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ZAT2543EMThe CC2543EM is a development tool for TI�s 2.4 GHz CC2543 proprietary System-on-Chip

Texas Instruments Inc.
The CC2543EM is a development tool for TI�s 2.4 GHz CC2543 proprietary System-on-Chip - FCC ID ZAT2543EM - Texas Instruments Inc.
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Apr 16, 2012
Application Purpose
Original Equipment
Date of Application
Apr 16, 2012
Equipment Note
The CC2543EM is a development tool for TI�s 2.4 GHz CC2543 proprietary System-on-Chip
Frequency Range
2402.00000000 - 2480.00000000
Company
Texas Instruments Inc.
Country
United States

Documents & Files

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Users Manual

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Block Diagram

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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Operational Description

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Parts List/Tune Up Info

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Schematics

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Test Report

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Test Setup Photos

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Document Text

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

Users Manual

December 2011 Web sites: www.ti.com/lprf E2E Forum: www.ti.com/lprf-forum Make sure to subscribe to the Low-Power RF Newsletter to receive information about updates to documentation, new product releases, and more. Sign up on the TI web pages. CC2543-CC2544 Development Kit Quick Start Guide Opening the Box and Running the Packet Error Rate Test Application 1. Kit Contents • 2 x SmartRF05EB (the two large boards) • 2 x CC2543 Evaluation Module (CC2543EM) • 2 x Pulse W1010 Antennas • 1 x CC2544 Dongle • Cables • Documentation The RF boards in this kit are FCC and IC certified and tested/complies with ETSI/R&TTE over temperature from 0 to +35°C. The antenna, W1010 from Pulse, is a ¼ wave dipole antenna with 2 dBi gain. Caution! The kit contains ESD sensitive components. Handle with care to prevent permanent damage. 2. Hardware Requirements To run the example described in this Quick Start Guide, you would need either two CC2543Ems mounted on SmartRF05 Evaluation Boards (SmartRF05EB - Rev 1.8.1 or later). Or a single CC2543EM mounted on a SmartRF05EB and a CC2544 Dongle (powered through USB). The SmartRF05EBs are included in the CC2543-CC2544DK. More information about the SmartRF05EB can be found in www.ti.com/lit/swru210. The CC2543EM boards can also be plugged into a battery board (see www.ti.com/tool/soc- bb) for standalone operation. 3. Hardware Setup Connect the antenna to the SMA connector on the CC2543EM. Tighten the antenna’s screw firmly on to the SMA connector. If not properly connected, you might see reduced RF performance. Next, mount the CC2543EMs firmly on to connectors P5 and P6 on the SmartRF05EB. The CC2544 Dongle can be connected to any USB port to power the device. Caution! To minimize risk of injury, avoid touching components during operation if symbolized as hot. 4. Power Options There are several ways of applying power to the SmartRF05EB. • 2 x 1.5 V AA Alkaline Batteries • USB • External Power Supply For the batteries and USB, there are voltage regulators on the SmartRF05EB that will set the on-board voltage to 3.3 V. The external power supply should set a voltage that does not exceed 3.3 V. Note that there should only be one active power source at any one time. Warning! To minimize risk of personal injury or property damage, never use rechargeable batteries to power the board. 5. Power the Boards Find jumper P11 on the top side of each SmartRF05EB. This jumper is used to set the power source for the board. Set P11 to “1-2” if you are using battery power. Set P11 to “2-3” if you are using USB or an external power supply. Once you have set P11, find switch P8 on the top side of each SmartRF05EB. To power up the boards, flip the switch from the “OFF” position to “ON”. Do not leave EVM powered when unattended. 6. Start-up Screen The CC2543EMs and the CC2544 Dongle will be pre-loaded with a Packet Error Rate (PER) test application. The LCD screens on the two SmartRF05EBs should display the messages below: A green led (LED2 on CC2544Dongle, LED1 on SmartRF05EB) will blink continuously After the application has started. 7. Choosing Mode The application can be used between two CC2543EM’s or between a single CC2543EM and the CC2544 Dongle. There are two possible modes of operation called “Remote” and “Master”. The CC2544Dongle is set to master by default as it is the only option for this device in this application. After button S1 is pushed at the start up screen, the mode selection screen (showed to the left below) will appear. The Remote mode is shown by default. Press the joystick up and down to change between master and remote mode and press button S1 to confirm. In the remote mode all the parameters for the current PER test must be set up before the test begins. 8. Master Mode In “Master” mode, the radio will repeatedly (once every 10 milliseconds) send out a “beacon” signal (250 kbps, GFSK modulation, 160 kHz deviation, 2479 MHz) and listen for a response from the remote device. Once the beacon is acknowledged by the “Remote”, the actual PER test begins. During the PER test, packets are sent at a fixed repetition rate of 10 msec. No more actions are needed from the user for this master device to work. 9. Frequency Selection When the remote mode is chosen, a series of settings must be configured to set up the link for the PER test. The frequency must be selected first. Move the joystick up or down to change the frequency (channel) and press S1 to confirm the choice. 10. Modulation Setup There are 6 different modulation schemes available for this application. The different bitrates are 250 Kbps, 500 Kbps, 1Mbps and 2 Mbps. MSK modulation is used for the 500 Kbps rate and GFSK for the rest. Move the joystick up or down to change the scheme and press S1 to confirm the choice. 11. Packet Length The packet length can be set to 10, 16, 32, 64 or 120 bytes. Move the joystick up or down to change the packet length and press S1 to confirm the choice. 12. Number of Packets The total number of packets to be sent for each run can be set to 200, 1000, 5000, 10000 and . Move the joystick up or down to change the number of packets and press S1 to confirm the choice. 13. Test Running The remote device acknowledges the beacon signal from the master and sends the configuration packet. The PER test begins. While the master device is sending packets the yellow led will be lit on the smartRF05EB (“LED3”) or the red led on the CC2544 Dongle (“LED1”). 14. PER Test Summary The first results screen will display the number of packets received without errors (“Good”), the number that were received with a CRC error (“Bad”), and the number that were expected but not received (“LOST”). Push button S1 to proceed to the second results screen. 15. Repeat Test The final screen allows the test to be repeated by pushing “Button 1” (S1). Note that the set up data is maintained. If you wish to enter different test parameters, you may do so by pushing “EM RESET” button, located at the approximate center of the …

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Block Diagram

X O S C _ Q 2 X O S C _ Q 1

External Photos

TEST REPORT ETSI EN 300 328 Project No.: 182229-4 Nemko AS, NO-2027 Kjeller Page 73 (75) 7 PHOTOGHRAPHS OF EUT CC2543EM with Pulse W1010 antenna TEST REPORT ETSI EN 300 328 Project No.: 182229-4 Nemko AS, NO-2027 Kjeller Page 74 (75) Evaluation Board SmartRF05EB with CC2543EM - top view Evaluation Board – bottom view

ID Label/Location Info

FCC Certification Document Label 1/1 Description of Label for CC2543EM Label Placement of label on product(backside) ~ 3 7 m m T e x a s I n s t r u m e n t s C C 2 5 4 3 E M ( x x x ) R e v . x . x . x S . N o . : x x x x x x F C C I D : Z A T 2 5 4 3 E M I C : 4 5 1 H - 2 5 4 3 E M Information about label and labelmaterial: Label manufacturer is Brady. Specific part info: Label part number B473 (http://www.bradyid.com/bradyid/domino/contentView.do/B473.html). We use series R6000 ribbons(R6007-http://www.bradyid.com/bradyid/pdpv/IP-R6007.html). See following pages for relevant datasheet information. FCC Certification Document Label-Appendix i/vi Technical Data Sheet BRADY B-473 THERMAL TRANSFER PRINTABLE GLOSSY WHITE STATIC DISSIPATIVE POLYESTER LABEL STOCK TDS No. B-473 Effective Date: 26-Sep-2006 Description: GENERAL PrintTechnology:Thermal Transfer Material Type:White Polyester Finish:Glossy Adhesive:Static Dissipative Permanent Acrylic APPLICATIONS Printed circuit board and electronic component post-process labeling RECOMMENDED RIBBONS Brady Series R6000 REGULATORY/AGENCY APPROVALS UL:B-473 is a UL Recognized Component to UL969 Labeling and Marking Standard when printed with Brady Series R6000 ribbon. See UL file MH17154 for specific details. UL information can be accessed online atUL.com. Search inCertificationsarea. CSA:B-473 is CSA Accepted toC22.2 No. 0.15-95 Adhesive Labels Standard when printed with theBrady Series R6000 ribbon. See CSA file 041833 for specific details. CSA information can be accessed online atdirectories.csa-international.org. SP Provning Forskning:ESD-approved for IEC 61340-5-1 and EN 100015-1 per SP Swedish National Testing and Research Institute (see ESD-approval DNo: 230-02-0034). Brady B-473 is RoHS complinat to 2005/618/EC MCV amendment to RoHS Directive 2002/95/EC. SPECIAL FEATURES B-473 has a static dissipative adhesive and is supplied on a static dissipative release liner. It has surface resistivity values in the recommended range for Dissipative ESD Packaging Materials as defined in Table 1 of ANSI/ESD S20.20 (x10 5 to < 1x10 12 ohms). B-473 also meets the requirements of EIA-541 "Packaging Material Standards for ESD Sensitive Items" in which a charged material must decay to 1% of its initial voltage in less than 2 FCC Certification Document Label-Appendix ii/vi seconds. Details: PHYSICAL PROPERTIESTESTMETHODSAVERAGE RESULTS ThicknessASTM D 1000 -Substrate -Adhesive -Total 0.0020 inch (0.05 mm) 0.0014 inch (0.04 mm) 0.0034 inch (0.09 mm) Adhesion to: -Stainless Steel ASTM D 1000 20 minute dwell 24 hour dwell 49 oz/inch (54 N/100 mm) 60 oz/inch(66 N/100 mm) TackASTM D 2979 Polyken™Probe Tack (1 second dwell, 1 cm/sec separation) 31 oz (885 g) Drop ShearPSTC-7 (except use 1/2" x 1" sample) 70 hours Tensile Strength and Elongation ASTM D 1000 -Machine -Cross 38 lbs/inch (665N/100 mm), 68% 56 lbs/inch (980N/100 mm), 46% Dielectric StrengthASTM D 10009000 volts ELECTRICAL PROPERTIES TEST METHODSAVERAGE RESULTS Surface Resistivity- Adhesive EOS/ESD S11.11 -adhesive 5 x 10 8 ohms/sq. Liner Surface ResistivityEOS/ESD S11.11 -Release side -Backside 1.7 x 10 10 ohms/sq 2.5x 10 9 ohms/sq Static Decay-AdhesiveEIA-541 to 1% of initial charge 0.01 seconds Static Decay-LinerEIA-541 to 1% of initial charge -Release side 0.2 seconds Voltage (Label removed from liner, adhesive tested) Value is obtained by removing a 1.5" x 0.25" label from liner and immediately holding label to a static sensing device calibrated in volts. 10 volts FCC Certification Document Label-Appendix iii/vi Voltage (Label removed from liner, liner tested) Value is obtained by removing a labelfrom liner and immediately holding label to a static sensing device calibrated in volts. 3.4 volts The following testing was performed with B-473 thermal transfer printed on a BradyPrinter™THT 300X using a Brady Series R6000 ribbon. Labels printed with 3:1 ratio barcodes with 6 mil X dimension bars and alphanumerics. Samples laminated to aluminum panels and allowed to dwell 24 hours prior to testing. PERFORMANCE PROPERTIES TEST METHODTYPICAL RESULTS Short Term High Service Temperature 5 minutes at354°F (180°C)No visible effect to label at 180°C. Slight film shrinkage at 190°C but label is still functional. At 210°C label has severe film shrinkage. Long Term High Service Temperature 30 days at 248°F (120°C)No visible effect at 120°C Low ServiceTemperature30 days at-40°F (-40°C)No visible effect at-40°C Humidity Resistance30 days at 100°F (37°C) and 95% R.H. No visible effect UV Light Resistance30 days in UV Sunlighter™ 100 No visible effect Weatherability 1 ASTM G155, Cycle 1 30 days inXenon Arc Weatherometer No visible effect Salt Fog ResistanceASTM B 117 30 days in 5% salt fog solution chamber No visible effect PERFORMANCE PROPERTYCHEMICAL RESISTANCE Samples printed with Series R4900 and R6000 ribbons using a BradyPrinter™Model 300X. Labels printed with 3:1 ratio barcodes with 6 mil narrow X dimension bars and alphanumerics. Test was conducted at room temperature after 24 hour dwell. Testing consisted of 5 cycles of 10 minute immersions in the specified chemicals followed by a 30 minute recovery period. Samples rubbed 10 times with cotton swab immersed in test fluid after final immersion. CHEMICAL REAGENT SUBJECTIVE OBSERVATION OF VISUAL CHANGE LABEL STOCKR4900R6000EFFECT OF COTTON SWAB RUBS FCC Certification Document Label-Appendix iv/vi Methyl Ethyl Ketone Slightadhesive ooze No visible effectNo visible effectPrinting removed 1,1,1- Trichloroethane Slight adhesive ooze No visible effectNo visible effectPrinting removed TolueneSlight adhesive ooze No visible effectNo visible effectPrinting removed Freon®TMSSlight adhesive ooze No visible effectNo visible effectNo visible effect Isopropyl AlcoholNo visible effectNo visible effectNo visible effectNo visible effect Mineral SpiritsNo visible effectNo visible effectNo visible effectNo visibleeffect JP-4 Jet FuelNo visible effectNo visible effectNo visible ef…

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Internal Photos

FCC ID: ZAT2543EM Project no.: 182229 Page 1 of 2 INTERNAL PHOTOS – CC2543EM with SmartRF05EB CC2543EM FCC ID: ZAT2543EM Project no.: 182229 Page 2 of 2 Test Jig with 2xAA Batteries

Operational Description

Texas Instruments NorwayAS Gaustadalléen 21 0349 Oslo Norway (+47) 22 95 85 44 (+47) 22 95 85 46 Technical Description The CC2543EM is an evaluation board for the CC2543 chip from Texas Instruments. The board will only function together with the SmartRF05EBEvaluation Boardwhich isincluded in the CC2543-CC2544DK Development Kit. The CC2543EM is preloaded with a Packet Error Rate test that can be used between two CC2543EM boards mountedon SmartRF05EB boards, where one is setup to operateas a remote device (receiver) and the otheras a master device (transmitter). The CC2543 System on Chip has a differential RF output. On the CC2543EM board this differential output is transformed to a single ended, 50 ohm signal through a passive component (capacitor/inductor) balun. The output of the balun is low pass filtered to reduce harmonic radiation and then connected to an SMA connector. The antenna supplied with the board is W1010 from Pulse Electronics. The datasheet of the antenna is attached for further details.

Operational Description

W1010 Datasheet version 1.1 2/2008. Wireless External Antenna for 2.4 GHz Application © 2008. All Rights Reserved. Wireless External Antenna for 2.4 GHz Application Pulse Part Number: W1010 Pulse Finland Oy Takatie 6 90440 Kempele, Finland Tel: +358 207 935 500 Fax: +358 207 935 501 www.pulseeng.com/antennas Features - Shortest antennas in product line Omnidirectional radiation - For WLAN devices using WiFi (802.11b/g), Blu- etooth®, ZigBee™ and other applications in the ISM 2.4GHz band - Omnidirectional radiation pattern provides broad 360° coverage - One-quarter wavelength dipole configuration - Connection and color options easily integrate with OEM designs Connector - SMA (Male) Weight 6.3 grams Carton 20/bag; 500/carton Dimensions: Unless otherwise specified, all tolerances are ± Frequency [GHz] 2.4 – 2.5 Gain [dBi] 2.0 Impedance [Nom] 50 Ω VSWR ≤ 2.0 Polarization Vertical Radiation Omni Electrical Length ¼, dipole Electrical Specifications @ +25 °C Note: This part number is lead-free and RoHS compliant. No additional suffix or identifier is required. Inches mm 0.10 0.25 W1010 Datasheet version 1.1 2/2008. Wireless External Antenna for 2.4 GHz Application © 2008. All Rights Reserved. Wireless External Antenna for 2.4 GHz Application Pulse Part Number: W1010 Pulse Finland Oy Takatie 6 90440 Kempele, Finland Tel: +358 207 935 500 Fax: +358 207 935 501 www.pulseeng.com/antennas Application Notes Omni-directional antennas provide a uniform, donut- shaped, 360° radiation pattern. The omni-directional pat- tern is suitable for point-to-multipoint broadcasting in all directions. This antenna is primarily used for WLAN applications. However, it can also be used for a variety of other applications withing the spec ified frequency range. When used as an access point, the antenna is ideally located at the center of the coverage area. Gain Performance W1010 Vertical Position Horizontal Position

Parts List/Tune Up Info

CC2543EM R1.1.0 Ref. Part name Pcs/unit Description Manufacturer Part number Supplier Ordering code Alt. Manufacturer Alt. Part number Alt. Supplier Alt. Ordering code Comments U1 CC2543 1 2.4 GHz SoC ON CC2543 TI CC2543 C111 C_0402 0 Capacitor, general, 0402; Do not mount C121;C151;C181;C232;C291 C_100N_0402_X5R_K_10 5 Capacitor, 100n, 0402, X5R, 10 %, 10V Murata GRM155R71A104KA01D C161;C171 C_12P_0402_NP0_J_50 2 Capacitor, 12p, 0402, NP0, 5%, 50V Murata GRM1555C1H120JA01D C201;C211 C_18P_0402_NP0_J_50 2 Capacitor, 18p, 0402, NP0, 5% 2 5V Murata GRM1555C1H180JZ01D ELFA 65-881-23 C131 C_1N_0402_NP0_J_50 1 Capacitor, 1n, 0402, NP0, 5%, 50 V Murata GRM1555C1H102JA01D C202-203;C212 C_1P0_0402_NP0_C_50 3 Capacitor, 1p, 0402, NP0, +/-0. 25pF 50V Murata GRM1555C1H1R0CZ01D C301 C_1U_0402_X5R_K_6P3 1 Capacitor, 1u, 0402, X5R, 10%, 6.3V Murata GRM155R60J105KE19D C231 C_220P_0402_NP0_J_50 1 Capacitor, 220p, 0402, NP0, 5% , 50V Murata GRM1555C1H221JA01D C261;C271;C281 C_2P4_0402_NP0_B_50 3 Capacitor, 2p4, 0402, NP0, +-0. 1pF, 50V Murata GRM1555C1H2R4BZ01 C1 C_2U2_0402_X5R_M_6P3VDC 1 Capacitor, 2u2, 0402, X5R, +/-20%, 6.3V Murata GRM15 5R60J225ME TTI L202 L_1N0_0402_S 1 Inductor, 1n0, 0402, Monolithic type, +/-0.3 nH Murata LQG15HS1N0S02D Coilcraft L201;L211 L_2N0_0402_S 2 Inductor, 2n0, 0402, +/-0.3 nH Murata LQG15HS2N0S02D L203 L_3N0_0402_S 1 Inductor, 3n0, 0402, Monolithic type, +/-0.3 nH Murata LQG15HS3N0S02D ACTE Coilcraft L1 L_BEAD_102_0402 1 EMI filter bead, 0402 1k ohms Tape GHz Band Gen Use Murata BLM15HG102SN1D ACTE R91-92;R101;R111 R_0402 0 Resistor, general, 0402; Do not mount R41;R51 R_10K_0402_F 2 Resistor, 10k ohms, 0402, ±1% Koa RK73H1ETTP1002F ELFA 60-485-32 R131 R_2K7_0402_F 1 Resistor, 2k7 ohms, 0402, ±1% Koa RK73H1ETTP2701F ELFA 60-482-50 R251 R_56K_0402_F 1 Resistor, 56k ohms, 0402, ±1% Koa RK73H1ETTP5602F ELFA 60-488-96 P3 SMA_SMD 1 SMA connector, straight SMD-mount Hus-Tsan G roup Taiwan SMA-10V21-TGG EC Partner A/S SMA-10V21-TGG P1-2 SMD_SOCKET_2x10 2 SMD pinrow socket, .050 spacing, 2x 10 Samtec SFM-110-02-SM-D-A-K-TR Abacus AFU, Arrow Yes X1 X_32.000/10/20/60/10 1 Crystal, 32.000000MHz, FA-128, 10.0pF, +/-10ppm, (F TC: +/-20ppm at -40/85C), 60ohms Epson Toyocom FA-128, 32MHZ, 10PPM, 10PF, 2x1.6mm, -40/+85C, 60oh ms ACTE Q22FA1280009200 Total number of components 33

