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XRSCRMXTIMO1012.4G Wireless Control Module

LumenRadio AB
2.4G Wireless Control Module - FCC ID XRSCRMXTIMO101 - LumenRadio AB
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Apr 18, 2015
Application Purpose
Original Equipment
Date of Application
Apr 18, 2015
Equipment Note
2.4G Wireless Control Module
Frequency Range
2402.00000000 - 2480.00000000
Company
LumenRadio AB
Country
Sweden

Documents & Files

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Users Manual

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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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RF Exposure Info

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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

Ͳ1Ͳ   TiMo RX RDM 200-1502̢ specifications Revision A – October 2, 2014 CONFIDENTIALITY NOTE ThisdocumentmaynotberedistributedwithoutpriorwrittenpermissionfromLumenRadioAB. GENERAL CRMX™isthefutureofwirelessDMXdistribution–awirelesssystemthatcommunicatesreliablywithperfect fidelity.CRMXisthemostpowerfulwirelesslightingcontrolsystemonthemarket,withgroundbreaking featurestoensureunrivalledreliability.CRMXdistributesDMXandRDM,withfullframeintegrityandprovides rangeandreliabilitythatsurpassallothersystemsavailabletoday.Thisdocumentdescribesthefunctionand specificationsoftheTiMoRXRDMreceivermodule.      Ͳ2Ͳ Table of Contents Introduction ....................................................................................................... 4 Features ............................................................................................................. 4 Pin assignments and functions ...........................................................................5 Pin assignments ................................................................................................................................... 5 Pin functions ........................................................................................................................................ 6 Typical application circuit ...................................................................................7 Reference design files ........................................................................................ 8 PCB mounting .................................................................................................... 8 Internal or External Antenna? ................................................................................................................ 8 Internal Antenna .............................................................................................................................. 8 Layout considerations for the main (Customer) board. .............................................................................. 8 Layout Example ................................................................................................................................... 9 TiMo reflow soldering specification ........................................................................................................ 11 LED outputs ......................................................................................................12 Status ............................................................................................................................................... 12 Linked .............................................................................................................................................. 12 RF Link ............................................................................................................................................. 12 DMX ................................................................................................................................................. 12 RDM LED ........................................................................................................................................... 12 Radio level ........................................................................................................................................ 13 Link switch input ..............................................................................................13 Antenna selection ............................................................................................ 13 SPI interface .................................................................................................... 14 Interface description ........................................................................................................................... 14 Bit and byte order .......................................................................................................................... 14 Clock polarity ................................................................................................................................ 14 Maximum clock speed ..................................................................................................................... 14 Setup time .................................................................................................................................... 14 SPI operation ..................................................................................................................................... 14 SPI transactions ............................................................................................................................. 14 SPI commands .............................................................................................................................. 15 Interrupts ......................................................................................................................................... 17 RX_DMX_IRQ ................................................................................................................................ 17 LOST_DMX_IRQ ............................................................................................................................. 17 DMX_CHANGED_IRQ ...................................................................................................................... 17 RF_LINK_IRQ ................................................................................................................................ 17 ASC_IRQ ....................................................................................................................................... 17 DMX Window register....................................................................................…

