Area Scan is used as a fast scan in two dimensions to find the area of high field values, before doing
a fine measurement around the hot spot. The sophisticated interpolation routines implemented in DASY4
software can find the maximum locations even in relatively coarse grids. When an Area Scan has
measured all reachable points, it computes the field maximal found in the scanned area, within a range
of the global maximum. The range (in dB) is specified in the standards for compliance testing. For
example, a 2 dB range is required in IEEE Standard 1528, EN 50361 and IEC 62209 standards, whereby
3 dB is a requirement when compliance is assessed in accordance with the ARIB standard (Japan). If
only one Zoom Scan follows the Area Scan, then only the absolute maximum will be taken as reference.
For cases where multiple maximums are detected, the number of Zoom Scans has to be increased
accordingly.

Step 3: Zoom Scan
Zoom Scans are used to assess the peak spatial SAR values within a cubic averaging volume containing
1 g and 10 g of simulated tissue. The Zoom Scan measures ≥ 7 x 7 x 9 points within a cube whose base
faces are centered on the maxima found in a preceding area scan job within the same procedure. When
the measurement is done, the Zoom Scan evaluates the averaged SAR for 1 g and 10 g and displays
these values next to the job’s label.

Step 4: Power drift measurement
The Power Drift Measurement measures the field at the same location as the most recent power
reference measurement within the same procedure, and with the same settings. The Power Drift
Measurement gives the field difference in dB from the reading conducted within the last Power
Reference Measurement. This allows a user to monitor the power drift of the device under test within a
batch process. The measurement procedure is the same as Step 1.

Step 5: Z-Scan
The Z Scan measures points along a vertical straight line. The line runs along the Z-axis of a one-
dimensional grid. In order to get a reasonable extrapolation, the extrapolated distance should not be
larger than the step size in Z-direction.




                                          Page 17 of 30
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REPORT NO: 11U13738-1A                                                                  DATE: April 26, 2011
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12.     OUTPUT POWER VERIFICATION
Measurement Results
2.4 GHz Band
                                            Target Pwr        Actual
                                 Freq.
       Mode         Ch. #                   form EMC        Measured
                                (MHz)
                                           report (dBm)     Pwr (dBm)
                      1         2412           16.8
      802.11b         6         2437           16.8            16.8
                     11         2462           16.8
                      1         2412           16.7
      802.11g         6         2437           16.7
                     11         2462           14.1
                      1         2412           14.2
 802.11n HT20         6         2437           16.7
                     11         2462           13.8
                      3         2422           12.2
 802.11n HT40         6         2437           14.7
                      9         2450           12.3
Note(s):
   1. SAR tested on the highest output power channel.
   2. According to KDB 248227, SAR is not required for 802.11g/HT20/HT40 channels when the
      maximum average output power is less than 1/4 dB higher than that measured on the
      corresponding 802.11b channels.




                                          Page 18 of 30
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REPORT NO: 11U13738-1A                                                                   DATE: April 26, 2011
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13.   SUMMARY OF SAR TEST RESULTS
13.1. Antenna Vertical Up




                                                0.8 cm




                                                         Antenna




                                                   Styrofoam



                                               Test result
                                                   Avg Pwr              Results (mW/g)
               Mode      Channel     f (MHz)
                                                    (dBm)            1g-SAR       10g-SAR
                             1         2412          16.8
             802.11b
                             6         2437          16.8             0.092          0.044
              (1x1)
                            11         2462          16.8

Notes:
 1. SAR tested on the highest output power channel.
 2. This module is not capable of single antnena transmitting mode in either b/g/H20/H40
 3. According to KDB 248227. SAR is not required for 802.11g/HT20/HT40 channels when the
     maximum average output power is less than 1/4 dB higher than that measured on the
     corresponding 802.11b channels.




                                          Page 19 of 30
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REPORT NO: 11U13738-1A                                                                DATE: April 26, 2011
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13.2.   Antenna Vertical Down



                                       0.8 cm




                             Antenna




           `


                                                 Test result
                                                     Avg Pwr         Results (mW/g)
                Mode     Channel       f (MHz)
                                                      (dBm)       1g-SAR       10g-SAR
                             1          2412           16.8
               802.11b
                             6          2437           16.8        0.0946         0.0507
                (1x1)
                            11          2462           16.8

Notes:
   1. SAR tested on the highest output power channel.
   2. This module is not capable of single antnena transmitting mode in either b/g/H20/H40
   3. According to KDB 248227. SAR is not required for 802.11g/HT20/HT40 channels when the
       maximum average output power is less than 1/4 dB higher than that measured on the
       corresponding 802.11b channels.




                                          Page 20 of 30
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         This report shall not be reproduced except in full, without the written approval of CCS.


REPORT NO: 11U13738-1A                                                                 DATE: April 26, 2011
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13.3.   Antenna Horizontal Up




                                              0.8 cm




                                          Antenna




           `


                                                Test result
                                                       Avg Pwr       Results (mW/g)
                Mode      Channel     f (MHz)
                                                        (dBm)     1g-SAR       10g-SAR
                             1         2412             16.8
               802.11b
                             6         2437             16.8       0.252         0.135
                (1x1)
                             11        2462             16.8


Notes:
   1. SAR tested on the highest output power channel.
   2. This module is not capable of single antnena transmitting mode in either b/g/H20/H40
   3. According to KDB 248227. SAR is not required for 802.11g/HT20/HT40 channels when the
       maximum average output power is less than 1/4 dB higher than that measured on the
       corresponding 802.11b channels.




