
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
EN 30 3 Contents Introduction � � � � � � � � � � � � � � � � 5 Introduction 6 USA only 7 Summary of usability specifications (for IEC/ EN 60601-1-6, IEC/EN 62366) 7 Disclaimer 8 Trademark 8 Name correspondence table 9 Term description 10 Chapter 1 Chapter 1 Safety Precautions & Warnings � � � � � � � � � � � � � � � � 11 1.1 Symbols relating to safety 12 1.1.1 Safety alert symbol 12 1.1.2 Warning notice (signal words) 12 1.1.3 Description of graphic symbols 12 1.2 Warning labels 13 1.2.1 DR Detector 13 1.2.2 AeroDR Generator Interface Unit2 14 1.2.3 AeroDR Battery Charger 14 1.2.4 AeroDR Battery Charger2 14 1.3 Safety precautions 15 1.3.1 Precautions before usage 15 1.3.2 Precautions for usage 15 1.3.3 Precautions regarding electromagnetic waves 20 1.3.4 Precautions regarding wireless communication 25 1.3.5 Precautions for installing, moving, and storing 27 1.3.6 Precautions regarding maintenance 28 1.3.7 Precautions on service life 28 Chapter 2 Chapter 2 Product Overview � � � � � � � � 29 2.1 Overview of this device 30 2.1.1 Functions 30 2.1.2 System configuration and connection examples 31 2.2 Component names and functions 39 2.2.1 AeroDR Detector 39 2.2.2 AeroDR 2 Detector 40 2.2.3 AeroDR 3 Detector 41 2.2.4 AeroDR Interface Unit 42 2.2.5 AeroDR Interface Unit2 43 2.2.6 Detector Interface Unit 44 2.2.7 Detector Interface Unit 2 45 2.2.8 Power Supply Unit 46 2.2.9 AeroDR Generator Interface Unit 47 2.2.10 AeroDR Generator Interface Unit2 48 2.2.11 Generator Interface Unit 3 49 2.2.12 AeroDR Battery Charger 50 2.2.13 AeroDR Battery Charger2 51 2.2.14 AeroDR Access Point 52 2.2.15 I/F Cable 53 2.2.16 AeroDR UF Cable 53 Chapter 3 Chapter 3 General Operations � � � � � � � 55 3.1 Startup and shutdown 56 3.1.1 Startup of this device 56 3.1.2 Shutdown of this device 59 3.2 Operation of DR Detector 63 3.2.1 Exposure with basic connection or Aero Sync connection 63 3.2.2 Exposure under the S-SRM connection example 63 3.2.3 Exposure using Aero Storage 64 3.2.4 Serial exposure 67 3.2.5 DR Detector orientation 67 3.2.6 Precautions for exposure 68 3.3 Charging of DR Detector 74 3.3.1 Charging with AeroDR Battery Charger 74 3.3.2 Charging with AeroDR Battery Charger2 75 3.3.3 Charging with the wired cable 76 3.3.4 Charging time guide 77 3.3.5 DR Detector battery level display 78 3.4 Registration and selection of the DR Detector 79 3.4.1 Registration with AeroDR Battery Charger 79 3.4.2 Registration with AeroDR Battery Charger2 80 3.4.3 Registration with the wired cable 80 3.4.4 Selection of the DR Detector 81 3.4.5 Manual selection of the DR Detector 81 3.5 Calibration 82 36 Position to affix DR Detector identification label and AeroDR Grip sheet 83 3.6.1 Position to affix DR Detector identification label 83 3.6.2 AeroDR Grip sheet 83 4 Contents Chapter 4 Chapter 4 Status (LED) Display � � � � � � 85 4.1 LED display of respective devices 86 4.1.1 AeroDR Detector 87 4.1.2 AeroDR 2 Detector 88 4.1.3 AeroDR 3 Detector 89 4.1.4 AeroDR Interface Unit 92 4.1.5 AeroDR Interface Unit2 93 4.1.6 Detector Interface Unit/Detector Interface Unit 2 94 4.1.7 Power Supply Unit 94 4.1.8 AeroDR Generator Interface Unit 95 4.1.9 AeroDR Generator Interface Unit2 95 4.1.10 Generator Interface Unit 3 96 4.1.11 AeroDR Battery Charger 96 4.1.12 AeroDR Battery Charger2 97 4.1.13 AeroDR Access Point 98 Chapter 5 Chapter 5 Troubleshooting � � � � � � � � � � 99 5.1 Support flow during trouble 100 5.2 Various problems and countermeasures 102 5.2.1 DR Detector 102 5.2.2 AeroDR Interface Unit 106 5.2.3 AeroDR Interface Unit2 107 5.2.4 Detector Interface Unit 107 5.2.5 Detector Interface Unit 2 108 5.2.6 Power Supply Unit …
Text truncated - open the document above for the full version.