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Users Manual

Ͳ16Ͳ RF_LINK 1 R 0 0 = No radio link, 1 = Active radio link Reserved 2 - - Reserved for future use DMX 3 R 0 0 = No DMX from TX, 1 = DMX from TX Reserved 4-6 - - Reserved for future use UPDATE_MODE 7 R 0 0 = chip operational, 1 = In driver update mode 02 IRQ_MASKIRQ mask register RX_DMX_IRQ_EN 0 R/W 0 Enable DMX frame reception interrupt LOST_DMX_IRQ_EN 1 R/W 0 Enable loss of DMX interrupt DMX_CHANGED_IRQ_ EN 2 R/W 0 Enable DMX changed interrupt RF_LINK_IRQ_EN 3 R/W 0 Enable radio link status change interrupt ASC_IRQ_EN 4 R/W 0 Enable alternative start code interrupt Reserved 5-7 - - Reserved for future use 03 IRQ_FLAGS IRQ flags register RX_DMX_IRQ 0 R 0 Complete DMX frame received interrupt LOST_DMX_IRQ 1 R 0 Loss of DMX interrupt DMX_CHANGED_IRQ 2 R 0 DMX changed in DMX window interrupt RF_LINK_IRQ 3 R 0 Radio link status change interrupt ASC_IRQ 4 R 0 Alternative start code frame received interrupt Reserved 5-6 - - Reserved for future use SPI_DEVICE_BUSY 7 R 0 SPI slave device is busy and cannot comply with command. Command sequence MUST be restarted. 04 DMX_WINDOW Status register START_ADDRESS 0- 15 R/W 0 Start address of DMX window WINDOW_SIZE 16- 31 R/W 512 Length of DMX window 05 ASC_FRAME ASC frame info register START_CODE 0-7 R 0 Start code of received ASC frame ASC_FRAME_LENGTH 8- 23 R 0 Length of received ASC frame (0-512) 06 LINK_QUALITYRadio link quality register PDR 0-7 R - Packet delivery rate (display as %) 0 = 0%, 255 = 100% 07 ANTENNA Antenna selection register ANT_SEL 0 R/W 0/1 3 0 = On-board chip antenna, 1 = IPEX/u.FL connector Reserved 1-7 - - Reserved for future use 10 VERSION Version register DRIVER_VERSION 0- 31 R - Driver version HW_REVISION 32- 64 R - Hardwarerevision 20 BINDING_UID RDM binding UID register UID0- 47 R/W 0 RDM UID of the host device 3 Depending on the value of ANT_SEL pin. Ͳ17Ͳ Interrupts The IRQ pin is used to indicate that there is one (or more) pending interrupt that have been enabled through the IRQ_MASK register. The IRQ pin is also used to indicate that the SPI slave is ready to receive the second transaction of an ongoing SPI command sequence. The IRQ pin will always go high (inactive) after a successful SPI transaction. If any interrupts are pending, or when the chip is ready for the second transaction in a SPI command sequence it will be indicated through a high-to-low transition on the IRQ pin. RX_DMX_IRQ Asserted when a complete DMX frame has been received. Cleared by issuing a READ_DMX command sequence. LOST_DMX_IRQ Asserted when DMX stream is lost. This may be an effect of losing radio link, or if DMX stream in to the transmitter is terminated (for instance the DMX cable to the transmitter is unplugged). Cleared by reading the STATUS register. DMX_CHANGED_IRQ Asserted when a complete DMX frame has been received and any slot within the DMX window has changed value. Cleared by issuing a READ_DMX command sequence. RF_LINK_IRQ Asserted whenever the state of the radio link has changed. This may be: xradio link is lost xradio link is established xreceiver got paired to transmitter xreceiver got unpaired from transmitter Cleared by reading the STATUS register. ASC_IRQ Asserted when a complete ASC frame has been received. Cleared by reading the ASC_FRAME register. DMX Window register The DMX_WINDOW register is used for setting up the DMX window filtering function. Please refer to the section about DMX window on page 19 for more details. Antenna selection This register allows for controlling if the on-board chip antenna or an external antenna connected to the IPEX/u.FL connector is being used. This register overrides the selection made via the ANT_SEL pin. ANT_SEL pin is internally pulled high to default to IPEX/u.FL connector. Ͳ18Ͳ Version register This section describes the data that can be read from the VERSION register. Hardware revision Hardware revision is a 32bit number that shall be translated into a string. It indicates the revision number of the TiMo module. For instance the 32 bit value in hexadecimal form 0x000A0001 corresponds to module revision “000A0001”. Driver version The driver version is a 32bit value that shall be translated into a string on the form X.Y.Z.Y where X is the most significant byte of the 32 bit version number and Y is the least significant byte. For instance the 32 bit value 0x01000103 shall be presented as 1.0.1.3 on any UI or in any written representation. Binding UID The binding UID register can be written by the host processor to match the fixture’s RDM UID. This will result in SuperNova combing the devices together in the UI representation, resulting in a better user experience with a more user-friendly interface. Ͳ19Ͳ DMX Interface SPI DMX data is available to be read over SPI. This applies to both Null Start Code (NSC) data and Alternate Start Code (ASC) data. DMX window The DMX window feature allows a host CPU to set up a span of DMX slots (aka. a DMX window) that the host is interested of. This will reduce the load of the host since it does not need to buffer and parse the entire DMX frame. Instead the host can get an interrupt request (DMX_CHANGED_IRQ) from TiMo RX RDM whenever data has changed inside the DMX window. RX_DMX_IRQ is not affected by the settings of the DMX window. Reading DMX data over SPI When reading DMX data over SPI, the longest block of data possible to read is 128 bytes. If it is required to read more than 128 bytes this must be done by performing multiple consecutive READ_DMX command sequences. The internal data block counter is reset when the end of the DMX window is reached, or if any other command is being sent to the SPI slave. Please note that RDM start code messages are not currently supported over the SPI interface, so RDM communications shall be carried out over the UART DMX/RDM interface (pins 8, 10, 11 and 12). UART DMX/RDM interface The UART DMX/RDM interface of the TiMo RX RDM consist of 4 digital signals that can be used to interface an RS485 drive…

