A1288 iTouch music device with 802.11 b/g and Bluetooth RF Exposure Info SAR Report Apple .

Apple . iTouch music device with 802.11 b/g and Bluetooth

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FCC OET BULLETIN 65 SUPPLEMENT C
CLASS II PERMISSIVE CHANGE
IC RSS-102 ISSUE 2
SAR EVALUATION REPORT
FOR
Handheld touch screen iPod music device with 802.11b/g and Bluetooth radio functions
MODEL: A1288
FCC ID: BCGA1288
IC: 579C-A1288
REPORT NUMBER: 08U11969-19A
ISSUE DATE: SEPTEMBER 2, 2008
Prepared for
APPLE INC.
1 INFINITE LOOP MAIL STOP 26A
CUPERTINO, CA 95014, USA
Prepared by
COMPLIANCE CERTIFICATION SERVICES
47173 BENICIA STREET
FREMONT, CA 94538, USA
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Revision History
Rev. Issued date
Revisions Revised By
-- August 21, 2008 Initial issue --
A September 2, 2008 1. Added Section 6 Test Equipment List
2. Updated section 11 Output Power
Verification
Sunny Shih
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TABLE OF CONTENTS
1 ATTESTATION OF TEST RESULTS................................................................................................... 4
2 TEST METHODOLOGY....................................................................................................................... 5
3 FACILITIES AND ACCREDITATION ...................................................................................................5
4 CALIBRATION AND UNCERTAINTY .................................................................................................. 5
4.1 MEASURING INSTRUMENT CALIBRATION ............................................................................. 5
5 MEASUREMENT UNCERTAINTY....................................................................................................... 5
6 TEST EQUIPMENT LIST ..................................................................................................................... 6
7 DEVICE UNDER TEST (DUT) DESCRIPTION ................................................................................... 7
8 SYSTEM DESCRIPTION ..................................................................................................................... 8
8.1 COMPOSITION OF INGREDIENTS FOR TISSUE SIMULATING LIQUIDS .............................. 9
9 SIMULATING LIQUID PARAMETERS CHECK.................................................................................10
9.1 SIMULATING LIQUID PARAMETER CHECK RESULT............................................................ 11
10 SYSTEM PERFORMANCE CHECK .................................................................................................. 12
10.1 SYSTEM PERFORMANCE CHECK RESULTS........................................................................ 13
11 OUTPUT POWER VERIFICATION.................................................................................................... 14
11.1.1 SAR TEST RESULTS ......................................................................................................... 15
11.2 SAR TEST RESULT FOR THE BAND 2400 – 2483.5 MHZ ..................................................... 15
12 ATTACHMENTS................................................................................................................................. 16
13 SETUP PHOTOS ............................................................................................................................... 17
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1 ATTESTATION OF TEST RESULTS
COMPANY NAME: APPLE INC.
1 INFINITE LOOP MAIL STOP 26A
CUPERTINO, CA 95014, USA
EUT DESCRIPTION: Handheld touch screen iPod music device with 802.11b/g and
Bluetooth radio functions
MODEL: A1288
DEVICE CATEGORY: Portable
EXPOSURE CATEGORY: General Population/Uncontrolled Exposure
DATE TESTED: August 20, 2008
THE HIGHEST SAR
VALUES:
See Table below
FCC / IC
Rule Parts
Frequency Range
[MHz]
The Highest
SAR Values (1g_mW/g)
Limit
(mW/g)
15.247 / RSS-102 2400 – 2483.5 1.3 1.6
APPLICABLE STANDARDS
STANDARD TEST RESULTS
FCC OET BULLETIN 65 SUPPLEMENT C Pass
RSS-102 ISSUE 2 Pass
Compliance Certification Services, Inc. (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 CCS based on interpretations and/or observations of test results. 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 CCS and all revisions are duly noted in the revisions section. Any alteration of this document
not carried out by CCS will constitute fraud and shall nullify the document. No part of this report may be
used to claim product certification, approval, or endorsement by NVLAP, NIST, or any government agency.
Approved & Released For CCS By: Tested By:
SUNNY SHIH
EMC SUPERVISOR
COMPLIANCE CERTIFICATION SERVICES
CAROL BAUMANN
SAR ENGINEER
COMPLIANCE CERTIFICATION SERVICES
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2 TEST METHODOLOGY
The tests documented in this report were performed in accordance with FCC OET Bulletin 65 Supplement
C, Specific FCC Procedure KDB 248227 SAR Measurement Procedure for 820.11abg Transmitters, KDB
648474 SAR Evaluation for Handsets that Contain Multiple Transmitters and Antennas and IC RSS 102
Issue 2: NOVEMBER 2005.
