
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
USA Fibaro RGBW Controller is a universal, Z-Wave compatible RGB / RGBW controller. Fibaro RGBW Controller uses PWM output signal, which enables it to control LED, RGB, RGBW strips, halogen lights and fans. Controlled devices may be powered by 12 or 24 VDC. In addition the device supports up to four, 0V - 10V analog sensors, such as temperature sensors, humidity sensors, wind sensors, air quality sensors, light sensors etc. All IN and OUT terminals may be user configured for LED control or 0V-10V signal readouts. Specifications Power Supply: Rated output power: PWM output frequency: Electricity consumption: Radio signal power: For installation in boxes: Max load (e.g. halogen bulbs): In accordance with EU standards: FCC ID: Radio protocol: Radio frequency: Range: Operational temperature: Dimensions (L x W x H): 12 V DC 24 V DC combined 12A (sum of all connected output channels); 6A for single output channel 244 Hz 0,3W 1mW Γβ₯50 mm at 12V - 144W combined, at 24V - 288W combined. EMC 2004/108/EC R&TTE 199/5/WE 2AA9MFGRGBWM441 Z-Wave 868,4 MHz EU; 908,4 MHz US; 921,4 MHz ANZ; 869,2 MHz RU; up to 50m outdoors / up to 30m indoors; depending on terrain and building structure 0 - 40 o C 42 x 37 x 17 mm Operating Manual FIBARO RGBW Controller FGRGBWM-441 v2.1 - v2.3. Technical Information β’ Controlled by Fibaro System devices or any Z-Wave controller β’ Microprocessor controlled β’ Executive element: transistor β’ Active and historic (average) power consumption measuring I General Information About Fibaro System Fibaro is a wireless system, based on Z-Wave technology. Fibaro provides many advantages when compared to similar systems. In general, radio systems create a direct connection between the receiver and transmitter. However, the radio signal is weakened by various obstacles located in its path (apartment walls, furniture, etc.) and in extreme cases it fails to transfer required data. The advantage of Fibaro System is that its devices, apart from being transmitters and signal receivers, also duplicate signal. When a direct connection path between the transmitter and the receiver cannot be established, the connection may be achieved through other intermediate devices. Fibaro is a bi-directional wireless system. This means that the signal is not only sent to the receivers but also the receivers send the confirmation of its reception. This operation confirms their status, which checks whether they are active or not. II Device Applications Note! 1) Please contact your local supplier for the current rates. 2) Fibaro RGBW Controller stores consumed electricity data on its memory, which means disconnecting the module from voltage supply does not erase the data. i Safety of the Fibaro System transmission is comparable to the safety of transmission in data bus wired systems. Fibaro operates in the free bandwidth for data transmission. The frequency depends on radio regulations in individual countries. Each Fibaro network has its own unique network identification number (home ID), which is why it is possible to co-operate two or more independent systems in a single building without any interference. Although Z-Wave is quite a new technology, it has already become recognized and officially a binding standard, similarly to Wi-Fi. Many manufacturers in various industries offer solutions based on Z-Wave technology, guaranteeing their compatibility. This means that the system is open and it may be extended in the future. Find more information at www.fibaro.com. Fibaro generates a dynamic network structure. After Fibaro System is switched on, the location of its individual components is automatically updated in real-time through status confirmation signals received from devices operating in a "mesh" network. Fibaro RGBW Controller may control: β’ 12 / 24VDC powered RGB strips β’ 12 / 24VDC powered RGBW strips β’ 12 / 24VDC powered LED strips, bulbs, etc. β’ 12 / 24VDC powered halogen lights β’ 12 / 24VDC powered low output power fans Additional features: β’ 0-10V sensors signal readouts, β’ 0-10V potentiometer signal readouts, and managing outputs accordingly, β’ controlled by momentary or toggle switches III Installing the device 1. Before installation ensure the voltage supply is disconnected. 2. Connect Fibaro RGBW Controller according to wiring diagram. First, connect outputs (R,G,B,W) RGB/RGBW/LED diodes or Halogen lights, or inputs (I1-I4). Second, connect voltage supply. Note the device must be powered by a dedicated stabilized power adapter. 3. Arrange the antenna (find tips below wiring diagrams). 4. Turn the voltage on. 5. Include the module into the Z-Wave network. Warning! 1) Fibaro RGBW Controller is dedicated to operate in low voltage circuits of 12VDC or 24VDC. Connecting higher voltage load may result in Fibaro RGBW Controller damage. 