FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. Laird Connectivity LLC/
  3. TFB-SISEN1

TFB-SISEN1SiFLEX01 Module

Laird Connectivity LLC
SiFLEX01 Module - FCC ID TFB-SISEN1 - Laird Connectivity LLC
Click to zoom

Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Nov 12, 2012
Application Purpose
Original Equipment
Date of Application
Oct 21, 2012
Equipment Note
SiFLEX01 Module
Frequency Range
903.00000000 - 926.60000000
Company
Laird Connectivity LLC
Country
United States

Documents & Files

Select a file to view

Users Manual

↗

Block Diagram

↗

Cover Letter(s)

↗
↗
↗

External Photos

↗

ID Label/Location Info

↗

Internal Photos

↗

Operational Description

↗
↗

RF Exposure Info

↗
↗

Test Report

↗
↗

Test Setup Photos

↗

Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

SiFLEX01 TRANSCEIVER MODULE DATASHEET The information in this document is subject to change without notice. 330-0026-R0.4 Copyright © 2010-2012 LS Research, LLC Page 1 of 23 Integrated Transceiver Modules (900 MHz) Development Kit Available FEATURES  250mW output power  Long range  Up to 500 kBaud RF data rate  128 bit AES encryption available  Miniature footprint: 0.9” x 1.63”  Multiple antenna options  Certifiable for FCC and IC acceptance  MSP430 based CPU  Low power operation  RoHS compliant  Streamlined development with LSR design services.  License options available to purchase design or integrate design. APPLICATIONS  Security  Lighting Control  HVAC Control  Sensor Networks  Medical  Industrial Automation DESCRIPTION The SiFLEX01 module is a high performance 900MHz radio based on the Texas Instruments CC430 combined with the CC1190 front-end in a cost effective footprint. Need to get to market quickly? Not an expert in frequency hopping? Need a custom antenna? Would you like to own the design? Would you like a custom design? Not quite sure what you need? Do you need help with your host board? LS Research Design Services will be happy to develop custom hardware or software, integrate the design, or license the design so you can manufacture yourself. Contact us at [email protected] or call us at 262-375-4400. SiFLEX01 TRANSCEIVER MODULE DATASHEET The information in this document is subject to change without notice. 330-0026-R0.4 Copyright © 2010-2012 LS Research, LLC Page 2 of 23 MODULE ACCESSORIES Order Number Description 001-0002 900 MHz Dipole Antenna with Reverse Polarity SMA Connector 080-0001 U.FL to Reverse Polarity SMA Bulkhead Cable 105mm SiFLEX01 TRANSCEIVER MODULE DATASHEET The information in this document is subject to change without notice. 330-0026-R0.4 Copyright © 2010-2012 LS Research, LLC Page 3 of 23 BLOCK DIAGRAM C C 4 3 0 S O C M S P 4 3 0 M i c r o c o n t r o l l e r A n d 9 0 0 M H z R a d i o T r a n s c e i v e r C C 1 1 9 0 ( P A / L N A ) A n a l o g J T A G T M R / P W M 3 2 , 7 6 8 H z 2 6 M H z L P F G P I O S e r i a l I / O Figure 1 SiFLEX01 Module Block Diagram – High-Level SiFLEX01 TRANSCEIVER MODULE DATASHEET The information in this document is subject to change without notice. 330-0026-R0.4 Copyright © 2010-2012 LS Research, LLC Page 4 of 23 TABLE OF CONTENTS FEATURES .......................................................................................................................... 1 APPLICATIONS ................................................................................................................... 1 DESCRIPTION ..................................................................................................................... 1 MODULE ACCESSORIES ................................................................................................... 2 BLOCK DIAGRAM ............................................................................................................... 3 MODULE PINOUT AND PIN DESCRIPTIONS .................................................................... 5 MODULE OVERVIEW .......................................................................................................... 9 Microcontroller .......................................................................................................................................... 10 Radio .......................................................................................................................................................... 11 RF Power Amplifier ................................................................................................................................... 11 Antenna Options ....................................................................................................................................... 12 DEVELOPMENT TOOLS ................................................................................................... 13 TI MSP-FET430UIF .................................................................................................................................... 13 IAR Embedded Workbench for MSP430 ................................................................................................. 13 ELECTRICAL SPECIFICATIONS ...................................................................................... 14 Absolute Maximum Ratings ..................................................................................................................... 14 Recommended Operating Conditions .................................................................................................... 14 General Characteristics ............................................................................................................................ 14 AGENCY CERTIFICATIONS ............................................................................................. 16 AGENCY STATEMENTS ................................................................................................... 16 MECHANICAL DATA......................................................................................................... 21 PCB Footprint ............................................................................................................................................ 21 General Module Dimensions .................................................................................................................... 22 CONTACTING LS RESEARCH ......................................................................................... 23 SiFLEX01 TRANSCEIVER MODULE DATASHEET The information in this document is subject to change without notice. 330-0026-R0.4 Copyright © 2010-2012 LS Research, LLC Page 5 of 23 MODULE PINOUT AND PIN DESCRIPTIONS MCU# GND 1 Texas Instruments CC430F6137 69 GND MCU# - GND 2 68 GND - - GND 3 67 GND - - NC 4 66 NC - - NC 5 65 NC - - NC 6 64 NC - - NC 7 63 NC - - NC 8 62 NC - 48 JTAG TMS 9 61 P1.3 …

