
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
SWRU3XX December 2012 Web sites: www.ti.com/ble E2E Forum: www.ti.com/ble-forum CC2541S BoosterPack Development Kit Quick Start Guide Opening the Box and Evaluating Bluetooth® Low Energy BOOST-CC2541S Kit Content 1 x CC2541S BoosterPack Documentation The RF Board in this kit are FCC and IC certified and tested to comply with ETSI/R&TTE over temperature from 0 to +35°C. Caution! The kit contains ESD sensitive components. Handle with care to prevent permanent damage. Introduction The BOOST-CC2541S is a CC2541S BoosterPack development kit for the Texas Instrument LaunchPad boards, such as MSP430™, Stellaris ® and C2000™. More information about the LaunchPad is found at www.ti.com/LaunchPad. This document will guide you through the initial steps required in order to run the pre programmed Bluetooth® low energy Weather Station demo application. CC2541S Boosterpack The CC2541S is a Wireless Network Processor (WNP) and adds Bluetooth low energy support to a system. The WNP includes a complete Bluetooth low energy Host and Controller software stack which is accessed by a Host Controller Interface (HCI) protocol. The HCI protocol can be accessed over either UART or SPI. The CC2541S is hosted on a BoosterPack board together with a Texas Instruments IR Temperature sensor, TMP006. The CC2541S BoosterPack supply voltage should be between 2.2V (TMP006 minimum) and 3.6V (CC2541S maximum). Weather Station Demo The Weather Station demo application runs from a MSP430G2553 processor on a Texas Instruments LaunchPad (MSP-EXP430G2). The application uses the WNP to enable a connection with a Bluetooth low energy SMART Ready device and transmit temperature data from the TMP006. Hardware Setup Attach the CC2541S BoosterPack onto the LaunchPad as follows: Evaluating Weather Station Additional Tools and Links BLE E2E Forum For additional help, visit the TI Bluetooth low energy E2E forum, www.ti.com/ble-forum, for instant support during your development. . BLE Wiki Our BLE Wiki contains application examples, guides and documentation covering those extra steps you might need help with. The Wiki is not only managed by Texas Instruments employees but also E2E community members. Anyone can share, edit and make use of the information posted here. The Wiki is found at www.ti.com/ble- wiki. Useful Links LaunchPad Product Page: www.ti.com/LaunchPad CC2541S User Guide: www.ti.com/lit/pdf/swru #### TI BLE Stack and Software: www.ti.com/ble-stack CC2540/41 User’s Guide: http://www.ti.com/lit/pdf/swru191 CC2541S Product Page: www.ti.com/cc2541S TMP006 Product Page: www.ti.com/TMP006 EVALUATION BOARD/KIT/MODULE (EVM) ADDITIONAL TERMS Texas Instruments (TI) provides the enclosed Evaluation Board/Kit/Module (EVM) under the following conditions: The user assumes all responsibility and liability for proper and safe handling of the goods. Further, the user indemnifies TI from all claims arising from the handling or use of the goods. Should this evaluation board/kit not meet the specifications indicated in the User’s Guide, the board/kit may be returned within 30 days from the date of delivery for a full refund. THE FOREGOING LIMITED WARRANTY IS THE EXCLUSIVE WARRANTY MADE BY SELLER TO BUYER AND IS IN LIEU OF ALL OTHER WARRANTIES, EXPRESSED, IMPLIED, OR STATUTORY, INCLUDING ANY WARRANTY OF MERCHANTABILITY OR FITNESS FOR ANY PARTICULAR PURPOSE. EXCEPT TO THE EXTENT OF THE INDEMNITY SET FORTH ABOVE, NEITHER PARTY SHALL BE LIABLE TO THE OTHER FOR ANY INDIRECT, SPECIAL, INCIDENTAL, OR CONSEQUENTIAL DAMAGES. Please read the User's Guide and, specifically, the Warnings and Restrictions notice in the User's Guide prior to handling the product. This notice contains important safety information about temperatures and voltages. For additional information on TI's environmental and/or safety programs, please visitwww.ti.com/eshor contact TI. No license is granted under any patent right or other intellectual property right of TI covering or relating to any machine, process, or combination in which such TI products or services might be or are used. TI currently deals with a variety of customers for products, and therefore our arrangement with the user is not exclusive. TI assumes no liability for applications assistance, customer product design, software performance, or infringement of patents or services described herein. REGULATORY COMPLIANCE INFORMATION As noted in the EVM User’s Guide and/or EVM itself, this EVM and/or accompanying hardware may or may not be subject to the Federal Communications Commission (FCC) and Industry Canada (IC) rules. For EVMsnotsubject to the above rules, this evaluation board/kit/module is intended for use for ENGINEERING DEVELOPMENT, DEMONSTRATION OR EVALUATION PURPOSES ONLY and is not considered by TI to be a finished end product fit for general consumer use. It generates, uses, and can radiate radio frequency energy and has not been tested for compliance with the limits of computing devices pursuant to part 15 of FCC or ICES-003 rules, which are designed to provide reasonable protection against radio frequency interference. Operation of the equipment may cause interference with radio communications, in which case the user at his own expense will be required to take whatever measures may be required to correct this interference. General Statement for EVMs including a radio User Power/Frequency Use Obligations: This radio is intended for development/professional use only in legally allocated frequency and power limits. Any use of radio frequencies and/or power availability of this EVM and its development application(s) must comply with local laws governing radio spectrum allocation and power limits for this evaluation module. It is the user’s sole responsibility to only operate this radio in legally acceptable frequency space and within legally mandated power limitations. Any exceptions to this are strictly prohibited and unauthorized by Texas Instruments unless user has obtained appropriate experimental/devel…
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CC 2541 S Boosterpack CC 2541S f = <2400MHz – 2480MHz> CTRL LNA PA FREQUENCY SYNTHESIZER f_internal = <4800MHz – 4960MHz> f_output = <2400MHz – 2480MHz> AAF LPF ADCADC DACDAC DEMODULATOR MODULATOR RADIO CONTROLLER AND DATA INTERFACE Q I Q I RF_N RF_P I Q I Q CLOCK MUX P2_4 P2_3 XOSC_Q2 XOSC_Q1 16MHz RC-OSC 32kHz RC-OSC 32MHZ Crystal OSC 32.768kHz Crystal OSC BALUN ADC CLOCK
Texas Instruments Norway AS Gaustadalléen 21 0349 Oslo Norway (+47) 22 95 85 44 (+47) 22 95 85 46 Page 1 of 1 Declaration of Duty Cycle The CC2541S BoosterPack has a maximum duty cycle as defined by the FCC 15.247 of less than 10%, resulting in a duty cycle correction factor of 20 dB. Details can be found below. The maximum duty cycle for the CC2541S BoosterPack occurs when the advertising interval of the CC2541S BoosterPack is 20 ms, this result in 5 advertising events during any 100 ms. The largest possible advertise packet is 376 bits and the CC2541S BoosterPack has a 1 Mbps transmitter. Thus, the transmit time for each advertising packet is: 376 bits/1Mbps = 376 us. The maximum of 5 packets per 100ms gives at maximum “TX on time” of 5*376 us = 1.8ms per any 100ms, which is the same as a duty cycle of 1.8%. Since the duty cycle is less than 10%, the duty cycle correction factor for the CC2541S BoosterPack will be 20 dB.
PHOTOS of EUT Project no.: 222600 FCC ID: ZAT2541SBOOST Page 1 of 3 INTERNAL PHOTOS – CC2541S BOOSTER PACK CC2541S Booster pack, EUT for radiated measurements PHOTOS of EUT Project no.: 222600 FCC ID: ZAT2541SBOOST Page 2 of 3 CC2541S Booster pack, the Emulator board and the battery pack used during testing PHOTOS of EUT Project no.: 222600 FCC ID: ZAT2541SBOOST Page 3 of 3 CC2541S Booster pack, EUT for conducted measurements
Certification Document Label 1/1 Description of label for CC2541S BoosterPack FCC/IC/CE labeling of product is shown below. The model name, FCC ID, IC number and CE logo is printed directly on the PCB. There is a separate label with the revision and serial number. ~ 85 mm ~ 3 1 m m Texas Instruments CC2541S BoosterPack Rev.: x.x.x S.N.: xxxxxx
PHOTOS of EUT Project no.: 222600 FCC ID: ZAT2541SBOOST Page 1 of 3 INTERNAL PHOTOS – CC2541S BOOSTER PACK CC2541S Booster pack, EUT for radiated measurements PHOTOS of EUT Project no.: 222600 FCC ID: ZAT2541SBOOST Page 2 of 3 CC2541S Booster pack, the Emulator board and the battery pack used during testing PHOTOS of EUT Project no.: 222600 FCC ID: ZAT2541SBOOST Page 3 of 3 CC2541S Booster pack, EUT for conducted measurements
Texas Instruments Norway AS Gaustadalléen 21 0349 Oslo Norway (+47) 22 95 85 44 (+47) 22 95 85 46 Page 1 of 1 Technical Description The CC2541S BoosterPack is an evaluation board for the CC2541 chip from Texas Instruments. The CC2541S BoosterPack is included in a development kit that can be used as for Bluetooth Low Energy development. The CC2541 System on Chip has a differential RF output. On the CC2541S BoosterPack board this differential output is transformed to a single ended, 50 ohm signal through a discrete balun. Additionally, the balun greatly reduces harmonic radiation. The single ended output of the balun is connected to an on-board PCB antenna. Operational Information: Frequency: 2402 – 2480 MHz, Modulation: GFSK Antenna: PCB, meander inverted F Power supply: 3V DC Max duty cycle (Bluetooth low energy): 1.8%
CC2541S_BP 1.1.0 Ref.Part namePcs/unitDescriptionManufacturerPart number C1C_2U2_0402_X5R_M_6P3VDC1 Capacitor, 2u2, 0402, X5R, +/-20%, 6.3VMurataGRM155R60J225ME C101C_100N_0402_X5R_K_101 Capacitor, 100n, 0402, X5R, 10%, 10VMurataGRM155R71A104KA01D C211C_100N_0402_X5R_K_101 Capacitor, 100n, 0402, X5R, 10%, 10VMurataGRM155R71A104KA01D C221C_15P_0402_NP0_J_501 Capacitor, 15p, 0402, NP0, 5%, 50VMurataGRM1555C1H150JA01D C231C_15P_0402_NP0_J_501 Capacitor, 15p, 0402, NP0, 5%, 50VMurataGRM1555C1H150JA01D C241C_100N_0402_X5R_K_101 Capacitor, 100n, 0402, X5R, 10%, 10VMurataGRM155R71A104KA01D C251C_18P_0402_NP0_J_501 Capacitor, 18p, 0402, NP0, 5% 25VMurataGRM1555C1H180JZ01D C252C_1P0_0402_NP0_C_501 Capacitor, 1p, 0402, NP0, +/-0.25pF 50VMurataGRM1555C1H1R0CZ01D C253C_10N_0402_X7R_K_251 Capacitor, 10n, 0402, X7R, 10%, 25VMurataGRM155R71E103KA01D C256C_1P0_0402_NP0_C_501 Capacitor, 1p, 0402, NP0, +/-0.25pF 50VMurataGRM1555C1H1R0CZ01D C257C_04020 Capacitor, general, 0402; Do not mount C261C_18P_0402_NP0_J_501 Capacitor, 18p, 0402, NP0, 5% 25VMurataGRM1555C1H180JZ01D C262C_1P0_0402_NP0_C_501 Capacitor, 1p, 0402, NP0, +/-0.25pF 50VMurataGRM1555C1H1R0CZ01D C271C_100N_0402_X5R_K_101 Capacitor, 100n, 0402, X5R, 10%, 10VMurataGRM155R71A104KA01D C272C_220P_0402_NP0_J_501 Capacitor, 220p, 0402, NP0, 5%, 50VMurataGRM1555C1H221JA01D C311C_100N_0402_X5R_K_101 Capacitor, 100n, 0402, X5R, 10%, 10VMurataGRM155R71A104KA01D C321C_15P_0402_NP0_J_501 Capacitor, 15p, 0402, NP0, 5%, 50VMurataGRM1555C1H150JA01D C331C_15P_0402_NP0_J_501 Capacitor, 15p, 0402, NP0, 5%, 50VMurataGRM1555C1H150JA01D C391C_1U_0402_X5R_K_6P31 Capacitor, 1u, 0402, X5R, 10%, 6.3VMurataGRM155R60J105KE19D C401C_1U_0402_X5R_K_6P31 Capacitor, 1u, 0402, X5R, 10%, 6.3VMurataGRM155R60J105KE19D L1L_BEAD_102_04021 EMI filter bead, 0402 1k ohms Tape GHz Band Gen UseMurataBLM15HG102SN1D L251L_04020 Inductor, general, 0402; Do not mount L252L_2N0_0402_S1 Inductor, 2n0, 0402, +/-0.3 nHMurataLQG15HS2N0S02D L253L_1N0_0402_S1 Inductor, 1n0, 0402, Monolithic type, +/-0.3 nHMurataLQG15HS1N0S02D L254L_3N0_0402_S1 Inductor, 3n0, 0402, Monolithic type, +/-0.3 nHMurataLQG15HS3N0S02D L261L_2N0_0402_S1 Inductor, 2n0, 0402, +/-0.3 nHMurataLQG15HS2N0S02D P1, P2SOCKET_1X102 1x10 pinrow, 2.54mm pitch. through-hole SamtecESQ-110-13-S-S P1A, P2A (DO NOT MOUNT)SOCKET_1X100 1x10 pinrow, 2.54mm pitch. through-hole SamtecESQ-110-13-S-S P3 (DO NOT MOUNT)SMA_SMD0 SMA connector, straight SMD-mountHus-Tsan Group TaiwanSMA-10V21-TGG P4PINROW_SMD_2X4_2.54MM1 2x4 pinrow, 2.54mm pitch, SMD typeGradConnBB02-HP081-KB3-060B00 R256R_0_0402_3PORT_1-21 Resistor 