Schematics

P0.2 P0.6 P0.0 VDD_FILT VDD_EB VDD_FILT VDD_EB 1 2 C281 C_2P4_0402_NP0_B_50 1 2 C111 C_0402 1 2 C271 C_2P4_0402_NP0_B_50 1 2 3 45 P3 SMA_SMD 1 2 C211 C_18P_0402_NP0_J_50 1 2 34 56 78 910 1112 1314 1516 1718 1920 P0.4 P0.1 P1.0 P0.2 P0.3 P2.1 P0.0 P2.2 P1.1 P0.6 P1.2 P1.4 P1.3 P1 SMD_SOCKET_2X10 1 2 C261 C_2P4_0402_NP0_B_50 1 2 C231 C_220P_0402_NP0_J_50 1 2 C161 C_12P_0402_NP0_J_50 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 P1.3 P2.1 P0.4 P0.3 P0.2 P0.1 P0.0 P2.2 P1.2 P1.1 P1.0 P1.4 XOSC_Q1 P0_7 P1_0 P0_0 XOSC_Q2 GND_EP RESET_N P1_2 VSS1 P0_2 RF_P RF_N VSS3 P0_1 P2_0 P1_4 RBIAS P1_3 VDD6 VDD5 VDD4 VDD3 VDD2 VDD1 DCPL1 P0_5 P0_4 P1_1 P0_3 P0_6 VSS2 P2_2/DC P2_1/DD U1 CC2543 12 34 56 78 910 1112 1314 1516 1718 1920 P0.7 P0.5 P2.0 P2 SMD_SOCKET_2X10 1 2 3 4 GND X1X_32.000/10/20/60/10 1 2 C131 C_1N_0402_NP0_J_50 1 2 C203 C_1P0_0402_NP0_C_50 1 2 C291C_100N_0402_X5R_K_10 1 2 C151 C_100N_0402_X5R_K_10 1 2 C202 C_1P0_0402_NP0_C_50 1 2 C181 C_100N_0402_X5R_K_10 1 2 C301 C_1U_0402_X5R_K_6P3 1 2 C212 C_1P0_0402_NP0_C_50 1 2 C1 C_2U2_0402_X5R_M_6P3VDC 1 2 C201 C_18P_0402_NP0_J_50 1 2 C121 C_100N_0402_X5R_K_10 1 2 C171 C_12P_0402_NP0_J_50 1 2 C232C_100N_0402_X5R_K_10 1 FM2 FIDUCIAL_MARK_1MM 1 FM4 FIDUCIAL_MARK_1MM 1 FM1 FIDUCIAL_MARK_1MM 1 FM5 FIDUCIAL_MARK_1MM 1 FM3 FIDUCIAL_MARK_1MM 1 FM6 FIDUCIAL_MARK_1MM 12 L202 L_1N0_0402_S 12 VDD_FILT L1 L_BEAD_102_0402 1 2 L201 L_2N0_0402_S 12 L203 L_3N0_0402_S 12 L211 L_2N0_0402_S 12 R131 R_2K7_0402_F 1 2 R101 R_0402 12 R91 R_0402 1 2 R111 R_0402 12 R92 R_0402 1 2 R51 R_10K_0402_F 1 2 R251 R_56K_0402_F 1 2 R41 R_10K_0402_F TP1 TESTPOINT_CIRCLE_40MILS TP3 TESTPOINT_CIRCLE_40MILS TP4 TESTPOINT_CIRCLE_40MILS TP5 TESTPOINT_CIRCLE_40MILS TP2 TESTPOINT_CIRCLE_40MILS I2C SCL + I2C SDA COMPANY NAME DWG SPI MISO SPI MOSI DWG NO. DD REV. DATE APPROVALS SHEETSCALE DC P0.4 In - For comparator test P0.5 In + EIV A4 ISSUED CHECKED DRAWN FSCM NO.SIZE CONTRACT NO. Texas Instruments 1 (1) For op-amp test P0.0 In + P0.1 In - P0.2 Output UART Place close to package. UART UART RX TX CTS SPI CSn SPI SCLK 20110713 1.1.0 UART RTS CC2543EM - out

Test Report

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. : 182229-3 Item tested : CC2543EM Type of equipment : 2.4GHz Transceiver FCC ID : ZAT2543EM Client : Texas Instruments Norway AS FCC Part 15.247 Digital Transmission System RSS-210, Issue 8 Low Power Licence-Exempt Radiocommunication Devices 2012-03-15 Authorized by : .............................................. Frode Sveinsen Technical Verificator TEST REPORT FCC part 15.247 Ref. no.: 182229-3 FCC ID: ZAT2543EM Nemko AS, NO-2027 Kjeller Page 2 (36) 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 2.2.1 Normal test condition ................................................................................................... 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 Minimum 6 dB Bandwidth ......................................................................................................... 8 4.2 20 dB Bandwidth ..................................................................................................................... 12 4.3 Peak Power Output ................................................................................................................. 13 4.4 Spurious Emissions (Radiated) .............................................................................................. 17 4.5 Receiver Spurious Emissions ................................................................................................. 29 4.6 Power Spectral Density (PSD) ................................................................................................ 31 5 LIST OF TEST EQUIPMENT .................................................................................................. 35 6 BLOCK DIAGRAM ................................................................................................................. 36 6.1 Power Line Conducted Emission ............................................................................................ 36 6.2 Test Site Radiated Emission ................................................................................................... 36 TEST REPORT FCC part 15.247 Ref. no.: 182229-3 FCC ID: ZAT2543EM Nemko AS, NO-2027 Kjeller Page 3 (36) 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: 36 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) Name : / Address : / TEST REPORT FCC part 15.247 Ref. no.: 182229-3 FCC ID: ZAT2543EM Nemko AS, NO-2027 Kjeller Page 4 (36) 2 Test Information 2.1 Test Item Name : Texas Instruments FCC ID : ZAT2543EM IC : 451H-2543EM Model/version : CC2543EM Serial number : / Hardware identity and/or version: / Software identity and/or version : / Frequency Range : 2402 – 2480 MHz Number of Channels : / Type of Modulation : Digital (GFSK) Rated output power: / Data rate: 2Mbps User Frequency Adjustment : None Type of Power Supply : Primary Batteries (2xAA batteries) Antenna Connector : SMA (Antenna type: W1010) Antenna Diversity Supported : No Desktop Charger : None Description of Test Item The tested EUT is a 2.4GHz transceiver with SMA connector. Exposure Evaluation The EUT is exempted from RF Exposure Evaluation. TEST REPORT FCC part 15.247 Ref. no.: 182229-3 FCC ID: ZAT2543EM Nemko AS, NO-2027 Kjeller Page 5 (36) 2.2 Test Environment 2.2.1 Normal test condition Temperature: 20 – 23 °C Relative humidity: 33 – 45 % Normal test voltage: 3.0 V DC…

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Test Setup Photos

FCC ID: ZAT2543EM Project no.: 182229 Page 1 of 1 PHOTOS OF TEST SET-UP – CC2543EM with SmartRF05EB Radiated Emissions 30 - 1000 MHz Radiated Emissions above 1 GHz

Contact Information

Applicant

Marian Kost(Product Line Manager, Connectivity)
[email protected]2145672462Fax: +4722958546

Technical Contact

Texas instruments Norway ASFredrik Georg Kervel
[email protected]+47 22 95 85 44

Gaustadalleen 21 · Oslo · Norway

Non-Technical Contact

Nemko USA, Inc.Zarah G MacIvor
[email protected]214-629-5683

Test Firm

Nemko ASFrode Sveinsen
[email protected]47-22-96-03-35Fax: 47-22-96-05-50

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz4.00 mW
Modular Type
Limited Single Modular Approval
Grant Notes
Power output is conducted. This device is intended for product development and may not be installed in a final product.

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