Text truncated - open the document above for the full version.

Block Diagram

BLOCK DIAGRAM / THEORY OF OPERATION SIFLEX01 MODULE Page 4 of 5 2 Block Diagram The block diagram for the SiFLEX01 Radio Module is presented below. CC430 SOC MSP430 Microcontroller And 900 MHz Radio Transceiver CC1190 (PA/LNA) Analog JTAG TMR/PWM 32,768 Hz26 MHz LPF GPIO Serial I/O Figure 1 - SiFLEX01 Block Diagram

Cover Letter(s)

W66 N220 Commerce Court, Cedarburg, Wisconsin 53012-2636 BUS 262.375.4400 FAX 262.375.4248 www.lsr.com Request for Confidentiality Date: August 20, 2012 Subject: Confidentiality Request for: FCC ID: __TFB-SISEN1 IC ID: ___5969A-SISEN1 Pursuant to FCC 47 CRF 0.457(d) and 0.459 and IC RSP-100, Section 10, the applicant requests that a part of the subject FCC application be held confidential. Type of Confidentiality Requested Exhibit Short Term Permanent Block Diagrams Short Term External Photos Short Term Permanent Internal Photos Short Term Permanent Operation Description/Theory of Operation Short Term Permanent Parts List & Placement/BOM Short Term Permanent Tune-Up Procedure Short Term Permanent Schematics Short Term Test Setup Photos Short Term Permanent User’s Manual LS Research has spent substantial effort in developing this product and it is one of the first of its kind in industry. Having the subject information easily available to "competition" would negate the advantage they have achieved by developing this product. Not protecting the details of the design will result in financial hardship. Permanent Confidentiality: The applicant requests the exhibits listed above as permanently confidential be permanently withheld from public review due to materials that contain trade secrets and proprietary information not customarily released to the public. NOTE for Industry Canada Applications: The applicant understands that until such time that IC distinguishes between Short Term and Permanent Confidentiality, either type of marked exhibit above will simply be marked Confidential when submitted to IC. Sincerely, By: __William Steinike / President_____ (Signature) (Print name/Title)

External Photos

EXTERNAL PHOTOS Company Name LS Research, LLC Model # SiFLEX01 FCC ID # TFB‐SISEN1 IC # 5969A‐SISEN1 Page 1 of 5 EXTERNAL PHOTOS Company Name LS Research, LLC Model # SiFLEX01 FCC ID # TFB‐SISEN1 IC # 5969A‐SISEN1 Page 2 of 5 Module with LSR antenna pictures EXTERNAL PHOTOS Company Name LS Research, LLC Model # SiFLEX01 FCC ID # TFB‐SISEN1 IC # 5969A‐SISEN1 Page 3 of 5 EXTERNAL PHOTOS Company Name LS Research, LLC Model # SiFLEX01 FCC ID # TFB‐SISEN1 IC # 5969A‐SISEN1 Page 4 of 5 Module with Antenna Factor Antenna Pictures EXTERNAL PHOTOS Company Name LS Research, LLC Model # SiFLEX01 FCC ID # TFB‐SISEN1 IC # 5969A‐SISEN1 Page 5 of 5

