
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
The information in this document is subject to change without notice. Confirm the data is current by downloading the latest revision from www.lsr.com. 330-0003-R2.1 Copyright © 2009-2010 LS Research, LLC Page 1 of 17 PROFLEX02 T RANSCEIVER MODULE M ODULE USER’S GUIDE Last updated Wednesday, December 08, 2010 ProFLEX01 TRANSCEIVER MODULE MODULE USER’S GUIDE The information in this document is subject to change without notice. Confirm the data is current by downloading the latest revision from www.lsr.com. 330-0003-R2.1 Copyright © 2009-2010 LS Research, LLC Page 2 of 17 Table of Contents 1 Introduction ..................................................................................................................... 3 1.1 Purpose & Scope ....................................................................................................................... 3 1.2 Audience .................................................................................................................................... 3 1.3 Applicable Documents ............................................................................................................... 3 1.4 Revision History ......................................................................................................................... 3 2 Supporting Ping Pong Range Test on Host Board .......... Error! Bookmark not defined. 3 Module Application Circuits ........................................................................................... 4 3.1 CAD Symbols ............................................................................................................................ 4 3.2 Recommended Application Connections .................................................................................. 4 3.3 Setting Compliance Limits When Using Host Software ............................................................ 5 4 Wakeup/Reset Alerts .......................................................... Error! Bookmark not defined. 4.1 Wakeup Alert ............................................................................. Error! Bookmark not defined. 4.2 Reset Alert ................................................................................. Error! Bookmark not defined. 5 Antenna Options and PCB Footprint............................................................................. 6 5.1 Footprint Overview .................................................................................................................... 6 5.2 U.FL Connector ......................................................................................................................... 7 5.3 Carrier Board Alignment Holes ................................................................................................ 10 5.4 Compatibility ............................................................................................................................ 13 6 Agency Statements ....................................................................................................... 14 6.1 Federal Communication Commission Interference Statement ................................................ 14 6.2 Industry Canada Statements ................................................................................................... 15 6.3 OEM Responsibilities to comply with FCC and Industry Canada Regulations ....................... 15 6.4 End Product Labeling .............................................................................................................. 16 7 Contacting LS Research ............................................................................................... 17 ProFLEX01 TRANSCEIVER MODULE MODULE USER’S GUIDE The information in this document is subject to change without notice. Confirm the data is current by downloading the latest revision from www.lsr.com. 330-0003-R2.1 Copyright © 2009-2010 LS Research, LLC Page 3 of 17 1 Introduction 1.1 Purpose & Scope The purpose of this document is to provide details regarding the use of the ProFLEX02 transceiver module with the host. This document describes the electrical and wiring considerations when interfacing the ProFLEX02 module with a host board. 1.2 Audience This document is intended to be read by engineers and technical management. A general knowledge of common engineering practices is assumed. 