
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
SWRUXXX Feb 2013 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. Zlight2 Quick Start Guide Opening the box and adding the light to a ZLL network 1. Kit Contents • 1 x Zlight2 LED light • Documentation The Zlight2 is FCC and IC certified and tested/complies with ETSI/R&TTE over temperature from 0 to +35°C. The antenna is an on-board half wave dipole PCB antenna. 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 need a USB power supply capable of supplying at least 800mA and max 5.5V, a type A to micro-USB cable to connect it to the light, and a ZigBee Light Link (ZLL) remote control. 3. Powering the board Connect the Zlight2 board to the USB power supply through the type A to micro-USB cable (not included). Caution! To minimize risk of injury, avoid touching components during operation if symbolized as hot. Do not leave the EVM powered when unattended. 4. Touch linking Touch link the Zlight2 lamp by holding the remote control close to the top of the lamp and following the instructions provided with the ZLL remote control 5. Operating the Zlight2 Once connected to the ZLL network through touch linking, the Zlight2 can be controlled by the remote control unit. Please follow the remote control user guide. Caution! To minimize the risk of fire or equipment damage, make sure that air is allowed to circulate freely around the Zlight2 board when operating. Avoid touching components during operation if symbolized as hot. Additional Tools and Links CC debugger The CC debugger is a tool that allows you to flash and debug the Zlight2 using SmartRF Flash Programmer or IAR Embedded Workbench. It connects to a USB port on your PC and to the debug header on the Zlight2 board. SmartRF Flash Programmer Texas Instruments has a simple tool which can be used to program and flash the Zlight2. SmartRF Flash Programmer can be downloaded from www.ti.com/tool/flash- programmer IAR Embedded Workbench To develop software, program, and debug the Zlight2, you should use IAR Embedded Workbench for 8051. More information on IAR EW8051, including a free evaluation version download, can be found at www.iar.com/ew8051. Useful Links Useful Links CC2531 User’s Guide: http://www.ti.com/lit/ug/swru191c/swru191c.pdf For additional help, visit the TI E2E Forums: www.ti.com/lprf-forum 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 visit www.ti.com/esh or 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 EVMs not subject 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 experiment…
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ZLight2 CC2531 f = <2405MHz – 2480MHz> CTRL LNA PA FREQUENCY SYNTHESIZER f_internal = <4810MHz – 4960MHz> f_output = <2405MHz – 2480MHz> AAF LPF ADC ADC DAC DAC DEMODULATOR MODULATOR RADIO CONTROLLER AND DATA INTERFACE QI QI RF_N RF_P I Q I Q CLOCK MUX P 2 . 3 P 2 . 4 X O S C _ Q 2 X O S C _ Q 1 16MHz RC-OSC 32kHz RC-OSC 32MHz Crystal OSC 32.768kHz Crystal OSC ADC CLOCK DC/DC 3.6V LDO 3.3V uUSB 5.0V P0.3P0.5P0.4P0.6P2.0
Texas Instruments Norway AS Gaustadalléen 21 0349 Oslo Norway (+47) 22 95 85 44 (+47) 22 95 85 46 Page 1 of 1 Feb 26th, 2013 Zlight2 is a CC2531 based development tool for IEEE802.15.4 lighting solutions in the 2.4GHz ISM band. The CC2531 is a System-on-Chip solution tailored for 2.4- GHz USB Applications. Zlight2 has an on-board PCB antenna. The board does not have any form of housing or cover. Zlight2 is an engineering development board and cannot be used in an end product. Texas Instruments Norway AS requests Nemko AS to do all necessary testing on the Zlight2 board to be FCC certified according to FCC CFR 47 Part 15.247 for systems operating in the 2.4GHz ISM band. _________________ Magnus Wines Tools Manager
PHOTOS of EUT Project no.: 224123 FCC ID: ZATZLIGHT2 Page 1 of 1 INTERNAL PHOTOS – ZLIGHT2 Zlight2, EUT for radiated measurements
Texas Instruments Norway AS Gaustadalléen 21 0349 Oslo Norway (+47) 22 95 85 44 (+47) 22 95 85 46 Page 1 of 1 Label Description The Zlight2 will not have labels. All signage will be in the silk print as follows: 40mm
PHOTOS of EUT Project no.: 224123 FCC ID: ZATZLIGHT2 Page 1 of 1 INTERNAL PHOTOS – ZLIGHT2 Zlight2, EUT for radiated 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 Zlight2 is an evaluation board demonstrating the CC2531 chip from Texas Instruments used as an LED light controller. The board is powered through USB, receiving +5V DC through the micro USB connector and drawing up to 500mA under normal operation. The wireless control protocol used is ZigBee Light Link, which employs an IEEE802.15.4 MAC at 2.4GHz. The frequency range is 2405MHz to 2480MHz, with 5MHz channel spacing. The PHY layer uses a DSSS technique with a chip rate of 2Mbps and a data rate of 250kbps. The modulation format is half sine shaped O-QPSK. The CC2531 System on Chip has a differential RF output. On the Zlight2 board, this differential output is fed to a half wave dipole antenna through a simple filter to reduce harmonic radiation. The antenna is integrated on the board. The antenna gain is 2.15dBi. There is no single ended- or 50 ohm reference plane on the Zlight2 board, which means that standard RF measurement equipment cannot be connected to the board through a conductive path.
Zlight2 Revised: Thursday, November 08, 2012CC2531_ZL_LED_demo (DesignSync 11342) Revision: 3.2Bill Of Materials February 25,2013 14:45:01Page1Item Quantity Reference Part Description MPN ______________________________________________ 1 1 CR1 LA CP7P OPTO, LED, 2.6V, 0.35A, SMD LA CP7P 2 1 CR2 LD CP7P OPTO, LED, 3.7V, 0.35A, SMD LD CP7P 3 1 CR3 LT CP7P OPTO, LED, 3.5V, 0.35A, SMD LT CP7P 4 1 CR4 LUW CP7P OPTO, LED, 3.75V, 0.35A, SMD LUW CP7P 5 1 C3 1uF CAPACITORS, CERAMIC, 1uF, 15%, X5R, 10V, 0603, SMD GRM188R61A105KA61D 6 1 C4 DNM CAPACITOR, DO NOT MOUNT, 0603, SMD 7 2 C21,C31 47pF CAPACITOR, CERAMIC, 47pF, 5%, C0G, 50V, 0402, SMD GRM1555C1H470JZ01D 8 2 C41,C42 4.7uF CAPACITOR, CERAMIC X5R, 4.7uF, 6.3V, -10%/+10%, -55DEGC/+85DEGC, 0603, SMD GRM188R60J475KE19D 9 4 C101,C241,C271,C311 100nF CAPACITOR, CERAMIC X7R, 100nF, 6.3V, -10%/+10%, -55DEGC/+125DEGC, 0402, SMD GRM155R70J104KA01D 10 3 C211,C391,C401 1uF CAPACITOR, CERAMIC X5R, 1uF, 10V, -10%/+10%, -55DEGC/+85DEGC, 0402, SMD GRM155R61A105KE15D 11 2 C221,C231 15pF CAPACITOR, CERAMIC C0G/NP0, 15pF, 50V, -5%/+5%, -55DEGC/+125DEGC, 0402, SMD GRM1555C1H150JA01D 12 2 C251,C261 1.5pF CAPACITOR, CERAMIC C0G/NP0, 1.5pF, 50V, -0.25pF/+0.25pF, -55DEGC/+125DEGC, 0402, SMD GRM1555C1H1R5CA01D 13 1 C272 220pF CAPACITOR, CERAMIC C0G/NP0, 220pF, 50V, -5%/+5%, -55DEGC/+125DEGC, 0402, SMD GRM1555C1H221JA01D 14 1 C392 22pF CAPACITOR, CERAMIC C0G/NP0, 22pF, 50V, -5%/+5%, -55DEGC/+125DEGC, 0402, SMD GRM1555C1H220JA01D 15 1 C393 10uF CAPACITOR, CERAMIC X5R, 10uF, 6.3V, -20%/+20%, -55DEGC/+85DEGC, 0603, SMD GRM188R60J106ME47D 16 2 C394,C395 18pF CAPACITOR, CERAMIC C0G/NPO, 18pF, 50V, -55DEGC/+125DEGC, 0402, SMD GRM1555C1H180JA01D 17 2 C402,C403 2.2pF CAPACITOR, CERAMIC C0G/NP0, 2.2pF, 50V, -0.25pF/+0.25pF, -55DEGC/+125DEGC, 0402, SMD GRM1555C1H2R2CA01D 19 1 J2 1981568-1 CONNECTOR, USB-B, 5 PINS, PITCH 0.65mm, SMD 1981568-1 21 1 L251 3.9nH INDUCTOR, CHIP, 3.9nH, -0.3nH/+0.3nH, 0.3A, -55DEGC/+125DEGC, 0402, SMD LQG15HS3N9S02D 22 1 L262 2.2uH INDUCTOR, CHIP, 2.2uH, -20%/+20%, 1A, -55DEGC/+125DEGC, 1008, SMD LQM2HPN2R2MJ0L 23 3 L263,L264,L265 22nH INDUCTOR, STANDARD, CHIP, 22nH, -5%/+5%, 0.3A, -55DEGC/+125DEGC, 0402, SMD LQG15HS22NJ02D 27 1 P1 FTSH-105-01-F-DV-K CONNECTOR, HEADER, MALE, STRAIGHT, 10 PINS, 2 ROWS, PITCH 1.27mm, SMD FTSH-105-01-F-DV-K 28 4 Q1,Q2,Q3,Q4 BC817-16 TRANSISTOR, BIPOLAR NPN, 45V, 0.5A, 0.25W, SOT23-3, SMD BC817-16,215 29 1 R1 560 RESISTOR, THICK FILM, 560, -5%/+5%, 0.063W, 50V, -55DEGC/+155DEGC, 0402, SMD RESISTOR_0402_560_+/-5%_50V_0.063W_M_+/-200PPM 30 3 R2,R3,R4 1k RESISTOR, THICK FILM, 1k, -5%/+5%, 0.063W, 50V, -55DEGC/+155DEGC, 0402, SMD RESISTOR_0402_1k_+/-5%_50V_0.063W_M_+/-200PPM 31 1 R5 DNM RESISTOR, DO NOT MOUNT, 0402, SMD 32 2 R21,R31 33 RESISTOR, THICK FILM, 33, -1%/+1%, 0.063W, 50V, -55DEGC/+155DEGC, 0402, SMD RK73H1ETTP33R0F 33 4 R32,R74,R75,R78 1.5k RESISTOR, THICK FILM, 1.5k, -1%/+1%, 0.063W, 50V, -55DEGC/+155DEGC, 0402, SMD RK73H1ETTP1501F 34 1 R41 2 RESISTOR, THICK FILM, 2, -1%/+1%, 0.063W, 50V, -55DEGC/+155DEGC, 0402, SMD RK73H1ETTP2R00F 35 1 R45 820k RESISTOR, THICK FILM, 820k, -1%/+1%, 0.063W, 50V, -55DEGC/+155DEGC, 0402, SMD RESISTOR_0402_820k_+/-1%_50V_0.063W_M_+/-100PPM 36 1 R46 160k RESISTOR, THICK FILM, 160k, -5%/+5%, 0.063W, 50V, -55DEGC/+155DEGC, 0402, SMD RESISTOR_0402_160k_+/-5%_50V_0.063W_M_+/-200PPM 37 1 R64 2.7 RESISTOR, THICK FILM, 2.7, -5%/+5%, 0.25W, 200V, -55DEGC/+155DEGC, 1206, SMD RESISTOR_1206_2.7_+/-5%_200V_0.25W_M_+/-200PPM 38 3 R65,R66,R67 1 RESISTOR, THICK FILM, 1, -5%/+5%, 0.25W, 200V, -55DEGC/+155DEGC, 1206, SMD RESISTOR_1206_1_+/-5%_200V_0.25W_M_+/-200PPM 39 2 R68,R76 DNM RESISTOR, DO NOT MOUNT, 0402, SMD DNM 40 1 R69 56k RESISTOR, THICK FILM, 56k, -1%/+1%, 0.063W, 50V, -55DEGC/+155DEGC, 0402, SMD RESISTOR_0402_56k_+/-1%_50V_0.063W_M_+/-100PPM 41 1 R70 6.8k RESISTOR, THICK FILM, 6.8k, -5%/+5%, 0.063W, 50V, -55DEGC/+155DEGC, 0402, SMD RESISTOR_0402_6.8k_+/-5%_50V_0.063W_M_+/-200PPM 42 3 R71,R72,R73 1.2k RESISTOR, THICK FILM, 1.2k, -5%/+5%, 0.063W, 50V, -55DEGC/+155DEGC, 0402, SMD RESISTOR_0402_1.2k_+/-5%_50V_0.063W_M_+/-200PPM 43 1 SW1 1188E-1W2-V SWITCH, TACT, 0.05A@250VAC, 0.05A@12VDC, 0.05A, 250V, PTH 1188E-1W2-V 45 1 U1 CC2531 IC, ANALOG, A USB ENABLED SYSTEM ON CHIP SOLUTION FOR 2.4 GHz IEEE 802.15.4 AND ZigBee APPLICATIONS, 2V TO 3.6V, VQFN40 CC2531F256RHAR 46 1 U3 TPS76933 IC, ANALOG, ULTRALOW-POWER LINEAR REGULATORS, VIN:32.7V TO 10V, VOUT: 3.3V, SOT23-5, SMD TPS76933DBVT 47 1 U4 TPS62290 IC, ANALOG, 1A STEP DOWN CONVERTER, VIN;2.3V TO 6V, VOUT; ADJ 0.6V TO 6V, SON6, SMD TPS62290DRVT 48 1 Y1 32MHz CRYSTAL, OSCILATOR, 32MHz, 12pF, -10PPM/+10PPM, -40DEGC/+85DEGC, SMD NX2016SA32MHzEXS00A-C504859 from NDK 49 1 Y3 32.768kHz CRYSTAL, RESONATOR, 32.768kHz, -20PPM/+20PPM, -40DEGC/+85DEGC, SMD EXS00A-MU00301_32.768kHz_NX3215SA from NDK
Texas Instruments Norway AS Gaustadalléen 21 0349 Oslo Norway (+47) 22 95 85 44 (+47) 22 95 85 46 Page 1 of 1 Tune-up Procedure The Zlight2 will be pre-programmed with an output power level of 4 dBm.
FCC ID: ZATZLIGHT2 MPE Calculation for FCC Uncontrolled Environment Formula from page 18 of OET Bulletin 65, Edition 97 -01 where: S = power density P = power input to the antennaG = power gain of the antenna in the direction of i nterest relative to an isotropic radiator R = distance to the center of radiation of the ante nna Source Based Time Averaged Duty Cycle is 100% in ca lculation below Maximum peak output power at antenna input terminal : 4.25 (dBm) Maximum peak output power at antenna input terminal : 0.003 (W) Maximum antenna gain: 2.15 (dBi) Maximum antenna gain: 1.641 (numeric) Prediction distance: 20 (cm) Prediction frequency: 2440 (MHz) Time Averaged Duty Cycle 100 % MPE limit for uncontrolled exposure at prediction f requency: 10.00 (W/m^2) Power density at prediction frequency: 0.0009 (mW/cm^2) Power density at prediction frequency: 0.009 (W/m^2) Maximum allowable antenna gain: 32.76 (dBi) Margin of Compliance: 30.61 (dB) 2 4 R PG S π =
55 44 33 22 11 D D C C B B A A External pull-up resistordriven by P1_0 USB interface Voltage regulator (LDO) Place close to pin39 Place close to pin21 Place close to pin10 Place close to pin31 Place close to pin24 Place close to pin 27, 28 and 29 Radio supply voltage Place holder fora large capacitorif needed close topower supply 32 MHz crystal DC-DC for low loss 3.33VLED voltage supply Debug header 32.768kHz crystal Amber/Red(624nm) LED Deep Blue(452nm) LED True Green(520nm) LED Bright White LED Debug data Debug clock Remove R74 ifR76 is mounted 2.4GHz dipole antenna 1.5mm Plated mounting holes 3mm Mounting holes Hot Surface Label P1_0 USB_NUSB_P VDD_SoC XOSC32M_Q2 XOSC32M_Q1 Reset_N Reset_N VDD_SoC 3V33_LEDsupply 3V33_LEDsupply 3V33_LEDsupply 3V33_LEDsupply 3V33_LEDsupply VDD_SoC P1_2 P1_2 TitleSize Document Number Rev Date: Sheet of CC2531_ZL_LED_demo (DesignSync 11342) 3.2 Zlight2 A3 1 1 Thursday, November 08, 2012 TitleSize Document Number Rev Date: Sheet of CC2531_ZL_LED_demo (DesignSync 11342) 3.2 Zlight2 A3 1 1 Thursday, November 08, 2012 TitleSize Document Number Rev Date: Sheet of CC2531_ZL_LED_demo (DesignSync 11342) 3.2 Zlight2 A3 1 1 Thursday, November 08, 2012 MH2 HOLE_1.5mm_PTH TP1 TP_2MMX2MM_SMD C261 1.5pF FIDU3 C3 1uF R45820k R5DNM C251 1.5pF R741.5k MH6 HOLE_3.0mm_PTH MH1 HOLE_1.5mm_PTH R321.5k Q4BC817-16 1 32 R412 U1C CC2531 P1_5 5 P1_4 6 P1_3 7 P1_2 8 P1_1 9 P1_0 11 P1_7 37 P1_6 38 R46160k CR1LA CP7P 21 3 C395 18pF L26522nH 1 2 Q3BC817-16 1 32 C392 22pF R6956k C394 18pF R706.8k C101 100nF U4TPS62290 SW 1 EN 4 GND 6 MODE 2 VIN 5 FB 3 EGP 7 SHIELD SHIELD VBUS D+ D- ID GND J2 1981568-1 2 4 1 3 6 7 8 9 5 10 11 FIDU4 C391 1uF TP2 TP_2MMX2MM_SMD C4 DNM R41k R31kFIDU2 CR2LD CP7P 21 3 C241 100nF Y3 32.768kHz C211 1uF L2622.2uH 1 2 U1DCC2531 P2_4/XOSC32K_Q1 32 P2_3/XOSC32K_Q2 33 P2_2 34 P2_1 35 P2_0 36 C42 4.7uF R671 FIDU6 R21k C271 100nF C23115pF C221 15pF U3TPS76933 GND 2 OUT 5 NC 4 IN 1 EN 3 R661 P1 FTSH-105-01-F-DV-K 2468 13579 10 U1BCC2531 P0_7 12 P0_6 13 P0_5 14 P0_4 15 P0_3 16 P0_2 17 P0_1 18 P0_0 19 Q1BC817-16 1 32 R731.2k R721.2k SW1 1188E-1W2-V 13 42 C31 47pF R651 R642.7 R76DNM CR3LT CP7P 21 3 C403 2.2pF R711.2k C311 100nF C21 47pF R781.5k Y132MHz 1 2 4 3 C402 2.2pF Q2BC817-16 1 32 R1560 CR4LUW CP7P 21 3 L2513.9nH 12 C393 10uF C272 220pF C401 1uF MH5 HOLE_3.0mm_NPL LBL1HOT_SURFACE_LABEL C41 4.7uF MH3 HOLE_1.5mm_PTH R68DNM FIDU1 R2133 L26422nH 1 2 L26322nH 1 2 FIDU5 R3133 U1A CC2531 USB_P 2 nUSB 3 nRESET 20 XOSC_Q1 22 XOSC_Q2 23 RF_P 25 RF_N 26 GND 41 DGND_USB 1 DVDD_USB 4 DVDD2 10 AVDD5 21 AVDD3 24 AVDD2 27 AVDD1 28 AVDD4 29 RBIAS 30 AVDD6 31 DVDD1 39 DCOUPL 40 MH4 HOLE_3.0mm_NPL R751.5k
Nemko AS, Gaustadalléen 30, P.O.Box 73 Blindern, NO-0314 Oslo NorwayT+47 22 96 03 30F+47 22 96 05 50 Enterprise number NO974404532 Visiting address: NemkoKjeller,Instituttveien6,P.O.Box 96,NO-2027 Kjeller NorwayT+47 64 84 57 00F+47 64 84 57 05 Test report no. :224123-3 Item tested :Zlight2 Type of equipment :2.4 GHz Transceiver FCC ID :ZATZLIGHT2 Client :Texas Instruments Norway AS FCCPart 15.247 Digital Transmission System RSS-210, Issue8 Low Power Licence-Exempt Radiocommunication Devices 25February2013 Authorized by :.............................................. Frode Sveinsen Technical Verificator TEST REPORT FCC part 15.247 Ref.no.:224123-3 FCC ID:ZATZLIGHT2 IC: 451H-ZLIGHT2 NemkoAS, NO-2027 KjellerPage2(66) CONTENTS 1GENERAL INFORMATION......................................................................................................3 1.1Testhouse Info..........................................................................................................................3 1.2Client Information......................................................................................................................3 1.3Responsible Manufacturer (If other than client)........................................................................3 2TEST INFORMATION...............................................................................................................4 2.1Test Item...................................................................................................................................4 2.2Test Environment......................................................................................................................5 2.3Test Period................................................................................................................................5 3TEST REPORT SUMMARY.....................................................................................................6 3.1General.....................................................................................................................................6 3.2Test Summary...........................................................................................................................7 3.3Description of modification for Modification Filing.....................................................................7 3.4Comments................................................................................................................................7 3.5Family List Rational..................................................................................................................7 4TEST RESULTS.......................................................................................................................8 4.1Power Line Conducted Emissions............................................................................................8 4.2Minimum 6 dB Bandwidth.........................................................................................................9 4.320 dB Bandwidth.....................................................................................................................13 4.4Peak Power Output.................................................................................................................15 