TEST REPORT FROM RFI GLOBAL SERVICES LTD
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- Erika Terry
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1 TEST REPORT FROM RFI GLOBAL SERVICES LTD Serial No: RFI/SAR2/RP74716JD10A Supersedes Serial No: RFI/SAR1/RP74716JD10A This Is Issued Under The Authority Of Stuart Thomas, General Manager Cellular Services: Checked By Scott D Adamo: pp Report Copy No: PDF01 Test Dates: 20 March 2009 to 25 March 2009 This report is issued in Adobe Acrobat portable document format (PDF). It is only a valid copy of the report if it is being viewed in PDF format with the following security options not allowed: Changing the document, Selecting text and graphics, Adding or changing notes and form fields. This report may be copied in full. The results in this report apply only to the sample(s) tested.
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3 Page: 3 of 140 Table of Contents 1. Customer Information Equipment Under Test (EUT) Test Specification, Methods and Procedures Deviations from the Test Specification Operation and Configuration of the EUT during Testing Summary of Test Results Measurements, Examinations and Derived Results Measurement Uncertainty Appendix 1. Test Equipment Used Appendix 2. Measurement Methods Appendix 3. SAR Distribution Scans Appendix 4. Photographs Appendix 5. Validation of System Appendix 6. Simulated Tissues Appendix 7. DASY4 System Details
4 Page: 4 of Customer Information Company Name: Address: Panasonic Mobile Comms Dev of Europe Ltd. Panasonic House Willoughby Road Bracknell Berkshire RG12 8FP United Kingdom
5 Page: 5 of Equipment Under Test (EUT) 2.1. Identification of Equipment Under Test (EUT) Description: Brand Name: Model Name or Number: Mobile Handset NTT docomo P-08A Serial Number: None Stated (Sample C7) IMEI Number: Hardware Version Number: Software Version Number: Hardware Revision of GSM Module: Software Revision of GSM Module: FCC ID Number: Country of Manufacture: Rev C B-WN908D H_CPF_Cv0A1352A Not Applicable Not Applicable UCE208015A None Stated Date of Receipt: 18 March Description of EUT The equipment under test was a Dual mode Cellular Mobile Telephone with PCS, UMTS FDD V and UMTS Release 5 HSDPA capabilities, incorporating Bluetooth and RFID. The Cellular Mobile Telephone operates on PCS/GPRS1900 MHz Band, UMTS/UMTS Release 5 HSDPA 850 MHz Band, Bluetooth 2400 MHz Band and RFID 13.5 MHz Band Modifications Incorporated in the EUT There were no modifications incorporated in the EUT during testing.
6 Page: 6 of Accessories The following accessories were supplied with the EUT during testing: Description: Brand Name: Model Name or Number: Serial Number: Cable Length and Type: Country of Manufacture: Connected to Port: Micro-SD Memory Card None Stated None Stated None Stated Not applicable None Stated Dedicated micro-sd card port Description: Personal Hands-Free Brand Name: NTT Docomo Model Name or Number: Stereo Earphone Set 01 Serial Number: None Stated Cable Length and Type: 1.8m / multi-core Country of Manufacture: None Stated Connected to Port: AV Out Port Unique to Manufacturer Description: Brand Name: Model Name or Number: Serial Number: Cable Length and Type: Country of Manufacture: Connected to Port: Battery NTT P19-T1 None Stated Not Applicable None Stated 3 point contact
7 Page: 7 of Support Equipment The following support equipment was used to exercise the EUT during testing: Description: Radio Communication Test Set Brand Name: Agilent Model Name or Number: 8960 Series 10 Serial Number: GB Cable Length and Type: ~1.5m Utiflex Cable Connected to Port: RF Input/Output Description: Communication Test Set Brand Name: R&S Model Name or Number: CMU200 Serial Number: Cable Length and Type: Not Applicable Connected to Port: RF (Input/Output) Air Link
8 Page: 8 of Additional Information Related to Testing Equipment Category: Type of Unit: Intended Operating Environment: Transmitter Maximum Output Power Characteristics: Transmitter Frequency Range: Transmitter Frequency Allocation of EUT When Under Test: Modulation(s): PCS1900 / UMTS Band V / Bluetooth / RFID Portable Transceiver Within GSM, UMTS, RFID and Bluetooth Coverage UMTS Band V PCS1900 Bluetooth UMTS Band V PCS1900 Bluetooth Channel Number 24dBm 30dBm 2dBm (826 to 847) MHz (1850 to 1910) MHz (2402 to 2480) MHz Channel Description Frequency (MHz) 4132 Low Middle High Low Middle High GMSK(GSM / GPRS): 217 Hz, QPSK(UMTS / HSDPA): 0 Hz Modulation Scheme (Crest Factor): GMSK (GSM): 8.3, GMSK (GPRS):4, QPSK (UMTS FDD / HSDPA):1 Type: Length: Number of Positions: Internal Unknown 1 fixed Power Supply Requirement: 3.7v Battery Type(s): Li-ion
