
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
We don't prepare the User Manual for the module because it is not sold to the end user directly. Please refer to the Specification Sheet for more details about the module. For the module installation to the host equipment please follow the installation manual FCC/IC Notice for model: WM223 Following statement must be included in the user manual of host device. The end p roduct must be labeled For the module installation to the host equipment , please follow the installation manual . FCC/IC NOTICE Mdl PCXXXX (i l di WLAN Mdl Mdl WM223 FCC ID AZD223) p “Contains FCC ID: AZD223” and “Contains IC: 498J ‐ 223” Model: PCXXXX is the host device of WM223. M o d e l : PCXXXX (i nc l u di ng WLAN M o d u l e M o d e l WM223 , FCC ID : AZD223) This device complies with Part 15 of FCC Rules and Industry Canada licence ‐ exempt RSS standard(s). Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) thi di t t it f ildi it f th t did (2) thi s d ev i ce mus t accep t any i n t er f erence, i nc l u di ng i n t er f erence th a t may cause un d es i re d operation of this device. Do not make any changes or modifications to the equipment unless otherwise specified in the manual. If such changes or modifications should be made, you could be required to stop operation of the equipment. This transmitter must not be co ‐ located or operated in conjunction with any other antenna or transmitter except Canon accessories supplied or designated for this product. The available scientific evidence does not show that any health problems are associated with using low power wireless devices T here is no proof The available scientific evidence does not show that any health problems are associated with using low power wireless devices . T here is no proof , however, that these low power wireless devices are absolutely safe. Low power Wireless devices emit low levels of radio frequency energy (RF) in the microwave range while being used. Whereas high levels of RF can produce health effects (by heating tissue), exposure of low ‐ level RF that does not produce heating effects causes no known adverse health effects. Many studies of low ‐ level RF exposures have not found any biological effects. Some studies have suggested that some biological effects might occur, but such findings have not been confirmed by additional research. This model has been tested and found to comply with FCC/IC radiation exposure limits set forth for an uncontrolled environment and meets the FC C radio frequency been tested and found to comply with FCC/IC radiation exposure limits set forth for an uncontrolled environment and meets the FC C radio frequency (RF) Exposure Guidelines and RSS ‐ 102 of the IC radio frequency (RF) Exposure rules.
WM223 Overall Appearance Photos外観写真TOP VIEW BOTTOM VIEW LEFT SIDE VIEW RIGHT SIDE VIEW FRONT VIEW BACK VIEW
WM223 Label Design and Locationラベルデザインおよび位置BOTTOM SIDE 14mm 10mm 22.5mm 11.5mm
WM223 Internal Photos, Antenna Location内部写真, アンテナ取り付け位置TOP VIEW INTERNAL VIEW(TOP) Antenna
Test report No. : 10048648S-A Page : 1 of 47 Issued date : October 29, 2013 FCC ID : AZD223 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone: +81 463 50 6400 / Facsimile: +81 463 50 6401 SAR TEST REPORT Test Report No.: 10048648S-A Applicant : Canon Inc. Type of Equipment : Wireless Module Model No. : WM223 (*. Installed into the WM223’s platform (1)) FCC ID : AZD223 Test Standard : FCC 47CFR §2.1093 Test Result : Complied Highest Reported SAR(1g) Value Platform # Platform type Platform model Remarks 0.86 W/kg Platform (1) Digital camera PC2071 (DTS) 2462MHz, IEEE 802.11 b, (1Mbps, DBPSK/DSSS)) *. Hi ghest measured SAR(1g) value: 0.658 W/kg (output power: 13.83dBm) *. Highest reported SAR (1g) across exposure conditions = “0.86 W/kg” = grant listing. *. Since highest reported SAR (1g) on this platform (1) which obtained in accordance with KDB447498 (v05) was under 1.2 W/kg, this EUT was approved to operate a single platform which was tested in this report. 1. This test report shall not be reproduced in full or partial, without the written approval of UL Japan, Inc. 2. The results in this report apply only to the sample tested. 3. This sample tested is in compliance with the limits of the above regulation. 