1.3 Applicable Documents ProFLEX02 Datasheet ProFLEX02 Host Protocol User’s Guide 1.4 Revision History Date Change Description Revision 12-7-2010 Initial release. 1.0 Table 1 Revision History ProFLEX01 TRANSCEIVER MODULE MODULE USER’S GUIDE The information in this document is subject to change without notice. Confirm the data is current by downloading the latest revision from www.lsr.com. 330-0003-R2.1 Copyright © 2009-2010 LS Research, LLC Page 4 of 17 2 Module Application Circuits 2.1 CAD Symbols PADS CAD symbols for schematic and PCB can be downloaded from the LSR website www.lsr.com . 2.2 Recommended Application Connections Figure 1 shows the minimum circuit connections required for the ProFLEX01 module, when programming/debugging with the MSP-FET430UIF USB debugging interface. The LEDs and USER buttons are needed for Ping Pong Range Test built into the LSR firmware. The LED’s are also used during normal operation, and flash to indicate module status (UART activity, RF activity, and heartbeat). The reset (nRESET) pin (14) is active low. On the ProFLEX01 module it is pulled high with a 47kΩ resistor. To reset the module, pull the pin low to ground for at least 2μS. This is necessary to ensure a proper reset of the module. In order to wake the module from sleep mode, an additional input signal (WAKEUP) with interrupt capability on the ProFLEX01 module needs to be used. For simplicity it is recommended that this be connected to the Host UART RX signal. This connection is shown in Figure 1 To wake the ProFLEX01 module out of sleep simply send a dummy byte to the module. See Section Error! Ref…
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EXTERNAL PHOTOS Company Name LS Research, LLC Model # ProFLEX02 FCC ID # TFB‐PROFLEX2 IC # 5969A‐PROFLEX2 Page 1 of 3 Board with Antenna Connected Front Side of Board EXTERNAL PHOTOS Company Name LS Research, LLC Model # ProFLEX02 FCC ID # TFB‐PROFLEX2 IC # 5969A‐PROFLEX2 Page 2 of 3 Back Side of Board Antenna Connection Board Side EXTERNAL PHOTOS Company Name LS Research, LLC Model # ProFLEX02 FCC ID # TFB‐PROFLEX2 IC # 5969A‐PROFLEX2 Page 3 of 3 Antenna Connection Board Side Antenna Connection
LABELPHOTOS Company Name LS Research, LLC Model # ProFLEX02 FCC ID # TFB‐PROFLEX2 IC # 5969A‐PROFLEX2 Page 1 of 1
POLYONICS TRIBOGARD® XF-781 Thermal Transfer Printable Polyimide 1 mil STATIC DISSIPATIVE, WHITE 1 91136 REV F 8/2/2010 Description: POLYONICS XF-781 is a special 1 mil (25μ) polyimide film with a high-temperature permanent pressure sensitive acrylic adhesive and a high opacity, gloss white topcoat specifically designed for thermal transfer printing. Using a 1 mil vs. a 2 mil polyimide film base offers polyimide thermal performance at less cost. Properties: The XF-781 topcoat, in combination with the appropriate thermal transfer ribbon, passes the requirements of MIL-STD-202G, Notice 12, Method 215K and MIL-STD-883E, Notice 4, Method 2015.13. The print resists smearing, even when the board and label are directly removed from a reflow or wave solder environment. Preheating the labeled product can further enhance print permanence in the case of extreme solvent and/or abrasion exposure, although this is not typically required for board processing applications. Moreover, when the label is peeled from its release liner, less than 100 volts per square inch of electrostatic charge is generated, making it safe to use in a static free work environment, per EIA 625 and 541. Applications : POLYONICS XF-781 is specifically designed for high-temperature-lead-free solder applications. It is the ideal label to withstand surface mount board processes, on either the top or bottom side of the board. It can also be used on the top side of the board in mixed processes, and is recommended for the bottom side which is directly exposed to the wave solder environment. 1 mil polyimide is perfect in applications where low profile labeling is required such as silk screening or stacking. XF-781 is particularly useful in manufacturing processes where dimensional stability of the label is critical. IC labeling for work in process, permanent ID & warrantee labeling Product ID, asset tracking Anywhere a label will be exposed to extreme temperature resistance Special Considerations : The surface that you want to label should be clean, dry and free of any surface contamination, such as dust, oil or rust. Isopropyl alcohol would be a recommend solvent to clean the surface. When you apply the label, you must use firm pressure to increase the physical contact of the adhesive with the surface of the product. Pressure sensitive adhesives will provide stronger bonds to a warm surface, as compared to a colder one. The adhesive will ‘flow’ more readily, increasing the surface area and increasing the adhesion peel strength. The XF-781 top coat & print should not be contacted while exposed to elevated temperature. All values shown are averages and should not be used for specification purposes. Adhesion and tack values have a 15% tolerance allotted to the above values stated. Test data and test results contained in this document are for general information only and shall not be relied upon by POLYONICS customers for designs and specifications, or be relied on as meeting specified performance criteria. Customers desiring to develop specifications or performance criteria for specific product applications should contact Polyonics for further information POLYONICS TRIBOGARD® XF-781 Thermal Transfer Printable Polyimide 1 mil STATIC DISSIPATIVE, WHITE 2 91136 REV F 8/2/2010 Technical Data Properties Test Method Average Results USA Units SI Units Thickness ASTM D1000 -Substrate 0.0015 inch 0.038 mm -Adhesive 0.0010 inch 0.025 mm -Total 0.0025 inch 0.064 mm Adhesion Polyonics 80313 Stainless Steel 20 minute dwell > 27 oz/in 30N/100 mm 24 hour dwell > 30 oz/in 33N/100 mm Tack Polyonics 80155 > 1000g Label Surface Resistance EOS/ESD S.11.11 > 10 8 Ω and < 10 11 Ω Peel Value (Volts/sq.in.) Polyonics 80331 < 100 volts Static Decay Label Surface EIA 541 To 1% of initial charge- 0.02 seconds Temperature Rating: -40 to 1000°F (-40 to 537°C) Shelf Life 1 year below 80°F (27°C) and 60% R.H. UL File # PGJI2.MH19503 UL Tested Ribbons Ricoh B110CR, C, Armor AXR7+, 8, Sony 4070, JPP1, Union Chemicar US300, DNP 510 Durability Testing Properties Test Method Test Environment PCS¹ Read Rate² Heat/Chemical Polyonics 80386 Control 70°C, 5 min. 99% 100% Alpha Metals Inc. 2110 Saponifier 6%, aqueous, 70°C, 5 min. 97% 100% Isopropanol 99% 70°C, 5 min 99% 100% Kyzen XJN+, 30%, 70°C, 5 min. 99% 100% Chemical Testing Properties Test Method Test Fluid Results Chemical Resistance MIL-STD-202G, Notice 12, Method 215K MIL-STD-883E, Notice 4, Method 2015.13 Solvent A –1 part IPA, 3 parts mineral spirits No visible effect Solvent B – 1 ,1,1 Trichloroethane Solvent deleted per notice 12 Solvent C –Terpene Defluxer No visible effect Solvent D –Saponifier No visible effect Polyonics Material Compliance RoHS- Restriction of Hazardous Substances (EU Directive 2002/95/EC) Limits set forth in Directive 2005/618/EC amending Directive 2002/95/EC REACH- Registration Evaluation and Authorization of Chemicals (EU Directive 1907/2006/EC) Limits set forth in Directive 1907/2006/EC Article 7 (2) Halogens- Restriction use of Halogen (IEC 61249-2-21) Limits set forth in International Electrochemical Commission POLYONICS TRIBOGARD® XF-781 Thermal Transfer Printable Polyimide 1 mil STATIC DISSIPATIVE, WHITE 3 91136 REV F 8/2/2010 Key for Tables on page 2 WARRANTY-LIMITATION Polyonics’ products are sold with the understanding that the buyer will test them in actual use and determine for him/herself their adaptability to his/her intended uses. Polyonics warrants to the buyer that its products are free from defects in material and workmanship, but limits its obligation under this warranty to replacement of the products shown to Polyonics’ satisfaction to have been defective, provided that the Buyer has complied with the handling, storage and shelf life requirements as specified by Polyonics in applicable materials specifications. The above warranties extend solely to Buyer and all warranty claims must be made by Buyer. Rework or Replacement shall neither extend no…
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INTERNAL PHOTOS Company Name LS Research, LLC Model # ProFLEX02 FCC ID # TFB‐PROFLEX2 IC # 5969A‐PROFLEX2 Page 1 of 2 INTERNAL PHOTOS Company Name LS Research, LLC Model # ProFLEX02 FCC ID # TFB‐PROFLEX2 IC # 5969A‐PROFLEX2 Page 2 of 2
MPECalculation Company Name LS Research Model # ProFLEX02 FCC ID # TFB‐PROFLEX2 IC # 5969A‐PROFLEX2 Page 1 of 1 The following MPE calculations are based on a Nearson Dipole antenna, with a measured ERP o f 123.3 dBμV/m, at 3 meters, and conducted RF power of +25.27 dBm as presented to the antenna. The measured gain of this antenna, based on the ERP measurements is 2.8 dB as measured ove r a conducting ground plane.
W66 N220 Commerce Court ● Cedarburg, WI 53012 Phone: 262.375.4400 ● Fax: 262.375.4248 www.lsr.com TEST REPORT #: 310103 LSR Job #: C-873 Compliance Testing of: ProFLEX02 Test Date(s): December 1 st – 9 th , 2010 Prepared For: LS Research, LLC In accordance with: Federal Communications Commission (FCC) Part 15, Subpart C, Section 15.247 Industry Canada (IC) RSS 210 Annex 8 Digital Modulation Transmitters (DTS) Operating in the Frequency Band 2400 MHz – 2483.5 MHz This Test Report is issued under the Authority of: Thomas T. Smith, Manager EMC Test Services Signature: Date: 12/9/2010 Quality Assurance by: Khairul A. Zainal, Senior EMC Engineer Signature: Date: 12/9/2010 Project Engineer: Shane D. Rismeyer, EMC Engineer Signature: Date: 12/9/10 This Test Report may not be reproduced, except in full, without written approval of LS Research, LLC. LS Research, LLC Page 2 of 54 Prepared For: LS Research Model Number: ProFLEX02 Report #: C-873 EUT: ProFLEX02 Serial Number: N/A LSR Job #: 310103 TABLE OF CONTENTS EXHIBIT 1. INTRODUCTION ............................................................................................................. 4 1.1 - Scope .................................................................................................................................. 4 1.2 – Normative References ....................................................................................................... 4 1.3 - LS Research, LLC in Review .............................................................................................. 5 EXHIBIT 2. PERFORMANCE ASSESSMENT ................................................................................... 6 2.1 – Client Information ............................................................................................................... 6 2.2 - Equipment Under Test (EUT) Information .......................................................................... 6 2.4 - EUT’S Technical Specifications .......................................................................................... 7 2.5 - Product Description ............................................................................................................. 8 EXHIBIT 3. EUT OPERATING CONDITIONS & CONFIGURATIONS DURING TESTS ................... 9 3.1 - Climate Test Conditions ...................................................................................................... 9 3.2 - Applicability & Summary Of EMC Emission Test Results ................................................... 9 3.3 - Modifications Incorporated In the EUT for Compliance Purposes ...................................... 9 3.4 - Deviations & Exclusions from Test Specifications .............................................................. 9 EXHIBIT 4. DECLARATION OF CONFORMITY .............................................................................. 10 EXHIBIT 5. RADIATED EMISSIONS TEST ...................................................................................... 11 5.1 - Test Setup ......................................................................................................................... 11 5.2 - Test Procedure ................................................................................................................. 11 5.3 - Test Equipment Utilized .................................................................................................... 11 5.4 - Test Results ...................................................................................................................... 11 5.5 - Calculation of Radiated Emissions Limits ......................................................................... 12 5.6 - Radiated Emissions Test Data Chart ................................................................................ 13 5.7 - Test Setup Photo(s) – Radiated Emissions Test .............................................................. 15 5.8 - Screen Captures - Radiated Emissions Test .................................................................... 17 5.10 - Screen Captures - Radiated Emissions Testing – Receive Mode .................................. 21 EXHIBIT 6. CONDUCTED EMISSIONS TEST, AC POWER LINE .................................................. 25 6.1 - Test Setup ......................................................................................................................... 25 6.2 - Test Procedure ................................................................................................................. 25 6.3 - Test Equipment Utilized .................................................................................................... 25 6.4 - Test Results ...................................................................................................................... 25 6.5 - FCC Limits of Conducted Emissions at the AC Mains Ports ............................................ 26 6.6 – Conducted Emissions Test Data Chart ............................................................................ 27 LS Research, LLC Page 3 of 54 Prepared For: LS Research Model Number: ProFLEX02 Report #: C-873 EUT: ProFLEX02 Serial Number: N/A LSR Job #: 310103 6.7 - Test Setup Photo(s) – Conducted Emissions Test ........................................................... 28 6.8 - Screen Captures – Conducted Emissions Test ................................................................ 29 EXHIBIT 7. OCCUPIED BANDWIDTH ............................................................................................. 30 7.1 - Limits ................................................................................................................................. 30 7.2 - Method of Measurements ................................................................................................. 30 7.3 - Test Equipment List .......................................................................................................... 30 7.4 - Test Data ....…
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TEST SETUP PHOTOS Company Name LS Research, LLC Model # ProFLEX02 FCC ID # TFB-PROFLEX2 IC # 5969A-PROFLEX2 Page 1 of 3 Radiated Emissions EUT on Test Pedestal Side Orientation TEST SETUP PHOTOS Company Name LS Research, LLC Model # ProFLEX02 FCC ID # TFB-PROFLEX2 IC # 5969A-PROFLEX2 Page 2 of 3 Vertical Orientation Horizontal Orientation TEST SETUP PHOTOS Company Name LS Research, LLC Model # ProFLEX02 FCC ID # TFB-PROFLEX2 IC # 5969A-PROFLEX2 Page 3 of 3 Conducted Emissions
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 337.00 mW |

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