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Cover Letter(s)

chip antenna and intergral antenna with unique antenna port.

External Photos

Project No.: 1412C113 Page 3 of 8 Project No.: 1412C113 Page 5 of 8 Project No.: 1412C113 Page 6 of 8

ID Label/Location Info

FCC ID : XRSCRMXTIMO101 CRMX TIMO Model: 200-1502 IC : 8879A-CRMXT101

Internal Photos

Project No.: 1412C113 Page 4 of 7 Project No.: 1412C113 Page 5 of 7 Project No.: 1412C113 Page 6 of 7 Project No.: 1412C113 Page 7 of 7

RF Exposure Info

FCC RF EXPOSURE REPORT FCC ID: XRSCRMXTIMO101 Project No. : 1412C113 Equipment : 2.4G Wireless Control Module Model : 200-1502 Applicant : LumenRadio AB Address : Stena Center 1, Gothenburg, Sweden According: : FCC Guidelines for Human Exposure IEEE C95.1 BTL INC. No.3, Jinshagang 1st Road, Shixia, Dalang Town, Dongguan, China. TEL: +86-769-8318-3000 FAX: +86-769-8319-6000 MPE CALCULATION METHOD: Calculation Method of RF Safety Distance: where: S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Table for Filed Antenna Ant. Brand Model NameAntenna TypeConnector Gain(dBi) 1 104-1001 Dipole RP-TNC 2.15 2 N/A N/A Chip N/A 0.5 TEST RESULTS EUT: 2.4G Wireless Control Module Model Name : 200-1502 Temperature: 25 °C Relative Humidity: 55 % Test Voltage : DC 3V Test Mode : 1Mbps_CH01/39/79_Dipole ANT Antenna Gain (dBi) Antenna Gain (numeric) Peak Output Power (dBm) Peak Output Power (mW) Power Density (S) (mW/cm 2 ) Limit of Power Density (S) (mW/cm 2 ) Te s t Result 2.15 1.6406 23.53 225.4239 0.073612301 Complies 2.15 1.6406 23.16 207.0141 0.067600571 Complies 2.15 1.6406 20.18 104.2317 0.034036931 Complies Note: the calculated distance is 20 cm.

