
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Quick Installation & Start Guide The UgMO UG1000B-A Bridge is part of the UG1000 fam ily of products. The Bridge is responsible for making the internet connection between the UG1000 s ystem and UgMO Knows. • Remote configuration and alert reporting • Software upgradeable to allow for future feature expansion • Embedded Linux processor provides smart device intelligence UG1000 Internet Bridge The UG1000B-A Internet Bridge serves as the gateway or avenue by which all network and sensor data is passed to the UgMO Data Base. Each Bridge contains an embedded Li nux processor. The bridge also serves as a repeater in any network and can forward data packets toward their f inal destinations. To install the Bridge, you will need a 110 Volt AC power source that is near a router or other direct Ethernet connection. Using the supplied 5 Volt transformer, insert the b arrel connector into correct port located on the bo ttom of the Bridge and the two-pronged block into the nearest 110 Volt out let. Next, plug one end of an Ethernet cable into a router using your WAN and the other end into the Ethernet slot locate d on the bottom of the bridge. Finally, to mount th e hardware you can use a screw and the keyhole slot in the back of the bridge or simply hang the Bridge from the supplied plastic stand. Once powered, a red LED on the front of the bridge will aluminate followed by a series of Green LEDs a s the bridge searches the area for any existing hardware or netw orks. The LEDs are very helpful in determining the current state and operation of the bridge. The USB port is intended for use with a USB memory stick. It is a host port that must not be connecte d to a personal computer. The Ethernet port is intended to be conn ected to a DHCP server to obtain an IP address to e stablish Internet connectivity. It should not be directly connected to a personal computer. Regulatory Notices FCC ID: YVAUG1000BA; IC ID: 10216A-UG1000BA M/N: UG1000B-A This device complied with Part 15 of the FCC Rules and Industry Canada License Exempt RSS Standard(s). Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) This device must accept any interference receiv ed, including interference that may cause undesired operation. This equipment has been tested and found to comply with the limits for Class B Digital Device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable pro tection against harmful interference in a residenti al installation. • This device may only be used with the approved inte rnal antenna that is shipped with the unit and inst alled per installation instructions. The use of any other antennas will i nvalidate the unit’s FCC Part 15 certification. • To reduce potential radio interference to other use rs, the antenna type and its gain should be so chose n that the equivalent isotropically radiated power (e.i.r.p.) is not more than that permitted for successful communication. Operating the device with the supplied antenna will ensure that this req uirement is met. This equipment generates and can radiate radio freq uency energy and, if not installed and used in accor dance with the instructions, may cause harmful interference to radio communicati ons. However, there is no guarantee that interferenc e will not occur in a particular installation. If this equipment does cause harmful interference t o radio or television reception, which can be determ ined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures. • Reorient or relocate the receiving antenna • Increase the separation between the equipment and r eceiver • Connect the equipment into an outlet on a circuit d ifferent from that to which the receiver is connect ed • Consult the dealer or an experienced radio/TV techn ician for help Any changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. A separation distance of 20 cm should be observed to maintain compliance with the FCC’s RF exposure guidelines set out in OET Bulletin 65. This Class B digital apparatus complies with Canadi an ICES-003. Cet appareil numérique de la classe B est conforme à la norme NMB-003 du Canada.
UgMO Technologies 840 First Avenue, Suite 300 King of Prussia, PA 19406 Phone 484 690 0570 Fax 510 688 2429 Email: [email protected] www.ugmo.com May 17, 2013 Timco Engineering, Inc. 849 N.W. State Road 45 P.O. Box 370 Newberry, Florida 32669 Re: Confidentiality Request Regarding Application for Certification of FCC ID: YVAUG1000BA Dear Sir: Pursuant to Sections 0.457 and 0.459 of the Commission’s Rules, we hereby request confidential treatment of information accompanying this application as outlined below: Exhibit Type File Name Schematic Diagram Block Diagram Operating Description Schematic_Diagram.pdf Block_Diagram.pdf Description.pdf The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these materials may be harmful to the applicant and provide unjustified benefits to its competitors. The applicant understands that pursuant to Section 0.457 of the Rules, disclosure of this application and all accompanying documentation will not be made before the date of the Grant for this application. Sincerely, Kathy Sohrabi, Ph.D. Vice President of Engineering UgMO Technologies
UgMO Technologies 840 First Avenue, Suite 300 King of Prussia, PA 19406 Phone 484 690 0570 Fax 510 688 2429 Email: [email protected] www.ugmo.com May 17, 2013 Timco Engineering, Inc. 849 N.W. State Road 45 P.O. Box 370 Newberry, Florida 32669 Re: Letter of Agency for FCC & Industry Canada Compliance Testing Please be advised that I appoint Peter J. Walsh, NCE of Walshire Labs, LLC to act as our agent in the preparation of this application for equipment certification of the Model UG1000B-A, (FCC ID: YVAUG1000BA and IC: 10216A-UG1000BA). I certify that submitted documents properly describe the device or system for which equipment certification is sought. I also certify that each unit manufactured, imported or marketed, as defined in Federal Communication Commission’s regulations will have affixed to it a label identical to that submitted for approval with this application. For instances where our authorized agent signs the application for certification on our behalf, I acknowledge that all responsibility for complying with the conditions of certification still resides with Green Badge LLC D/B/A UgMO Technologies, 840 First Avenue, Suite 300, King of Prussia, PA 19406. Dated this: 17 th day May 2013 By: Kathy Sohrabi (Signature) (Printed Name) Title: Vice President of Engineering Email: [email protected] On behalf of: Green Badge LLC, D/B/A UgMO Technologies Telephone: 484 690 0570
UgMO Technologies External Photographs Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 1 of 6 Photo 1 – Front View UgMO Technologies External Photographs Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 2 of 6 Photo 2 – Back View UgMO Technologies External Photographs Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 3 of 6 Photo 3 – Top Side View UgMO Technologies External Photographs Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 4 of 6 Photo 4 – Left Side View UgMO Technologies External Photographs Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 5 of 6 Photo 5 – Right Side View UgMO Technologies External Photographs Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 6 of 6 Photo 6 – Bottom Side View
UgMO Technologies ID Label Photograph Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 1 of 1 Photo 1 – Sample Label and Location Photo 2 – Close up View of the Label
UgMO Technologies Internal Photographs Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 1 of 5 Photo 1 – Top View of the Radio Board UgMO Technologies Internal Photographs Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 2 of 5 Photo 2 – Bottom View of the Radio Board UgMO Technologies Internal Photographs Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 3 of 5 Photo 3 – Top View of the Main Board UgMO Technologies Internal Photographs Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 4 of 5 Photo 4 – Bottom Top View of the Main Board UgMO Technologies Internal Photographs Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 5 of 5 Photo 5 – Top View with the Cover Removed
UgMO Technologies Antenna Description Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 1 of 1 The radio board includes an integrated Printed Circuit Board (PCB) trace antenna with a nominal gain of -2.0 dBi. The PCB antenna employs a topology that is compact and supports an omni- directional radiation pattern. Due to the mounting position of the device, the antenna polarization is vertical.
UgMO Technologies MPE Calculation Exhibit FCC ID: YVA1000BA IC: 10216A-UG1000BA Page 1 of 2 Prediction of MPE Limit for a Specified Distance Reference: OET Bulletin 65, Edition 97-01 The power density formula is as follows: Table 1 – MPE Calculation for OET Bulletin 65 Compliance Maximum peak output power at antenna terminal: 20.35 (dBm) Maximum peak output power at antenna terminal: 108.39 (mW) Antenna Gain (typical): -2.00 (dBi) Maximum Antenna Gain: 0.63 (numeric) Prediction Distance: 20.00 (cm) Prediction Frequency: 903.05 (MHz) MPE Limit for Uncontrolled Exposure at Prediction Frequency: 0.60 (mW/cm 2 ) Power Density at the Prediction Frequency: 0.0136 (mW/cm 2 ) Maximum Allowable Antenna Gain: 14.46 (dBi) Margin of Compliance at 20 cm: 16.46 (dB) UgMO Technologies MPE Calculation Exhibit FCC ID: YVA1000BA IC: 10216A-UG1000BA Page 2 of 2 Table 2 – RSS-102 Duty Cycle Correction Calculation Total Frequency Hopping Period: 20 seconds Channel Occupancy Period: 0.3604 seconds Number of Channels: 50 seconds Cumulative On Time for Transmission: 18.02 seconds Duty Cycle: 0.901 Duty Cycle Correction Factor: -0.9 dB Table 3 – MPE Calculation for RSS-102 Compliance Maximum peak output power at antenna terminal: 20.35 (dBm) Maximum peak output power at antenna terminal: 108.39 (mW) Antenna Gain (typical): -2.90 (dBi) Maximum Antenna Gain: 0.51 (numeric) Prediction Distance: 20.00 (cm) Prediction Frequency: 903.05 (MHz) MPE Limit for Uncontrolled Exposure at Prediction Frequency: 0.60 (mW/cm 2 ) Power Density at the Prediction Frequency: 0.0111 (mW/cm 2 ) Maximum Allowable Antenna Gain: 14.46 (dBi) Margin of Compliance at 20 cm: 17.36 (dB)
Walshire Labs, LLC 8545 126 th Avenue North Largo, FL 33773 USA Telephone: (727) 530'8637 47 C.F.R. Part 15 FCC Rules, Subpart C & Industry Canada RSS'GEN Issue 3 & RSS'210 Issue 8 Test Results for the Augusta Irrigation Controller Bridge Unit Equipment: Augusta Bridge Unit Client: Green Badge LLC D/B/A UgMO Technologies Address: 840 First Ave., Suite 300 King of Prussia, PA 19406 Test Report Number: FCCIR'UGMO'06'03'13 Date: July 8, 2013 Total Number of Pages: 63 NVLAP LAP Code: 20012560 FCC Test Site Registration Number: 830450 Industry Canada Site Number 7868A61 Test Report ID: FCCIR6UGMO606603613 Title: UgMO Augusta Bridge Unit – FCC ID: YVAUG1000BA IC: 10216A-UG1000BA FCC Part 15 / RSS6210 Test Report Page: 2 of 63 Table of Contents 1 IDENTIFICATION SUMMARY..........................................................................................................................4 1.1 TEST REPORT...............................................................................................................................................4 1.2 TESTING LABORATORY..................................................................................................................................4 1.3 LIMITS AND RESERVATIONS...........................................................................................................................4 1.4 CLIENT INFORMATION....................................................................................................................................5 1.5 DATES..........................................................................................................................................................5 