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-TIWISL01

TFB-TIWISL01TiWi-SL

Laird Connectivity LLC
TiWi-SL - FCC ID TFB-TIWISL01 - Laird Connectivity LLC
Click to zoom

Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Dec 11, 2011
Application Purpose
Original Equipment
Date of Application
Dec 11, 2011
Equipment Note
TiWi-SL
Frequency Range
2412.00000000 - 2462.00000000
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

TiWi-SL MODULE 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. 330-0085-R0.4 Copyright © 2011 LS Research, LLC Page 1 of 36 Integrated 802.11 b/g WLAN Module FEATURES • IEEE 802.11 b/g compliant. • Typical WLAN Transmit Power: o 20.0 dBm, 11 Mbps, CCK (b) o 14.5 dBm, 54 Mbps, OFDM (g) • Typical WLAN Sensitivity: o - 89 dBm, 8% PER,11 Mbps o -76 dBm, 10% PER, 54 Mbps • Miniature footprint: 14 mm x 21 mm • Low height profile: 2.3 mm • Embedded network stack • Wireless Security WEP, WPA Personal, WPA2 Personal • Terminal for PCB/Chip antenna feeds • Compact design based on Texas Instruments CC3000 Transceiver • SPI host interface • Simple integration with microcontrollers and microprocessor • Low power operation mode • Worldwide acceptance: FCC (USA), IC (Canada), and ETSI (Europe) • RoHS compliant • Streamlined development with LSR design services. APPLICATIONS • HVAC Control , Smart Energy • Sensor Networks • Medical DESCRIPTION The TiWi-SL is a high performance 2.4 GHz WLAN module that contains an IP networking stacking in a cost effective, pre-certified footprint. The module realizes the necessary PHY, MAC, and NETWORK layers to support WLAN applications in conjunction with a host processor over a SPI interface. Need to get to market quickly? Not an expert in 802.11. 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. ORDERING INFORMATION Order Number Description 450-0067 TiWi-SL Module Table 1: Orderable TiWi-SL Model Numbers TiWi-SL MODULE 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. 330-0085-R0.4 Copyright © 2011 LS Research, LLC Page 2 of 36 MODULE ACCESSORIES Order Number Description 001-0001 2.4 GHz Dipole Antenna with Reverse Polarity SMA Connector 080-0001 u.fl to Reverse Polarity SMA Bulkhead Cable 105mm TiWi-SL MODULE 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. 330-0085-R0.4 Copyright © 2011 LS Research, LLC Page 3 of 36 BLOCK DIAGRAM Figure 1: TiWi-SL Module Block Diagram – Top-Level TiWi-SL MODULE 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. 330-0085-R0.4 Copyright © 2011 LS Research, LLC Page 4 of 36 FUNCTIONAL BLOCK FEATURES WLAN Features • WLAN MAC Baseband Processor and RF transceiver which is IEEE802.11b/g compliant • Accepts 26MHz reference clock Input • IEEE Std 802.11d,i PICS compliant • Supports serial debug interface • Supports Serial Peripheral Interface (SPI) Host Interface • Medium-Access Controller (MAC) o Embedded ARM™ Central Processing Unit (CPU) o Hardware-Based Encryption/Decryption Using 64-, 128-Bit WEP, TKIP or AES Keys, o Supports requirements for Wireless Fidelity (Wi-Fi) Protected Access (WPA and WPA2.0) and IEEE o Std 802.11i [Includes Hardware-Accelerated Advanced-Encryption Standard (AES)] • Baseband Processor • 2.4GHz Radio o Digital Radio Processor (DRP) implementation o Internal LNA o Supports : IEEE Std 802.11b, 802.11g, 802.11b/g Network Stack Supported Protocols • Transport layer: o TCP o UDP • Network layer: o IPv4 o Ping o DHCP o DNS Client • Link layer: o ARP Wireless Security System Features • Supported modes: o Open (no security) o WEP o WPA-personal o WPA2-personal • Supported encryption types: o WEP o TKIP o AES o Open TiWi-SL MODULE 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. 330-0085-R0.4 Copyright © 2011 LS Research, LLC Page 5 of 36 TABLE OF CONTENTS FEATURES .......................................................................................................................... 1 APPLICATIONS ................................................................................................................... 1 DESCRIPTION ..................................................................................................................... 1 ORDERING INFORMATION ................................................................................................ 1 MODULE ACCESSORIES ................................................................................................... 2 BLOCK DIAGRAM ............................................................................................................... 3 FUNCTIONAL BLOCK FEATURES .................................................................................... 4 WLAN Features ........................................................................................................................................... 4 Network Stack Supported Protocols ......................................................................................................... 4 Wireless Security System Features .......................................................................................................... 4 TIWI-SL MODULE FOOTPRINT AND PIN DEFINITIONS ................................................... 7 PIN DESCRIPTIONS ............................................................................................................ 8 ELECTRICAL SPECIFICATIONS ...................................................................................... 10 Absolute Maximum Ratings ..................................................................................................................... 10 Recommended Operating Co…