4. The test results in this test report are traceable to the national or international standards. 5. This test report must not be used by the customer to claim product certification, approval, or endorsement by any agency of the Federal Government. 6. The opinions and the interpretations to the result of the description in this report are outside scopes where UL Japan has been accredited. Date of test: September 19, 20 and October 4, 2013 Test engineer: Hiroshi Naka Engineer of WiSE Japan, UL Verification Service Approved by: Toyokazu Imamura Leader of WiSE Japan, UL Verification Service The testing in which "Non-accreditation" is displayed is outside the accreditation scopes in UL Japan. There is no testing item of "Non-accreditation". RTL02610 13-EM-F0429 Test report No. : 10048648S-A Page : 2 of 47 Issued date : October 29, 2013 FCC ID : AZD223 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone: +81 463 50 6400 / Facsimile: +81 463 50 6401 REVISION HISTORY Revision Test report No. DatePage revisedContents Original 10048648S-A October 29, 2013- - *. By issue of new revision report, the report of an old revision becomes invalid. CONTENTS PAGE REVISION HISTORY .................................................................................................................................................. 2 CONTENTS .................................................................................................................................................... 2 SECTION 1: Customer information .................................................................................... 3 SECTION 2: Equipment under test (EUT) ......................................................................... 3 2.1 Identification of EUT ........................................................................................................... 3 2.2 Product Description ............................................................................................................. 3 2.3 Tx output power specification (antenna port terminal conducted) ....................................... 4 2.4 Maximum output power which may possible ....................................................................... 4 SECTION 3: Test specification, procedures and results .................................................... 5 3.1 Test specification ................................................................................................................. 5 3.2 Exposure limit ..................................................................................................................... 5 3.3 Procedure and result ............................................................................................................ 5 3.4 Test location ........................................................................................................................ 5 3.5 Confirmation before SAR testing ......................................................................................... 6 3.6 Confirmation after SAR testing ........................................................................................... 6 3.7 Test setup of EUT and SAR measurement procedure .......................................................... 7 SECTION 4: Operation of EUT during testing .................................................................. 7 SECTION 5: Uncertainty assessment (SAR measurement) ............................................... 8 SECTION 6: Confirmation before testing .......................................................................... 9 6.1 Assessment for the conducted power of EUT ...................................................................... 9 SECTION 7: Measurement results ...................................................................................... 10 7.1 SAR (Body) test results of platform (1) ............................................................................... 10 Contents of appendixes APPENDIX 1: Photographs of test setup ............................................................................... 11 Appendix 1-1 Photograph of Platform (1) and antenna position ................................................................. 11 Appendix 1-2 EUT and support equipment ................................................................................................ 12 Appendix 1-3 Photograph of test setup / Platform (1) ................................................................................ 13 APPENDIX 2: SAR Measurement data ................................................................................. 16 Appendix 2-1 Evaluation procedure ...........…