3 ports, 0 ohm, 0402, mounted between pad 1 and pad 2KoaRK73Z1ETTP R301R_56K_0402_F1 Resistor, 56k ohms, 0402, ±1% KoaRK73H1ETTP5602F R302, R306R_0_04022 Resistor, 0 ohm, 0402KoaRK73Z1ETTP R303, R307, R308, R309R_0_04024 Resistor, 0 ohm, 0402KoaRK73Z1ETTP R304R_47K_0402_F1 Resistor, 47k ohms, 0402, ±1% KoaRK73H1ETTP4702F R305R_47K_0402_F1 Resistor, 47k ohms, 0402, ±1% KoaRK73H1ETTP4702F U1CC2541S1 SimpleLink 2.4HHz BLE Wireless Network ProcessorTICC2541S U2TMP0061 Ultra-small, low power, and low cost passive infrared temperature sensorsTITMP006AIYZFT X1X_32.000/10/10/40/121Crystal, 32.000000MHz, FA-128, 12.0pF, +/-10ppm, (FTC: +/-10ppm at -20/75C), 60ohmsEpson ToyocomFA-128, 32MHZ, 10PPM, 12PF, 2x1.6mm, -20/+75C X2X_32.768/20/30/40/12.51 Crystal, 32.768kHz, FC-12M, 12,5pFEpson ToyocomFC-12M, 32.768kHz, 20PPM, 12,5pF Total number of components 41
Nemko AS, Gaustadalléen 30, P.O.Box 73 Blindern, NO-0314 Oslo Norway T +47 22 96 03 30 F +47 22 96 05 50 Enterprise number NO974404532 Visiting address: Nemko Kjeller, Instituttveien 6, P.O.Box 96, NO-2027 Kjeller Norway T +47 64 84 57 00 F +47 64 84 57 05 Test report no. : 215166- 3 Item tested : CC2541S Boosterpack Type of equipment : 2.4 GHz Transceiver FCC ID : ZAT2541SBOOST Client : Texas Instruments Norway AS FCC Part 15.247 Digital Transmission System RSS-210, Issue 8 Low Power Licence-Exempt Radiocommunication Devices 13 December 2012 Authorized by : .............................................. Frode Sveinsen Technical Verificator TEST REPORT FCC part 15.247 Ref. no.: 222600-3 FCC ID: ZAT2541SBOOST IC: 451H-2541SBOOST Nemko AS, NO-2027 Kjeller Page 2 (52) CONTENTS 1 GENERAL INFORMATION ...................................................................................................... 3 1.1 Testhouse Info .......................................................................................................................... 3 1.2 Client Information ...................................................................................................................... 3 1.3 Responsible Manufacturer (If other than client) ........................................................................ 3 2 TEST INFORMATION ............................................................................................................... 4 2.1 Test Item ................................................................................................................................... 4 2.2 Test Environment ...................................................................................................................... 5 2.3 Test Period................................................................................................................................ 5 3 TEST REPORT SUMMARY ..................................................................................................... 6 3.1 General ..................................................................................................................................... 6 3.2 Test Summary ........................................................................................................................... 7 3.3 Description of modification for Modification Filing ..................................................................... 7 3.4 Comments ................................................................................................................................ 7 3.5 Family List Rational .................................................................................................................. 7 4 TEST RESULTS ....................................................................................................................... 8 4.1 Power Line Conducted Emissions ............................................................................................ 8 4.2 Minimum 6 dB Bandwidth ......................................................................................................... 9 4.3 20 dB Bandwidth ..................................................................................................................... 11 4.4 Peak Power Output ................................................................................................................. 13 4.5 Spurious Emissions (Radiated) .............................................................................................. 20 4.6 Power Spectral Density (PSD) ................................................................................................ 48 5 LIST OF TEST EQUIPMENT .................................................................................................. 51 6 BLOCK DIAGRAM ................................................................................................................. 52 6.1 Power Line Conducted Emission ............................................................................................ 52 6.2 Test Site Radiated Emission ................................................................................................... 52 TEST REPORT FCC part 15.247 Ref. no.: 222600-3 FCC ID: ZAT2541SBOOST IC: 451H-2541SBOOST Nemko AS, NO-2027 Kjeller Page 3 (52) 1 GENERAL INFORMATION 1.1 Testhouse Info Name : Nemko AS Address : Nemko Kjeller Instituttveien 6, Box 96 NO-2027 Kjeller, NORWAY Telephone : +47 64 84 57 00 Fax : +47 64 84 57 05 E-mail: [email protected] FCC test firm : 994405 IC OATS : 2040D-1 Total Number of Pages: 52 1.2 Client Information Name : Texas Instruments Norway AS Address : Gaustadalléen 21, NO-0349 Oslo, Norway Telephone : +47 22 95 85 44 Fax : +47 22 95 85 46 Contact: Name : Dag Grini Telephone : +47 22 95 83 01 E-mail : [email protected] 1.3 Responsible Manufacturer (If other than client) Same as the client TEST REPORT FCC part 15.247 Ref. no.: 222600-3 FCC ID: ZAT2541SBOOST IC: 451H-2541SBOOST Nemko AS, NO-2027 Kjeller Page 4 (52) 2 TEST INFORMATION 2.1 Test Item Name : Texas Instruments FCC ID : ZAT2541KEYFOB IC : 451H-2541KEYFOB Model/version : CC2541S Boosterpack Serial number : - Hardware identity and/or version: 1.1.0 Software identity and/or version : - Frequency Range : 2402 – 2480 MHz Number of Channels : 40 Type of Modulation : GFSK Conducted Output power: 1.3 mW (Peak) User Frequency Adjustment : None Type of Power Supply : 3.0 V DC (2 x AAA battery type/ LR03) Antenna Connector : PCB antenna Antenna Diversity Supported : No Desktop Charger : None Description of Test Item The CC2541S Booster Pack supports the Bluetooth Low Energy (BLE) standard, which is considered Digital Modulation per FCC part 15.247. Exposure Evaluation The EUT is exempted from RF Exposure Evaluation. TEST REPORT FCC part 15.247 Ref. no.: 222600-3 FCC ID: ZAT2541SBOOST IC: 451H-2541SBOOST Nemko AS, NO-2027 Kjeller Page 5 (52) 2.2 Test Environment 2.2.1 Normal test condition Temperature: 19.7 – 21.2 °C…
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Photos of Test Set-up Project no.: 222600 FCC ID: ZAT2541SBOOST Page 1 of 4 PHOTOS OF TEST SET-UP – CC2541S BOOSTER PACK XY plane - Radiated Emissions XZ plane - Radiated Emissions Photos of Test Set-up Project no.: 222600 FCC ID: ZAT2541SBOOST Page 2 of 4 YZ plane - Radiated Emissions Radiated emissions - < 30MHz, 10 meter Photos of Test Set-up Project no.: 222600 FCC ID: ZAT2541SBOOST Page 3 of 4 Radiated Emissions 30 - 1000 MHz, 3 meter Radiated emissions 1 – 8.5 GHz, 3 meter Photos of Test Set-up Project no.: 222600 FCC ID: ZAT2541SBOOST Page 4 of 4 Radiated Emissions 8.5 - 12 GHz, 1 meter Radiated Emissions 12 - 18 GHz, 1 meter
Gaustadalleen 21 · Oslo · Norway
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 1.30 mW |
CC2340R5MODAN0MHAR
Equipment Class
DTS - Digital Transmission SystemCC1312PSIP
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterCC1312PSIP
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
CC1312PSIP
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
The 7IDEM is a development tool for TIs 2.4 GHz 7ID System-on-Chip
Equipment Class
DTS - Digital Transmission System