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

Block Diagram

TiWi-SL BLOCK DIAGRAM

External Photos

EXTERNAL PHOTOS Company Name LS Research, LLC Model # TiWi‐SL FCC ID # TFB‐TIWISL01 IC # 5969A‐TIWISL01 Page 1 of 4 EXTERNAL PHOTOS Company Name LS Research, LLC Model # TiWi‐SL FCC ID # TFB‐TIWISL01 IC # 5969A‐TIWISL01 Page 2 of 4 EXTERNAL PHOTOS Company Name LS Research, LLC Model # TiWi‐SL FCC ID # TFB‐TIWISL01 IC # 5969A‐TIWISL01 Page 3 of 4 EXTERNAL PHOTOS Company Name LS Research, LLC Model # TiWi‐SL FCC ID # TFB‐TIWISL01 IC # 5969A‐TIWISL01 Page 4 of 4

ID Label/Location Info

LabelPHOTOS Company Name LS Research, LLC Model # TiWi‐SL FCC ID # TFB‐TIWISL01 IC # 5969A‐TIWISL01 Page 1 of 1

Internal Photos

INTERNAL PHOTOS Company Name LS Research, LLC Model # TiWi‐SL FCC ID # TFB‐TIWISL01 IC # 5969A‐TIWISL01 Page 1 of 2 INTERNAL PHOTOS Company Name LS Research, LLC Model # TiWi‐SL FCC ID # TFB‐TIWISL01 IC # 5969A‐TIWISL01 Page 2 of 2

Operational Description

TiWi-SL THEORY OF OPERATION The TiWi-SL Module is a radio module that implements an 802.11 b/g WLAN (Wireless Local Area Network) transceiver, on a Texas Instruments CC3000 SOIC (System on Integrated Circuit). The WLAN transceiver is supported by a FEM (Front End Module), which implements the Power Amplifier Section (PA). All of the radio functions use an on-module 26 MHz Temperature Compensated Crystal Oscillator (TCXO) as the station frequency reference. The radio is supported by an on-chip ARM Cortex processor. An additional on-module 32 kHz oscillator is used for low-power operation of the on-chip ARM processor. The data source/sink and command interface for the WLAN transceiver is through a 5-wire SPI (Serial Peripheral Interface). The WLAN transceiver section is based on a direct-conversion vector (I-Q) transmitter and receiver architecture. The local oscillator is generated at four times the carrier frequency, phase-locked, and divided by four for the quadrature LO injections. The transmitter signal is routed to the FEM and amplified by the PA section. The WLAN receive section is fully realized in the SOIC and the FEM only provides a passive transmission path through the device. A bandpass filter is included on the common path between the FEM and the antenna terminal. The radio transceiver and station reference (26 MHz TCXO) power supplies are provided by on-module voltage regulators. T C 3 O S The informatio Confirm the d 330-0016-R1. 2.4 GHz ORDERIN SPECIFIC on in this doc ata is current .5 z – 2.5 G NG INFOR Order Num 001-0001 CATIONS Specificati Gain Impedanc Type Polarizatio VSWR Frequenc Weight Size Antenna Co ument is subj t by download Cop GHz Dipo RMATION ber 1 2. 4 on ce on cy olor M ject to change ding the latest pyright © 2009 ole 2dBi N 4 GHz dipole ModFLEX A e without noti t revision from 9-2011 LS Re i Antenn D antenna for r 50 o Lin ≤2.5 24 1 Accessorie ce. m www.lsr.com esearch, LLC na for Re Description reverse polari Value +2 dBi ohms, Nomina Dipole near Vertical :1, Maximum 00-2500MHz 13g 105×10 mm Black es – 2.4 GH m. everse P ity SMA conn al m Hz Dipole A DATAS Pa Polarity nector. Antenna HEET age 1 of 7 SMA T C 3 P The informatio Confirm the d 330-0016-R1. PHYSICA on in this doc ata is current .5 AL DIMEN ument is subj t by download Cop NSIONS (M M ject to change ding the latest pyright © 2009 MM) ModFLEX A e without noti t revision from 9-2011 LS Re Accessorie ce. m www.lsr.com esearch, LLC es – 2.4 GH m. Hz Dipole A DATAS Pa Antenna HEET age 2 of 7 T C 3 T The informatio Confirm the d 330-0016-R1. TYPICAL on in this doc ata is current .5 ANTENN Figu Fig ument is subj t by download Cop NA REFLE ure 1 Reflecti gure 2 Reflec M ject to change ding the latest pyright © 2009 ECTION P ion Paramete ction Parame ModFLEX A e without noti t revision from 9-2011 LS Re PERFORM ers for Exten eters for Fold Accessorie ce. m www.lsr.com esearch, LLC MANCE nded Configu ded Configur es – 2.4 GH m. uration (S11) ration (S11) Hz Dipole A DATAS Pa ) Antenna HEET age 3 of 7 T C 3 T L L The informatio Confirm the d 330-0016-R1. TYPICAL LSR ANT LSR ANT on in this doc ata is current .5 ANTENN TENNA ST TENNA ST ument is subj t by download Cop NA RADIA TRAIGHT 180 ____Vertical Po ------- Horizontal TRAIGHT 180 ____Vertical Po ------- Horizontal M ject to change ding the latest pyright © 2009 ATION PE T 2405 MH 210 240 120 150 0 olarization Gain (d Polarization Gai n T 2440 MH 210 240 120 150 0 olarization Gain (d Polarization Gai n ModFLEX A e without noti t revision from 9-2011 LS Re ERFORMA Hz -30 -25 -20 -15 -10 -5 0 5 90 270 dBi) min: -0 n (dBi) min: -29 Hz -30 -25 -20 -15 -10 -5 0 5 90 270 dBi) min: -1 n (dBi) min: -29 Accessorie ce. m www.lsr.com esearch, LLC ANCE 30 60 300 330 0 .4 max: +1.8 9.7 max: -11.2 30 60 300 330 0 .1 max: +2.6 9.8 max: -11.2 es – 2.4 GH m. avg: +0.7 2 avg: -17.7 avg: +0.8 2 avg: -17.3 Hz Dipole A DATAS Pa Antenna HEET age 4 of 7 T C 3 L L The informatio Confirm the d 330-0016-R1. LSR ANT LSR ANT on in this doc ata is current .5 TENNA ST TENNA BE ument is subj t by download Cop TRAIGHT ENT 2405 180 ____Vertical Po ------- Horizontal 18 0 ____Vertical Po ------- Horizonta M ject to change ding the latest pyright © 2009 T 2480 MH 5 MHz 210 240 120 150 0 olarization Gain (d Polarization Gai n 210 240 120 150 0 olarization Gain (d l Polarization G a ModFLEX A e without noti t revision from 9-2011 LS Re Hz -30 -25 -20 -15 -10 -5 0 5 90 270 dBi) min: -0 n (dBi) min: -26 -30 -25 -20 -15 -10 -5 0 5 90 270 dBi) min: -1 ain (dBi) min: -2 Accessorie ce. m www.lsr.com esearch, LLC 30 60 300 330 0 .9 max: +1.5 6.0 max: -11. 30 60 300 330 0 16.9 max: -8.0 26.2 max: -2.1 es – 2.4 GH m. avg: +0.3 1 avg: -17.7 0 avg: -11.9 1 avg: -8.6 Hz Dipole A DATAS Pa Antenna HEET age 5 of 7 T C 3 L L The informatio Confirm the d 330-0016-R1. LSR ANT LSR ANT on in this doc ata is current .5 TENNA BE TENNA BE ument is subj t by download Cop ENT 2440 ENT 2480 180 ____Vertical Po ------- Horizontal 18 0 ____Vertical Po ------- Horizontal M ject to change ding the latest pyright © 2009 0 MHz 0 MHz 210 240 120 150 0 olarization Gain (d Polarization Gai 210 240 120 150 0 olarization Gain (d Polarization Gai ModFLEX A e without noti t revision from 9-2011 LS Re -30 -25 -20 -15 -10 -5 0 5 90 270 dBi) min: -2 n (dBi) min: -2 2 -30 -25 -20 -15 -10 -5 0 5 90 270 dBi) min: -2 n (dBi) min: -2 4 Accessorie ce. m www.lsr.com esearch, LLC 30 60 300 330 0 6.2 max: -12. 2.8 max: +0.6 30 60 300 330 0 8.6 max: -12. 4.7 max: +1.4 es – 2.4 GH m. .7 avg: -17.5 6 avg: -7.1 .7 avg: -18.4 4 avg: -5.7 Hz Dipole A DATAS Pa Antenna HEET age 6 of 7 T C 3 C T p t C D I P D W I B r to u fo fo The informatio Confirm the d 330-0016-R1. CONTACT Headqua Website Technic a Sales Co The informatio products. No his documen t CONDITIONS DISCLAIMS NCLUDING, PARTICULAR DIRECT, IND WITHOUT LI NFORMATI O BEEN ADVIS respect to the o specificatio update the in for, and shall for use as com on in this doc ata is current .5 TING …