4.5Spurious Emissions (Radiated)..............................................................................................19 4.6Power Spectral Density (PSD)................................................................................................61 5LIST OF TEST EQUIPMENT..................................................................................................65 6BLOCK DIAGRAM.................................................................................................................66 6.1Power Line Conducted Emission............................................................................................66 6.2Test Site Radiated Emission...................................................................................................66 TEST REPORT FCC part 15.247 Ref.no.:224123-3 FCC ID:ZATZLIGHT2 IC: 451H-ZLIGHT2 NemkoAS, NO-2027 KjellerPage3(66) 1GENERAL INFORMATION 1.1Testhouse Info Name :NemkoAS Address :NemkoKjeller Instituttveien6, 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:66 1.2Client 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] 1.3ResponsibleManufacturer(If other than client) Same astheclient. TEST REPORT FCC part 15.247 Ref.no.:224123-3 FCC ID:ZATZLIGHT2 IC: 451H-ZLIGHT2 NemkoAS, NO-2027 KjellerPage4(66) 2TESTINFORMATION 2.1TestItem Name :Texas Instruments FCC ID :ZATZLIGHT2 IC :451H-ZLIGHT2 Model/version :Zlight2 Serial number :- Hardware identity and/or version:- Software identity and/or version :- Frequency Range :2405–2480 MHz Number of Channels :16 Type ofModulation :250 kbps, OQPSK (Digital) ConductedOutput power:2.7mW (Peak) User Frequency Adjustment :None Type of Power Supply : 6.0V DC (FourAALR61.5 V DC batteries) Antenna Connector :PCBantenna Antenna Diversity Supported :No Desktop Charger :None Description of Test Item TheZlight2supportsZigbee/IEEE802.15.4standard, which is consideredDigitalModulation per FCC part 15.247. Exposure Evaluation The EUT is exempted from RF Exposure Evaluation. TEST REPORT FCC part 15.247 Ref.no.:224123-3 FCC ID:ZATZLIGHT2 IC: 451H-ZLIGHT2 NemkoAS, NO-2027 KjellerPage5(66) 2.2Test Environment 2.2.1Normal test condition Temperature: 19.6–21.5C Relative humidity:20.2–43.3% Normal test voltage:Nominal 6.0VDC (4x AAbattery type/ LR6) Newbatterieswereusedfor all tests. The values are the limit registered during the test period. 2.3Test Period Item received date:2013-01-07 Test period :from 2013-…
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Photos of Test Set-up Project no.: 224123 FCC ID: ZATZLIGHT2 Page 1 of 2 PHOTOS OF TEST SET-UP – ZLIGHT2 XY plane - Radiated Emissions Radiated emissions - < 30MHz, 10 meter Photos of Test Set-up Project no.: 224123 FCC ID: ZATZLIGHT2 Page 2 of 2 Radiated Emissions 30 - 1000 MHz, 3 meter Radiated emissions 1 – 25 GHz, 3 meter & 1 meter
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 2.70 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