Internal Photos

INTERNAL PHOTOS Company Name LS Research, LLC Model # SiFLEX01 FCC ID # TFB‐SISEN1 IC # 5969A‐SISEN1 Page 1 of 1

Operational Description

Page 1 of 5 SIFLEX01 TRANSCEIVER MODULE Block Diagram / Theory of Operation - Confidential Last updated Monday, January 30 th , 2012 BLOCK DIAGRAM / THEORY OF OPERATION SIFLEX01 MODULE Page 2 of 5 Table of Contents 1 Introduction ................................................................................................................... 3 1.1 Purpose & Scope ....................................................................................................................... 3 1.2 Revision History ......................................................................................................................... 3 2 Block Diagram ............................................................................................................... 4 3 Theory of Operation ...................................................................................................... 5 BLOCK DIAGRAM / THEORY OF OPERATION SIFLEX01 MODULE Page 3 of 5 1 Introduction 1.1 Purpose & Scope The purpose of this document is to provide a description of the SiFLEX01 radio module’s Block Diagram and Theory of Operation. 1.2 Revision History Date Change Description Revision 1/30/2012 Initial release. 1.0 Table 1 Revision History BLOCK DIAGRAM / THEORY OF OPERATION SIFLEX01 MODULE Page 4 of 5 2 Block Diagram The block diagram for the SiFLEX01 Radio Module is presented below. CC430 SOC MSP430 Microcontroller And 900 MHz Radio Transceiver CC1190 (PA/LNA) Analog JTAG TMR/PWM 32,768 Hz26 MHz LPF GPIO Serial I/O Figure 1 - SiFLEX01 Block Diagram BLOCK DIAGRAM / THEORY OF OPERATION SIFLEX01 MODULE Page 5 of 5 3 Theory of Operation The SiFLEX01 Module is a radio module that implements a sub-1 GHz Texas Instruments CC1101 radio transceiver and a Texas Instruments MSP430 microcontroller into a CC430 SOC (System on Chip). The radio transceiver is supported by a FEM (Front End Module), which implements a Power Amplifier (PA) and Low-Noise Amplifier (LNA). A low pass filter is included on the common path between the FEM and the antenna terminal. All of the radio functions use an on-module 26 MHz crystal oscillator as the frequency reference. An additional on-module 32 kHz crystal oscillator is used for low-power operation of the on-chip MSP430 microcontroller. The radio features a low-IF receiver. The received RF signal is amplified by a LNA and down-converted in quadrature to the intermediate frequency (IF). The I and Q signals are digitized at the IF. Automatic gain control (AGC), fine channel filtering, and demodulation bit/packet synchronization are performed digitally. The transmitter part is based on direct synthesis of the RF frequency. The frequency synthesizer includes a completely on-chip LC VCO and a 90 degrees phase shifter for generating the I and Q