9 Page: 9 of Test Specification, Methods and Procedures 3.1. Test Specification Reference: OET Bulletin 65 Supplement C: ( ) Title: Purpose of Test: Evaluating Compliance with FCC Guidelines for Human Exposure to Radio Frequency Electromagnetic Fields. To determine whether the equipment met the basic restrictions as defined in OET Bulletin 65 Supplement C: ( ) using the SAR averaging method as described in the test specification above Methods and Procedures Reference Documentation The methods and procedures used were as detailed in: Federal Communications Commission, Evaluating compliance with FCC Guidelines for human exposure to radio frequency electromagnetic fields, OET Bulletin 65 Supplement C, FCC, Washington, D.C, 20554, Thomas Schmid, Oliver Egger and Neils Kuster, Automated E-field scanning system for dosimetric assessments, IEEE Transaction on microwave theory and techniques, Vol. 44, pp , January Neils Kuster, Ralph Kastle and Thomas Schmid, Dosimetric evaluation of mobile communications equipment with know precision, IEICE Transactions of communications, Vol. E80-B, No.5, pp , May KDB D01 Mobile Portable RF Exposure v03. KDB D01 SAR Handsets Multi Xmiter and Ant v01r05. KDB D01 SAR test for 3G devices v Definition of Measurement Equipment The measurement equipment used complied with the requirements of the standards referenced in the methods & procedures section above. Appendix 1 contains a list of the test equipment used.
10 Page: 10 of Deviations from the Test Specification Test was performed as per KDB D01 Mobile Portable RF Exposure v03, KDB D01 SAR Handsets Multi Xmiter and Ant v01r05 and KDB D01 SAR test for 3G devices v02, according to the handset procedures in IEEE Std , OET Bulletin 65 Supplement C and the specific FCC test procedures. 2G SAR test was performed in the middle channel only as the measured levels were < 50% of the SAR limit as stated in OET Bulletin 65 Supplement C: ( ). 3G Body SAR test was performed in the middle channel. The top channel was also evaluated using the worst cases configuration from the middle channel as the top channel had the highest output power measured. This configuration was evaluated to prove the overall worst case configuration value consistency.
11 Page: 11 of Operation and Configuration of the EUT during Testing 5.1. Operating Modes The EUT was tested in the following operating mode(s) unless otherwise stated: PCS1900 Call allocated mode GPRS1900 Data allocated mode UMTS Band V call allocated UMTS FDD V - RMC 12.2kbps + HSDPA With Test loop mode 1 and TPC bits configured to all "1's", Sub-test 1 2G SAR test was performed in the middle channel only as the measured levels were < 50% of the SAR limit as stated in FCC Public Notice DA by the SCC-34/SC-2. 3G SAR test was performed in the middle channel only as the middle channel had similar power levels as the top channel.
12 Page: 12 of Configuration and Peripherals The EUT was tested in the following configuration(s) unless otherwise stated: Standalone Battery Powered. EUT tested in Head and Body-worn configuration. The applied configurations for body-worn orientations where the corresponding edge(s) is closest to the user with the most conservative exposure condition. Head Configuration a) The handset was placed in a normal operating position with the centre of the ear-piece aligned with the ear canal on the phantom. b) With the ear-piece touching the phantom the centre line of the handset was aligned with an imaginary plane (X and Y axis) consisting of three lines connecting both ears and the mouth. c) For the cheek position the handset was gradually moved towards the cheek until any point of the mouth-piece or keypad touched the cheek. d) For the tilted position the EUT was positioned as for the cheek position, and then the horizontal angle was increased by fifteen degrees (the phone keypad was moved away from the cheek by fifteen degrees). e) SAR measurements were evaluated at maximum power and the unit was operated for an appropriate period prior to the evaluation in order to minimise the drift. f) The device was keyed to operate continuously in the transmit mode for the duration of the test. g) The location of the maximum spatial SAR distribution (hot spot) was determined relative to the handset and its antenna. h) The EUT was transmitting at full power throughout the duration of the test powered by a fully charged battery. Body Configuration a) The EUT was placed in a normal operating position where the centre of EUT was aligned with the centre reference point on the flat section of the SAM phantom. b) With the EUT touching the phantom at an imaginary centre line. The EUT was aligned with a marked plane (X and Y axis) consisting of two lines. c) For the touch-safe position the handset was gradually moved towards the flat section of the SAM phantom until any point of the EUT touched the phantom. d) For position(s) greater then 0mm separation the EUT was positioned as per the touch-safe position, and then the vertical height was decreased/adjusted as required. e) SAR measurements were evaluated at maximum power and the unit was operated for an appropriate period prior to the evaluation in order to minimise the drift. f) The device was keyed to operate continuously in the transmit mode for the duration of the test. g) The location of the maximum spatial SAR distribution (hot spot) was determined relative to the handset and its antenna. h) The EUT was transmitting at full power throughout the duration of the test powered by a fully charged battery.