3 FACILITIES AND ACCREDITATION
The test sites and measurement facilities used to collect data are located at 47173 Benicia Street,
Fremont, California, USA.
CCS is accredited by NVLAP, Laboratory Code 200065-0. The full scope of accreditation can be viewed
at http://www.ccsemc.com.
4 CALIBRATION AND UNCERTAINTY
4.1 MEASURING INSTRUMENT CALIBRATION
The measuring equipment utilized to perform the tests documented in this report has been calibrated in
accordance with the manufacturer's recommendations, and is traceable to recognized national standards.
5 MEASUREMENT UNCERTAINTY
Measurement uncertainty for 300 MHz – 3000 MHz
Ui (1g) Ui(10g)
Measurement System
Probe Calibration 4.80 N 1 1 1 4.80 4.80
Axial Isotropy 4.70 R 1.732 0.707 0.707 1.92 1.92
Hemispherical Isotropy 9.60 R 1.732 0.707 0.707 3.92 3.92
Boundary Effects 1.00 R 1.732 1 1 0.58 0.58
Linearity 4.70 R 1.732 1 1 2.71 2.71
System Detection Limits 1.00 R 1.732 1 1 0.58 0.58
Readout Electronics 1.00 N 1 1 1 1.00 1.00
Response Time 0.80 R 1.732 1 1 0.46 0.46
Integration Time 2.60 R 1.732 1 1 1.50 1.50
RF Ambient Conditions - Noise 1.59 R 1.732 1 1 0.92 0.92
RF Ambient Conditions - Reflections 0.00 R 1.732 1 1 0.00 0.00
Probe Positioner Mechnical Tolerance 0.40 R 1.732 1 1 0.23 0.23
Probe Positioning With Respect to Phantom Shell 2.90 R 1.732 1 1 1.67 1.67
Extrapolation, interpolation, and integration algorithms for
max. SAR evaluation 3.90 R 1.732 1 1 2.25 2.25
Test sample Related
Test Sample Positioning 1.10 N 1 1 1 1.10 1.10
Device Holder Uncertainty 3.60 N 1 1 1 3.60 3.60
Power and SAR Drift Measurement 5.00 R 1.732 1 1 2.89 2.89
Phantom and Tissue Parameters
Phantom Uncertainty 4.00 R 1.732 1 1 2.31 2.31
Liquid Conductivity - Target 5.00 R 1.732 0.64 0.43 1.85 1.24
Liquid Conductivity - Meas. 8.60 N 1 0.64 0.43 5.50 3.70
Liquid Permittivity - Target 5.00 R 1.732 0.6 0.49 1.73 1.41
Liquid Permittivity - Meas. 3.30 N 1 0.6 0.49 1.98 1.62
Combined Standard Uncertainty 11.44 10.49
Expanded Uncertainty (95% Confidence Interval) 22.87 20.98
Notesfor table
1. Tol. - tolerance in influence quaitity
2. N - Nomal
3. R - Rectangular
4. Div. - Divisor used to obtain standard uncertainty
5. Ci - is te sensitivity coefficient
RSS
K=2
Std. Unc.(±%)
Uncertainty component Tol.%) Probe
Dist. Div. Ci (1g) Ci (10g)
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6 TEST EQUIPMENT LIST
MM DD Year
Robot - Six Axes Stäubli RX90BL N/A
Robot Remote Control Stäubli CS7MB 3403-91535
DASY4 Measurement Server SPEAG SEUMS001BA 1041
Probe Alignment Unit SPEAG LB (V2) 261
SAM Phantom (SAM1) SPEAG QD000P40CA 1185
SAM Phantom (SAM2) SPEAG QD000P40CA 1050
Oval Flat Phantom (ELI 4.0) SPEAG QD OVA001 B 1003
Electronic Probe kit HP 85070C N/A
S-Parameter Network Analyzer Agilent 8753ES-6 MY40001647 11 14 2008
E-Field Probe SPEAG EX3DV3 3531 4 23 2009
Thermometer ERTCO 639-1S 1718 8 30 2008
Data Acquisition Electronics SPEAG DAE3 V1 500 11 16 2008
System Validation Dipole SPEAG D2450V2 748 4 14 2009
System Validation Dipole SPEAG D5GHzV2 1003 11 21 2009
Signal Generator R&S SMP 04 DE34210 2 16 2009
Power Meter Giga-tronics 8651A 8651404 1 11 2010
Power Sensor Giga-tronics 80701A 1834588 1 11 2010
Amplifier Mini-Circuits ZVE-8G 90606
Amplifier Mini-Circuits ZHL-42W D072701-5
Simulating Liquid CCS M2450 N/A Within 24 hrs of first test
Simulating Liquid SPEAG M5200-5800 N/A Within 24 hrs of first test
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
N/A
Cal. Due date
Name of Equipment Manufacturer Type/Model Serial Number
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7 DEVICE UNDER TEST (DUT) DESCRIPTION
Handheld touch screen iPod music device with 802.11b/g and Bluetooth radio functions.
Normal operation: Body-worn only
Note: SAR was test with back and front of the EUT against the Flat
phantom.
Power supply: Power supplied through host device
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8 SYSTEM DESCRIPTION
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 to validate the proper functioning of the system.
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8.1 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.
Frequency (MHz)
Ingredients
(% by weight) 450 835 915 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 M+ 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
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Dielectric Probe
9 SIMULATING LIQUID PARAMETERS CHECK
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. The relative
permittivity and conductivity of the tissue material should be within ± 5% of the values given in the table
below.
Set-up for liquid parameters check
Reference Values of Tissue Dielectric Parameters for Head and Body Phantom
(for 150 – 3000 MHz and 5800 MHz)
The head tissue dielectric parameters recommended by the IEEE SCC-34/SC-2 in IEEE Standard 1528
have been incorporated in the following table. These head parameters are derived from planar layer
models simulating the highest expected SAR for the dielectric properties and tissue thickness variations
in a human head. Other head and 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 0.80
300 45.3 0.87 58.2 0.92
450 43.5 0.87 56.7 0.94
835 41.5 0.90 55.2 0.97
900 41.5 0.97
55.0 1.05
915 41.5 0.98 55.0 1.06
1450 40.5 1.20 54.0 1.30
1610 40.3 1.29 53.8 1.40
1800 – 2000 40.0 1.40 53.3 1.52
2450 39.2 1.80 52.7 1.95
3000 38.5 2.40 52.0 2.73
5800 35.3 5.27 48.2 6.00
(εr = relative permittivity, σ = conductivity and ρ = 1000 kg/m3)
Network Analyzer Personal Computer
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9.1 SIMULATING LIQUID PARAMETER CHECK RESULT
Simulating Liquid Dielectric Parameter Check Result @ Muscle 2450 MHz
Room Ambient Temperature = 25°C; Relative humidity = 40% Measured by: Carol Baumann
f (MHz) Temp.C) Depth (cm)
e' 52.1488 Relative Permittivity (єr): 52.1488 52.7 -1.05 ± 5
e" 14.1863 Conductivity (σ): 1.93354 1.95 -0.84 ± 5
Deviation (%) Limit (%)
2450 24 15
Simulating Liquid MeasuredParameters Target
Liquid Check
Ambient temperature: 25 deg. C; Liquid temperature: 24 deg. C
August 20, 2008 09:30 AM
Frequency e' e''
2400000000. 52.4080 13.8927
2405000000. 52.2507 14.0219
2410000000. 52.3915 13.9511
2415000000. 52.3342 13.9739
2420000000. 52.3451 14.0796
2425000000. 52.2290 14.1091
2430000000. 52.3535 14.1040
2435000000. 52.2186 14.1627
2440000000. 52.2993 14.1908
2445000000. 52.1320 14.1440
2450000000. 52.1488 14.1863
2455000000. 52.1722 14.2281
2460000000. 52.1390 14.2140
2465000000. 52.1180 14.2147
2470000000. 52.1619 14.2796
2475000000. 52.0742 14.3105
2480000000. 52.0522 14.2863
2485000000. 52.0562 14.3923
2490000000. 52.0511 14.3691
2495000000. 52.0137 14.4194
2500000000. 51.9541 14.4035
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
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10 SYSTEM PERFORMANCE CHECK
The system performance check is performed prior to any usage of the system in order to guarantee
reproducible results. 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 4 mm.
For 5 GHz band - Distance between probe sensors and phantom surface was set to 2.5mm
The dipole input power (forward power) was 250 mW±3%.
The results are normalized to 1 W input power.
450 to 2450 MHz Reference SAR Values for body-tissue
In the table below, the numerical reference SAR values of a SPEAG validation dipoles placed below the
flat phantom filled with body-tissue simulating liquid are given. The reference SAR values were
calculated using the finite-difference time-domain method and the geometry parameters.