LO signals to the down-conversion mixers in receive mode. The 26 MHz crystal oscillator generates the reference frequency for the synthesizer, as well as clocks for the ADC and the digital part. A digital baseband includes support for channel configuration, packet handling, and data buffering. A memory mapped register interface is used for data access, configuration, and status request by the microcontroller. Typical VSWR ™ ANT-916-CW-HWR-xxx DATA SHEET Product DimensionsDescription Features Electrical Specifications Ordering Information HWR Series 1/2-wave center-fed dipole antennas deliver outstanding performance in a rugged and cosmetically attractive package. The articulating base allows the antenna to tilt 90 degrees and rotate 360 degrees. The antenna's internal counterpoise eliminates external ground plane dependence and maximizes performance. HWR Series antennas attach via a standard SMA or Part 15 compliant RP-SMA connector. Custom colors and connectors are available for volume OEM customers. 5.59” (142.0) 1.02” (26.0) 0.32” (8.2) Electrical specifications and plots measured on 4.00” x 4.00” reference ground plane 0.39” (10.0) 4.57” (116.0) Polar Plot & Gain Information Antenna Factor159 Ort Lane Merlin, OR 97532 www.antennafactor.com 541-956-0931 (phone) 541-471-6251 (fax) Rev 07-26-10 •Internal counterpoise •Low cost •Tilts and rotates •Omni-directional pattern •Outstanding VSWR •Rugged & damage-resistant •Standard SMA or Part 15 compliant RP-SMA connector •Custom colors and terminations for volume OEMs •Internal O-ring seal on connector •Center Freq.916MHz •Recmd. Freq. Range 900-930MHz •Wavelength1/2-wave •VSWR<2.0 typ. at center •Impedance50 ohms •ConnectorRP-SMA or SMA •ANT-916-CW-HWR-RPS (with RP-SMA connector) •ANT-916-CW-HWR-SMA (with SMA connector) CENTER 916.000MHz SPAN 200.000MHz S11 SWR 1.282 ModFLEX Accessores – 900 MHz Dipole Antenna DATASHEET 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. 330-0017-R1.1 Copyright © 2009-2010 LS Research, LLC Page 1 of 4 902 MHz – 928 MHz Dipole 2dBi Antenna for Reverse Polarity SMA ORDERING INFORMATION Order Number Description 001-0002 900 MHz dipole antenna for reverse polarity SMA connector. SPECIFICATIONS Specification Value Gain +2 dBi Impedance 50 ohms Type Dipole Polarization Linear Vertical VSWR ≤2.5:1 Frequency ~902-928 MHz centered at 915 MHz Weight 13g Size 210×10 mm Antenna Color Black ModFLEX Accessores – 900 MHz Dipole Antenna DATASHEET 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. 330-0017-R1.1 Copyright © 2009-2010 LS Research, LLC Page 2 of 4 PHYSICAL DIMENSIONS (MM) ModFLEX Accessores – 900 MHz Dipole Antenna DATASHEET 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. 330-0017-R1.1 Copyright © 2009-2010 LS Research, LLC Page 3 of 4 ANTENNA MEASUREMENTS Figure 1 Extended Position, Vertical Figure 2 Folded Position, Vertical -30 -25 -20 -15 -10 -5 0 5 30 210 60 240 90 270 120 300 150 330…