13 Page: 13 of Summary of Test Results Test Name Specification Reference Result Specific Absorption Rate-UMTS FDD V Head Configuration 1g Specific Absorption Rate-UMTS FDD V Body Configuration 1g Specific Absorption Rate-FDD V HSDPA Body Configuration 1g Specific Absorption Rate-PCS1900 Head Configuration 1g Specific Absorption Rate-PCS1900 Body Configuration 1g Specific Absorption Rate-GPRS1900 Body Configuration 1g SAR Individual Transmitter Evaluation device, mode Frequency, (MHz) P x (mw) OET Bulletin 65 Supplement C: 2001 OET Bulletin 65 Supplement C: 2001 OET Bulletin 65 Supplement C: 2001 OET Bulletin 65 Supplement C: 2001 OET Bulletin 65 Supplement C: 2001 OET Bulletin 65 Supplement C: 2001 P REF (mw) n (cm) single SAR, W/kg Complied Complied Complied Complied Complied Complied remarks WWAN, UMTS Routine Evaluation WWAN, GSM Routine Evaluation BT, Bluetooth :=0 SAR Simultaneous Transmitter Evaluation (x,y) d(x,y) cm L(x,y) cm SPLSR xy Sim-Tx SAR remarks (WWAN UMTS, BT) 9 n/a n/a n/a (WWAN GSM, BT) 9 n/a n/a n/a Note(s): {P BT 2P REF } {d UMTS, BT > 5cm} {d gsm,bt > 5cm} {no stand-alone SAR for BT} {no stand-alone SAR for BT} 1. Simultaneous transmission evaluation was not required as the output power for Bluetooth was < (60/f) and the Sum of all antenna < 1.6w/kg. 2. Bluetooth transmitter thresholds output power P Ref = 12 as listed in KDB Px: power level measured by RFI. 4. Single SAR value was measured by RFI. 5. The -to- distance and -to-user distance were provided by the customer.
14 Page: 14 of Location of Tests All the measurements described in this report were performed at the premises of RFI Global Services Ltd, Pavilion A, Ashwood Park, Ashwood Way, Basingstoke, Hampshire, RG23 8BG United Kingdom
15 Page: 15 of Measurements, Examinations and Derived Results 7.1. General Comments This section contains test results only. Measurement uncertainties are evaluated in accordance with current best practice. Our reported expanded uncertainties are based on standard uncertainties, which are multiplied by an appropriate coverage factor to provide a statistical confidence level of approximately 95%. Please refer to section 8 for details of measurement uncertainties.
16 Page: 16 of Test Results Specific Absorption Rate - UMTS FDD V Head Configuration 1g Test Summary: Tissue Volume: 1g Maximum Level (W/kg): Environmental Conditions: Temperature Variation in Lab ( C): 23.0 to 23.0 Temperature Variation in Liquid ( C): 22.4 to 22.4 Results: EUT Position Touch Slide Closed Retracted Touch Slide Closed Extended Touch Slide Open Retracted Touch Slide Open Extended Tilt Slide Closed Retracted Tilt Slide Closed Extended Tilt Slide Open Retracted Tilt Slide Open Extended Phantom Configuration Channel Number Level (W/kg) Limit (W/kg) Margin (W/kg) Note(s) Result Left Complied Left Complied Left Complied Left Complied Left Complied Left Complied Left Complied Left Complied
17 Page: 17 of 140 Specific Absorption Rate - UMTS FDD V Head Configuration 1g (continued) EUT Position Touch Slide Closed Retracted Touch Slide Closed Extended Touch Slide Open Retracted Touch Slide Open Extended Tilt Slide Closed Retracted Tilt Slide Closed Extended Tilt Slide Open Retracted Tilt Slide Open Extended Phantom Configuration Channel Number Level (W/kg) Limit (W/kg) Margin (W/kg) Note(s) Result Right Complied Right Complied Right Complied Right Complied Right Complied Right Complied Right Complied Right Complied Note(s): 1. SAR test was performed in the middle channel only as the measured levels were < 50% of the SAR limit as stated in the FCC Public Notice DA by the SCC-34/SC-2.
18 Page: 18 of Specific Absorption Rate - UMTS FDD V Body Configuration 1g Test Summary: Tissue Volume: 1g Maximum Level (W/kg): Environmental Conditions: Temperature Variation in Lab ( C): 23.0 to 23.0 Temperature Variation in Liquid ( C): 20.1 to 20.1 Results: EUT Position Front of EUT Facing Phantom with Slide Closed Retracted Front of EUT Facing Phantom with Slide Closed Extended Front of EUT Facing Phantom with Slide Open Retracted Front of EUT Facing Phantom with Slide Open Extended Phantom Configuration Channel Number Level (W/kg) Limit (W/kg) Margin (W/kg) Note(s) Result Flat (SAM) ,2 Complied Flat (SAM) ,2 Complied Flat (SAM) ,2 Complied Flat (SAM) ,2 Complied
19 Page: 19 of 140 Specific Absorption Rate - UMTS FDD V Body Configuration 1g (continued) EUT Position Rear of EUT Facing Phantom with Slide Closed Retracted Rear of EUT Facing Phantom with Slide Closed Extended Rear of EUT Facing Phantom with Slide Open Retracted Rear of EUT Facing Phantom with Slide Open Extended Rear of EUT Facing Phantom with Slide Closed Retracted With PHF Phantom Configuration Channel Number Level (W/kg) Limit (W/kg) Margin (W/kg) Note(s) Result Flat (SAM) ,2 Complied Flat (SAM) ,2 Complied Flat (SAM) ,2 Complied Flat (SAM) ,2 Complied Flat (SAM) ,2 Complied Note(s): 1. SAR test was performed in the middle channel only as the measured levels were < 50% of the SAR limit as stated in the FCC Public Notice DA by the SCC-34/SC SAR measurements were performed with the EUT at a separation distance of 15mm from the 'SAM' phantom flat section.
20 Page: 20 of Specific Absorption Rate FDD V HSDPA Body Configuration 1g Test Summary: Tissue Volume: 1g Maximum Level (W/kg): Environmental Conditions: Temperature Variation in Lab ( C): 23.0 to 23.0 Temperature Variation in Liquid ( C): 20.1 to 20.1 Results: EUT Position Rear of EUT Facing Phantom with Slide Closed Retracted Phantom Configuration Channel Number Level (W/kg) Limit (W/kg) Margin (W/kg) Note(s) Result Flat (SAM) ,2,3 Complied Note(s): 1. SAR test was performed in the middle channel only as the measured levels were < 50% of the SAR limit as stated in the FCC Public Notice DA by the SCC-34/SC HSDPA Enabled with Test loop mode 1 and TPC bits configured to all "1's", Sub-test SAR measurements were performed with the EUT at a separation distance of 15mm from the 'SAM' phantom flat section.
21 Page: 21 of Specific Absorption Rate - PCS1900 Head Configuration 1g Test Summary: Tissue Volume: 1g Maximum Level (W/kg): Environmental Conditions: Temperature Variation in Lab ( C): 23.0 to 23.0 Temperature Variation in Liquid ( C): 23.8 to 23.8 Results: EUT Position Touch Slide Closed Retracted Touch Slide Closed Extended Touch Slide Open Retracted Touch Slide Open Extended Tilt Slide Closed Retracted Tilt Slide Closed Extended Tilt Slide Open Retracted Tilt Slide Open Extended Phantom Configuration Channel Number Level (W/kg) Limit (W/kg) Margin (W/kg) Note(s) Result Left Complied Left Complied Left Complied Left Complied Left Complied Left Complied Left Complied Left Complied
22 Page: 22 of 140 Specific Absorption Rate - PCS1900 Head Configuration 1g (continued) EUT Position Touch Slide Closed Retracted Touch Slide Closed Extended Touch Slide Open Retracted Touch Slide Open Extended Tilt Slide Closed Retracted Tilt Slide Closed Extended Tilt Slide Open Retracted Tilt Slide Open Extended Phantom Configuration Channel Number Level (W/kg) Limit (W/kg) Margin (W/kg) Note(s) Result Right Complied Right Complied Right Complied Right Complied Right Complied Right Complied Right Complied Right Complied Note(s): 1. SAR test was performed in the middle channel only as the measured levels were < 50% of the SAR limit as stated in the FCC Public Notice DA by the SCC-34/SC-2.
23 Page: 23 of Specific Absorption Rate - PCS1900 Body Configuration 1g Test Summary: Tissue Volume: 1g Maximum Level (W/kg): Environmental Conditions: Temperature Variation in Lab ( C): 22.0 to 22.0 Temperature Variation in Liquid ( C): 23.4 to 23.4 Results: EUT Position Rear of EUT Facing Phantom with Slide Closed Extended Phantom Configuration Channel Number Level (W/kg) Limit (W/kg) Margin (W/kg) Note(s) Result Flat (SAM) ,2 Complied Note(s): 1. SAR test was performed in the middle channel only as the measured levels were < 50% of the SAR limit as stated in the FCC Public Notice DA by the SCC-34/SC SAR measurements were performed with the EUT at a separation distance of 15mm from the 'SAM' phantom flat section.
24 Page: 24 of Specific Absorption Rate - GPRS1900 Body Configuration 1g Test Summary: Tissue Volume: 1g Maximum Level (W/kg): Environmental Conditions: Temperature Variation in Lab ( C): 22.0 to 22.0 Temperature Variation in Liquid ( C): 23.4 to 23.4 Results: EUT Position Front of EUT Facing Phantom with Slide Closed Retracted Front of EUT Facing Phantom with Slide Closed Extended Front of EUT Facing Phantom with Slide Open Retracted Front of EUT Facing Phantom with Slide Open Extended Phantom Configuration Channel Number Level (W/kg) Limit (W/kg) Margin (W/kg) Note(s) Result Flat (SAM) ,2 Complied Flat (SAM) ,2 Complied Flat (SAM) ,2 Complied Flat (SAM) ,2 Complied
25 Page: 25 of 140 Specific Absorption Rate - GPRS1900 Body Configuration 1g (Continued) EUT Position Rear of EUT Facing Phantom with Slide Closed Retracted Rear of EUT Facing Phantom with Slide Closed Extended Rear of EUT Facing Phantom with Slide Open Retracted Rear of EUT Facing Phantom with Slide Open Extended Rear of EUT Facing Phantom with Slide Closed Extended With PHF Phantom Configuration Channel Number Level (W/kg) Limit (W/kg) Margin (W/kg) Note(s) Result Flat (SAM) ,2 Complied Flat (SAM) ,2 Complied Flat (SAM) ,2 Complied Flat (SAM) ,2 Complied Flat (SAM) ,2 Complied Note(s): 1. SAR test was performed in the middle channel only as the measured levels were < 50% of the SAR limit as stated in the FCC Public Notice DA by the SCC-34/SC SAR measurements were performed with the EUT at a separation distance of 15mm from the 'SAM' phantom flat section.
26 Page: 26 of 140 Test of: NTT docomo P-08A EIRP/ERP Measurement Channel Number Frequency (MHZ) GSM TX Power before Test (dbm) GPRS TX Power before Test (dbm) Note EIRP EIRP EIRP Band Modes HSDPA WCDMA Sets Channel 4132 Power (dbm) Peak/ Avg. 26.8/ 24.0 Power (dbm) Peak/ Avg. 27.0/ 22.2 Power (dbm) Peak/ Avg. 27.6/ 22.9 Power (dbm) Peak/ Avg. 27.0/ 22.1 Voice / RMC12.2kbps Power (dbm) Peak/ Avg. 26.7/ / / / / / / / / / / 24.6 ßc ßd ACK, NACK, CQI Sub-test 1 Setup for Release 5 HSDPA Sub-test β c β d Β d (SF) β c/ β d β hs (1) SM (db) (2) 1 2/15 15/ /15 4/ /15 (3) 15/15 (3) 64 12/15 (3) 24/ /15 8/ /8 30/ /15 4/ /4 30/ Note 1: ACK, NACK and CQI = 8 A hs = β hs /β c = 30/15 β hs = 30/15 * β c Note 2: CM = 1 for β c/ β d = 12/15, Β hs /β c = 24/15 Note 3: For subtest 2 the β c/ β d ratio of 12/15 for the TFC during the measurement period (TF1, TF0) is achieved by setting the signalled gain factors for the reference TFC (TF1, TF1) to β c = 11/15 and β d = 15/15
27 Page: 27 of Measurement Uncertainty No measurement or test can ever be perfect and the imperfections give rise to error of measurement in the results. Consequently, the result of a measurement is only an approximation to the value of the measurand (the specific quantity subject to measurement) and is only complete when accompanied by a statement of the uncertainty of the approximation. The expression of uncertainty of a measurement result allows realistic comparison of results with reference values and limits given in specifications and standards. The uncertainty of the result may need to be taken into account when interpreting the measurement results. The reported expanded uncertainties below are based on a standard uncertainty multiplied by an appropriate coverage factor, such that a confidence level of approximately 95% is maintained. For the purposes of this document approximately is interpreted as meaning effectively or for most practical purposes. Test Name Confidence Level Calculated Uncertainty Specific Absorption Rate-PCS1900 Head Configuration 1g 95% 18.44% Specific Absorption Rate- PCS1900 Body Configuration 1g 95% 18.30% Specific Absorption Rate- GPRS1900 Body Configuration 1g 95% 18.30% Specific Absorption Rate- UMTS850 Head Configuration 1g 95% 17.91% Specific Absorption Rate- UMTS850 Body Configuration 1g 95% 17.93% The methods used to calculate the above uncertainties are in line with those recommended within the various measurement specifications. Where measurement specifications do not include guidelines for the evaluation of measurement uncertainty, the published guidance of the appropriate accreditation body is followed.