Dipole Type Distance
(mm)
Frequency
(MHz)
SAR (1g)
[W/kg]
SAR (10g)
[W/kg]
SAR (peak)
[W/kg]
D450V2 15 450 5.01 3.36 7.22
D835V2 15 835 9.71 6.38 14.1
D900V2 15 900 11.1 7.17 16.3
D1450V2 10 1450 29.6 16.6 49.8
D1800V2 10 1800 38.5 20.3 67.5
D1900V2 10 1900 39.8 20.8 69.6
D2000V2 10 2000 40.9 21.2 71.5
D2450V2 10 2450 51.2 23.7 97.6
Note: All SAR values normalized to 1 W forward power.
5 GHz Reference SAR Values for body-tissue
In the table below, the numerical reference SAR values of a SPEAG validation dipoles placed below the
flat phantom filled with body-tissue simulating liquid are given. The reference SAR values were
calculated using finite-difference time-domain FDTD method (feed point-impedance set to 50 ohms) and
the mechanical dimensions of the D5GHzV2 dipole (manufactured by SPEAG).
Head Tissue Body Tissue
f (MHz) SAR1g SAR 10g SAR1g SAR 10g SARPeak
5000 72.9 20.7 68.1 19.2 260.3
5100 74.6 21.1 78.8 19.6 272.3
5200 76.5 21.6 71.8 20.1 284.7
5500 83.3 23.4 79.1 22.0 326.3
5800 78.0 21.9 74.1 20.5 324.7
Note: All SAR values normalized to 1 W forward power.
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10.1 SYSTEM PERFORMANCE CHECK RESULTS
System Validation Dipole: D2450V2 SN: 748
The dipole input power (forward power): 250 mW
Results
Date: August 20, 2008
Ambient Temperature = 25°C; Relative humidity = 40% Measured by: Carol Baumann
f (MHz) Tem p. (°C)Depth (cm)
1g 49.8 51.2 -2.73 ± 10
10g 23.5 23.7 -0.84 ± 10
Lim it
(% )
Target
Body Simulating Liquid SAR (mW /g)
2450 24 15
Deviation
(% )
N orm alize
d
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11 OUTPUT POWER VERIFICATION
The following procedures had been used to prepare the EUT for the SAR test.
The client provided a special driver and program, w1_tools, which enable a user to control the frequency
and output power of the module.
The cable assembly insertion loss of 11.5 dB (including 10 dB pad and 1.5dB cable) was entered as an
offset in the power meter to allow for direct reading of power.
802.11b Mode
802.11g Mode
Channel Frequency Power
(MHz) (dBm)
Low 2412 16.66
Middle 2437 16.36
High 2462 16.18
Channel Frequency Power
(MHz) (dBm)
Low 2412 16.40
Middle 2437 16.50
High 2462 15.30
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11.1.1 SAR TEST RESULTS
11.2 SAR TEST RESULT FOR THE BAND 2400 – 2483.5 MHZ
Test Configuration - LCD Up
Measured SAR
1g (mW/g)
1 2412 (L) 1.28 1.6
6 2437 (M) 1.30 1.6
11 2462 (H) 1.30 1.6
802.11b
LimitMode f (MHz)Channel
Test Configuration - LCD Down
Measured SAR
1g (mW/g)
1 2412 (L) 1.15 1.6
6 2437 (M) 1.12 1.6
11 2462 (H) 1.00 1.6
802.11b
LimitMode f (MHz)Channel
Notes:
1) SAR is not required for 802.11g channels since the maximum average output power is less than
¼ dB higher than that measured on the corresponding 802.11b channels.
2) Test configuration: Body worn with back (LCD down) and front (LCD up) of the EUT against the
flat phantom. Please see setup photos for details.
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12 ATTACHMENTS
No. Contents No. Of Pages
1 System Performance Check Plots 2
2 SAR Test Plots for 2.4 GHz Band 7
3 Certificate of E-Field Probe - EX3DV3SN3531 10
4 Certificate of System Validation Dipole - D2450V2 SN:748 6
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Document ID997341
Application IDSuz07VSJ2I/yUfzvNH//Tg==
Document DescriptionSAR Report
Short Term ConfidentialNo
Permanent ConfidentialNo
SupercedeNo
Document TypeRF Exposure Info
Display FormatAdobe Acrobat PDF - pdf
Filesize21.56kB (269466 bits)
Date Submitted2008-09-08 00:00:00
Date Available2008-09-09 00:00:00
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Producing SoftwareAcrobat Distiller 5.0.5 (Windows)
Document Lastmod2008-09-05 09:50:00
Document TitleSAR Report
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