62 Startup and shutdown AeroDR Battery Charger 1 Disconnect the power cable from the wall outlet, and confirm that the LED (green) is off. LED (green) AeroDR Battery Charger2 1 Turn off the power switch, and confirm that the LED (green) is off. LED (green) Power switch AeroDR Access Point 1 Turn off the power switch of the Power Source Device, and confirm that the LED (umber) is off. LED (umber) 63 1 2 3 4 5 6 7 8 9 10 11 12 3�2 Operation of DR Detector 3�2�1 Exposure with basic connection or Aero Sync connection Exposure under the basic connection example IMPORTANT •The DR Detector is precision equipment, and therefore im- pact or vibration during radiography or image transfer may affect the image quality. Be careful when handling the DR Detector during and just after radiography. 1 Perform examination registration with the image processing controller� 2 Check that this device is ready to expose images, and then prepare for the expo- sure� 3 Push the exposure switch of the X-ray de- vice to perform the exposure� • When the exposure is completed, images are stored in the DR Detector and will then be con- verted to digital data and sent to the image pro- cessing controller sequentially. 4 Check that the exposed image is dis- played on the image processing control- ler� HINT •If the DR Detector remains unused for a long time (time can be set) it transitions to the sleep mode. •When the image processing controller is ready to expose, it recovers from the sleep mode. 3�2�2 Exposure under the S-SRM connection example IMPORTANT •The DR Detector is precision equipment, and therefore im- pact or vibration during radiography or image transfer may affect the image quality. Be careful when handling the DR Detector during and just after radiography. 1 Perform examination registration with the image processing controller� 2 Check that this device is ready to expose images, and then prepare for the expo- sure� 3 Push the S-SRM’s hand switch to the first stage. • The exposure preparation signal is sent to the X-ray device. First stage switch 4 Push the S-SRM’s hand switch up to the second level to perform exposure� • Exposure is performed from the X-ray device to produce X-ray images. • When the exposure is completed, images are stored in the DR Detector and will then be con- verted to digital data and sent to the image pro- cessing controller sequentially. Second stage switch 5 Check that the exposed image is displayed on the image processing controller� HINT •If the DR Detector remains unused for a long time (time can be set) it transitions to the sleep mode. •When the image processing controller is ready to expose, it recovers from the sleep mode. 64 Operation of DR Detector 3�2�3 Exposure using Aero Storage IMPORTANT •The following DR Detector models can be used for Aero Storage exposure: AeroDR 3 Detector. Starting Aero Storage Mode IMPORTANT •When DR Detector is in the following conditions, Aero Stor- age mode cannot start: —It is connected to the AeroDR Battery Charger, AeroDR Battery Charger2, and a wired cable. —DR Detector battery level has dropped to less than 10 % level. •Selection SW cannot be operated while Aero Storage mode is active. •When 100 Aero Storage images are saved, the Aero Stor- age mode starts, but it turns to the sleep state, and expo- sure using Aero Storage cannot be performed. 1 Press and hold the mode LED for three seconds� 2 Ensure that the mode LED (blue) blinks slowly, the information LED indicating the number of saved images is on, and the status LED (blue) is on� Status LED (blue) Information LED (white) Mode LED (blue) Exiting Aero Storage Mode IMPORTANT •You can also exit Aero Storage mode by pressing and holding the mode LED for three seconds. 1 Insert DR Detector into the AeroDR Bat- tery Charger and AeroDR Battery Char- ger2, or connect it to a wired cable. 2 Aero Storage mode exits, and DR Detec- tor is connected to the image processing controller� HINT •Aero Storage mode automatically exits in the following conditions: —DR Detector battery level drops to less than 3 % level. —DR Detector detects an error. Exposure IMPORTANT •If you do not plan to expose immediately, exit Aero Storage mode •In Aero Storage, the maximum exposure time is set to 1.8 seconds and the resolution is set to the default (200μm). Please contact Konica Minolta technical representatives for more information about how to change the settings. •The DR Detector is precision equipment, and therefore im- pact or vibration during radiography or image transfer may affect the image quality. Be careful when handling the DR Detector during and just after radiography. •The number of saved images displayed in the information LED is counted when the orange status LED blinks fast af- ter the X-ray exposure. •The number of saved images displayed after an exposure is the patient’s image number. •Images exposed using Aero Storage do not have patient in- formation. It is recommended, therefore, to keep record so that you can associate the patient exposed with the number of saved images displayed on DR Detector. •When the number of saved images in Aero Storage reach- es 100, it turns to the sleep state, and exposure using Aero Storage cannot be performed. •While importing the images, do not disconnect DR Detector from AeroDR Battery Charger, AeroDR Battery Charger2, or the wired cable. •When the image import process finishes, the number of saved image in DR Detector becomes zero. 1 Start Aero Storage mode� 2 Check that this device is ready to expose images, and then prepare for the expo- sure� 1 2 3 4 5 6 7 8 9 10 11 12 Operation of DR Detector 65 3 Push the exposure switch of the X-ray de- vice to perform the exposure� • After exposure, images are saved to DR Detec- tor, and the information LED indicates the num- ber of saved images. 4 Exit Aero Storage mode� • Insert DR Detector into the AeroDR Battery Charger or AeroDR Battery Charger2, or con- nect it to a wired cable. • Aero Storage mode exits, and DR …
Text truncated - open the document above for the full version.
Date: May 28, 2021 Federal Communications Commission Equipment Authorization Division, Application Processing Branch 7435 Oakland Mills Road Columbia, MD 21046 FCC ID : YR7SKR3000P7 Applicant : KONICA MINOLTA, Inc. To whom it may concern: We, KONICA MINOLTA, Inc., hereby declare, for FCC ID: YR7SKR3000P7, this device contains Wireless LAN SDIO Module (Model: SX-SDMAN2), and it is installed in SKR 3000 (P-65 and P-75). The partial tests are performed on the module, and the results are available in the following test reports. Test Report No.: 13568152S-K Test Report No.: 13568152S-L Test Report No.: 13568152S-M No report revision number stated. The test reports above are the test results for the antenna terminal conducted test. In the above test reports, the testing except for the RF power and DFS is performed with other similar host device (P-61), however the specifications and conditions including the power setting of the module are not changed when the module is installed in the applying device, SKR 3000 (P-65 and P-75). There is no degradation on radio characteristics when the module is installed inside of the applying device. The radiated test and SAR test are performed with the applying device. Sincerely Yours, Yukihiro Niekawa KONICA MINOLTA, Inc.
Special Power of Attorney I. Masa-v-'oshi Inoue of KONICA MINOLTA. Inc. hereby appoint Yukihiro Niekawa of KONICA MlNOt.l'A. Inc. to represent rne to act on mv behalf to do any and all of the tbllowing: S ign the fbllowing docurnents on lny behalf and apply to FCC for the products - Lefier ofagency and anti-drug - Confidentiality cover letters - Any other application document that requires a signature by grantee. The ri-ehts, powers and authority in fact to exercise any and all of the rights and powers herein granted shall commence and be in full force and ef-fective fbr X year(s) from February 10. 202 I unless specifically extended or tenninated by either party. Date: February 10,2021 Place: Japan
Outline Photograph (P-75) 460mm 460mm 15.75mm Outline Photograph (P-65) 460mm 384mm 15.55mm
Units of measure: [mm] Notation dimensions (FCC ID / ISED No.) P-65 Label information (01)04560141945852(21)A9YF-00001 Label A Label B Label A Label B Label Location (Back side) Units of measure: [mm] Notation dimensions (FCC ID / ISED No.) P-75 Label information Label A Label B Label A Label B Label Location (Back side) (01)04560141945807(21)A9YH-00001
P-75 internal view (Back side) RF Board Main Antenna Location Sub Antenna Location P-65 internal view (Back side) RF Board Main Antenna Location Sub Antenna Location RF BOARD RF Module RF Module
Test report No. : 13568155H-A Page : 1 of 122 FCC ID : YR7SKR3000P7 Issued date : February 17, 2021 UL Japan, Inc. Ise EMC Lab. 4383-326 Asama-cho, Ise-shi, Mie-ken 516-0021 JAPAN Telephone: +81 596 24 8999 Facsimile: +81 596 24 8124 Report Cover Page - 13-EM-F0429 Issue # 18.0 SAR TEST REPORT Test Report No. : 13568155H-A Applicant : KONICA MINOLTA, INC. Type of Equipment : SKR3000 Model No. : P-65 FCC ID : YR7SKR3000P7 Test regulation : FCC47CFR 2.1093 Test Result : Complied (Refer to SECTION 4) Reported SAR(1g) Value The highest reported SAR(1g) Bod y : 1.11 W/kg 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 re port 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 the A2LA accreditation body. 6. This test report covers Radio technical requirements. It does not cover administrative issues such as Manual or non-Radio test related Requirements. (if a pplicable) 7. The all test items in this test report are conducted by UL Japan, Inc. Ise EMC Lab. 8. The opinions and the interpretations to the result of the description in this report are outside scopes where UL Japan has been accredited. 9. The information provided from the customer for this report is identified in Section 1. Date of test: December 22, 2020 to January 27, 2021 Representative test engineer: Hisayoshi Sato Engineer Consumer Technology Division Approved by : Satofumi Matsuyama Engineer Consumer Technology Division CERTIFICATE 5107.02 The testing in which "Non-accreditation" is displayed is outside the accreditation scopes in UL Japan. There is no testing item of "Non-accreditation". Test report No. : 13568155H-A Page : 2 of 122 FCC ID : YR7SKR3000P7 Issued date : February 17, 2021 UL Japan, Inc. Ise EMC Lab. 4383-326 Asama-cho, Ise-shi, Mie-ken 516-0021 JAPAN Telephone: +81 596 24 8999 Facsimile: +81 596 24 8124 REVISION HISTORY Original Test Report No.: 13568155H-A Revision Test report No. Date Page revised Contents - (Ori ginal) 13568155H-A February 17, 2021 - - Test report No. : 13568155H-A Page : 3 of 122 FCC ID : YR7SKR3000P7 Issued date : February 17, 2021 UL Japan, Inc. Ise EMC Lab. 4383-326 Asama-cho, Ise-shi, Mie-ken 516-0021 JAPAN Telephone: +81 596 24 8999 Facsimile: +81 596 24 8124 Reference: Abbreviations (Including words undescribed in this report) A2LA The American Association for Laboratory Accreditation MCS Modulation and Coding Scheme AC Alternating Current MRA Mutual Recognition Arrangement AFHAd aptive Frequency Hopp ing N/ A Not Applicabl e AM Amplitude Modulation NIST National Institute of Standards and Technology Amp, AMP Amplifier NS No signal detect. ANSI American National Standards Institut eNSA Normalized Si te Attenuati on An t, ANT Antenna NVLAP National Voluntary Laboratory Accreditation Program AP Access Point OBW Occupied Band Width ASK Amplitude Shift Keying OFDM Orthogonal Frequency Division Multiplexing Atten., ATT Attenuator P/M Power meter AV Average PCB Printed Circuit Board BPSK Binary Phase-Shift Keying PER Packet Error Rate BR Bluetooth Basic Rate PHY Physical Layer BTBl uetoo thPKPeak BT LE Bluetooth Low Energy PN Pseudo random Noise BWBand Wid thPRBS Pseudo-Random Bit Sequen ce Cal Int Calibration Interval PSD Power Spectral Density CCK Complementary Code Keying QAM Quadrature Amplitude Modulation Ch., CH Channel QP Quasi-Peak CISPR Comite International Special des Perturbations Radioelectriques QPSK Quadri-Phase Shift Keying CWCon tinuous Wave RBW Resolution Band Widt h DBPSK Differential BPSK RDS Radio Data System DCDi rect Cu rrentRERadi o Equipmen t D-factorDis tance factor RF Radi o Frequency DFS Dynamic Frequency Selection RMS Root Mean Square DQPSKDif ferential QPSK RSS Radio Standards Specifications DSSS Direct Sequence Spread Spectrum Rx Receiving EDR Enhanced Data Rate SA, S/A Spectrum Analyzer EIRP, e.i.r.p. Equivalent Isotropically Radiated Power SG Signal Generator EMC ElectroMagnetic Compatibility SVSWR Site-Voltage Standing Wave Ratio EMI ElectroMagnetic Interference TR Test Receiver EN Eu ropean No rm TxTransmittin g ERP , e.r.p. Effective Radiated Power VBW Video BandWidth EU Eu ropean Unio n Vert . Vertic al EUT Equipment Under Test WLAN Wireless LAN Fac.Factor FCC Federal Communications Commission FHSS Frequency Hopping Spread Spectrum FMFrequ ency Modulati on Freq.Freque nc y FSK Frequency Shift Keying GFSK Gaussian Frequency-Shift Keying GNSS Global Navigation Satellite System GPS Global Positioning System Hori. Ho rizont al ICE S Int erference-Causing Equipment Standard IEC International Electrotechnical Commission IEEE Institute of Electrical and Electronics Engineers IFIn termediate Freque ncy ILACInternationa l Laboratory Accreditation Conference ISED Innovation, Science and Economic Development Canada ISO International Organization for Standardization J ABJ apan Accreditation Bo ard LANLocal Area Networ k L IMS Laboratory Information Management System Test report No. : 13568155H-A Page : 4 of 122 FCC ID : YR7SKR3000P7 Issued date : February 17, 2021 UL Japan, Inc. Ise EMC Lab. 4383-326 Asama-cho, Ise-shi, Mie-ken 516-0021 JAPAN Telephone: +81 596 24 8999 Facsimile: +81 596 24 8124 C ONTENTS PAGE SECTION 1: Customer information................................................................................................... 5 SECTION 2: Equipment under test (EUT) ........................................................................................ 5 2.1 Identification of EUT .................................................................................................................................... 5 2.2 Product Description ....................................................................…
Text truncated - open the document above for the full version.
Test report No. : 13568155H-D Page : 1 of 145 FCC ID : YR7SKR3000P7 Issued date : March 25, 2021 UL Japan, Inc. Ise EMC Lab. 4383-326 Asama-cho, Ise-shi, Mie-ken 516-0021 JAPAN Telephone: +81 596 24 8999 Facsimile: +81 596 24 8124 Report Cover Page - 13-EM-F0429 Issue # 18.0 SAR TEST REPORT Test Report No. : 13568155H-D Applicant : KONICA MINOLTA, INC. Type of EUT : SKR3000 Model Number of EUT : P-75 FCC ID : YR7SKR3000P7 Test regulation : FCC47CFR 2.1093 Test Result : Complied (Refer to SECTION 4) Reported SAR(1g) Value The highest reported SAR(1g) Bod y : 0.88 W/kg 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 the A2LA accreditation body. 6. This test report covers Radio technical requirements. It does not cover administrative issues such as Manual or non-Radio test related Requirements. (if applicable) 7. The all test items in this test report are conducted by UL Japan, Inc. Ise EMC Lab. 8. The opinions and the interpretations to the result of the description in this report are outside scopes where UL Japan has been accredited. 