
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
BM70659 installation manual Jun 17, 2011 CANON INC. Medical Equipment Design Group The Image for installation of BM70659 Module Flexible Flat Cable BM70659 Module RF coaxilal connector Installed inside Digital Radiography ■ Power Supply Voltage Power supply voltage of BM70659 Module is 3.5V ± 10%. The end product must supply the power supply mentioned above. ■ For U.S.A. and Canada The following sentences are added to the label of end product. “ Contains FCC ID: AZDBM70659, IC: 498J ‐ BM70659 “ The following sentences are added to the users manual of end product in English and French. (1) This transmitter must not be co ‐ located or operated in conjunction with any other antenna or transmitter. (2) The available scientific evidence does not show that any health problems are associated with using low power wireless devices. There 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. XXXXX* has been tested and found to comply with FCC/IC radiation exposure limits set forth for an uncontrolled environment and meets the FCC radio frequency (RF) Exposure Guidelines in Supplement C to OET65 and RSS ‐ 102 of the IC radio frequency (RF) Exposure rules. *XXXXX is the model name of the end product. (3) 5.15 ‐ 5.25GHz band is restricted to indoor operations only.
9. Regulatory information 38 9-2. Radio frequency (RF) compliance information U.S.A.FCC Part 15 Subpart B Class A and Part 15 Subpart C/E (RF Exposure). CanadaRSS-210 European Union (and EEA) ETSI EN300 328 ETSI EN301 489 ETSI EN301 893 AustraliaAS4268 SingaporeIDA TS SRD FCC compliance (For U.S.A.) Contains FCC ID:AZDBM70659 This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) this device may not cause harmful interference. And (2) this device must accept any interference received, including interference that may cause undesired operation. FCC WARNING: Changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. Note: This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense. 5.15-5.25GHz band is restricted to indoor operations only. This transmitter must not be co-located or operated in conjunction with any other antenna or transmitter. RF exposure compliance The available scientific evidence does not show that any health problems are associated with using low power wireless devices. There is no proof, however, that these low power wireless devices are absolutely safe. Low power wireless devices emit low levels radio frequency energy (RF) in the microwave range while being used. EN 60601-1-4:1996+A1:1999Medical electrical equipment - Part 1-4:Collateral Standard:Programmable electrical medical systems EN 60601-1-6:2007Medical electrical equipment - Part 1-6:Collateral Standard:Usability EN 60601-2-32:1994Medical electrical equipment - Part 2: Particular requirements for the safety of associated equipment of X-ray equipment EN 62304:2006Medical device software-Software life cycle processes EN 62366:2008Medical device - Application of usability engineering to medical devices EN ISO 14971:2009Medical device - Application of risk management to medical devices EN ISO 10993-1:2009/-5:2009/ 10993-10:2009 Biological evaluation of medical devices Part 1: Evaluation and testing within a risk management process 9. Regulatory information 39 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. CXDI-•••••• Wireless has been tested and found to comply with FCC radiation exposure limits set forth for an uncontrolled equipment and meets the FCC radio frequency (RF) Exposure Guidelines in Supplement C to OET65. IC compliance (For Canada) Contains IC:498J-BM70659 This device complies with Industry Canada licence-exempt RSS standard(s). Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device. Le présent appareil est conforme aux CNR d'Industrie Canada applicables aux appareils radio exempts de licence. L'exploitation est autorisée aux deux conditions suivantes : (1) l'appareil ne doit pas produire de brouillage, et (2) l'utilisateur de l'appareil doit accepter tout brouillage radioélectrique subi, même si le brouillage est susceptible d'en compromettre le fonctionnement. 5.15-5.25GHz band is restricted to indoor operations only. La bande 5 150-5 250 MHz est restreints à une utilisation à l'intérieur. RF exposure compliance The available scientific evidence does not show that any health problems are associated with using low power wireless devices. There 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. CXDI-•••••• Wireless has been tested and found to comply with IC radiation exposure limits set forth for an uncontrolled environment and meets RSS-102 of the IC radio frequency (RF) Exposure rules. Les connaissances scientifiques dont nous disposons n'ont mis en évidence aucun problème de santé associé à l'usage des appareils sans fil à faible puissance. Nous ne sommes cependant pas en mesure de prouver que ces appareils sans fil à faible puissance sont entièrement sans danger. Les appareils sans fil à faible puissance émettent une énergie radioélectrique (RF) très faible dans le spectre des micro-ondes lorsqu'ils sont utilisés. Alors qu'une dose élevée de RF peut avoir des effets sur la santé (en chauffant les tissus), l'exposition à de faibles RF qui ne produisent pas de chaleur n'a pas de mauvais effets connus sur la santé. De nombreuses études ont été menées sur les expositions aux RF faibles et n'ont découvert aucun effet biologique. Certaines études ont suggéré qu'il pouvait y avoir certains effets biologiques, mais ces résultats n'ont pas été confir…
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Photo Wireless LAN Module [BM70659] Component Side (with Shield) Wireless LAN Module [BM70659] Component Side (without Shield) Wireless LAN Module [BM70659] Soldering Side Location of Wireless LAN Module and Antenna Antenna Wireless LAN Module Close-up
label & label of position <label> <position of label> 16 mm 18 mm
Photo Wireless LAN Module [BM70659] Component Side (with Shield) Wireless LAN Module [BM70659] Component Side (without Shield) Wireless LAN Module [BM70659] Soldering Side Location of Wireless LAN Module and Antenna Antenna Wireless LAN Module Close-up
Test report No. : 31IE0161-SH-04-A Page : 1 of 69 Issued date : June 8, 2011 Revised date : June 29, 2011 FCC ID : AZDBM70659 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. : 31IE0161-SH-04-A Applicant : CANON INC. Type of Equipment : Digital Radiography with Wireless LAN module Model No. : BM70659 (Wireless LAN module) w/Platform(1): CXDI-80C Wireless (WM5A2) (Digital Radiography) Test Standard : FCC 47CFR §2.1093, Supplement C (Edition 01-01) to OET Bulletin 65 Test Result : Complied Maximum SAR(1g) Value : 0.0023 W/kg (at patient side, IEEE 802.11b, 1Mbps(DBPSK/DSSS), 2437MHz/2412-2462 MHz band) 0.015 W/kg (at patient side, IEEE 802.11a, 6Mbps(BPSK/OFDM), 5180MHz/5180-5240MHz band) 0.014 W/kg (at patient side, IEEE 802.11a, 6Mbps(BPSK/OFDM), 5785MHz/5745-5825MHz band) *. Body/Head-touch & Portable device. SAR limit was for general population/uncontrolled exposure, and considered on the multi-platform. *. Refer to the FCC tracking number: 230486 for the SAR test plan of this EUT. 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 standards. 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: May 23 and 24, 2011 Test engineer: Hiroshi Naka 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. : 31IE0161-SH-04-A Page : 2 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 ....................................................................... 3 SECTION 2: Equipment under test (E.U.T) ........................................................... 3 SECTION 3: Test specification, procedures and results......................................... 4 3.1 Test specification ..................................................................................................... 4 3.2 Exposure limit ......................................................................................................... 4 3.3 Procedure and result ................................................................................................. 4 3.4 Test location ............................................................................................................ 4 3.5 Confirmation before SAR testing ............................................................................. 5 3.6 Confirmation after SAR testing ................................................................................ 5 3.7 Measurement procedure ........................................................................................... 6 3.8 Test setup of EUT .................................................................................................... 6 SECTION 4: Operation of E.U.T. during testing ................................................... 6 4.1 Operating modes for SAR testing ............................................................................. 6 SECTION 5: Uncertainty assessment ...................................................................... 7 SECTION 6: Confirmation before testing............................................................... 8 6.1 Assessment for the conducted power of EUT ............................................................ 8 SECTION 7: Measurement results .......................................................................... 11 7.1 Body SAR ................................................................................................................ 11 Contents of appendixes APPENDIX 1: Photographs of test setup................................................................... 12 Appendix 1-1 Photograph of Wireless LAN module and antenna ................................................... 12 Appendix 1-2 Antenna location in the platform(1) ......................................................................... 12 Appendix 1-3 EUT and support equipment..................................................................................... 13 Appendix 1-4 SAR test condition (with/without accessories) .......................................................... 14 Appendix 1-5 Drawing information................................................................................................ 15 Appendix 1-6 Photograph of test setup ........................................................................................... 17 APPENDIX 2: SAR Measurement data..................................................................... 19 Appendix 2-1 Evaluation procedure ............................................................................................... 19 Appendix 2-2 Measurement data (2.4GHz band) ............................................................................ 20 Appendix 2-3 Measurement data (5180-5240MHz band) ................................................................ 22 Appendix 2-4 Measurement data (5745-5825MHz band) ................................................................ 24 APPENDIX 3: Test instruments.........................…