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

RF Exposure Info

Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Maximum peak output power at antenna input terminal:25.48 (dBm) Maximum peak output power at antenna input terminal:353.183 (mW) Antenna gain(typical):2 (dBi) Maximum antenna gain:1.585 (numeric) Prediction distance:20 (cm) Prediction frequency:2400 (MHz) MPE limit for uncontrolled exposure at prediction frequency:1 (mW/cm^2) Power density at prediction frequency:0.111360 (mW/cm^2) Maximum allowable antenna gain:11.5 (dBi) 20cm =9.5 dB Margin of Compliance at TiWi-SL 2 4R PG S  

Test Report

W66 N220 Commerce Court ● Cedarburg, WI 53012 Phone: 262.375.4400 ● Fax: 262.375.4248 www.lsr.com TEST REPORT #: 311291 LSR Job #: C-1311 Compliance Testing of: TiWi-SL Test Date(s): October 1 st – 21 st , 2011 Prepared For: LS Research W66 N220 Commerce Court Cedarburg, WI 53012 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: Shane Rismeyer, EMC Engineer Signature: Date: 11/23/11 Quality Assurance by: Peter Feilen, EMC Engineer Signature: Date: 11/21/11 Project Engineer: Shane Rismeyer, EMC Engineer Signature: Date: 11/14/11 This Test Report may not be reproduced, except in full, without written approval of LS Research, LLC. LS Research, LLC Page 2 of 62 Prepared For: LSR Model Number: TiWi-SL Report #: 311291 EUT: TiWi-SL Serial Number: N/A LSR Job #: C-1311 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 2.3 - 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 .................................................................................................... 11 5.4 - Test Results ...................................................................................................................... 11 5.5 - Calculation of Radiated Emissions Limits ......................................................................... 12 5.6 - Radiated Emissions Test Data Chart ................................................................................ 13 5.7 - Screen Captures - Radiated Emissions Test .................................................................... 18 5.8 - Receive Mode Testing ...................................................................................................... 22 5.9 - Screen Captures - Radiated Emissions Testing – Receive Mode .................................... 23 EXHIBIT 6. CONDUCTED EMISSIONS TEST, AC POWER LINE .................................................. 26 6.1 - Test Setup ......................................................................................................................... 26 6.2 - Test Procedure ................................................................................................................. 26 6.3 - Test Equipment Utilized .................................................................................................... 26 6.4 - Test Results ...................................................................................................................... 26 6.5 - FCC Limits of Conducted Emissions at the AC Mains Ports ............................................ 27 LS Research, LLC Page 3 of 62 Prepared For: LSR Model Number: TiWi-SL Report #: 311291 EUT: TiWi-SL Serial Number: N/A LSR Job #: C-1311 6.6 – Conducted Emissions Test Data Chart ............................................................................ 28 6.7 - Test Setup Photo(s) – Conducted Emissions Test ........................................................... 29 6.8 - Screen Captures – Conducted Emissions Test ................................................................ 29 EXHIBIT 7. OCCUPIED BANDWIDTH ............................................................................................. 32 7.1 - Limits ................................................................................................................................. 32 7.2 - Method of Measurements ................................................................................................. 32 7.3 - Test Equipment List…

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

Test Setup Photos

TEST SETUP PHOTOS Company Name LS Research, LLC Model # TiWi‐SL FCC ID # TFB‐TIWISL01 IC # 5969A‐TIWISL01 Page 1 of 7 Dipole Antenna TEST SETUP PHOTOS Company Name LS Research, LLC Model # TiWi‐SL FCC ID # TFB‐TIWISL01 IC # 5969A‐TIWISL01 Page 2 of 7 TEST SETUP PHOTOS Company Name LS Research, LLC Model # TiWi‐SL FCC ID # TFB‐TIWISL01 IC # 5969A‐TIWISL01 Page 3 of 7 TEST SETUP PHOTOS Company Name LS Research, LLC Model # TiWi‐SL FCC ID # TFB‐TIWISL01 IC # 5969A‐TIWISL01 Page 4 of 7 TEST SETUP PHOTOS Company Name LS Research, LLC Model # TiWi‐SL FCC ID # TFB‐TIWISL01 IC # 5969A‐TIWISL01 Page 5 of 7 Chip Antenna TEST SETUP PHOTOS Company Name LS Research, LLC Model # TiWi‐SL FCC ID # TFB‐TIWISL01 IC # 5969A‐TIWISL01 Page 6 of 7 TEST SETUP PHOTOS Company Name LS Research, LLC Model # TiWi‐SL FCC ID # TFB‐TIWISL01 IC # 5969A‐TIWISL01 Page 7 of 7

Contact Information

Applicant

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

Technical Contact

L S Research, LLCTom Smith
[email protected]262 375 4400

W66N220 Commerece 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
115C2.41 GHz - 2.46 GHz353.20 mW
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Power out is conducted at the antenna terminal. The antenna(s) used for this transmitter must be installed to provide a minimum separation distance of 20cm from all persons as specified in the filing and must 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 antenna installation instructions and 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