28 Page: 28 of 140 Measurement Uncertainty (Continued) 8.1. Specific Absorption Rate Uncertainty at 1900 MHz Head 1g, PCS Modulation Scheme calculated in accordance with IEC & IEEE 1528 Type Source of uncertainty + Value - Value Probability Distribution Divisor c i (10g) Standard Uncertainty B Probe calibration normal (k=2) B Axial Isotropy normal (k=2) B Hemispherical Isotropy normal (k=2) B Spatial Resolution Rectangular B Boundary Effect Rectangular B Linearity Rectangular B Detection Limits Rectangular B Readout Electronics normal (k=2) B Response Time Rectangular B Integration Time Rectangular B RF Ambient conditions Rectangular B Probe Positioner Mechanical Restrictions Rectangular B Probe Positioning with regard to Phantom Shell Rectangular B Extrapolation and integration/ Maximum SAR evaluation Rectangular A Test Sample Positioning normal (k=1) A Device Holder uncertainty normal (k=1) B Phantom Uncertainty Rectangular B Drift of output power Rectangular B Liquid Conductivity (target value) Rectangular A Liquid Conductivity (measured value) normal (k=1) B Liquid Permittivity (target value) Rectangular A Liquid Permittivity (measured value) normal (k=1) Combined standard uncertainty t-distribution >300 Expanded uncertainty k = >300 + u (%) - u (%) υ i or υ eff
29 Page: 29 of 140 Measurement Uncertainty (Continued) 8.2. Specific Absorption Rate Uncertainty at 1900 MHz Body 1g, PCS Modulation Scheme calculated in accordance with IEC & IEEE 1528 Type Source of uncertainty + Value - Value Probability Distribution Divisor c i (10g) Standard Uncertainty B Probe calibration normal (k=2) B Axial Isotropy normal (k=2) B Hemispherical Isotropy normal (k=2) B Spatial Resolution Rectangular B Boundary Effect Rectangular B Linearity Rectangular B Detection Limits Rectangular B Readout Electronics normal (k=2) B Response Time Rectangular B Integration Time Rectangular B RF Ambient conditions Rectangular B Probe Positioner Mechanical Restrictions Rectangular B Probe Positioning with regard to Phantom Shell Rectangular B Extrapolation and integration/ Maximum SAR evaluation Rectangular A Test Sample Positioning normal (k=1) A Device Holder uncertainty normal (k=1) B Phantom Uncertainty Rectangular B Drift of output power Rectangular B Liquid Conductivity (target value) Rectangular A Liquid Conductivity (measured value) normal (k=1) B Liquid Permittivity (target value) Rectangular A Liquid Permittivity (measured value) normal (k=1) Combined standard uncertainty t-distribution >500 Expanded uncertainty k = >500 + u (%) - u (%) υ i or υ eff
30 Page: 30 of 140 Measurement Uncertainty (Continued) 8.3. Specific Absorption Rate Uncertainty at 1900 MHz Body 1g, GPRS Modulation Scheme calculated in accordance with IEC & IEEE 1528 Type Source of uncertainty + Value - Value Probability Distribution Divisor c i (10g) Standard Uncertainty B Probe calibration normal (k=2) B Axial Isotropy normal (k=2) B Hemispherical Isotropy normal (k=2) B Spatial Resolution Rectangular B Boundary Effect Rectangular B Linearity Rectangular B Detection Limits Rectangular B Readout Electronics normal (k=2) B Response Time Rectangular B Integration Time Rectangular B RF Ambient conditions Rectangular B Probe Positioner Mechanical Restrictions Rectangular B Probe Positioning with regard to Phantom Shell Rectangular B Extrapolation and integration/ Maximum SAR evaluation Rectangular A Test Sample Positioning normal (k=1) A Device Holder uncertainty normal (k=1) B Phantom Uncertainty Rectangular B Drift of output power Rectangular B Liquid Conductivity (target value) Rectangular A Liquid Conductivity (measured value) normal (k=1) B Liquid Permittivity (target value) Rectangular A Liquid Permittivity (measured value) normal (k=1) Combined standard uncertainty t-distribution >400 Expanded uncertainty k = >400 + u (%) - u (%) υ i or υ eff