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Test report No. : 31IE0161-SH-04-A Page : 19 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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) was assessed by measuring 777 points under 3GHz and a volume of 28mm(X axis)28mm(Y axis)22.5mm (Z axis) was assessed by measuring 886(ratio step method (*1)) points for 3-6GHz frequency band. And for any secondary peaks found in the Step2 which are within 2dB of maximum peak and not with 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 [4]. 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) [4], [5]. 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. *1. Ratio step method parameters used; The first measurement point: 2mm from the phantom surface, the initial grid separation: 2mm, subsequent graded grid ratio: 1.5 These parameters comply with the requirement of the KDB 865664. In the section of SAR Scan Procedures-Zoom Scan, in KDB 865664(October 2006 revised, publication date: April 16, 2007): SAR Measurement Requirements for 3-6GHz, the graded grids requirement is as follows; “When graded grids are used (z), the first measurement point should be within 3mm of the phantom surface for measurements below 4.5GHz and within 2mm at or above 4.5GHz. The initial grid separation, closest to the phantom, should be 2.0mm. A subsequent graded ration of 1.5 is recommended and less than 2.0 is required. “ Test report No. : 31IE0161-SH-04-A Page : 20 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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: Measurement data (2.4GHz band) Step 1: Contact side with the patient (Worst RF exposure condition for the patient) Step 1-1: Front-touch (without accessories (ANTI-SCATTER GRID and Handle Unit)) EUT: Digital Radiography with WLAN module; Type: CXDI-80C Wireless (WM5A2); Serial: 11DR-099 (WLAN module: DE2- 12) Communication System: 802.11b(1Mbps, DSSS); Frequency: 2437 MHz; Crest Factor: 1.0 Medium: M2450; Medium parameters used(23.9deg.C): f = 2450 MHz; σ = 1.92 S/m; ε r = 50.5; ρ = 1000 kg/m 3 DASY4 Configuration: - Probe: EX3DV4 - SN3540; ConvF(8.05, 8.05, 8.05); Calibrated: 2010/07/13 - Sensor-Surface: 2mm (Mechanical Surface Detection) - Electronics: DAE4 Sn626; Calibrated: 2011/02/10 - Phantom: ELI 4.0; Type: QDOVA001BA; Serial: 1059; Phantom section: Flat Section - Measurement SW: DASY4, V4.7 Build 80; Postprocessing SW: SEMCAD, V1.8 Build 184 #1,M137,frt(patient)&d0,m2437(6ch),11b(1m)/ Area Scan:165x90/15 (12x7x1): Measurement grid: dx=15mm, dy=15mm; Maximum value of SAR (measured) = 0.003 mW/g Area Scan:165x90/15 (111x61x1): Measurement grid: dx=15mm, dy=15mm; Maximum value of SAR (interpolated) = 0.005 mW/g Z Scan (1x1x35): Measurement grid: dx=20mm, dy=20mm, dz=5mm; Maximum value of SAR (measured) = 0.017 mW/g Zoom Scan:30x30x30/5 2 (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm; Reference Value = 0.775 V/m; Power Drift = 0.101 dB, Maximum value of SAR (measured) = 0.017 mW/g Peak SAR (extrapolated) = 0.005 W/kg SAR(1 g) = 0.0023 mW/g (Worst for 2.4GHz band); SAR(10 g) = 0.00134 mW/g Additional information: *.position: the distance of EUT to phantom: 0mm (2mm to liquid), liquid depth: 158mm *.ambient: 25 deg.C / 50 %RH; .liquid temperature: (before) 23.6 deg.C. /(after) 23.6 deg.C. *.white cubic: zoom scan area, red big cubic: SAR(10g), red small cubic: SAR(1g) *.Tested by: Hiroshi Naka / Tested place:No.7 shielded room / Date tested: May 24, 2011 Test report No. : 31IE0161-SH-04-A Page : 21 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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: Measurement data (2.4GHz band) Step 1: Contact side with the patient (Worst RF exposure condition for the patient) Step 1-2: Front-touch (with accessories (ANTI-SCATTER GRID and Hand…
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Test report No. : 31IE0161-SH-04-A Page : 35 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-11: Calibration certificate: Dipole (D2450V2) (sn:822) Test report No. : 31IE0161-SH-04-A Page : 36 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-11: Calibration certificate: Dipole (D2450V2) (sn:822) (cont’d) Test report No. : 31IE0161-SH-04-A Page : 37 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-11: Calibration certificate: Dipole (D2450V2) (sn:822) (cont’d) Test report No. : 31IE0161-SH-04-A Page : 38 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-11: Calibration certificate: Dipole (D2450V2) (sn:822) (cont’d) Test report No. : 31IE0161-SH-04-A Page : 39 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-11: Calibration certificate: Dipole (D2450V2) (sn:822) (cont’d) Test report No. : 31IE0161-SH-04-A Page : 40 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-11: Calibration certificate: Dipole (D2450V2) (sn:822) (cont’d) Test report No. : 31IE0161-SH-04-A Page : 41 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-11: Calibration certificate: Dipole (D2450V2) (sn:822) (cont’d) Test report No. : 31IE0161-SH-04-A Page : 42 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-11: Calibration certificate: Dipole (D2450V2) (sn:822) (cont’d) Test report No. : 31IE0161-SH-04-A Page : 43 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-11: Calibration certificate: Dipole (D2450V2) (sn:822) (cont’d) Test report No. : 31IE0161-SH-04-A Page : 44 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-12: Calibration certificate: Dipole (D5GHzV2) (sn:1070) Test report No. : 31IE0161-SH-04-A Page : 45 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-12: Calibration certificate: Dipole (D5GHzV2) (sn:1070) (cont’d) Test report No. : 31IE0161-SH-04-A Page : 46 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-12: Calibration certificate: Dipole (D5GHzV2) (sn:1070) (cont’d) Test report No. : 31IE0161-SH-04-A Page : 47 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-12: Calibration certificate: Dipole (D5GHzV2) (sn:1070) (cont’d) Test report No. : 31IE0161-SH-04-A Page : 48 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-12: Calibration certificate: Dipole (D5GHzV2) (sn:1070) (cont’d) Test report No. : 31IE0161-SH-04-A Page : 49 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-12: Calibration certificate: Dipole (D5GHzV2) (sn:1070) (cont’d) Test report No. : 31IE0161-SH-04-A Page : 50 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-12: Calibration certificate: Dipole (D5GHzV2) (sn:1070) (cont’d) Test report No. : 31IE0161-SH-04-A Page : 51 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-12: Calibration certificate: Dipole (D5GHzV2) (sn:1070) (cont’d) Test report No. : 31IE0161-SH-04-A Page : 52 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 3-12: Calibration certificate: Dipole (D5GHzV2) (sn:1070) (cont’d) Test report No. : 31IE0161-SH-04-A Page : 53 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 UL Japan, Inc. Shonan EMC Lab. 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken,…
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Test report No. : 31IE0161-SH-04-B Page : 1 of 69 Issued date : June 8, 2011 Revised date : June 29, 2011 FCC ID : AZDBM70659 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. : 31IE0161-SH-04-B Applicant : CANON INC. Type of Equipment : Digital Radiography with Wireless LAN module Model No. : BM70659 (Wireless LAN module) w/Platform(2): CXDI-70C Wireless (WM5A1) (Digital Radiography) Test Standard : FCC 47CFR §2.1093, Supplement C (Edition 01-01) to OET Bulletin 65 Test Result : Complied Maximum SAR(1g) Value : 0.043 W/kg (at patient side, IEEE 802.11b, 1Mbps(DBPSK/DSSS), 2437MHz/2412-2462 MHz band) 0.014 W/kg (at patient side, IEEE 802.11a, 6Mbps(BPSK/OFDM), 5180MHz/5180-5240MHz band) 0.039 W/kg (at patient side, IEEE 802.11a, 6Mbps(BPSK/OFDM), 5785MHz/5745-5825MHz band) *. Body/Head-touch & Portable device. SAR limit was for general population/uncontrolled exposure, and considered on the multi-platform. *. Refer to the FCC tracking number: 230486 for the SAR test plan of this EUT. 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 standards. 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: May 23 and 24, 2011 Test engineer: Hiroshi Naka 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. : 31IE0161-SH-04-B Page : 2 of 69 Issued date : June 8, 2011 FCC ID : AZDBM70659 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 ....................................................................... 3 SECTION 2: Equipment under test (E.U.T) ........................................................... 3 SECTION 3: Test specification, procedures and results ........................................ 4 3.1 Test specification ..................................................................................................... 4 3.2 Exposure limit ......................................................................................................... 4 3.3 Procedure and result ................................................................................................. 4 3.4 Test location ............................................................................................................ 4 3.5 Confirmation before SAR testing ............................................................................. 5 3.6 Confirmation after SAR testing ................................................................................ 5 3.7 Measurement procedure ........................................................................................... 6 3.8 Test setup of EUT ...................................…
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1-22-3 Megumigaoka, Hiratsuka-shi · Kanagawa-ken · Japan
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 4 | 15C | 5.75 GHz - 5.79 GHz | 121.30 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