Test Report

Report No.:BTL-FCCP-1-1412C113 Page 1 of 105 FCC Radio Test Report FCC ID: XRSCRMXTIMO101 This report concerns (check one): Original Grant Class II Change Project No. : 1412C113 Equipment : 2.4G Wireless Control Module Model Name : 200-1502 Applicant : LumenRadio AB Address : Svangatan 2B, SE-41668 Gothenburg, Sweden Date of Receipt : Jan. 15, 2015 Date of Test : Jan. 15, 2015 ~ Apr. 14, 2015 Issued Date : Apr. 15, 2015 Tested by : BTL Inc. Testing Engineer : (David Mao) Technical Manager : (Leo Hung) Authorized Signatory : (Steven Lu) BTL INC. No.3, Jinshagang 1st Road, Shixia, Dalang Town, Dongguan, Guangdong, China. TEL: +86-769-8318-3000 FAX: +86-769-8319-6000 Report No.:BTL-FCCP-1-1412C113 Page 2 of 105 Declaration BTL represents to the client that testing is done in accordance with standard procedures as applicable and that test instruments used has been calibrated with the standards traceable to National Measurement Laboratory (NML) of CHINA, or National Institute of Standards and Technology (NIST) of U.S.A. BTL's reports apply only to the specific samples tested under conditions. It is manufacture’s responsibility to ensure that additional production units of this model are manufactured with the identical electrical and mechanical components. BTL shall have no liability for any declarations, inferences or generalizations drawn by the client or others from BTL issued reports. BTL’s reports must not be used by the client to claim product endorsement by the authorities or any agency of the Government. This report is the confidential property of the client. As a mutual protection to the clients, the public and BTL-self, extracts from the test report shall not be reproduced except in full with BTL’s authorized written approval. BTL’s laboratory quality assurance procedures are in compliance with the ISO Guide 17025 requirements, and accredited by the conformity assessment authorities listed in this test report. Limitation For the use of the authority's logo is limited unless the Test Standard(s)/Scope(s)/Item(s) mentioned in this test report is (are) included in the conformity assessment authorities acceptance respective. Report No.:BTL-FCCP-1-1412C113 Page 3 of 105 Table of Contents Page 1 . CERTIFICATION 7 2 . SUMMARY OF TEST RESULTS 8 2.1 TEST FACILITY 9 2.2 MEASUREMENT UNCERTAINTY 9 3 . GENERAL INFORMATION 10 3.1 GENERAL DESCRIPTION OF EUT 10 3.2 DESCRIPTION OF TEST MODES 13 3.3 TABLE OF PARAMETERS OF TEXT SOFTWARE SETTING 13 3.4 BLOCK DIAGRAM SHOWING THE CONFIGURATION OF SYSTEM TESTED 14 3.5 DESCRIPTION OF SUPPORT UNITS 14 4 . EMC EMISSION TEST 15 4.1 CONDUCTED EMISSION MEASUREMENT 15 4.1.1 POWER LINE CONDUCTED EMISSION LIMITS 15 4.1.2 TEST PROCEDURE 15 4.1.3 DEVIATION FROM TEST STANDARD 15 4.1.4 TEST SETUP 16 4.1.5 EUT OPERATING CONDITIONS 16 4.1.6 EUT TEST CONDITIONS 16 4.1.7 TEST RESULTS 16 4.2 RADIATED EMISSION MEASUREMENT 17 4.2.1 RADIATED EMISSION LIMITS 17 4.2.2 TEST PROCEDURE 18 4.2.3 DEVIATION FROM TEST STANDARD 18 4.2.4 TEST SETUP 19 4.2.5 EUT OPERATING CONDITIONS 20 4.2.6 EUT TEST CONDITIONS 20 4.2.7 TEST RESULTS (9KHZ TO 30MHZ) 20 4.2.8 TEST RESULTS (BETWEEN 30MHZ TO 1000 MHZ) 21 4.2.9 TEST RESULTS (ABOVE 1000 MHZ) 21 5 . NUMBER OF HOPPING CHANNEL 22 5.1 APPLIED PROCEDURES 22 5.1.1 TEST PROCEDURE 22 5.1.2 DEVIATION FROM STANDARD 22 5.1.3 TEST SETUP 22 5.1.4 EUT OPERATION CONDITIONS 22 5.1.5 EUT TEST CONDITIONS 22 5.1.6 TEST RESULTS 22 6 . AVERAGE TIME OF OCCUPANCY 23 Report No.:BTL-FCCP-1-1412C113 Page 4 of 105 Table of Contents Page 6.1 APPLIED PROCEDURES / LIMIT 23 6.1.1 TEST PROCEDURE 23 6.1.2 DEVIATION FROM STANDARD 23 6.1.3 TEST SETUP 23 6.1.4 EUT OPERATION CONDITIONS 24 6.1.5 EUT TEST CONDITIONS 24 6.1.6 TEST RESULTS 24 7 . HOPPING CHANNEL SEPARATION MEASUREMENT 25 7.1 APPLIED PROCEDURES / LIMIT 25 7.1.1 TEST PROCEDURE 25 7.1.2 DEVIATION FROM STANDARD 25 7.1.3 TEST SETUP 25 7.1.4 EUT TEST CONDITIONS 25 7.1.5 TEST RESULTS 25 8 . BANDWIDTH TEST 26 8.1 APPLIED PROCEDURES 26 8.1.1 TEST PROCEDURE 26 8.1.2 DEVIATION FROM STANDARD 26 8.1.3 TEST SETUP 26 8.1.4 EUT OPERATION CONDITIONS 26 8.1.5 EUT TEST CONDITIONS 26 8.1.6 TEST RESULTS 26 9 . PEAK OUTPUT POWER TEST 27 9.1 APPLIED PROCEDURES / LIMIT 27 9.1.1 TEST PROCEDURE 27 9.1.2 DEVIATION FROM STANDARD 27 9.1.3 TEST SETUP 27 9.1.4 EUT OPERATION CONDITIONS 27 9.1.5 EUT TEST CONDITIONS 27 9.1.6 TEST RESULTS 27 10 . ANTENNA CONDUCTED SPURIOUS EMISSION 28 10.1 APPLIED PROCEDURES / LIMIT 28 10.1.1 TEST PROCEDURE 28 10.1.2 DEVIATION FROM STANDARD 28 10.1.3 TEST SETUP 28 10.1.4 EUT OPERATION CONDITIONS 28 10.1.5 EUT TEST CONDITIONS 28 10.1.6 TEST RESULTS 28 11 . MEASUREMENT INSTRUMENTS LIST 29 12 . EUT TEST PHOTO 31 Report No.:BTL-FCCP-1-1412C113 Page 5 of 105 Table of Contents Page ATTACHMENT A - CONDUCTED EMISSION 35 ATTACHMENT B - RADIATED EMISSION (9KHZ-30MHZ) 38 ATTACHMENT C - RADIATED EMISSION (30MHZ TO 1000MHZ) 41 ATTACHMENT D - RADIATED EMISSION (ABOVE 1000MHZ) 54 ATTACHMENT E - NUMBER OF HOPPING CHANNEL 79 ATTACHMENT F - AVERAGE TIME OF OCCUPANCY 82 ATTACHMENT G - HOPPING CHANNEL SEPARATION MEASUREMENT 87 ATTACHMENT H - BANDWIDTH 92 ATTACHMENT I - PEAK OUTPUT POWER 97 ATTACHMENT J - ANTENNA CONDUCTED SPURIOUS EMISSION 99 Report No.:BTL-FCCP-1-1412C113 Page 6 of 105 REPORT ISSUED HISTORY Issued No. Description Issued Date BTL-FCCP-1-1412C113 Original Issue. Apr. 15, 2015 Report No.:BTL-FCCP-1-1412C113 Page 7 of 105 1. CERTIFICATION Equipment : 2.4G Wireless Control Module Brand Name : CRMX TiMo Model Name : 200-1502 Applicant LumenRadio AB Manufacturer : LumenRadio AB Address : Svangatan 2B, SE-41668 Gothenburg, Sweden Factory : Inission AB Address : Rimmaregatan 6, SE 422 55 Gothenburg, Sweden Date of Test : Jan. 15, 2015 ~ Apr. 14, 2015 Test Item : ENGINEERING SAMPLE Standard(s) : FCC Part15, Subpart C : 2013 (15.247) / ANSI C63.4 : 2009 / FCC Public Notice DA 00-705, March 30, 2000. The above equipment has been tested and found compliance with the requirement of the relative standards by BTL Inc.. The test data, da…

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Test Report

Report No.:BTL-FCCP-1-1412C113 Page 81 of 105 Chip Antenna Test Mode Hopping Mode Number of Hopping Channel 79 Report No.:BTL-FCCP-1-1412C113 Page 82 of 105 ATTACHMENT F - AVERAGE TIME OF OCCUPANCY Report No.:BTL-FCCP-1-1412C113 Page 83 of 105 Dipole Antenna Test Mode: Hopping Mode Number of transmission in a 31.6(79Hopping*0.4) Length of transmission time (msec) Result (msec) Limit (msec) (6/0.316) *31.6=600 times Note1 0.3945 236.7 400 Note1: 6 times of occupied channels per 0.316 seconds Results Measured cycle (sec) 79 CH*0.4=31.6 The total number of frequency-hopping 0.316 seconds ((6/0.316)*31.6)=600 The number of occupied channels 0.316 seconds 600/31.6=18.987 (number/sec) occupied time for each channel(1) 0.3945 ms The total number of channels occupied within one cycle (2) ((6/0.316)*31.6)=600 times The average time of occupancy within one cycle(1)*(2) 236.7 msec LIMIT (msec) 400msec Report No.:BTL-FCCP-1-1412C113 Page 84 of 105 CH01_Dwell Time CH01_ON Time Report No.:BTL-FCCP-1-1412C113 Page 85 of 105 Chip Antenna Test Mode: Hopping Mode Number of transmission in a 31.6(79Hopping*0.4) Length of transmission time (msec) Result (msec) Limit (msec) (7/0.316) *31.6=700 times Note1 0.397 277.9 400 Note1: 7 times of occupied channels per 0.316 seconds Results Measured cycle (sec) 79 CH*0.4=31.6 The total number of frequency-hopping 0.316 seconds ((7/0.316)*31.6)=700 The number of occupied channels 0.316 seconds 700/31.6=22.15 (number/sec) occupied time for each channel(1) 0.397 ms The total number of channels occupied within one cycle (2) ((7/0.316)*31.6)=700 times The average time of occupancy within one cycle(1)*(2) 277.9 msec LIMIT (msec) 400msec Report No.:BTL-FCCP-1-1412C113 Page 86 of 105 CH01_Dwell Time CH01_ON Time Report No.:BTL-FCCP-1-1412C113 Page 87 of 105 ATTACHMENT G - HOPPING CHANNEL SEPARATION MEASUREMENT Report No.:BTL-FCCP-1-1412C113 Page 88 of 105 Dipole Antenna Test Mode: Hopping on _CH01/39/79 Frequency (MHz) Channel Separation (MHz) 2/3 of 20dB Bandwidth (MHz) Test Result 2402 0.996 0.579 Complies 2440 0.996 0.579 Complies 2480 1.035 0.587 Complies CH01 Report No.:BTL-FCCP-1-1412C113 Page 89 of 105 CH39 CH79 Report No.:BTL-FCCP-1-1412C113 Page 90 of 105 Chip Antenna Test Mode: Hopping on _CH01/39/79 Frequency (MHz) Channel Separation (MHz) 2/3 of 20dB Bandwidth (MHz) Test Result 2402 1.008 0.592 Complies 2440 1.002 0.572 Complies 2480 0.978 0.573 Complies CH01 Report No.:BTL-FCCP-1-1412C113 Page 91 of 105 CH39 CH79 Report No.:BTL-FCCP-1-1412C113 Page 92 of 105 ATTACHMENT H - BANDWIDTH Report No.:BTL-FCCP-1-1412C113 Page 93 of 105 Dipole Antenna Test Mode: 1Mbps_CH01/39/79 Frequency (MHz) 20dB Bandwidth (MHz) 99% Occupied BW (MHz) Min. Limit (kHz) Test Result 2402 0.868 0.878 500 Complies 2440 0.868 0.878 500 Complies 2480 0.880 0.880 500 