31 Page: 31 of Specific Absorption Rate Uncertainty at 850 MHz Head 1g, UMTS Modulation Scheme calculated in accordance with IEC & IEEE 1528 Type Source of uncertainty + Value - Value Probability Distribution Divisor c i (10g) Standard Uncertainty B Probe calibration normal (k=2) B Axial Isotropy normal (k=2) B Hemispherical Isotropy normal (k=2) B Spatial Resolution Rectangular B Boundary Effect Rectangular B Linearity Rectangular B Detection Limits Rectangular B Readout Electronics normal (k=2) B Response Time Rectangular B Integration Time Rectangular B RF Ambient conditions Rectangular B Probe Positioner Mechanical Restrictions Rectangular B Probe Positioning with regard to Phantom Shell Rectangular B Extrapolation and integration/ Maximum SAR evaluation Rectangular A Test Sample Positioning normal (k=1) A Device Holder uncertainty normal (k=1) B Phantom Uncertainty Rectangular B Drift of output power Rectangular B Liquid Conductivity (target value) Rectangular A Liquid Conductivity (measured value) normal (k=1) B Liquid Permittivity (target value) Rectangular A Liquid Permittivity (measured value) normal (k=1) Combined standard uncertainty t-distribution >500 Expanded uncertainty k = >500 + u (%) - u (%) υ i or υ eff
32 Page: 32 of Specific Absorption Rate Uncertainty at 850 MHz Body 1g, UMTS Modulation Scheme calculated in accordance with IEC & IEEE 1528 Type Source of uncertainty + Value - Value Probability Distribution Divisor c i (10g) Standard Uncertainty B Probe calibration normal (k=2) B Axial Isotropy normal (k=2) B Hemispherical Isotropy normal (k=2) B Spatial Resolution Rectangular B Boundary Effect Rectangular B Linearity Rectangular B Detection Limits Rectangular B Readout Electronics normal (k=2) B Response Time Rectangular B Integration Time Rectangular B RF Ambient conditions Rectangular B Probe Positioner Mechanical Restrictions Rectangular B Probe Positioning with regard to Phantom Shell Rectangular B Extrapolation and integration/ Maximum SAR evaluation Rectangular A Test Sample Positioning normal (k=1) A Device Holder uncertainty normal (k=1) B Phantom Uncertainty Rectangular B Drift of output power Rectangular B Liquid Conductivity (target value) Rectangular A Liquid Conductivity (measured value) normal (k=1) B Liquid Permittivity (target value) Rectangular A Liquid Permittivity (measured value) normal (k=1) Combined standard uncertainty t-distribution >500 Expanded uncertainty k = >500 + u (%) - u (%) υ i or υ eff
33 Page: 33 of 140 Appendix 1. Test Equipment Used RFI No. Instrument Manufacturer Type No. Serial No. A034 Narda 20W Termination Date Last Calibrated Narda 374BNM 8706 Calibrated as part of system A1094 Digital Camera Sony MVC - FD A1097 SMA Directional Coupler MiDISCO MDC None Calibrated as part of system A1137 3dB Attenuator Narda Calibrated as part of system A1174 Dielectric Probe Kit Agilent Technologies A1328 Handset Positioner Schmid & Partner Engineering AG A1182 Handset Positioner Schmid & Partner Engineering AG A1184 Data Acquisition Electronics Schmid & Partner Engineering AG 85070C Us Calibrated before use Modification SD 000 H01 DA - - V3.0 None - - DAE June Cal. Interval (Months) A1378 Probe Schmid & Partner Engineering AG EX3 DV June A1238 SAM Phantom Schmid & Partner Engineering AG A1566 SAM Phantom Schmid & Partner Engineering AG A MHz Dipole Kit Schmid & Partner Engineering AG A MHz Dipole Kit Schmid & Partner Engineering AG A1497 Amplifier Mini-Circuits zhl-42w (sma) SAM b 001 Calibrated before use SAM a 002 Calibrated before use D1900V June D900V May e Calibrated as part of system A db Attenuator Narda Calibrated as part of system C1144 Cable Rosenberger MICRO-COAX C1145 Cable Rosenberger MICRO-COAX C1146 Cable Rosenberger MICRO-COAX FA147AF FA147AF FA147AF Calibrated as part of system Calibrated as part of system Calibrated as part of system
34 Page: 34 of 140 RFI No. Instrument Manufacturer Type No. Serial No. G0528 Robot Power Supply Schmid & Partner Engineering AG Date Last Calibrated DASY None Calibrated before use G087 PSU Thurlby Thandar CPX Calibrated before use M010 NRV Power Meter Rohde & Schwarz NRV / May M1015 Network Analyser Agilent Technologies 8753ES US September 2008 M1047 Robot Arm Staubli RX908 L F00/SD89A1/ A/01 M1069 Diode Power Sensor Calibrated before use Rohde & Schwarz NRV-Z / May M1129 Power Sensor Rohde & Schwarz URY-Z /16 12 June M136 M1519 Temperature/ Humidity/ Pressure Meter Radio Communication Test Set RS Components None None Internal Calibration Agilent 8960 Series 10 GB October 2008 A1287 Power head Rohde & Schwarz URY-Z /12 Calibrated as part of system M1270 Temperature/ Humidity/ Pressure Meter RS Components None None June 2008 (Internal Calibration) C1092 Cable RS Components Internal Calibration A1531 AARONIA AG S256 SAR Lab RFI Site 56 N/A Calibrated before use Cal. Interval (Months) NB In accordance with UKAS requirements, all the measurement equipment is on a calibration schedule
35 Page: 35 of 140 A.1.1. Calibration Certificates This section contains the calibration certificates and data for the Probe(s) and Dipole(s) used, which are not included in the total number of pages for this report.
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63 Page: 36 of 140 Appendix 2. Measurement Methods A.2.1. Evaluation Procedure The Specific Absorption Rate (SAR) evaluation was performed in the following manner: a) (i) The evaluation was performed in an applicable area of the phantom depending on the type of device being tested. For devices worn about the ear during normal operation, both the left and right ear positions were evaluated at the centre frequency of the band at maximum power. The side, which produced the greatest SAR, determined which side of the phantom would be used for the entire evaluation. The positioning of the head worn device relative to the phantom was dictated by the test specification identified in section 3.1 of this report. (ii) For body worn devices or devices which can be operated within 20 cm of the body, the flat section of the SAM phantom was used were the size of the device(s) is normal. for bigger devices and base station the 2mm Oval phantom is used for evaluation. The type of device being evaluated dictated the distance of the EUT to the outer surface of the phantom flat section. b) The SAR was determined by a pre-defined procedure within the DASY4 software. The exposed region of the phantom was scanned near the inner surface with a grid spacing of 20mm x 20mm or appropriate resolution. c) A 5x5x7 matrix was performed around the greatest spatial SAR distribution found during the area scan of the applicable exposed region. SAR values were then calculated using a 3-D spline interpolation algorithm and averaged over spatial volumes of 1 and 10 grams. d) If the EUT had any appreciable drift over the course of the evaluation, then the EUT was re-evaluated. Any unusual anomalies over the course of the test also warranted a re-evaluation.
64 Page: 37 of 140 A.2.2. Specific Absorption Rate (SAR) Measurements to OET Bulletin 65 Supplement C: ( ) Evaluating Compliance with FCC Guidelines for Human Exposure to Radio Frequency Electromagnetic Fields SAR measurements were performed in accordance with Appendix D of the standard FCC OET Bulletin 65 Supplement C: 2001, against appropriate limits for each measurement position in accordance with the standard. The test was performed in a shielded enclosure with the temperature controlled to remain between +18.0ºC and +25.0ºC. The tissue equivalent material fluid temperature was controlled to give a maximum variation of ± 2.0ºC Prior to any SAR measurements on the EUT, system validation and material dielectric property measurements were conducted. In the absence of a detailed procedure within the specification, system validation and material dielectric property measurements were performed in accordance with Appendix C and Appendix D of FCC OET Bulletin 65 Supplement C: Following the successful system validation and material dielectric property measurements, a SAR versus time sweep shall be performed within 10 mm of the phantom inner surface. If the EUT power output is stable after three minutes then the measurement probe will perform a coarse surface level scan at each test position in order to ascertain the location of the maximum local SAR level. Once this area had been established, a 5x5x7 cube of 343 points (5 mm spacing in each axis 27g) will be centred at the area of concern. Extrapolation and interpolation will then be carried out on the 27g of tissue and the highest averaged SAR over a 10g cube determined. Once the maximum interpolated SAR measurement is complete; the coarse scan is visually assessed to check for secondary peaks within 50% of the maximum SAR level. If there are any further SAR measurements required, extra 5x5x7 cubes shall be centred on each of these extra local SAR maxima. At the end of each position test case a second time sweep shall be performed to check whether the EUT has remained stable throughout the test.
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