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Test report No. : 10048648S-A Page : 16 of 47 Issued date : October 29, 2013 FCC ID : AZD223 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone: +81 463 50 6400 / Facsimile: +81 463 50 6401 APPENDIX 2: SAR Measurement data Appendix 2-1: Evaluation procedure The SAR evaluation was performed with the following procedure: Step 1: Measurement of the E-field at a fixed location above the central position of flat phantom was used as a reference value for assessing the power drop. Step 2: The SAR distribution at the exposed side of head or body position was measured at a distance of each device from the inner surface of the shell. The area covered the entire dimension of the antenna of EUT and suitable horizontal grid spacing of EUT. Based on these data, the area of the maximum absorption was determined by splines interpolation. Step 3: Around this point found in the Step 2 (area scan), a volume of 30mm(X axis)30mm(Y axis)30mm(Z axis) (or more) was assessed by measuring 777 points (or more) under 3GHz. And for any secondary peaks found in the Step2 which are within 2dB of the SAR limit (1.6W/kg), this Step3 (Zoom scan) is repeated. On the basis of this data set, the spatial peak SAR value was evaluated under the following procedure: (1) The data at the surface were extrapolated, since the center of the dipoles is 1mm away from the tip of the probe and the distance between the surface and the lowest measuring point is 2mm. The extrapolation was based on a least square algorithm. A polynomial of the fourth order was calculated through the points in z-axes. This polynomial was then used to evaluate the points between the surface and the probe tip. (2) The maximum interpolated value was searched with a straightforward algorithm. Around this maximum the SAR values averaged over the spatial volumes (1g or 10g) were computed by the 3D-Spline interpolation algorithm. The 3D-Spline is composed of three one-dimensional splines with the “Not a knot"-condition (in x, y and z-directions). The volume was integrated with the trapezoidal-algorithm. One thousand points (101010) were interpolated to calculate the average. (3) All neighboring volumes were evaluated until no neighboring volume with a higher average value was found. Step 4: Re-measurement of the E-field at the same location as in Step 1 for the assessment of the power drift. Step 5: Repeat Step 1-Step 4 with other condition or/and setup of EUT. Test report No. : 10048648S-A Page : 17 of 47 Issued date : October 29, 2013 FCC ID : AZD223 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone: +81 463 50 6400 / Facsimile: +81 463 50 6401 Appendix 2-2: SAR measurement data / Platform (1) Step 1: Change the setup positions Step 1-1: Top-front & touch (separation distance=0mm) / 11b(1Mbps), 2462MHz (11ch.) EUT: Wireless module/(in Digital camera); Type: WM223/(camera:PC2071); Serial: E8F1/(53) Communication System: IEEE 802.11b(1Mbps, DBPSK/DSSS); Frequency: 2462 MHz; Crest Factor: 1.0 (*. Frame Length in ms: 0; Communication System PAR: 0 dB; PMF: 1) Medium: M2450; Medium parameters used: f = 2462 MHz; σ = 1.991 S/m; ε r = 50.67; ρ = 1000 kg/m 3 Measurement Standard: DASY5 (IEEE/IEC/ANSI C63.19-2007) DASY Configuration: -Probe: EX3DV4 - SN3679; ConvF(6.82, 6.82, 6.82); Calibrated: 2013/07/22; -Sensor-Surface: 2mm (Mechanical Surface Detection), z = 1.0, 31.0 -Electronics: DAE4 Sn626; Calibrated: 2013/09/17 -Phantom: ELI v4.0; Type: QDOVA001BA; Serial: 1059; Phantom section: Flat Section -DASY52 52.8.2(969); SEMCAD X 14.6.6(6824) portable,wm223(e8f1)+dc1_pc2071(53)/m1;pos;top-frt(Lens)&touch(d0mm),11b(1m),m2462/ Area Scan:72x120,12 (7x11x1): Measurement grid: dx=12mm, dy=12mm; Maximum value of SAR (measured) = 0.528 W/kg Area Scan:72x120,12 (61x101x1): Interpolated grid: dx=1.200 mm, dy=1.200 mm; Maximum value of SAR (interpolated) = 0.635 W/kg Fast SAR: SAR(1 g) = 0.319 mW/g; Zoom Scan:30x30x30,5 (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm; Reference Value = 15.913 V/m; Power Drift = -0.05 dB, Maximum value of SAR (measured) = 0.539 W/kg Peak SAR (extrapolated) = 0.786 mW/g SAR(1 g) = 0.329 mW/g; SAR(10 g) = 0.135 mW/g (Shown with no transparency of area scan and a fast 1g-SAR plot) Remarks: *. Date tested: 2013/10/04; Tested by: Hiroshi Naka; Tested place:No.7 shielded room, *.liquid depth: 155mm; Position: distance of EUT to phantom: 0mm (2mm to liquid); ambient: 23.5 1.0deg.C. / 45 10 %RH, *.liquid temperature: 22.5(start)/22.4(end)/22.2(in check) deg.C.; *.White cubic: zoom scan area, Red cubic: big=SAR(10g )/small=SAR(1g) Test report No. : 10048648S-A Page : 18 of 47 Issued date : October 29, 2013 FCC ID : AZD223 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone: +81 463 50 6400 / Facsimile: +81 463 50 6401 Appendix 2-2: SAR measurement data / Platform (1) (cont’d) Step 1: Change the setup positions (cont’d) Step 1-2: Top-rear & touch (separation distance=0mm) / 11b(1Mbps), 2462MHz (11ch.) EUT: Wireless module/(in Digital camera); Type: WM223/(camera:PC2071); Serial: E8F1/(53) Communication System: IEEE 802.11b(1Mbps, DBPSK/DSSS); Frequency: 2462 MHz; Crest Factor: 1.0 (*. Frame Length in ms: 0; Communication System PAR: 0 dB; PMF: 1) Medium: M2450; Medium parameters used: f = 2462 MHz; σ = 1.991 S/m; ε r = 50.67; ρ = 1000 kg/m 3 Measurement Standard: DASY5 (IEEE/IEC/ANSI C63.19-2007) DASY Configuration: -Probe: EX3DV4 - SN3679; ConvF(6.82, 6.82, 6.82); Calibrated: 2013/07/22; -Sensor-Surface: 2mm (Mechanical Surface Detection), z = 1.0, 31.0 -Electronics: DAE4 Sn626; Calibrated: 2013/09/17 -Phantom: ELI v4.0; Type: QDOVA001BA; Serial: 1059; Phantom section: Flat Section -DASY52 52.8.2(969); SEMCAD X 14.6.6(6824) portable,wm223(e8f1)+dc1_pc2071(53)/m2;pos;top-rear(LCD)&touch(d0mm),11b(1m),m2462/ Area Scan:72x120,12 (7x11x1): Measurement grid: dx=12mm, dy=12mm; Maximum v…
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Test report No. : 10048647S-A Page : 1 of 125 Issued date : November 7, 2013 Revised date : November 27, 2013 FCC ID : AZD223 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone : +81 463 50 6400 Facsimile : +81 463 50 6401 RADIO TEST REPORT Test Report No.: 10048647S-A Applicant : Canon Inc. Type of Equipment : Wireless Module Model No. : WM223 FCC ID : AZD223 Test regulation : FCC Part15 Subpart C: 2013 Test result : Complied 1. This test report shall not be reproduced in full or partial, without the written approval of UL Japan, Inc. 2. The results in this report apply only to the sample tested. 3. This sample tested is in compliance with the limits of the above regulation. 4. The test results in this test report are traceable to the national or international standards. 5. This test report must not be used by the customer to claim product certification, approval, or endorsement by any agency of the Federal Government. 6. The opinions and the interpretations to the result of the description in this report are outside scopes where UL Japan has been accredited. Date of test: August 14 to 21, 2013 Tested by: Hikaru Shirasawa Engineer of WiSE Japan, UL Verification Service Approved by : Toyokazu Imamura Leader of WiSE Japan, UL Verification Service RTL02610 The testing in which "Non-accreditation" is displayed is outside the accreditation scopes in UL Japan. There is no testing item of "Non-accreditation". 13-EM-F0429 Test report No. : 10048647S-A Page : 2 of 125 Issued date : November 7, 2013 Revised date : November 27, 2013 FCC ID : AZD223 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone : +81 463 50 6400 Facsimile : +81 463 50 6401 REVISION HISTORY Original Test Report No.: 10048647S-A Revision Test report No. Date Page revised Contents - (Original) 10048647S-A November 7, 2013 - - 1 10048647S-A November 27, 2013 4, 8, 14-121 P4 Correction of antenna gain P8, 14-121 Correction of power setting Correction of typo Test report No. : 10048647S-A Page : 3 of 125 Issued date : November 7, 2013 FCC ID : AZD223 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone : +81 463 50 6400 Facsimile : +81 463 50 6401 Contents Page SECTION 1: Customer information ..................................................................................... 4 SECTION 2: Equipment under test (E.U.T.) ....................................................................... 4 SECTION 3: Test specification, procedures & results ......................................................... 5 SECTION 4: Operation of E.U.T. during testing ................................................................. 8 SECTION 5: Conducted emission ........................................................................................ 9 SECTION 6: 6dB bandwidth & Occupied bandwidth (99%) ........................................... 10 SECTION 7: Maximum peak conducted output power..................................................... 10 SECTION 8: Out of band emissions (Antenna port conducted) ....................................... 10 SECTION 9: Peak power density........................................................................................ 10 SECTION 10: Radiated emission........................................................................................ 11 Contents of APPENDIXES ................................................................................................... 13 APPENDIX 1: Data of Radio tests ...................................................................................... 14 APPENDIX 2: Test instruments ....................................................................................... 122 APPENDIX 3: Photographs of test setup ......................................................................... 123 Test report No. : 10048647S-A Page : 4 of 125 Issued date : November 7, 2013 Revised date : November 27, 2013 FCC ID : AZD223 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone : +81 463 50 6400 Facsimile : +81 463 50 6401 SECTION 1: Customer information Company Name : Canon Inc. Address : 30-2, Shimomaruko 3-chome, Ohta-ku, Tokyo, 146-8501 Japan Telephone Number : +81-3-5482-8070 Facsimile Number : +81-3-3757-8431 Contact Person : Hironobu Saida SECTION 2: Equipment under test (E.U.T.) 2.1 Identification of E.U.T. Type of Equipment : Wireless Module Model No. : WM223 Serial No. : Refer to 4.1 Rating : DC3.3V Receipt Date of Sample : August 5, 2013 Country of Mass-production : Philippines Condition of EUT : Engineering prototype (Not for Sale: This sample is equivalent to mass-produced items.) Modification of EUT : No modification by the test lab. 2.2 Product description Model: WM223 (referred to as the EUT in this report) is a Wireless Module. Clock frequency(ies) in the system : 38.4MHz Radio specification Equipment type : Transceiver Frequency of operation : 2412-2462MHz (IEEE 802.11b, 11g, 11n(HT20)) 2422-2452MHz (IEEE 802.11n(HT40)) Bandwidth : 20MHz (IEEE 802.11b, 11g, 11n(HT20)), 40MHz (IEEE 802.11n(HT40)) Channel spacing : 5MHz Type of modulation : DSSS (IEEE 802.11b), OFDM (IEEE 802.11g/n) Antenna type : Monopole type chip Antenna connector type : None Antenna gain : -3.30 dBi (2442MHz) ITU code : D1D, G1D Operation temperature range : -20 to +85 deg.C FCC 15.31 (e) / 212 The Wireless Module has its own regulator. RF part is constantly provided voltage (DC3.0V and DC1.2V) through the regulator regardless of input voltage. Therefore, this EUT complies with the requirement. FCC 15.203 / 212 The antenna is not removable from the EUT. Therefore, the equipment complies with the antenna requirement. Test report No. : 10048647S-A Page : 5 of 125 Issued date : November 7, 2013 FCC ID : AZD223 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPA…
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Test report No. : 10048648S-A Page : 11 of 47 Issued date : October 29, 2013 FCC ID : AZD223 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone: +81 463 50 6400 / Facsimile: +81 463 50 6401 APPENDIX 1: Photographs of EUT and SAR test setup Appendix 1-1: Photograph of Platform (1)-Digital camera (model: PC2071) and antenna position Wireless module and antenna Antenna Top Rear (LCD) Bottom Front (Lens) Right Left WM223 Antenna LCD screen side (Platform(1): Digital camera: PC2071) LCD side Lens side Top side Antenna location Test report No. : 10048648S-A Page : 12 of 47 Issued date : October 29, 2013 FCC ID : AZD223 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone: +81 463 50 6400 / Facsimile: +81 463 50 6401 Appendix 1-2: EUT and support equipment Description of EUT and Support Equipment No. Item Model number Serial number Manufacturer Remark A Wireless Module WM223 E8F1 Mitsumi EUT. B Digital Camera PC2071 532 Canon Platform (1). C1 Battery Pack for Digital camera / DC3.7V Typ.1000mAh, Min.940mAh, 3.5Wh (Li-ion) NB-6L RE6H Canon Accessory of platform (1), Battery No. #1. C2 UHMD Accessory of platform (1), Battery No. #2. C3 TJZD Accessory of platform (1), Battery No. #3. D1 Battery Pack for Digital camera / DC3.7V 1060mAh, 4.0Wh (Li-ion) NB-6LH RCMB-1 Canon Accessory of platform (1), Battery No. LH#1. E1 Battery Charger (for Battery Pack: NB-6L, NB-6LH) CB-2LY BBHD Canon Support equipment. E2 BAGC *. The following equipment was used for the antenna terminal port conducted power measurement. F Digital Camera (Host) PC1739 431030032129 Canon Support equipment. (*.Ribbon cable=180mm) - DC Coupler DR-90 - Canon Support equipment. With DC cable: 0.15m, Unshielded. - AC Adaptor CA-DC10N - Canon Support equipment. With DC cable: 1.9m, Unshielded. With AC cable: 1.9m, Unshielded. <Platform type of EUT and SAR accessory> Platform No. Platform type Model SAR accessory Battery option Platform (1) Digital camera PC2071 none Model: NB-6L, DC3.7V, 1000mAh, 3.5Wh (Li-ion) Model: NB-6LH, DC3.7V, 1060mAh, 4.0Wh (Li-ion) Antenna terminal port conducted power measurement A: EUT(WM223) F: Host B: Platform (1) C1 C2 A: EUT(WM223) SAR test E1 C3 D1 E2 Test report No. : 10048648S-A Page : 13 of 47 Issued date : October 29, 2013 FCC ID : AZD223 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone: +81 463 50 6400 / Facsimile: +81 463 50 6401 Appendix 1-3: Photograph of test setup / Platform (1) - Digital camera Position Setup photographs Top-front (Touch) Step 1-1, Appendix 2-2 Top-rear (Touch) Step 1-2, Appendix 2-2 Top (Touch) (11b, 11ch) Step 1-3, Appendix 2-2 Test report No. : 10048648S-A Page : 14 of 47 Issued date : October 29, 2013 FCC ID : AZD223 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone: +81 463 50 6400 / Facsimile: +81 463 50 6401 Appendix 1-3: Photograph of test setup / Platform (1) - Digital camera (cont’d) Position Setup photographs Top (Touch) (11b, 6ch) Step 1-4, Appendix 2-2 Top (Touch) (11b, 1ch) Step 1-5, Appendix 2-2 Top (Touch) (11b, 11ch, battery: NB-6LH) Step 1-6, Appendix 2-2 Top (Touch) (11n(40HT)) Step 2-1, Appendix 2-2 Test report No. : 10048648S-A Page : 15 of 47 Issued date : October 29, 2013 FCC ID : AZD223 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone: +81 463 50 6400 / Facsimile: +81 463 50 6401 Appendix 1-3: Photograph of test setup / Platform (1) - Digital camera (cont’d) Position Setup photographs Rear (LCD side) (Touch) *. Since fast SAR(1g) was very small, zoo m scan was not applied.) Front (Lens side) (Touch) *. Since fast SAR(1g) was very small, zoo m scan was not applied.) Right (Touch) *. Since fast SAR(1g) was very small, zoo m scan was not applied.) Left (Touch) *. Since fast SAR(1g) was very small, zoo m scan was not applied.) Bottom (Touch) *. Since fast SAR(1g) was very small, zoo m scan was not applied.)
UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone : +81 463 50 6400 Facsimile : +81 463 50 6401 APPENDIX 3: Photographs of test setup Conducted emission Test report No. : 10048647S-A 123 of 125 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone : +81 463 50 6400 Facsimile : +81 463 50 6401 Radiated emission Front view Rear view (below 1GHz) Rear view (above 1GHz) Test report No. : 10048647S-A 124 of 125 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN Telephone : +81 463 50 6400 Facsimile : +81 463 50 6401 Pre-check of the worst position X-axis Y-axis Z-axis END OF REPORT Test report No. : 10048647S-A 125 of 125
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 147.20 mW |
Digital Camera
Equipment Class
DTS - Digital Transmission SystemDigital Camera
Equipment Class
DTS - Digital Transmission System
Wireless Module
Equipment Class
DTS - Digital Transmission SystemWireless Module
Equipment Class
DTS - Digital Transmission SystemWireless Microphone
Equipment Class
DTS - Digital Transmission System