Complies CH01 Report No.:BTL-FCCP-1-1412C113 Page 94 of 105 CH39 CH79 Report No.:BTL-FCCP-1-1412C113 Page 95 of 105 Chip Antenna Test Mode: 1Mbps_CH01/39/79 Frequency (MHz) 20dB Bandwidth (MHz) 99% Occupied BW (MHz) Min. Limit (kHz) Test Result 2402 0.888 0.878 500 Complies 2440 0.858 0.858 500 Complies 2480 0.860 0.870 500 Complies CH01 Report No.:BTL-FCCP-1-1412C113 Page 96 of 105 CH39 CH79 Report No.:BTL-FCCP-1-1412C113 Page 97 of 105 ATTACHMENT I - PEAK OUTPUT POWER Report No.:BTL-FCCP-1-1412C113 Page 98 of 105 Dipole Antenna Test Mode: 1Mbps_CH01/39/79 Frequency (MHz) Conducted Power (dBm) Conducted Power (W) Max. Limit (dBm) Max. Limit (W) Result 2402 23.53 0.2254 30.00 1.00 Complies 2440 23.16 0.2070 30.00 1.00 Complies 2480 20.18 0.1042 30.00 1.00 Complies Chip Antenna Test Mode: 1Mbps_CH01/39/79 Frequency (MHz) Conducted Power (dBm) Conducted Power (W) Max. Limit (dBm) Max. Limit (W) Result 2402 23.50 0.2239 30.00 1.00 Complies 2440 23.35 0.2163 30.00 1.00 Complies 2480 20.41 0.1099 30.00 1.00 Complies Report No.:BTL-FCCP-1-1412C113 Page 99 of 105 ATTACHMENT J - ANTENNA CONDUCTED SPURIOUS EMISSION Report No.:BTL-FCCP-1-1412C113 Page 100 of 105 Dipole Antenna CH01(Lower) CH79 (Upper) Report No.:BTL-FCCP-1-1412C113 Page 101 of 105 CH01 (1GHz∼10 th Harmonic) CH39(1GHz∼10 th Harmonic) Report No.:BTL-FCCP-1-1412C113 Page 102 of 105 CH79 (1GHz∼10 th Harmonic) Report No.:BTL-FCCP-1-1412C113 Page 103 of 105 Chip Antenna CH01(Lower) CH79 (Upper) Report No.:BTL-FCCP-1-1412C113 Page 104 of 105 CH01 (1GHz∼10 th Harmonic) CH39(1GHz∼10 th Harmonic) Report No.:BTL-FCCP-1-1412C113 Page 105 of 105 CH79 (1GHz∼10 th Harmonic)

Test Setup Photos

Report No.:BTL-ICP-1-1412C113 12. EUT TEST PHOTO Conduc Page Conducted Measurement Photos Page 31 of 105 Report No.:BTL-ICP-1-1412C113 Radiated Measurement Photos Page Radiated Measurement Photos 9KHz to 30MHz Page 32 of 105 Report No.:BTL-ICP-1-1412C113 Radiated Measurement Photos Page Radiated Measurement Photos 30MHz to 1000MHz Page 33 of 105 Report No.:BTL-ICP-1-1412C113 Radiated Measurement Photos Page Radiated Measurement Photos Above 1000MHz Page 34 of 105

Contact Information

Applicant

Michael Karlsson(R&D Manager)
[email protected]0046708979597Fax: 0046708979597

Test Firm

BTL Inc.Daisy Dai
[email protected]008676983183000Fax: 0086 769 83196000

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz225.40 mW
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Single modular approval. Power output listed is conducted. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be co-located or operating in conjunction with any other transmitter. OEM integrators must be provided with antenna installation instructions. OEM integrators and end-users must be provided with transmitter operation conditions for satisfying RF exposure compliance.

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