                                          Page 21 of 30
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         This report shall not be reproduced except in full, without the written approval of CCS.


REPORT NO: 11U13738-1A                                                                DATE: April 26, 2011
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13.4.   Antenna Horizontal Down (Worst-case)




                                       0.8 cm




                                    Antenna




                                                Test result
                                                    Avg Pwr          Results (mW/g)
               Mode      Channel     f (MHz)
                                                     (dBm)        1g-SAR       10g-SAR
                             1         2412          16.8
             802.11b
                             6         2437          16.8          0.355          0.187
              (1x1)
                            11         2462          16.8

Notes:
   1. SAR tested on the highest output power channel.
   2. This module is not capable of single antnena transmitting mode in either b/g/H20/H40
   3. According to KDB 248227. SAR is not required for 802.11g/HT20/HT40 channels when the
       maximum average output power is less than 1/4 dB higher than that measured on the
       corresponding 802.11b channels.




                                          Page 22 of 30
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REPORT NO: 11U13738-1A                                                                DATE: April 26, 2011
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13.5.   Antenna Horizontal Front




                                           0.8 cm


                            Antenna




                                                Test result
                                                    Avg Pwr         Results (mW/g)
                Mode      Channel     f (MHz)
                                                     (dBm)       1g-SAR        10g-SAR
                             1         2412          16.8
               802.11b
                             6         2437          16.8         0.098          0.053
                (1x1)
                             11        2462          16.8


Notes:
   1. SAR tested on the highest output power channel.
   2. This module is not capable of single antnena transmitting mode in either b/g/H20/H40
   3. According to KDB 248227. SAR is not required for 802.11g/HT20/HT40 channels when the
       maximum average output power is less than 1/4 dB higher than that measured on the
       corresponding 802.11b channels.




                                          Page 23 of 30
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REPORT NO: 11U13738-1A                                                                DATE: April 26, 2011
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13.6. Antenna Horizontal Back




                                                      0.8 cm

                                                                    Antenna




                                               Test result
                                                   Avg Pwr           Results (mW/g)
               Mode      Channel     f (MHz)
                                                    (dBm)         1g-SAR       10g-SAR
                             1         2412          16.8
             802.11b
                             6         2437          16.8          0.056          0.031
              (1x1)
                            11         2462          16.8

Notes:
   1. SAR tested on the highest output power channel.
   2. This module is not capable of single antnena transmitting mode in either b/g/H20/H40
   3. According to KDB 248227. SAR is not required for 802.11g/HT20/HT40 channels when the
       maximum average output power is less than 1/4 dB higher than that measured on the
       corresponding 802.11b channels.




                                          Page 24 of 30
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REPORT NO: 11U13738-1A                                                                DATE: April 26, 2011
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14.   WORST CASE SAR TEST PLOTS




                                          Page 25 of 30
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REPORT NO: 11U13738-1A                                                                DATE: April 26, 2011
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                                          Page 26 of 30
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REPORT NO: 11U13738-1A                                                                  DATE: April 26, 2011
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15.     ENHANCED ENERGY COUPLING
According to KDB 616217 in referencing to KDB 447498, the test configuration with the highest 1-g SAR
must be used to determine if additional SAR evaluation is required due to enhanced energy coupling at
increased separation distances.
From the test results below, additional 1-g SAR evaluation is not required.
     Worst-case                    Antenna-to-person
                        Band                           Peak SAR (mW/g) E-field (V/m) Lower than Initial (%)
  test configuration                  distance (cm)
                                 Initial        0.8          0.092             7.17
      Vertical Up      2.4 GHz     1             1           0.07              6.30            77.0%
                                   2            1.5          0.04              4.83            45.4%
                                 Initial        0.8          0.095             7.61
   Vertical Down       2.4 GHz     1             1           0.07              6.54            73.8%
                                   2            1.5          0.04              4.86            40.7%
                                 Initial        0.8          0.252            12.61
   Horizontal Up       2.4 GHz     1             1           0.20             11.25            79.6%
                                   2            1.5          0.11              8.26            42.9%
                                 Initial        0.8          0.355            13.24
  Horizontal Down      2.4 GHz     1             1           0.26             11.41            74.3%
                                   2            1.5          0.14              8.33            39.6%
                                 Initial        0.8          0.098             7.75
  Horizontal Front     2.4 GHz     1             1           0.07              6.66            73.8%
                                   2            1.5          0.04              5.04            42.3%
                                 Initial        0.8          0.056             5.83
                                   1             1           0.05              5.58            91.8%
  Horizontal Back      2.4 GHz
                                   2            1.5          0.03              4.50            59.6%
                                   3             2           0.02              3.73            41.0%




                                          Page 27 of 30
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16.    ATTACHMENTS
 No.   Contents                                                                          No. of page (s)
  1    System Check Plots                                                                       4
  2    SAR Test Plots for 2.4 GHz band                                                          7
  3    Certificate of E-Field Probe - EX3DV3 SN 3686                                           11
  4    Certificate of System Validation Dipole - D2450 SN:706                                   9




                                          Page 28 of 30
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REPORT NO: 11U13738-1A                                                                DATE: April 26, 2011
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17.   EUT PHOTOS
                                               Front side




                                               Back side




                                          Page 29 of 30
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REPORT NO: 11U13738-1A                                                                DATE: April 26, 2011
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                                             PIFA Antenna
                                 50 ohm coaxial cable length: 500 mm




                                           END OF REPORT




                                          Page 30 of 30
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Document Created: 2011-04-27 10:28:23
Document Modified: 2011-04-27 10:28:23

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