Text truncated - open the document above for the full version.

Operational Description

Page 1 of 5 Page 1 of 5 SIFLEX01 TRANSCEIVER MODULE Block Diagram / Theory of Operation - Confidential Last updated October 23 rd , 2012 BLOCK DIAGRAM / THEORY OF OPERATION SIFLEX01 MODULE Page 2 of 5 Page 2 of 5 Table of Contents 1 Introduction ................................................................................................................... 3 1.1 Purpose & Scope ....................................................................................................................... 3 1.2 Revision History ......................................................................................................................... 3 2 Block Diagram ............................................................................................................... 4 3 Theory of Operation ...................................................................................................... 5 BLOCK DIAGRAM / THEORY OF OPERATION SIFLEX01 MODULE Page 3 of 5 Page 3 of 5 1 Introduction 1.1 Purpose & Scope The purpose of this document is to provide a description of the SiFLEX01 radio module’s Block Diagram and Theory of Operation. 1.2 Revision History Date Change Description Revision 1/30/2012 Initial release. 1.0 10/23/2012 Added details on the CC1190 FEM. 1.1 Table 1 Revision History BLOCK DIAGRAM / THEORY OF OPERATION SIFLEX01 MODULE Page 4 of 5 Page 4 of 5 2 Block Diagram The block diagram for the SiFLEX01 Radio Module is presented below. CC430 SOC MSP430 Microcontroller And 900 MHz Radio Transceiver CC1190 (PA/LNA) Analog JTAG TMR/PWM 32,768 Hz26 MHz LPF GPIO Serial I/O Figure 1 - SiFLEX01 Block Diagram BLOCK DIAGRAM / THEORY OF OPERATION SIFLEX01 MODULE Page 5 of 5 Page 5 of 5 3 Theory of Operation The SiFLEX01 Module is a radio module that implements a sub-1 GHz Texas Instruments CC1101 radio transceiver and a Texas Instruments MSP430 microcontroller into a CC430 SOC (System on Chip). The radio transceiver is supported by a Texas Instruments CC1190 FEM (Front End Module). The CC1190 is a range extender that integrates a Power Amplifier (PA), a Low Noise Amplifier (LNA), switches, and RF matching in a single package. The CC1190 is core component on the module and is controlled via control signals from the CC430. A low pass filter is included on the common path between the FEM and the antenna terminal. All of the radio functions use an on-module 26 MHz crystal oscillator as the frequency reference. An additional on-module 32 kHz crystal oscillator is used for low-power operation of the on-chip MSP430 microcontroller. The radio features a low-IF receiver. The received RF signal is amplified by a LNA and down-converted in quadrature to the intermediate frequency (IF). The I and Q signals are digitized at the IF. Automatic gain control (AGC), fine channel filtering, and demodulation bit/packet synchronization are performed digitally. The transmitter part is based on direct synthesis of the RF frequency. The frequency synthesizer includes a completely on-chip LC VCO and a 90 degrees phase shifter for generating the I and Q LO signals to the down-conversion mixers in receive mode. The 26 MHz crystal oscillator generates the reference frequency for the synthesizer, as well as clocks for the ADC and the digital part. A digital baseband includes support for channel configuration, packet handling, and data buffering. A memory mapped register interface is used for data access, configuration, and status request by the microcontroller. Typical VSWR ™ ANT-916-CW-HWR-xxx DATA SHEET Product DimensionsDescription Features Electrical Specifications Ordering Information HWR Series 1/2-wave center-fed dipole antennas deliver outstanding performance in a rugged and cosmetically attractive package. The articulating base allows the antenna to tilt 90 degrees and rotate 360 degrees. The antenna's internal counterpoise eliminates external ground plane dependence and maximizes performance. HWR Series antennas attach via a standard SMA or Part 15 compliant RP-SMA connector. Custom colors and connectors are available for volume OEM customers. 5.59” (142.0) 1.02” (26.0) 0.32” (8.2) Electrical specifications and plots measured on 4.00” x 4.00” reference ground plane 0.39” (10.0) 4.57” (116.0) Polar Plot & Gain Information Antenna Factor159 Ort Lane Merlin, OR 97532 www.antennafactor.com 541-956-0931 (phone) 541-471-6251 (fax) Rev 07-26-10 •Internal counterpoise •Low cost •Tilts and rotates •Omni-directional pattern •Outstanding VSWR •Rugged & damage-resistant •Standard SMA or Part 15 compliant RP-SMA connector •Custom colors and terminations for volume OEMs •Internal O-ring seal on connector •Center Freq.916MHz •Recmd. Freq. Range 900-930MHz •Wavelength1/2-wave •VSWR<2.0 typ. at center •Impedance50 ohms •ConnectorRP-SMA or SMA •ANT-916-CW-HWR-RPS (with RP-SMA connector) •ANT-916-CW-HWR-SMA (with SMA connector) CENTER 916.000MHz SPAN 200.000MHz S11 SWR 1.282 ModFLEX Accessores – 900 MHz Dipole Antenna DATASHEET 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. 330-0017-R1.1 Copyright © 2009-2010 LS Research, LLC Page 1 of 4 902 MHz – 928 MHz Dipole 2dBi Antenna for Reverse Polarity SMA ORDERING INFORMATION Order Number Description 001-0002 900 MHz dipole antenna for reverse polarity SMA connector. SPECIFICATIONS Specification Value Gain +2 dBi Impedance 50 ohms Type Dipole Polarization Linear Vertical VSWR ≤2.5:1 Frequency ~902-928 MHz centered at 915 MHz Weight 13g Size 210×10 mm Antenna Color Black ModFLEX Accessores – 900 MHz Dipole Antenna DATASHEET 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. 330-0017-R1.1 Copyright © 2009-2010 LS Research, LLC Page 2 of 4 PHYSICAL DIMENSIONS (MM) ModFLEX Accessores – 900 MHz Dipole Antenna DATASHEET The information in this document is subject to change without notice. Conf…

Text truncated - open the document above for the full version.

Test Report

W66 N220 Commerce Court ● Cedarburg, WI 53012 ● USA Phone: 262.375.4400 ● Fax: 262.375.4248 www.lsr.com TEST REPORT # 311256 A LSR Job #: C-1283 Compliance Testing of: 900 MHz Transceiver with Dipole Antenna Test Date(s): October 26, November 2, 8, 10, 2011, October 4, 2012 Prepared For: LS Research, LLC W66 N220 Commerce Ct Cedarburg, WI 53012 In accordance with: Federal Communications Commission (FCC) Part 15, Subpart C, Section 15.247 Industry Canada (IC) RSS 210 Annex 8 Frequency Hopping Spread Spectrum (FHSS) Operating in the Frequency Band 902-928 MHz This Test Report is issued under the Authority of: Signature: Date: 10/17/12 Test Report Reviewed by: Adam Alger, EMC Engineer Signature: Date: 10/16/12 Tested by: Peter Feilen, EMC Engineer. Signature: Date: 10/4/12 This Test Report may not be reproduced, except in full, without written approval of LS Research, LLC. Prepared For: LS Research, LLC EUT: SiFLEX01 LS Research, LLC Report # 311256 A Model #: SiFLEX01 LSR Job #: C-1283 Serial #: Page 2 of 45 TABLE OF CONTENTS EXHIBIT 1. INTRODUCTION ............................................................................................................. 4 1.1 - Scope .................................................................................................................................. 4 1.2 – Normative References ....................................................................................................... 4 1.3 - LS Research, LLC Test Facility .......................................................................................... 5 1.4 – Location of Testing ............................................................................................................. 5 1.5 – Test Equipment Utilized ..................................................................................................... 5 EXHIBIT 2. PERFORMANCE ASSESSMENT ................................................................................... 6 2.1 – Client Information ............................................................................................................... 6 2.2 - Equipment Under Test (EUT) Information .......................................................................... 6 2.3 - Associated Antenna Description ......................................................................................... 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 .................................................................................................... 12 5.4 - Test Results ...................................................................................................................... 12 5.5 - Calculation of Radiated Emissions Limits ......................................................................... 13 5.6 - Radiated Emissions Test Data Chart ................................................................................ 14 5.7 - Screen Captures - Radiated Emissions Test ................................................................... 16 5.9 - Receive Mode Testing ...................................................................................................... 19 5.10 - Screen Captures - Radiated Emissions Testing – Receive Mode .................................. 20 EXHIBIT 6. CONDUCTED EMISSIONS TEST, AC POWER LINE .................................................. 22 6.1 - Test Setup ......................................................................................................................... 22 6.2 - Test Procedure ................................................................................................................. 22 6.3 - Test Equipment Utilized .................................................................................................... 22 6.4 - Test Results ...................................................................................................................... 22 Prepared For: LS Research, LLC EUT: SiFLEX01 LS Research, LLC Report # 311256 A Model #: SiFLEX01 LSR Job #: C-1283 Serial #: Page 3 of 45 6.5 - FCC Limits of Conducted Emissions at the AC Mains Ports ............................................ 23 6.6 – Conducted Emissions Test Data Chart ............................................................................ 23 6.7 - Screen Captures – Conducted Emissions Test ................................................................ 24 EXHIBIT 7. OCCUPIED BANDWIDTH ............................................................................................. 25 7.1 - Limits ..............................................................................................................…

Text truncated - open the document above for the full version.

Test Report

W66 N220 Commerce Court ● Cedarburg, WI 53012 ● USA Phone: 262.375.4400 ● Fax: 262.375.4248 www.lsr.com TEST REPORT # 311256 B LSR Job #: C-1283 Compliance Testing of: 900 MHz Transceiver with Dipole Antenna Test Date(s): September 23, 27, 28, October 4, November 8, 10, 2011, October 4, 2012 Prepared For: LS Research, LLC W66 N220 Commerce Ct Cedarburg, WI 53012 In accordance with: Federal Communications Commission (FCC) Part 15, Subpart C, Section 15.247 Industry Canada (IC) RSS 210 Annex 8 Frequency Hopping Spread Spectrum (FHSS) Operating in the Frequency Band 902-928 MHz This Test Report is issued under the Authority of: Signature: Date: 10/17/12 Test Report Reviewed by: Adam Alger, EMC Engineer Signature: Date: 10/16/12 Tested by: Peter Feilen, EMC Engineer. Signature: Date: 10/4/12 This Test Report may not be reproduced, except in full, without written approval of LS Research, LLC. Prepared For: LS Research, LLC EUT: SiFLEX01 LS Research, LLC Report # 311256 B Model #: SiFLEX01 LSR Job #: C-1283 Serial#: Page 2 of 47 TABLE OF CONTENTS EXHIBIT 1. INTRODUCTION ............................................................................................................. 4 1.1 - Scope .................................................................................................................................. 4 1.2 – Normative References ....................................................................................................... 4 1.3 - LS Research, LLC Test Facility .......................................................................................... 5 1.4 – Location of Testing ............................................................................................................. 5 1.5 – Test Equipment Utilized ..................................................................................................... 5 EXHIBIT 2. PERFORMANCE ASSESSMENT ................................................................................... 6 2.1 – Client Information ............................................................................................................... 6 2.2 - Equipment Under Test (EUT) Information .......................................................................... 6 2.3 - Associated Antenna Description ......................................................................................... 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 .................................. 10 3.4 - Deviations & Exclusions From Test Specifications ........................................................... 10 EXHIBIT 4. DE…

Text truncated - open the document above for the full version.

Contact Information

Applicant

Brian Petted(Technology Leader)
[email protected]12624214974Fax: 262-375-4248

Technical Contact

LS Research LLCWilliam Steinike
[email protected]2623754400

W66N220 Commerce Court · Cedarburg, Wisconsin · United States

Test Firm

LS Research, LLCRyan Urness
[email protected]262-375-4400Fax: 262 375 4248

Technical Specifications

#Rule PartsFrequency RangePower Output
115C903 MHz - 926.6 MHz282.00 mW
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Power Output listed is conducted. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and not be co-located with any other transmitters except in accordance with FCC multi-transmitter product procedures. End-users and installers must be provided with transmitter operating conditions for satisfying RF exposure compliance.

Other Applications from Laird Connectivity LLC

SaBLE-x - FCC ID TFB-1002 - Laird Connectivity LLC
TFB-1002

SaBLE-x

May 14, 2015

Equipment Class

DTS - Digital Transmission System
TiWi-C-W Module - FCC ID TFB-1001 - Laird Connectivity LLC
TFB-1001

TiWi-C-W Module

May 04, 2015

Equipment Class

DTS - Digital Transmission System
TiWi-uB1 - FCC ID TFB-BT2 - Laird Connectivity LLC
TFB-BT2

TiWi-uB1

Sep 02, 2013

Equipment Class

DTS - Digital Transmission System
FreeStar Tranceiver Module - FCC ID TFB-FREESTAR3 - Laird Connectivity LLC
TFB-FREESTAR3

FreeStar Tranceiver Module

Dec 10, 2012

Equipment Class

DTS - Digital Transmission System
TiWi-uB2 Bluetooth Module - FCC ID TFB-BT1 - Laird Connectivity LLC
TFB-BT1

TiWi-uB2 Bluetooth Module

Nov 15, 2012

Equipment Class

DTS - Digital Transmission System