2) Fibaro RGBW Controller must be powered by the same voltage as the connected light source. I.e. if controlling 12V LED strip, the module must be connected to 12V power supply. Similarly, if controlling 24V RGBW strip, Fibaro RGBW Controller must be powered by 24V voltage supply. 3) Fibaro RGBW Controller has 0-10V input. There is no 0-10V output. Output is controlled by PWM at 244Hz. 4) Fibaro RGBW Controller must be powered by 12VDC or 24 VDC stabilized power supply with outputs load capacity matched to loads voltage. 5) Sensors using 0-10V interface use wire connection to inputs I1 - I4. Maximum length of 0-10V connection line is 10 m. Observe sensor's manufacturer recommendations towards 0-10V line diameter. 6) In case of connecting long RGBW/RGB/LED strips voltage drops may occur, resulting in lower light brightness further from R/G/B/W outputs. To eliminate this effect it's recommended to connect few shorter strips in serial connection instead of one long strip connected parallel. Maximum recommended wire length, used to connect R/G/B/W outputs with a RGBW/RGB/LED strip is 10 m. Observe connected loads manufacturer recommendations towards connection wire diameter.β¦
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Fibaro RGBW FCC Label Exhibit
NVLAP Lab code: 100414-0 FCC 47 CFR PART 15 SUBPART C INDUSTRY CANADA RSS-210 ISSUE 8 CERTIFICATION TEST REPORT FOR RGBW Controller MODEL NUMBER: FGRGBWM-441 FCC ID: 2AA9MFGRGBWM441 REPORT NUMBER: 100045153 ISSUE DATE: October 22, 2013 Prepared for Fibar Group sp. z.o.o Ul. Lotnicza 1 PoznaΕ, Poland 60-453 Prepared by UL LLC 333 Pfingsten Rd. Northbrook, IL 60062 TEL: (847) 272-8800 REPORT NO: 100045153 DATE: October 22, 2013 FCC ID: 2AA9MFGRGBWM441 Page 2 of 29 UL LLC FORM NO: CCSUP4701G 333 Pfingsten Rd., Northbrook, IL 60062 TEL: (847) 272-8800 This report shall not be reproduced except in full, without the written approval of UL LLC. Revision History Rev. Issue Date Revisions Revised By -- 10/22/13 Initial Issue M.Ferrer REPORT NO: 100045153 DATE: October 22, 2013 FCC ID: 2AA9MFGRGBWM441 Page 3 of 29 UL LLC FORM NO: CCSUP4701G 333 Pfingsten Rd., Northbrook, IL 60062 TEL: (847) 272-8800 This report shall not be reproduced except in full, without the written approval of UL LLC. TABLE OF CONTENTS 1. ATTESTATION OF TEST RESULTS ............................................................................................. 4 2. TEST METHODOLOGY .................................................................................................................. 5 3. FACILITIES AND ACCREDITATION .......................................................................................... 5 4. CALIBRATION AND UNCERTAINTY .......................................................................................... 5 4.1. MEASURING INSTRUMENT CALIBRATION ............................................................................. 5 4.2. SAMPLE CALCULATION ............................................................................................................ 5 4.3. MEASUREMENT UNCERTAINTY ............................................................................................... 5 5.5. DESCRIPTION OF TEST SETUP ................................................................................................ 7 6. TEST AND MEASUREMENT EQUIPMENT ................................................................................ 9 7. TEST RESULTS ............................................................................................................................... 10 7.1.1. 99%, 20dB BANDWIDTH ................................................................................................. 10 7.2. RADIATED EMISSIONS............................................................................................................. 13 7.2.1. HARMONICS AND SPURIOUS EMISSIONS ABOVE 1GHz ....................................... 16 7.2.2. WORST-CASE BELOW 1 GHz ........................................................................................ 18 8. AC MAINS LINE CONDUCTED EMISSIONS ............................................................................ 20 9. SETUP PHOTOS .............................................................................................................................. 24 REPORT NO: 100045153 DATE: October 22, 2013 FCC ID: 2AA9MFGRGBWM441 Page 4 of 29 UL LLC FORM NO: CCSUP4701G 333 Pfingsten Rd., Northbrook, IL 60062 TEL: (847) 272-8800 This report shall not be reproduced except in full, without the written approval of UL LLC. 1. ATTESTATION OF TEST RESULTS COMPANY NAME: Fibar Group sp. z.o.o Ul. Lotnicza 1 Poznan, Poland 60-453 EUT DESCRIPTION: RGBW Controller MODEL: FGRGBWM-441 SERIAL NUMBER: Prototype DATE TESTED: September 12, 2013 β September 25, 2013 APPLICABLE STANDARDS STANDARD TEST RESULTS CFR 47 Part 15 Subpart C Part 15.249 Pass UL Verification Services Inc. tested the above equipment in accordance with the requirements set forth in the above standards. All indications of Pass/Fail in this report are opinions expressed by UL Verification Services Inc. based on interpretations and/or observations of test results. Measurement Uncertainties were not taken into account and are published for informational purposes only. The test results show that the equipment tested is capable of demonstrating compliance with the requirements as documented in this report. Note: The results documented in this report apply only to the tested sample, under the conditions and modes of operation as described herein. This document may not be altered or revised in any way unless done so by UL Verification Services Inc. and all revisions are duly noted in the revisions section. Any alteration of this document not carried out byUL Verification Services Inc. will constitute fraud and shall nullify the document. This report must not be used by the client to claim product certification, approval, or endorsement by NVLAP, NIST, any agency of the Federal Government, or any agency of any government. Approved & Released For UL CCS By: Tested By: BART MUCHA MICHAEL FERRER WiSE STAFF ENGINEER WiSE Project Lead UL Verification Services Inc. UL Verification Services Inc. REPORT NO: 100045153 DATE: October 22, 2013 FCC ID: 2AA9MFGRGBWM441 Page 5 of 29 UL LLC FORM NO: CCSUP4701G 333 Pfingsten Rd., Northbrook, IL 60062 TEL: (847) 272-8800 This report shall not be reproduced except in full, without the written approval of UL LLC. 2. TEST METHODOLOGY The tests documented in this report were performed in accordance with ANSI C63.4-2003, FCC CFR 47 Part 15, RSS-GEN Issue 3, and RSS-210 Issue 8. 3. FACILITIES AND ACCREDITATION The test sites and measurement facilities used to collect data are located at 333 Pfingsten Road, Northbrook, IL 60062, USA. UL NBK is accredited by NVLAP, Laboratory Code 100414-0. 4. CALIBRATION AND UNCERTAINTY 4.1. MEASURING INSTRUMENT CALIBRATION The measuring equipment utilized to perform the tests documented in this report has been calibrated in accordance with the manufacturer's recommendations, and is traceable to recognized national standards. 4.2. SAMPLE CALCULATION Where relevant, the following sample calculation is provided: Field Strength (dBuV/m) = Measured Voltage (dBuV) β¦
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REPORT NO: 100045153 DATE: October 22, 2013 FCC ID: 2AA9MFGRGBWM441 Page 24 of 29 UL LLC FORM NO: CCSUP4701G 333 Pfingsten Rd., Northbrook, IL 60062 TEL: (847) 272-8800 This report shall not be reproduced except in full, without the written approval of UL LLC. 9. SETUP PHOTOS RADIATED RF MEASUREMENT SETUP (BELOW 1 GHz) RADIATED FRONT PHOTO (BELOW 1 GHz) Test example photo for spurious emissions. EUT setup shown in photos below. Fundamental measurements at 3m. REPORT NO: 100045153 DATE: October 22, 2013 FCC ID: 2AA9MFGRGBWM441 Page 25 of 29 UL LLC FORM NO: CCSUP4701G 333 Pfingsten Rd., Northbrook, IL 60062 TEL: (847) 272-8800 This report shall not be reproduced except in full, without the written approval of UL LLC. RADIATED RF MEASUREMENT SETUP (ABOVE 1 GHz) RADIATED FRONT PHOTO (ABOVE 1 GHz) REPORT NO: 100045153 DATE: October 22, 2013 FCC ID: 2AA9MFGRGBWM441 Page 26 of 29 UL LLC FORM NO: CCSUP4701G 333 Pfingsten Rd., Northbrook, IL 60062 TEL: (847) 272-8800 This report shall not be reproduced except in full, without the written approval of UL LLC. RADIATED RF MEASUREMENT SETUP FOR PORTABLE CONFIGURATION X-AXIS FRONT PHOTO REPORT NO: 100045153 DATE: October 22, 2013 FCC ID: 2AA9MFGRGBWM441 Page 27 of 29 UL LLC FORM NO: CCSUP4701G 333 Pfingsten Rd., Northbrook, IL 60062 TEL: (847) 272-8800 This report shall not be reproduced except in full, without the written approval of UL LLC. Y-AXIS FRONT PHOTO REPORT NO: 100045153 DATE: October 22, 2013 FCC ID: 2AA9MFGRGBWM441 Page 28 of 29 UL LLC FORM NO: CCSUP4701G 333 Pfingsten Rd., Northbrook, IL 60062 TEL: (847) 272-8800 This report shall not be reproduced except in full, without the written approval of UL LLC. Z-AXIS FRONT PHOTO REPORT NO: 100045153 DATE: October 22, 2013 FCC ID: 2AA9MFGRGBWM441 Page 29 of 29 UL LLC FORM NO: CCSUP4701G 333 Pfingsten Rd., Northbrook, IL 60062 TEL: (847) 272-8800 This report shall not be reproduced except in full, without the written approval of UL LLC. POWERLINE CONDUCTED EMISSIONS MEASUREMENT SETUP END OF REPORT LINE CONDUCTED FRONT PHOTO
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 908.4 MHz - 908.4 MHz | - |

Yubii Home
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Motion Sensor
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
Door/Window Sensor
Equipment Class
DXT - Part 15 Low Power Transceiver, Rx Verified
Home Center
Equipment Class
DXT - Part 15 Low Power Transceiver, Rx Verified
Flood Sensor
Equipment Class
DXT - Part 15 Low Power Transceiver, Rx Verified