1.6 DEVICE UNDER TEST (DUT)..........................................................................................................................5 2 GENERAL INFORMATION..............................................................................................................................6 2.1 PRODUCT DESCRIPTION................................................................................................................................6 2.2 INTERFACE CABLE DETAILS...........................................................................................................................6 2.3 PERIPHERAL DEVICES...................................................................................................................................6 2.4 TEST METHODOLOGY....................................................................................................................................6 2.5 TEST FACILITY..............................................................................................................................................7 2.6 DEVIATIONS..................................................................................................................................................7 3 SYSTEM TEST CONFIGURATION..................................................................................................................8 3.1 JUSTIFICATION..............................................................................................................................................8 3.2 SPECIAL ACCESSORIES.................................................................................................................................8 3.3 EQUIPMENT MODIFICATIONS..........................................................................................................................9 4 CONDUCTED EMISSIONS DATA.................................................................................................................10 4.1 TEST PROCEDURE......................................................................................................................................11 4.2 MEASURED DATA........................................................................................................................................12 4.3 CONDUCTED EMISSIONS TEST INSTRUMENTATION........................................................................................15 4.4 CONDUCTED EMISSIONS PHOTOGRAPHS......................................................................................................15 5 RADIATED EMISSIONS DATA......................................................................................................................17 5.1 TEST PROCEDURE......................................................................................................................................20 5.2 TEST DATA.................................................................................................................................................21 5.3 TEST INSTRUMENTATION USED, RADIATED MEASUREMENT...........................................................................25 5.4 FIELD STRENGTH CALCULATION..................................................................................................................25 5.5 RADIATED EMISSIONS PHOTOGRAPHS..........................................................................................................26 6 ANTENNA REQUIREMENT...........................................................................................................................30 6.1 TEST PROCEDURE......................................................................................................................................30 6.2 TEST DATA.................................................................................................................................................30 6.3 ANTENNA PHOTOGRAPHS............................................................................................................................31 7 BANDWIDTH DATA.......................................................................................................................................32 7.1 TEST PROCEDURE.............................................................................…
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UgMO Technologies Test Set-up Photographs Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 1 of 6 Photo 1 – Front View of the Radiated Emissions Test Set-up UgMO Technologies Test Set-up Photographs Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 2 of 6 Photo 2 – Rear View of the Radiated Emissions Test Set-up 30 - 1000 MHz UgMO Technologies Test Set-up Photographs Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 3 of 6 Photo 3 – Rear View of the Radiated Emissions Test Set-up 1 – 10 GHz UgMO Technologies Test Set-up Photographs Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 4 of 6 Photo 4 – Rear View of the Radiated Emissions Test Set-up with the Loop Antenna UgMO Technologies Test Set-up Photographs Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 5 of 6 Photo 5 – Antenna Port Conducted Test Set-up UgMO Technologies Test Set-up Photographs Exhibit FCC ID: YVAUG1000BA IC: 10216A-UG1000BA Page 6 of 6 Photo 6 – AC Mains Conducted Emissions Test Set-up
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 903.053 MHz - 927.492 MHz | 108.00 mW |

Wireless Ground Sensor
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
902-928 MHz ISM BAND REPEATER
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
902 - 928 MHz ISM BAND REPEATER
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
902 - 928 MHZ ISM BAND BRIDGE
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
902-928 MHz FREQUENCY HOPPING IRRIGATION CONTROLLER
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter