
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Radicom Research, Inc Preliminary Designers Guide for the RW8200 Series RoHS Compliant Serial Embedded WiFi Modules. Table of Contents Introduction and Features ...................................................................................... 1 Technical Specification ......................................................................................... 2 Block Diagram ...................................................................................................... 6 Model and Ordering Information .......................................................................... 6 RW8200 Series Module Pin Definitions ............................................................... 9 RW8200 Series Module Pin Descriptions............................................................. 10 RW8200 Series Module Mechanical Dimensions ............................................... 12 RW8200HM Series Mechanical Dimensions ....................................................... 13 RW8200HM Series Pin Descriptions ................................................................... 14 Connecting the RW8200 to Your System ............................................................. 15 Antenna Information ............................................................................................. 15 RW8200MB Carrier Board RS232 DB-9 Pin Definitions .................................... 16 LED Suggestion Circuit ........................................................................................ 16 FCC, IC, and CE Label Location and Module Model Identification............ ...17 Important Regulatory Compliance and User Information............................18 Industry Canada statement................................................................20 CE Declaration of Conformity.......................................................... .23 WiFi Regulatory Domain Frequencies..................................................24 RW8200 Command Set ........................................................................................ 25 RW8200 Command Detail .................................................................................... 26 RW8200 Special atbp Command Set .................................................................... 35 Upgrade Firmware for BPM8200MB ................................................................... 38 Limited Warranty .................................................................................................. 42 Contacting Radicom .............................................................................................. 44 Information furnished by Bluepacket is believed to be accurate and reliable. However Bluepacket assumes no responsibility for its use, or any infringement of patents or other rights of third parties that may result from its use. Bluepacket reserves the right to change circuitry at any time without notice. This document is subject to change without notice. Introduction Thanks for purchasing Radicom’s serial Embedded WiFi Module. Radicom is committed to providing quality service and technical support in order to expedite the product development process. The RW8200 Module requires only a serial port interface to add state of the art data WiFi wireless operation to any system. The RW8200 Serial to WiFi Module integrates a ARM9 processor, Wireless Internet Connectivity for Embedded Devices (WICED) and an embedded processor. Featuring a self-contained WiFi subsystem, a streamlined and simple connectivity API and complete software development environment, the RW8200 allows OEM integrators to incorporate WiFi wireless technology into a broad range that previously did not feature networking capabilities. It is designed to fully support IEEE802.11b Draft 2.0, IEEE802.11g and IEEE802.11n standards. The RW8200 is available in surface mount (SMD) or through-hole (Dip) hardware designs. If further information is required, please contact us and we will provide any additional help needed. Features • Compatible with any serial port embedded controllers • IEEE 802.11b/g/n compatible WLAN • IEEE 802.11i ~ WiFi security: WEP-128, WPA-PSK(TKIP), WPA2-PSK • RTOS and TCP/IP support • Configurable through AT commands • Low power 3.3V operation • Extended operating temperature (-40°C to +85°C) • Small size 0.787” x 1.299” (20x33mm) • ROHS compliant • WiFi Client and AP mode • No powerful host processor required • 2 general IO pins • 1 analog IO pins • Firmware upgradable through serial port • Supports power save mode • Integrated CMOS power amplifier • Cisco compatible extension certified (CCX, CCX 2.0 CCX 3.0 CCX 4.0) • Integrated ARM Cortex-M3 processor and on chip memory for complete WLAN subsystem functionality • Agency approval: pending FCC15, IC, CE Approvals • FCC Part 15: FCC OET 65 Supplement C (SAR), 47 CFR FCC Part 15 Subpart C 15.247, 47 CFR FCC Part 15 Subpart B 2009 (Class B) • IC RSS-102, IC ES-003 issue 4, IC RSS-210 issue 8:2010 • RoHS Compliant • CE Marked: EN 300328 V1.7.1: 2006, EN 62311:2008(MPE), EN 301489-1 V1.9.2:2001 EN 301489-17 V2.2.1:2009, EN 60601-1:2006/AC: 2010 1 Technical Specification Absolute maximum Rating Symbol Description Min Max Unit VDD_3V3 Input supply voltage 0 4.0 V Recommended Operating Rating Parameter Min. Typ. Max. Unit VDD_3V3 3.15 3.3 3.6 V Operating Temperature -40° +85° °C Relative Humidity (non-condensing) 95 % Power Consumption Condition: Condition: 25deg.C, includes Both WiFi and Micro-Controller Item Condition Min Nom Max Unit Tx mode(11b Max current) 11Mbps 345 mA Tx mode(11g Max current) 54Mbps 250 mA Tx mode(11n Max current) MCS7 210 mA Rx mode 11b (11Mbps) 115 150 mA 11g (54Mbps) 115 150 mA 11n (MCS7) 115 150 mA RF SPECIFICATION 1. WIRELESS SPECIFICATIONS The WiFi Network Controller module complies with the following features and standards; Features Description WLAN Standards IEEE 802 Part 11b/g/n (802.11b/g/n single stream n) Antenna Port Support Single Antenna for WiFi Frequency Band 2.400…
Text truncated - open the document above for the full version.
Approval sheet Page 1 of 9 ASC_RFANT5220110A2T_V02 Apr. 2010 MULTILAYER CERAMIC ANTENNA RFANT Series – RoHS Compliance 2.4 GHz ISM Band Working Frequency P/N: RFANT5220110A2T *Contents in this sheet are subject to change without prior notice. Approval sheet Page 2 of 9 ASC_RFANT5220110A2T_V02 Apr. 2010 FEATURES Surface Mounted Devices with a small dimension of 5.2 x 2.0 x 1.1 mm 3 meet future miniaturization trend. Embedded and LTCC (Low Temperature Co-fired Ceramic) technology is able to future integrate with system design as well as beautifying the housing of final product. High Stability in Temperature / Humidity Change APPLICATIONS Bluetooth Wireless LAN HormRF ISM band 2.4GHz wireless applications DESCRIPTION Walsin Technology Corporation develops a new ceramic embedded antenna specified for 2.4 GHz ISM Band application, as shown in below “CONSTRUCTION”. Both of Wireless LAN IEEE 802.11b and Bluetooth TM typically located on this unlicensed frequency band which range covers from 2.4GHz to 2.4835GHz. To fulfil the friendly usage for antenna, this antenna has been designed to a typical 150MHz bandwidth through Walsin’s advanced LTCC (Low Temperature Co-fired Ceramic) technology and superior product design via 3D EM Simulation Skill. This antenna has a rectangular ceramic body with a tiny dimension of 5.2x 2.0 x 1.1 mm 3 meet the future SMT automation and miniaturization requirements on modern portable devices. CONSTRUCTION Fig 1. Outline of 2.4GHz Antenna – RFANT5220110A2T Fig 2. Dimension L= 2.0 ±0.2 mm T= 1.15 ±0.10 mm W = 5.2 ± 0.2 mm A = 0.40 ± 0.25 mm A = 0.40 ± 0.25 mm WTC B L= 2.0 ±0.2 mm T= 1.15 ±0.10 mm W = 5.2 ± 0.2 mm A = 0.40 ± 0.25 mm A = 0.40 ± 0.25 mm WTC B Identification mark Soldering terminal W T C W T C B B Feeding Identification mark Soldering terminal W T C W T C B B Feeding Approval sheet Page 3 of 9 ASC_RFANT5220110A2T_V02 Apr. 2010 SOLDER LAND PATTERN DESIGN Figure ELECTRICAL CHARACTERISTICS RFANT5220110A2T Specification Working Frequency Range 2.4 GHz ~ 2.5GHz Gain 2 dBi (Typical) VSWR 2 max. Polarization Linear Azimuth Bandwidth Omni-directional Impedance 50Ω Rated Power (max.) 3 Watts Maximum Input Power 5 Watts for 5 minutes Operation Temperature -40 ̊C ~ +85 ̊C Remark: The specification is defined based on the test board dimension as in below To 50Ω RF I/O GROUND 6.4 1.0 1.0 4.4 2.0 Ground Soldering Pad 50 ΩTransmission Line Unit : mm 1.0 To 50Ω RF I/O GROUND 6.46.4 1.0 1.0 4.4 2.0 Ground Soldering Pad 50 ΩTransmission Line Unit : mm 1.0 Approval sheet Page 4 of 9 ASC_RFANT5220110A2T_V02 Apr. 2010 Antenna on Test Board ( FR4 Thickness 0.8mm) Antenna S11 on Test Board Bandwidth>150 MHz Empty Area 50Ω ΩΩ ΩFeed line GROUND 30x18 mm 2.0mm 2.5mm 18mm WTC B Empty Area 18x9 mm 1mm Empty Area 50Ω ΩΩ ΩFeed line GROUND 30x18 mm 2.0mm 2.5mm 18mm WTC B WTC B Empty Area 18x9 mm 1mm Approval sheet Page 5 of 9 ASC_RFANT5220110A2T_V02 Apr. 2010 RADIATION PATTERN Radiation Pattern and Gain were dependent on measurement board design. The specification of RFANT5220110A2T antenna was measured based on the PCB size and installation position as shown in the below figure Test Board Vertical Horizontal Y - Z Plane Average Gain= 0.583 dBi Peak Gain = 1.74Bi Average Gain = -0.57Bi Peak Gain= 0.10 Average Gain=-5.74dBi X - Z Plane Average Gain= -1.478 dBi Peak Gain= -3.04 dBi Average Gain= -9.21dBi Peak Gain= 2.00 dBi Average Gain= -2.28 dBi X - Y Plane Average Gain= -1.840 dBi Peak Gain= -1.86 dBi Average Gain= -8.63dBi Peak Gain= 2.07 dBi Average Gain= -2.86 dBi z Y z Y z X z X X Y X Y Empty Area GROUND 30x18 mm X Y Z WTC B Empty Area GROUND 30x18 mm X Y Z X Y Z WTC B WTC B Approval sheet Page 6 of 9 ASC_RFANT5220110A2T_V02 Apr. 2010 RELIABILITY TEST Test item Test condition / Test method Specification Solderability JIS C 0050-4.6 JESD22-B102D *Solder bath temperature:235 ± 5°C *Immersion time:2 ± 0.5 sec *Solder:Sn3Ag0.5Cu for lead-free At least 95% of a surface of each terminal electrode must be covered by fresh solder. Leaching (Resistance to dissolution of metallization) IEC 60068-2-58 *Solder bath temperature:260 ± 5°C *Leaching immersion time:30 ± 0.5 sec *Solder : SN63A Loss of metallization on the edges of each electrode shall not exceed 25%. Resistance to soldering heat JIS C 0050-5.4 *Preheating temperature:120~150°C, 1 minute. *Solder temperature:270±5°C *Immersion time:10±1 sec *Solder:Sn3Ag0.5Cu for lead-free Measurement to be made after keeping at room temperature for 24±2 hrs No mechanical damage. Samples shall satisfy electrical specification after test. Loss of metallization on the edges of each electrode shall not exceed 25%. Drop Test JIS C 0044 *Height:75 cm *Test Surface:Rigid surface of concrete or steel. *Times:6 surfaces for each units;2 times for each side. No mechanical damage. Samples shall satisfy electrical specification after test. Adhesive Strength of Termination JIS C 0051- 7.4.3 *Pressurizing force: 5N(≦0603);10N(>0603) *Test time:10±1 sec No remarkable damage or removal of the termination. Bending test JIS C 0051- 7.4.1 The middle part of substrate shall be pressurized by means of the pressurizing rod at a rate of about 1 mm/s per second until the deflection becomes 1mm/s and then pressure shall be maintained for 5±1 sec. Measurement to be made after keeping at room temperature for 24±2 hours No mechanical damage. Samples shall satisfy electrical specification after test. Approval sheet Page 7 of 9 ASC_RFANT5220110A2T_V02 Apr. 2010 Temperature cycle JIS C 0025 1. 30±3 minutes at -40°C±3°C, 2. 10~15 minutes at room temperature, 3. 30±3 minutes at +85°C±3°C, 4. 10~15 minutes at room temperature, Total 100 continuous cycles Measurement to be made after keeping at room temperature for 24±2 hrs No mechanical damage. Samples shall satisfy electrical specification after test. Vibration JIS C 0040 *Frequency:10Hz~55Hz~10Hz(1min) *Total amplitude:1.5mm *Test times:6hrs.(Two hrs each in three mutually perpendicular directions) No mechani…
Text truncated - open the document above for the full version.
02/10/2014 Federal Communications Commission Authorization and Evaluation Division Dear Regulatory Authority, We, the undersigned, hereby declare that Declaration of Conformity procedures will be applied to the digital device portion of the following product: Product name: RW8200 Serial / USB EmbeddedWiFi Modules Model: RW8200a, RW8200c, RW8200Ua, RW8200Uc, RW8200HMa, RW8200HMc, BPM8200a, BPM8200c Test report: ISL-14LR002FB ------------------------------------------------------------------------------------------------- ( Product Identification ) It is herewith confirmed and found to comply with the requirements set up by ANSI C63.4 & FCC PART 15 regulations for the evaluation of electromagnetic compatibility. This Device complies with Part 15 of the FCC rules, operation is subject to the following two conditions. This device may not cause harmful interference and, This device must accept any interference received, including interference that may cause undesired operation. TEST LABO RATORY International Standards Laboratory Lung-Tan Hsiang, Tao Yuan County 325, Taiwan FCC Registration Number: TW1036. TAF Accreditation No.: 0997; IC: IC4067B-3, BSMI MRA Test Lab. Sincerely, Roger Sheridan/Quality Manage r Radicom Research, Inc.
Modular Approval Request Letter 02/10/2014 Dear Application Examiner, Radicom Research Inc / FCC ID: K7T-RW8200 would like to have your authorization as a modular approval. The requirements of Public Notice DA00-1407 have been met and shown on the following statements. Items to be covered Answer from applicant 1. The modular transmitter must have its own RF shielding. Yes, The EUT provides the RF shielding. See EUT photo. 2. The modular transmitter must have buffered modulation/data inputs (if such inputs are provided) to ensure that the module will comply with Part 15 requirements under conditions of excessive data rates or over-modulation. The EUT has its buffered modulation. Please see the Schematic Diagram. 3. The modular transmitter must have its own power supply regulation. The EUT has its own power supply regulation, please see the Schematic Diagram. 4. The modular transmitter must comply with the antenna requirements of Section 15.203 and 15.204(c). The antenna must either be permanently attached or employ a “unique” antenna coupler (at all connections between the module and the antenna, including the cable). The EUT meets the FCC antenna requirements; unique antenna connector and photo of antenna are shown in the test report. 5. The modular transmitter must be tested in a stand-alone configuration, i.e., the module must not be inside another device during testing. This is intended to demonstrate that the module is capable of complying with Part 15 emission limits regardless of the device into which it is eventually installed. Yes, The EUT was tested with a test board, Please see section photographs of test configuration in the test report. 6. The modular transmitter must be labeled with its own FCC ID number, and, if the FCC ID is not visible when the module is installed inside another device, then the outside of the device into which the module is installed must also display a label referring to the enclosed module. This exterior label can use wording such as the following: “Contains Transmitter Module FCC ID: K7T-RW8200” or “Contains FCC ID: K7T-RW8200.” Any similar wording that expresses the same meaning may be used. The Grantee may either provide such a label, an example of which must be included in the application for equipment authorization, or, must provide adequate instructions along with the module which explain this requirement. In the latter case, a copy of these instructions must be included in the application for equipment authorization. Please see exhibition label sample for the FCC ID of this module. And also in the exhibition Users manual, there are instructions give to the OEM on how to label the end product. 7. The modular transmitter must comply with any specific rule or operating requirements applicable to the transmitter and the manufacturer must provide adequate instructions along with the module to explain any such requirements. A copy of these instructions must be included in the application for equipment authorization. For example, there are very strict operational and timing requirements that must be met before a transmitter is authorized for operation under Section 15.231. For instance, data transmission is prohibited, except for operation under Section 15.231(e), in which case there are separate field strength level and timing requirements. Compliance with these requirements must be assured. The EUT is compliant with all applicable FCC rules. Details instructions for maintaining compliance are give in the User Manual. 8. The modular transmitter must comply with any applicable RF exposure requirements. For example, FCC Rules in Sections 2.1091, 2.1093 and specific Sections of Part 15, including 15.319(i), 15.407(f), 15.253(f) and 15.255(g), require that Unlicensed PCS, UNII and millimeter wave devices perform routine environmental evaluation for RF Exposure to demonstrate compliance. In addition, spread spectrum transmitters operating under Section 15.247 are required to address RF Exposure compliance in accordance with Section 15.247(b)(4). Modular transmitters approved under other Sections of Part 15, when necessary, may also need to address certain RF Exposure concerns, typically by providing specific installation and operating instructions for users, installers and other interested parties to ensure compliance. The EUT complies with RF exposure requirement. The max output power + antenna gain is lower than low threshold 60/fGHz mW RF exposure is addressed Best regards, _______________________________ Roger Sheridan / Quality Manager Radicom Research Inc
RF_160, Issue 03 Declaration of Authorization We Name: Address: Country: Radicom Research Inc 2148 Bering Drive, San Jose, California 95131 United States Decla re that: Name: International Standards Laboratory Address: No. 120, Lane 180, San Ho Tsuen,Hsin Ho Rd., Lung-Tan Hsiang, Tao Yuan County, Taiwan City: Lung-Tan Hsiang,Tao Yuan County Country: Taiwan is authorized to apply for Certification of the following product(s): Product description: Type designation: Trademark: RW8200 Serial / USB Embedded WiFi Modules .................................... . Radicom .......................................... . RW8200a, RW8200c, RW8200Ua, RW8200Uc, RW8200HMa, RW8200HMc, BPM8200a, BPM8200c ................................................... on ou r behalf. Date: 02/10/2014 City: San Jose Name: Roge r Sheridan Function: Quality Manager Signature: Notes: (1): Required for FCC, IC application (2): For FCC it must be the Grantee Code “owner” or the authorized agent.
FCC ID: K7T- RW8200 IC: 2377A- RW8200 International Standards Laboratory Report Number: ISL-14LR002FCW APPENDIX 2 PHOTOGRAPHS OF EUT FCC ID: K7T- RW8200 IC: 2377A- RW8200 International Standards Laboratory Report Number: ISL-14LR002FCW EUT – 1 EUT – 2 FCC ID: K7T- RW8200 IC: 2377A- RW8200 International Standards Laboratory Report Number: ISL-14LR002FCW EUT – 3 EUT – 4 FCC ID: K7T- RW8200 IC: 2377A- RW8200 International Standards Laboratory Report Number: ISL-14LR002FCW EUT – 5 EUT – 6 Chip Antenna Dipole Antenna
FCC, IC, and CE Label Location and Module Model Identification The RW8200 module family is FCC Part 15 and IC (Industry Canada) certified. The RW8200 series is also CE marked. The modules are labeled with theRW8200 series module model number and FCC Part 15 ID, IC registration number and CE mark. The label can be found on top of the metal shielding on the RW8200 Module. FCC, IC, and CE Label Location and Module Model Identification Location: 16 Radicom Research Inc. Model: RW8200Uc FCC ID: K7T-RW8200 IC: 2377A-RW8200 Radicom Research Inc. Model: RW8200c FCC ID: K7T-RW8200 IC: 2377A-RW8200 Radicom Research Inc. Model: RW8200a FCC ID: K7T-RW8200 IC: 2377A-RW8200 Radicom Research Inc. Model: RW8200HMa FCC ID: K7T-RW8200 IC: 2377A-RW8200 17 Label Module board Radicom Research Inc. Model: BPM8200a FCC ID: K7T-RW8200 IC: 2377A-RW8200 Radicom Research Inc. Model: BPM8200c FCC ID: K7T-RW8200 IC: 2377A-RW8200 Radicom Research Inc. Model: RW8200Ua FCC ID: K7T-RW8200 IC: 2377A-RW8200 Radicom Research Inc. Model: RW 8200HMc FCC ID: K7T-RW8200 IC: 2377A-RW8200
FCC ID: K7T- RW8200 IC: 2377A- RW8200 International Standards Laboratory Report Number: ISL-14LR002FCW APPENDIX 2 PHOTOGRAPHS OF EUT FCC ID: K7T- RW8200 IC: 2377A- RW8200 International Standards Laboratory Report Number: ISL-14LR002FCW EUT – 1 EUT – 2 FCC ID: K7T- RW8200 IC: 2377A- RW8200 International Standards Laboratory Report Number: ISL-14LR002FCW EUT – 3 EUT – 4 FCC ID: K7T- RW8200 IC: 2377A- RW8200 International Standards Laboratory Report Number: ISL-14LR002FCW EUT – 5 EUT – 6 Chip Antenna Dipole Antenna
FCC ID: K7T- RW8200 IC: 2377A- RW8200 Standard Applicable According to RSS 102 issue 4 2.5.2 RF Exposure Evaluation RF exposure evaluation is required if the separation distance between the user and the device’s radiating element is greater than 20 cm, except when the device operates as follows: below 1.5 GHz and the maximum e.i.r.p. of the device is equal to or less than 2.5 W; at or above 1.5 GHz and the maximum e.i.r.p. of the device is equal to or less than 5 W. This is a Mobile device, at which separation distance between the user and the device’s antenna is 20cm. Therefore, section 2.5.2 shall be complied with. RF Evaluation 802.11b Maximum Peak output power at antenna input terminal: 19.62 (dBm) Max imum Peak ou tput p ower at antenn a input ter minal: 91.62 20 4901 (mW) Antenn a gain ( typical): 2 (dBi) Max imu m antenn a gain: 1.584 89 3192 (numeric) Evaluation Result The radiated power is 19.62 + 2 = 21.62 dBm(EIRP) =145.211mW =0.145211W that is less than or equal to 5W. Hence, following section 2.5.2 of RSS102 issue 4, RF ex posure evaluation is no longer required. FCC ID: K7T- RW8200 IC: 2377A- RW8200 RF Evaluation 802.11g /n (20MHz) Maximum Peak output power at antenna input terminal: 21.9 (dBm) Max imum Peak ou tput p ower at antenn a input ter minal: 154.8 81 6619 (mW) Antenn a gain ( typical): 2 (dBi) Max imu m antenn a gain: 1.584 89 3192 (numeric) Evaluation Result The radiated power is 21.9 + 2 = 23.9 dBm(EIRP) =245.471mW =0.245471W that is less than or equal to 5W. Hence, following section 2.5.2 of RSS102 issue 4, RF ex posure evaluation is no longer required.
Page: 1 of 111 TEST REPORT of FCC Part 15 Subpart C AND CANADA RSS-210 Full Modular Approval New Application; Class I PC; Class II PC Product : RW8200 Serial / USB Embedded WiFi Modules Brand: Radicom Model: RW8200a, RW8200c, RW8200Ua, RW8200Uc, RW8200HMa,RW8200HMc, BPM8200a, BPM8200c Model Difference: Please see page 7 FCC ID: IC: K7T- RW8200 2377A- RW8200 FCC Rule Part: IC Rule Part: §15.247, Cat: DTS RSS-210 issue 8:2010, Annex 8 Applicant: Radicom Research, Inc. Address: 2148 Bering Drive, San Jose, CA. USA 95131 Test Performed by: International Standards Laboratory <Lung-Tan LAB> *Site Registration No. BSMI: SL2-IN-E-0013; MRA TW1036; TAF: 0997; IC: IC4067B-3; *Address: No. 120, Lane 180, San Ho Tsuen, Hsin Ho Rd. Lung-Tan Hsiang, Tao Yuan County 325, Taiwan *Tel : 886-3-407-1718; Fax: 886-3-407-1738 Report No.: ISL-14LR002FCW Issue Date : 2014/01/28 Test results given in this report apply only to the specific sample(s) tested and are traceable to nation- al or international standard through calibration of the equipment and evaluating measurement uncertainty herein. This report MUST not be used to claim product en- dorsement by TAF, NVLAP or any agency of the Government. This test report shall not be reproduced except in full, without the written approval of International Standards Laboratory. -2 of 102- FCC ID: K7T- RW8200 IC: 2377A- RW8200 International Standards Laboratory Report Number: ISL-14LR002FCW VERIFICATION OF COMPLIANCE Applicant: Radicom Research, Inc. Product Description: RW8200 Serial / USB Embedded WiFi Modules Brand Name: Radicom Model No.: RW8200a, RW8200c, RW8200Ua, RW8200Uc, RW8200HMa,RW8200HMc, BPM8200a, BPM8200c Model Difference: Please see page 7 FCC ID: K7T- RW8200 IC: 2377A- RW8200 Date of test: 2014/01/03 ~ 2014/01/25 Date of EUT Received: 2014/01/04 We hereby certify that: All the tests in this report have been performed and recorded in accordance with the standards de- scribed above and performed by an independent electromagnetic compatibility consultant, Interna- tional Standards Laboratory. The test results contained in this report accurately represent the measurements of the characteristics and the energy generated by sample equipment under test at the time of the test. The sample equip- ment tested as described in this report is in compliance with the limits of above standards. Test By: Date: 2014/01/28 Dion Chang / Engineer Prepared By: Date: 2014/01/28 Gigi Yeh / Specialis Approved By: Date: 2014/01/28 Vincent Su / Technical Manager -3 of 102- FCC ID: K7T- RW8200 IC: 2377A- RW8200 International Standards Laboratory Report Number: ISL-14LR002FCW Version Version No. Date Description 00 2014/01/28 Initial creation of document -4 of 102- FCC ID: K7T- RW8200 IC: 2377A- RW8200 International Standards Laboratory Report Number: ISL-14LR002FCW Table of Contents 1 GENERAL INFORMATION .................................................................................................... 6 1.1 Related Submittal(s) / Grant (s) ..................................................................................................... 8 1.2 Test Methodology .......................................................................................................................... 8 1.3 Test Facility .................................................................................................................................... 8 1.4 Special Accessories ........................................................................................................................ 8 1.5 Equipment Modifications ............................................................................................................... 8 2 SYSTEM TEST CONFIGURATION ....................................................................................... 9 2.1 EUT Configuration ........................................................................................................................ 9 2.2 EUT Exercise ................................................................................................................................. 9 2.3 Test Procedure ................................................................................................................................ 9 2.4 Configuration of Tested System ................................................................................................... 10 3 SUMMARY OF TEST RESULTS .......................................................................................... 11 4 DESCRIPTION OF TEST MODES ....................................................................................... 11 5 CONDUCTED EMISSION TEST........................................................................................... 12 5.1 Standard Applicable: .................................................................................................................... 12 5.2 Measurement Equipment Used: ................................................................................................... 12 5.3 EUT Setup: ................................................................................................................................... 12 5.4 Measurement Procedure: ............................................................................................................. 13 5.5 Measurement Result: ................................................................................................................... 13 6 PEAK OUTPUT POWER MEASUREMENT ....................................................................... 18 6.1 Standard Applicable: .................................................................................................................... 18 6.2 Measurement Equipment Used: ................................................................................................... 19 6.3 Test Set-up: ................................................................................................................................…
Text truncated - open the document above for the full version.
FCC ID: K7T- RW8200 IC: 2377A- RW8200 International Standards Laboratory Report Number: ISL-14LR002FCW APPENDIX 1 PHOTOGRAPHS OF SET UP FCC ID: K7T- RW8200 IC: 2377A- RW8200 International Standards Laboratory Report Number: ISL-14LR002FCW Conducted Emission Setup Photos (Chip antenna) FCC ID: K7T- RW8200 IC: 2377A- RW8200 International Standards Laboratory Report Number: ISL-14LR002FCW Conducted Emission Setup Photos (Dipole antenna) FCC ID: K7T- RW8200 IC: 2377A- RW8200 International Standards Laboratory Report Number: ISL-14LR002FCW Radiated Emission Setup Photos (Chip Antenna) FCC ID: K7T- RW8200 IC: 2377A- RW8200 International Standards Laboratory Report Number: ISL-14LR002FCW Radiated Emission Setup Photos (Dipole Antenna)
No. 120, Lane 180, San Ho Tsuen,Hsin Ho Rd., · Taiwan
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 150.00 mW |

2.4G WiFi+BT4.2(BLE) module
Equipment Class
DTS - Digital Transmission System
USB WiFi Module
Equipment Class
DTS - Digital Transmission System
20730 class 2 Bluetooth Module
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
CSR8311 BlueTooth Module
Equipment Class
DTS - Digital Transmission System
Bluetooth Module
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter