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ZAT2533EMThe CC2533EM is a development tool for TIs 2.4 GHz CC2533 IEEE 802.15.4 System-on-Chip.

Texas Instruments Inc.
The CC2533EM is a development tool for TIs 2.4 GHz CC2533 IEEE 802.15.4 System-on-Chip. - FCC ID ZAT2533EM - Texas Instruments Inc.
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Nov 18, 2013
Application Purpose
Original Equipment
Date of Application
Nov 18, 2013
Equipment Note
The CC2533EM is a development tool for TIs 2.4 GHz CC2533 IEEE 802.15.4 System-on-Chip.
Frequency Range
2405.00000000 - 2480.00000000
Company
Texas Instruments Inc.
Country
United States

Documents & Files

Select a file to view

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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RF Exposure 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

SWRU253A October 2013 CC2533EMK Quick Start Guide 1. Kit Contents 2 x CC2533EM with PCB antennas 2 x Pulse W1010 2.4 GHz antennas Documentation The RF boards in this kit are FCC and IC certified and tested to comply with ETSI/R&TTE standards over temperature from 0 to +35°C. The antenna, W1010 from Pulse, is a ¼ wave dipole antenna with 2 dBi gain. FCC/IC Regulatory Compliance FCC Part 15 Class A Compliant IC ICES-003 Class A Compliant 2. Plug EM into SmartRF05EB In order to run the pre-programmed packet error rate test on the device, you need 2 SmartRF05 Evaluation Boards. The SmartRF05EB is included in the CC2533 Development Kit Error! Reference source not found.. Note that you DO NOT need the SMA antenna, as the PCB antenna is used by default. 3. Power Options There are several ways of applying power to the SmartRF05EB;  USB (5V through USB plug)  External Power Supply (requirements below)  2 x 1.5V AA Non-Rechargeable Alkaline Batteries Voltage regulators on the SmartRF05EB will set the on-board voltage to 3.3V. External Power Supply 1 Requirements: Nom Voltage: 4 to 20 VDC Max Current: 1500 mA Efficiency Level V Warning! To minimize risk of personal injury or property damage, never use rechargeable batteries to power the board. 4. Select Power Source Locate the power source header P11 just above the LCD on the SmartRF05EB Connect pins 1 and 2 if you are using batteries to power the board. Connect pins 2 and 3 if you are using USB or external power supply. Once you have set P11, find switch P8 just next to the DC jack on the SmartRF05EB. To power on the board, flip the switch from “OFF” to “ON”. 4. Packet Error Rate (PER) When power is applied to the SmartRF05EB, the preprogrammed PER test on the CC2533 will start running. The LCD will display the screen as shown in the picture above. The number in the parentheses is the revision of the CC2533. Press Button 1 to continue. 5. Select Channel Select one of the 16 IEEE 802.15.4 channels, with channel number from 11 to 26 (2405-2480 MHz, 5 MHz channel spacing). Select the same channel for both boards. The channel number is increased by moving the joystick in any direction. Press Button 1 to confirm the selection. 6 Set up the Receiver Set one of the boards to operate as receiver. Use the joystick to select mode. Confirm by pressing Button 1. The receiver will now wait for packets from the transmitter. 7. Set up the Transmitter Set the other board to operate as transmitter. Use the joystick to select mode. Confirm the selection by pressing Button 1. On the transmitter node, additional parameters have to be set. On the next screen, select the TX output power (signal strength). Use the joystick to select between -3 dBm, 0 dBm, 4.5 dBm or 7 dBm. Confirm the selection with Button 1. 8. TX: Packets and Packet Rate Next, select burst size (number of packets to send) by using the joystick, either 1000, 10K, 100K or 1M packets. Confirm the selection with Button 1. After selecting burst size, select packet rate; 100, 50, 20 or 10 packet per second. Confirm the selection with Button 1. 1 When using an external power supply, make sure it meets the listed requirements in addition to complying with applicable regional product regulatory and safety certification requirements such as UL, CSA, VDE, CCC, and PSE. SWRU253A October 2013 9. TX: Start PER Test The transmitter is now configured for the PER test. The PER test is started and stopped by moving the joystick (in any direction). The transmitter will display the number of packets sent during the PER test. After stopping the test, it will start from the beginning if the test is restarted. 10. RX: Observe PER The PER test receiver will display the PER value (number of lost and erroneous packets divided by the number of packets sent, displayed as a fraction of 1000). The receiver will also display the number of received packets and an average RSSI value based on the last 32 packets. By pressing button 1, all counters on the receiver will be reset and the receiver will restart the PER calculations. 11. SmartRF Studio After running the PER test, the next recommended step is to install SmartRF Studio and to connect the evaluation board to the PC. When installing SmartRF Studio, you will also install the USB drivers required for Studio and other tools to communicate with the radio and the SmartRF05EB board. SmartRF Studio can be used for RF testing and evaluation of C2533 SmartRF Studio can be downloaded from www.ti.com/smartrfstudio. 12. Flash Programmer Texas Instruments has a simple tool which can be used to program the flash on the CC2533. The Flash Programmer application, available on the kit web page [2], can be used to program Intel HEX files, read the contents of flash and several other operations. Programming of a CC2533 can be done with a SmartRF05EB or a CC Debugger. Production programming tools are available from TI’s developer network [4]. 13. IAR Embedded Workbench To develop software, program and debug the CC2533, you should use IAR Embedded Workbench for 8051. A free, code size limited version can be downloaded from the web. See www.iar.com/ew8051. 14. Packet Sniffer In order to debug RF protocols, it is possible to use TI’s SmartRF Packet Sniffer. You can use a CC2531 USB dongle or the SmartRF05EB with a CC2530EM to capture packets. A. Available Software CC2533 Software Examples Source code for the PER test and other simple examples for the CC2533 [1]. RemoTI™ Network Protocol TIs’ implementation of the ZigBee RF4CE standard: www.ti.com/remoti TIMAC Software TI’s IEEE 802.15.4 medium-access-control stack: www.ti.com/timac B. More information On Texas Instruments’ Low-Power RF web site you will find all our latest products, application and design notes, FAQ section, news and events updates, and much more. Just go to www.ti.com/lprf The Low Power RF Online Community has forums, blogs and videos. Use the forums to find information, discuss and get help with your design. Join us at www.ti.com…

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Block Diagram

CC2533EM CC2533 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 X O S C _ Q 2 X O S C _ Q 1 16MHz RC-OSC 32kHz RC-OSC 32MHz Crystal OSC BALUN ADC CLOCK

External Photos

PHOTOSof EUT Project no.:182238 FCC ID: ZAT2533EM Page1of2 INTERNALPHOTOS–CC2533EM CC2433EM, EUT for radiated measurements PHOTOSof EUT Project no.:182238 FCC ID: ZAT2533EM Page2of2 Auxiliary device-Mother board–SmartRF05EB

ID Label/Location Info

Certification Document Label 1/1 Description of FCC/IC/CE marking on CC2533EM FCC/IC/CE labeling of product is shown below. There is a separate label with the model name, optional variant designator, revision, serial number, FCC ID and IC number. Texas Instruments Model: CC2533EM (xx) Rev. x.x.x S.No.: xxxxxx FCC ID: ZAT2533EM IC: 451H-2533EM ~ 1 3 m m ~ 25 mm The illustrations below show the placement of the label on the product (front and back). ~39 mm ~ 3 9 m m T e x a s I n s t r u m e n t s M o d e l : C C 2 5 3 3 E M ( 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 3 3 E M I C : 4 5 1 H - 2 5 3 3 E M The label manufacturer is Brady. Label part number B473 (http://www.bradyid.com/bradyid/domino/contentView.do/B473.html) with print using series R6000 ribbons (R6007 - http://www.bradyid.com/bradyid/pdpv/IP-R6007.html).

Internal Photos

PHOTOSof EUT Project no.:182238 FCC ID: ZAT2533EM Page1of2 INTERNALPHOTOS–CC2533EM CC2433EM, EUT for radiated measurements PHOTOSof EUT Project no.:182238 FCC ID: ZAT2533EM Page2of2 Auxiliary device-Mother board–SmartRF05EB

Operational Description

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 CC2533EM is a development tool for IEEE802.15.4 solutions in the 2.4GHz ISM band. The CC2533 is a System-on-Chip solution tailored for 2.4 GHz ZigBee RF4CE applications. The CC2533EM board is equipped with a 2.4 GHz PCB antenna. The board does not have any form of housing or cover. The CC2533EM is an engineering development board and cannot be used in an end product. The wireless control protocol is based on IEEE802.15.4 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 CC2533 System on Chip has a differential RF output. On the CC2533EM this differential output is fed to a balun and a filter towards the antenna.

Parts List/Tune Up Info

CC2533EM PARTLIST 1.7.0 Ref. Part namePcs/unitDescriptionManufacturerPart number U1CC25331Single-chip SoCTICC2533 C253;C255;C257C_0402, DO NOT MOUNT0#N/A#N/A#N/A C101;C211;C241;C271;C311C_100N_0402_X5R_K_105Capacitor, 100n, 0402, X5R, 10%, 10VMurataGRM155R71A104KA01D C221;C231C_15P_0402_NP0_J_502Capacitor, 15p, 0402, NP0, 5%, 50VMurataGRM1555C1H150JZ01D C251;C261C_18P_0402_NP0_J_502Capacitor, 18p, 0402, NP0, 5% 25VMurataGRM1555C1H180JZ01D C252;C262C_1P0_0402_NP0_C_502Capacitor, 1p, 0402, NP0, +/-0.25pF 50VMurataGRM1555C1H1R0CZ01D C391;C401C_1U_0402_X5R_K_6P32Capacitor, 1u, 0402, X5R, 10%, 6.3VMurataGRM155R60J105KE19D C272C_220P_0402_NP0_J_501Capacitor, 220p, 0402, NP0, 5%, 50VMurataGRM1555C1H221JA01D C254C_2P2_0402_NP0_C_501Capacitor, 2p2, 0402, NP0, +-0.25pF, 50VMurataGRM1555C1H2R2CZ01 C341C_2P4_0402_NP0_B_501Capacitor, 2p4, 0402, NP0, +-0.1pF, 50VMurataGRM1555C1H2R4BZ01 C1C_2U2_0402_X5R_M_6P3VDC1Capacitor, 2u2, 0402, X5R, +/-20%, 6.3VMurataGRM155R60J225ME L251L_0402, DO NOT MOUNT0#N/A#N/A#N/A L252;L261L_2N0_0402_S2Inductor, 2n0, 0402, +/-0.3 nHMurataLQG15HS2N0S02D L1L_BEAD_102_04021EMI filter bead, 0402 1Kohms Tape GHz Band Gen UseMurataBLM15HG102SN1D R256R_0_0402_3PORT_1-21Resistor 3 ports, 0 ohm, 0402, mounted between pad 1 and pad 2KoaRK73Z1ETTP R301R_56K_0402_F1Resistor, 56k ohms, 0402, ±1% KoaRK73H1ETTP5602F P3SMA_SMD1SMA connector, straight SMD-mountHus-Tsan Group TaiwanSMA-10V21-TGG P1-2SMD_SOCKET_2x102SMD pinrow socket, .050 spacing, 2x10SamtecSFM-110-02-SM-D-A-K-TR 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 Total27