9. The information provided from the customer for this report is identified in Section 1. Date of test: December 22, 2020 to February 8, 2021 Representative test engineer: Hisayoshi Sato Engineer Consumer Technology Division Approved by : Satofumi Matsuyama Engineer Consumer Technology Division CERTIFICATE 5107.02 The testing in which "Non-accreditation" is displayed is outside the accreditation scopes in UL Japan. There is no testing item of "Non-accreditation". Test report No. : 13568155H-D Page : 2 of 145 FCC ID : YR7SKR3000P7 Issued date : March 25, 2021 UL Japan, Inc. Ise EMC Lab. 4383-326 Asama-cho, Ise-shi, Mie-ken 516-0021 JAPAN Telephone: +81 596 24 8999 Facsimile: +81 596 24 8124 REVISION HISTORY Original Test Report No.: 13568155H-D Revision Test report No. Date Page revised Contents - (Ori ginal) 13568155H-D March 25, 2021 - - Test report No. : 13568155H-D Page : 3 of 145 FCC ID : YR7SKR3000P7 Issued date : March 25, 2021 UL Japan, Inc. Ise EMC Lab. 4383-326 Asama-cho, Ise-shi, Mie-ken 516-0021 JAPAN Telephone: +81 596 24 8999 Facsimile: +81 596 24 8124 Reference: Abbreviations (Including words undescribed in this report) A2LA The American Association for Laboratory Accreditation MCS Modulation and Coding Scheme AC Alternating Current MRA Mutual Recognition Arrangement AFH Adaptive Frequency Hopping N/A Not Applicable AM Amplitude Modulation NIST National Institute of Standards and Technology Amp, AMP Amplifier NS No signal detect. ANSI American National Standards Institute NSA Normalized Site Attenuation Ant, ANT Antenna NVLAP National Voluntary Laboratory Accreditation Program AP Access Point OBW Occupied Band Width ASK Amplitude Shift Keying OFDM Orthogonal Frequency Division Multiplexing Atten., ATT Attenuator P/M Power meter AV Average PCB Printed Circuit Board BPSK Binary Phase-Shift Keying PER Packet Error Rate BR Bluetooth Basic Rate PHY Physical Layer BT Bluetooth PK Peak BT LE Bluetooth Low Energy PN Pseudo random Noise BW BandWidth PRBS Pseudo-Random Bit Sequence Cal Int Calibration Interval PSD Power Spectral Density CCK Complementary Code Keying QAM Quadrature Amplitude Modulation Ch., CH Channel QP Quasi-Peak CISPR Comite International Special des Perturbations Radioelectriques QPSK Quadri-Phase Shift Keying CW Continuous Wave RBW Resolution Band Width DBPSK Differential BPSK RDS Radio Data System DC Direct Current RE Radio Equipment D-factor Distance factor RF Radio Frequency DFS Dynamic Frequency Selection RMS Root Mean Square DQPSK Differential QPSK RSS Radio Standards Specifications DSSS Direct Sequence Spread Spectrum Rx Receiving EDR Enhanced Data Rate SA, S/A Spectrum Analyzer EIRP, e.i.r.p. Equivalent Isotropically Radiated Power SG Signal Generator EMC ElectroMagnetic Compatibility SVSWR Site-Voltage Standing Wave Ratio EMI ElectroMagnetic Interference TR Test Receiver EN European Norm Tx Transmitting ERP, e.r.p. Effective Radiated Power VBW Video BandWidth EU European Union Vert. Vertical EUT Equipment Under Test WLAN Wireless LAN Fac. Factor FCC Federal Communications Commission FHSS Frequency Hopping Spread Spectrum FM Frequency Modulation Freq. Frequency FSK Frequency Shift Keying GFSK Gaussian Frequency-Shift Keying GNSS Global Navigation Satellite System GPS Global Positioning System Hori. Horizontal ICES Interference-Causing Equipment Standard IEC International Electrotechnical Commission IEEE Institute of Electrical and Electronics Engineers IF Intermediate Frequency ILAC International Laboratory Accreditation Conference ISED Innovation, Science and Economic Development Canada ISO International Organization for Standardization JAB Japan Accreditation Board LAN Local Area Network LIMS Laboratory Information Management System Test report No. : 13568155H-D Page : 4 of 145 FCC ID : YR7SKR3000P7 Issued date : March 25, 2021 UL Japan, Inc. Ise EMC Lab. 4383-326 Asama-cho, Ise-shi, Mie-ken 516-0021 JAPAN Telephone: +81 596 24 8999 Facsimile: +81 596 24 8124 CONTENTS PAGE SECTION 1: Customer information................................................................................................... 5 SECTION 2: Equipment under test (EUT) ........................................................................................ 5 2.1 Identification of EUT .................................................................................................................................... 5 2.2 Product Description ...........................................................................................................…
Text truncated - open the document above for the full version.
Test report No. : 13568152S-M Page : 1 of 21 Issued date: March 1, 2021 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 Report Cover Page - 13-EM-F0429 Issue # 17.0 CERTIFICATE 1266.03 RADIO TEST REPORT Test Report No. : 13568152S-M Applicant : KONICA MINOLTA INC. Type of EUT : Wireless LAN SDIO module Model Number of EUT : SX-SDMAN2 *. The EUT was installed in the typical host device for testing. Test regulation : FCC Part 15 Subpart E: 2021 Test item : DFS test *Slave Test result : Complied (Refer to SECTION 3.2) 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 appl y only to the sample tested. 3. This sample tested is in compliance with the limits of the above re gulation. 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 endorseme nt by the A2LA accreditation bod y. 6. This test report covers Radio te chnical requirements. It does not cover administrative issues such as Manual or non-Radio test related Requirement s. (if applicable) 7. The all test items in this test report are conducted b y UL Japan, Inc. Shonan EMC Lab. 8.The opinions and the interpretations to the result of the description in this report are outside scopes wh ere UL Japan has been accredit ed. 9. The information provided from the customer for this report is identified in SECTION 1. Date of test: January 22, 2021 Representative test engineer: Kenichi Adachi Engineer Consumer Technology Division Approved by: Toyokazu Imamura Leader Consumer Technology Division The testing in which "Non-accreditation" is displayed is outside the accreditation scopes in UL Japan. There is no testing item of "Non-accreditation". Test report No. : 13568152S-M Page : 2 of 21 Issued date : March 1, 2021 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.: 13568152S-M Revision Test report No. Date Page revised Contents - (Ori ginal) 13568152S-M March 1, 2021 - - Test report No. : 13568152S-M Page : 3 of 21 Issued date : March 1, 2021 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 Reference: Abbreviations (Including words undescribed in this report) A2LA The American Association for Laboratory Accreditation MCS Modulation and Coding Scheme AC Alternating Current MRA Mutual Recognition Arrangement AFH Adaptive Frequency Hopping N/A Not Applicable AM Amplitude Modulation NIST National Institute of Standards and Technology Amp, AMP Amplifier NS No signal detect. ANSI American National Standards Institute NSA Normalized Site Attenuation Ant, ANT Antenna NVLAP National Voluntary Laboratory Accreditation Program AP Access Point OBW Occupied Band Width ASK Amplitude Shift Keying OFDM Orthogonal Frequency Division Multiplexing Atten., ATT Attenuator P/M Power meter AV Average PCB Printed Circuit Board BPSK Binary Phase-Shift Keying PER Packet Error Rate BR Bluetooth Basic Rate PHY Physical Layer BT Bluetooth…
Text truncated - open the document above for the full version.
1-22-3 Megumigaoka, Hiratsuka-shi · Kanagawa-ken · Japan
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 3 | 15E | 5.75 GHz - 5.83 GHz | 15.90 mW |
SKR 3000
Equipment Class
NII - Unlicensed National Information Infrastructure TX
SKR 3000
Equipment Class
DTS - Digital Transmission System
AeroDR SYSTEM 2
Equipment Class
NII - Unlicensed National Information Infrastructure TX
AeroDR SYSTEM
Equipment Class
DTS - Digital Transmission System
AeroDR SYSTEM
Equipment Class
DTS - Digital Transmission System