RF Exposure Info

SAR Exclusion Justification for FCC ID ZAT2533EM Test exclusion thresholds for 100 MHz to 6 GHz at test separation distances ≤ 50 mm Guidance document reference: 447498 D01 General RF Exposure Guidance v05r01, page 11, paragraph 4.3.1(1). The 1-g and 10-g SAR test exclusion thresholds for 100 MHz to 6 GHz at test separation distances ≤ 50 mm are determined by: [(max. power of channel, including tune-up tolerance, mW)/(min. test separation distance, mm)] * [√f(GHz)] ≤ 3.0 for 1-g SAR and ≤ 7.5 for 10-g extremity SAR, where • f(GHz) is the RF channel transmit frequency in GHz • Power and distance are rounded to the nearest mW and mm before calculation • The result is rounded to one decimal place for comparison • 3.0 and 7.5 are referred to as the numeric thresholds in the step 2 below The test exclusions are applicable only when the minimum test separation distance is ≤ 50 mm and for transmission frequencies between 100 MHz and 6 GHz. When the minimum test separation distance is < 5 mm, a distance of 5 mm according to 5) in section 4.1 is applied to determine SAR test exclusion. SAR test exclusion analysis: Assumptions: Since the exact separation distance may vary from sensor to sensor, the minimum separation distance of 5 mm is assumed per the guidance document. Max. power of channel:1.6mW Min. separation distance:5 mm Max. frequency:2.48GHz [(Pwr/Dist)*Freq.] =0.8 The result of the above SAR threshold calculation demonstrates that the result is less than the 1-g numeric threshold of 3 and the 10-g numeric threshold of 7.5. Conclusion: The above analysis shows that the digital transmission system transceiver with FCC ID ZAT2533EM qualifies for exemption from SAR testing. Signed: Tom Tidwell, Technical Manager 11 Novem ber, 2013 Nemko USA, Inc.

Schematics

VDD VDD 1 FM4 FIDUCIAL_MARK_1mm 12 3 R256 R_0_0402_3PORT_1-2 1 2 C401 C_1U_0402_X5R_K_6P3 12 L261 L_2N0_0402_S 1 2 3 4 X1X_32.000/10/10/40/12 1 FM2 FIDUCIAL_MARK_1mm 12 L1 L_BEAD_102_0402 1 2 3 45 P3 SMA_SMD 1 2 34 56 78 910 1112 1314 1516 1718 1920 P0.4P1.3 P0.1 P1.0 P0.2 P0.3 P2.1 P0.0 P2.2 P1.1P1.4 P0.6P1.5 P0.7 P1.6 P1.7 P1 SMD_SOCKET_2X10 1 2 R301R_56K_0402_F 12 34 56 78 910 1112 1314 1516 1718 1920 P1.2 P2.0 P2 SMD_SOCKET_2X10 1 2 L252 L_2N0_0402_S 1 2 L251 L_0402 1 2 C251 C_18P_0402_NP0_J_50 1 2 C255 C_0402 1 2 C221 C_15P_0402_NP0_J_50 1 FM1 FIDUCIAL_MARK_1mm 1 FM3 FIDUCIAL_MARK_1mm 1 FM5 FIDUCIAL_MARK_1mm 1 FM6 FIDUCIAL_MARK_1mm 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 34 35 36 37 38 39 40 41 P1.5 P1.4 P1.3 P1.1 P1.0 P0.7 P0.6 P0.4 P0.3 P0.2 P0.1 P0.0 Reset P2.2 P2.1 P1.7 P1.6 P0_5 P1_5 RBIAS AVDD2 P0_6 P0_7 P0_4 P1_6 P0_2 P1_7 P0_0 P0_1 P0_3 GND AVDD4 AVDD3 DCOUPL P1_0 P1_4 AVDD1 RESET_N P2_4 P1_1 P1_3 P1_2 RF_P P2_2 P2_3 P2_0 RF_N P2_1 DVDD1 DVDD2 NC NC AVDD5 AVDD6 XOSC_Q1 XOSC_Q2 SCL SDA U1 CC2533 1 2 3 A1 Antenna_IIFA_cc2420 1 2 C1 C_2U2_0402_X5R_M_6P3VDC 1 2 C271 C_100N_0402_X5R_K_10 1 2 C211C_100N_0402_X5R_K_10 1 2 C253 C_0402 1 2 C254 C_2P2_0402_NP0_C_50 1 2 C311C_100N_0402_X5R_K_10 1 2 C241 C_100N_0402_X5R_K_10 1 2 C101C_100N_0402_X5R_K_10 1 2 C257 C_0402 1 2 C231 C_15P_0402_NP0_J_50 12 C252 C_1P0_0402_NP0_C_50 1 2 C391C_1U_0402_X5R_K_6P3 1 2 C272 C_220P_0402_NP0_J_50 1 2 C261 C_18P_0402_NP0_J_50 1 2 C262 C_1P0_0402_NP0_C_50 1 2 P2.2 C341 C_2P4_0402_NP0_B_50 SCALESHEET APPROVALS DATE REV.DWG NO. DWG COMPANY NAME ISSUED CHECKED DRAWN FSCM NO.SIZE CONTRACT NO. Place close to chip for decoupling Texas Instruments 1 (1) NN SBT XXXXX A3 1.7.0 CC2533EM

Test Report

Nemko AS, Gaustadalléen 30, P.O.Box 73 Blindern, NO-0314 Oslo NorwayT+47 22 9603 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. :182238-3 Item tested :CC2533EM Type of equipment :2.4 GHz Transceiver FCC ID :ZAT2533EM Client :Texas Instruments Norway AS FCCPart 15.247 Digital Transmission System RSS-210, Issue8 Low Power Licence-Exempt Radiocommunication Devices 16September2013 Authorized by :.............................................. Frode Sveinsen Technical Verificator TEST REPORT FCC part 15.247 Ref.no.:182238-3 FCC ID:ZAT2533EM IC: 451H-2533EM NemkoAS, NO-2027 KjellerPage2(74) 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)..............................................................................................25 4.6Power Spectral Density (PSD)................................................................................................69 5LIST OF TEST EQUIPMENT..................................................................................................73 6BLOCK DIAGRAM.................................................................................................................74 6.1Power Line Conducted Emission............................................................................................74 6.2Test Site Radiated Emission...................................................................................................74 TEST REPORT FCC part 15.247 Ref.no.:182238-3 FCC ID:ZAT2533EM IC: 451H-2533EM NemkoAS, NO-2027 KjellerPage3(74) 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:74 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.:182238-3 FCC ID:ZAT2533EM IC: 451H-2533EM NemkoAS, NO-2027 KjellerPage4(74) 2TESTINFORMATION 2.1TestItem Name :Texas Instruments FCC ID :ZAT2533EM IC :451H-2533EM Model/version :CC2533EM Serial number :- Hardware identity and/or version:Rev 1.7 Software identity and/or version :- Frequency Range :2405–2480 MHz Number of Channels :16 Type ofModulation :250 kbps, OQPSK (Digital) ConductedOutputPower:1.6mW (Peak) User Frequency Adjustment :None Type of Power Supply : 3.0V DC (TwoAA1.5 V DC batteries) Antenna Connector :PCBantenna Antenna Diversity Supported :No Desktop Charger :None Description of Test Item The CC2533EM RF-transceiver module is an evaluation module developed for the 2.4 GHz ISM band. It is based on theCC2533system on-chip device. The physical layer of the radio complies with the IEEE 802.15.4 standard with Direct Sequence Spread Spectrum (DSSS) and offset-QPSK modulation. Exposure Evaluation The EUT is exempted from RF Exposure Evaluation. TEST REPORT FCC part 15.247 Ref.no.:182238-3 FCC ID:ZAT2533EM IC: 451H-2533EM NemkoAS, NO-2027 KjellerPage5(74) 2.2Test Environment 2.2.1Normal test condition Temperature: 19–23C Relative humidity:20–35% Normal test voltage:Nominal 3.0VDC (2x AAbattery) Newbatt…

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Test Setup Photos

Photos of Test Set-up Projectno.:182238 FCC ID: ZAT2533EM Page1of2 PHOTOS OF TEST SET-UP–CC2533EM XY plane-Radiated Emissions Radiated emissions-< 30MHz, 10meter Photos of Test Set-up Projectno.:182238 FCC ID: ZAT2533EM Page2of2 RadiatedEmissions30-1000MHz, 3 meter Radiated emissions 1–25GHz, 3 meter& 1 meter

Contact Information

Applicant

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

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 GHz1.60 mW
Grant Notes
Power listed is conducted. This device is for development purposes only and can not be used in a final product.

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