
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Bluefield TM LED Magnet is within range of the Versa GreenLED Versa is transmitting RedLED Low battery warning 1. Insert the battery into the Versa and place the cover on top. 2. Apply the adhesive tape and firmly press the Versa onto a clean door or window frame, securing it in place. 3. Hold the magnet up to the Versa, in the location you plan on mounting it. 4. If the Blueflield TM arrow glows, then you can mount the magnet knowing it’s within the operating range. PO Box 4764 Blaine, WA 98231-4764 604.560.6310 [email protected] Installation Operating InstructionsMounting Guidelines Installing the Versa Programing Testing FCC Notice The Versa is a compact wireless security contact that can be installed on windows, doors, and many other objects that open and close. The Versa is equipped with a Bluefield TM LED that glows BLUE when a magnetic field comes within range of the sensor during startup, and is also equipped with a GREEN LED that flashes upon proper initial startup and each time a signal is transmited to the control panel. Signal transmission occurs when a magnet is brought within range or is moved out of range of the sensor. The Versa is also equipped with a RED LED that will flash to indicate when the battery has reached the Low Battery operating level for the sensor. A low battery signal will also be transmitted to the control panel. Note: The Bluefield TM and Green signal LED’s are operational when the cover is removed and will operate for 3 minutes after the cover has been installed. To restart these LED functions, remove the cover. A tamper switch has also been added for additional security. The following steps describe general guidelines for programming (learning) the sensor into the alarm control panel memory. For more details, please refer to the security panel manufactures installation & programming Instructions. 1. To remove the top of the Versa, use a small flathead screwdriver and twist the top cover o utilizing the recessed indents on the sides of the sensor. 2. Set the panel to sensor learning mode. 3. Press and release the tamper switch on the sensor until the panel responds. 4. Replace the top of the sensor. 5. Exit program mode. Note: Always test in place before securing the Versa to it’s final location 1. Select the desired location for the Versa and magnet and insert the battery (positive side up) into the base of the Versa. 2. Hold the sensor up in the desired location and temporally tape in place. Now hold the magnet up to it’s desired location. If the magnet is within range to trigger the sensor, the Versa’s Bluefield LED arrow will glow, ensuring proper placement. 3. If the Bluefield TM LED arrow does not glow, position or orientate the magnet closer to the Versa, or in some cases use a larger magnet to bridge the gap. 4. Once the correct location of the magnet has been found, fix the Versa and magnet in place with the included 3M adhesive tape. When installing the Versa on a door, mount the sensor on the frame and the magnet on the door. This is to ensure that the sensor receives the least amount of movement as changing the orientation of a wireless device can eect it’s performance. • If possible, place the Versa within 100 ft. of the security panel. While a transmitter may have an open air range of 500+ feet, a home and oce environment can have dierent eects on the transmitters range. Sometimes a change in the Versa's orientation can help enhance the wireless transmission. • Avoid mounting the Versa in areas where it will be exposed to moisture or where the operating temperature of 32 to 120ºF (0 to 50ºC) will be exceeded. • Use spacers (not included) to keep the Versa and magnet away from metal or metallic surfaces such as foil wallpaper. • Avoid mounting the Versa in areas with a large quantity of metal or electrical wiring, such as a furnace or utility room as this can greatly aect the transmitting signal. 1. Put the control panel into sensor test mode. 2. With the cover o (or during 3 minutes after replacing the lid) hold the magnet up to the Versa so that the Bluefield TM LED is illuminated and then pull the magnet away from the sensor. You will see the GREEN signal LED flash indicating a signal has been transmitted. 3. Listen for siren or keypad beeps to determine appropriate response (refer to the control panel installation instructions). 4. Exit sensor test mode. Note: It is recommended that a system test be performed per the Operation & User’s Guide at least once a year. Never handle the circuitboard antenna or by pulling on it. Doing so will void the warranty. Before mounting the sensor, verify that the sensor mounting location provides good RF communication to the panel. To verify, do the following: 1. This device may not cause harmful interference. 2. This device must accept any interference that may be received, including interference that may cause undesired operation. Changes or modifications not expressly approved by Versa Wireless Inc. can void the user’s authority to operate the equipment. Le présent appareil est conforme aux CNR d'Industrie Canada applicables aux appareils radio exempts de licence. L'exploitation est autorisée aux deux conditions suivantes : (1) l'appareil ne doit pas produire de brouillage, et (2) l'utilisateur de l'appareil doit accepter tout brouillage radioélectrique subi, même si le brouillage est susceptible d'en compromettre le fonctionnement. This device complies with FCC Rules Part 15. Operation is subject to the following two conditions:
REQUEST FOR CONFIDENTIALITY April 8, 2015 To: Federal Communications Commission Equipment Authorization Branch Laboratory Division Office of Engineering and Technology 7435 Oakland Mills Road Columbia, Maryland 21046 Subject: Request for Confidentiality Applicant: Versa Wireless Inc. 3725 159a Street Surrey BC, Canada V3Z0P1 EQUIPMENT FCC IDENTIFIER: 2AD9XVERSAX Dear Sir or Madam: Some of the material included in this application contains trade secrets and proprietary information not customarily released to the public. Because public disclosure of the material might be harmful to the applicant and provide unjustified benefits to its competitors, it is requested that the following be withheld from public disclosure: Exhibit Type File Name 2AD9XVERSAX-Schematic 2AD9XVERSAX-Block Diagram 2AD9XVERSAX-BOM Trade secrets and proprietary information can be held confidential. Therefore, we wish to invoke the act under the provisions of 47CFR, Sections 0.457(d) and 0.459. Please contact the undersigned if you have any questions or need any further information. Regards, Justin Carlson General Manager Versa Wireless Inc. Phone: 604.807.3235 Email: [email protected]
March 16, 2015 Timco Engineering, Inc. 849 NW State Road 45 P.O. Box 370 Newberry, Florida 32669 RE: Justification for label location regarding application for certification of FCC ID: 2AD9XVERSAX IC Number: 12637-VERSAX To Whom It May Concern: This letter is to justify the choice of label location for the device bearing the above FCC ID and IC Number. The location was chosen to be in the battery compartment due to limited space available to the placement of the label. The device is relatively small in physical size and has many contoured surfaces. The battery cover is not fastened nor permanently affixed to the device enclosure; therefore it was rejected as a potential location. The front side of the device enclosure is the side that the end user sees during normal operation. Versa Wireless Inc. wants to reserve the front side for marketing information (eg. Brand or trademark) and does not want label information on this side. For these reasons, the inside of the battery compartment is the only logical choice. At the factory, the device is assembled without the battery installed and will be marketed in that configuration. For the purpose of replacement by the end user, the battery is designed to be easily removed by hand and without assistance of tools. Once the battery is removed, the label will be visible. For these reasons, the label will be readily viewable to the device’s purchaser and to the end user. Please contact the undersigned if you have any questions or need any further information. Regards, Justin Carlson General Manager Versa Wireless Inc. Phone: 604.807.3235 Email: [email protected]
External Photos
PCB location PCB top side and location of “wire loop antenna” PCB bottom side
VERSA WIRELESS Versa-X Block Diagram Versa Wireless Operational Description: 1. Overview The device is a security sensor for windows. It has the ability to be set to any 1 of 4 frequency and protocol settings, although only 3 frequency and protocol setting are used for this version of the product. Versa-X (G) 319.5 MHz Versa-X (H) 344.97 MHz Versa-X (D) 433.92 MHz The basic functionality is the same for all 3 frequencies, but the protocol is different for each and each is outlined below. When the window is opened, a magnet is separated from the reed switch on the sensor, which triggers a change of state on the sensor’s microprocessor. The microprocessor then powers up the RF transmitter (Pulse Width Modulated OOK) and sends a series of identical packets that flag the change of state to a receiver. The packets are sent with a random delay between them. When there is no change of state occurring, the device goes into a very low-power mode, and wakes up 4x a second to check and see if there is a change of state on the reed switch. The sensor times out every 72 minutes and transmits a “heartbeat” message to allow the receiver to know it is still operational. Further, a battery level indicator (ok, or low) is sent with every message packet allowing a service technician to change the battery when it gets low. 2. Battery Section The battery is a Lithium Coin cell (CR2032) size, and is replaceable in the package (clips are J2 & J3). The device operates in three modes, Idle, Monitor, and Transmit. The majority of the time the device is in the “Idle” state, and this is the major contributor to battery life, which is expected to be greater than 7 years typical. C23 provides filtering on the input voltage 3. Microprocessor Section The microprocessor is a TI MSP430G2433 (U1) with onboard Flash and RAM. U1 has a startup delay provided by R1 & C1. The microprocessor samples the Reed Switch (S2) and Tamper Switch (S3) 4x per second and in the event of a change of state will transmit its packets to report this change. When a change of state is detected, or a “heartbeat timeout” occurs, the microprocessor modulates the Tx data line (U1-p7) which powers up and modulates the output of the Max7044 (U2) transmitter. It also powers up a Programmable Oscillator (U5) and sets the appropriate output frequency to meet the RF transmit frequency (32x basic input frequency). 4. RF Transmitter The RF transmitter is a single frequency OOK transmitter, and R2, R9, C11, C12, C20, C21, & C22 provide filtering to the RF transmitter chip U2 (Max7044). U2 uses a fixed Phase Locked Loop on chip to generate the transmit frequency from a Programmable Oscillator IC (U5) by x32. C16 & C18 are pass through caps to connect the Programmable Oscillator output to the RF chip (U2). U3 & U4 are digitally programmable Capacitor chips that are used to tune the antenna match at each different frequency. Also used in the antenna matching circuit are : L2, C3, L1, C9, & C15. The remaining parts R11, R13, C2, C13, C19, C17 are not populated. 5. Protocols Three separate protocols can be set by choosing the appropriate 4 position dip setting on the bottom of the sensor. These are as follows: G Setting: Frequency 319.5 MHz Modulation Type is Amplitude Shift Keyed – On/Off keyed (ASK-OOK) The carrier is modulated directly by the data coming from the microprocessor. .Each bit in the protocol begins with a carrier pulse of one-half bit-time. In a zero bit, the pulse is followed by a gap of one-half bit-time; in a one bit it's followed by a gap of one full bit-time. Peak frequency deviation is not applicable to ASK The transmission rate is 4.1 Kbits/sec. The rated output power into the antenna is 13dBm or 20milliWatts. H Setting: Frequency 344.97 MHz Modulation Type is Amplitude Shift Keyed – On/Off keyed (ASK-OOK) The carrier is modulated directly by the data coming from the microprocessor. It is a Phase Encoded (Manchester) baseband signal. Peak frequency deviation is not applicable to ASK The transmission rate is 3.7 Kbits/sec. The rated output power into the antenna is 13dBm or 20milliWatts D Setting: Frequency 433.92 MHz Modulation Type is Amplitude Shift Keyed – On/Off keyed (ASK-OOK) The carrier is modulated directly by the data coming from the microprocessor. The protocol uses a form of return-to-zero coding in which the carrier is turned on for the second half of a one-bit, and not turned on at all for a zero bit. Peak frequency deviation is not applicable to ASK The transmission rate is 2 Kbits/sec. The rated output power into the antenna is 13dBm or 20milliWatts.
19473 Fraser Way Pitt Meadows, BC Canada V3Y 2V4 ph. 604-527-8378 |fx. 604 527 8388 Electromagnetic Compatibility Test Report FCC CFR47 Part 15 Subpart B, Subpart C 15.231 15.205; RSS Gen issue 4, ICES-003 Issue 5 & RSS 210 issue 8, Annex 1 Report Reference No. .....................: E10676-1501-Rev2.0 Date of issue ........................................: April-08-2015 Total number of pages. . . .. .. . . .. . .. . ..: 34 Testing Laboratory........................ : Quality Auditing Institute Address................................................ : 16 – 211 Schoolhouse Street, Coquitlam, BC, V3K 4X9, Canada Accreditations (ISO 17025): Standard Council of Canada: Accredited Laboratory No. 743 International Accreditation Service Inc: Accredited Laboratory: No. TL-239 This report has been completed in accordance with the requirements of ISO/IEC 17025. Test results contained in this report are within QAI Laboratories ISO/IEC 17025 accreditation. QAI Laboratories authorizes the applicant to reproduce this report provided it is reproduced in its entirety and for the use by the company’s employees only. Applicant’s name ..............................: Versa Wireless Address......................................: 3725 159A Street, Surrey, BC Canada, V3Z 0P1 Contact.......................................: Justin Carlson, Email ...............: [email protected] Phone.........................................: (604) 807-3235 Test Standard................................ : FCC CFR47 Part 15 Subpart B, Subpart C 15.231 ,15.205; RSS Gen issue 4 & RSS-210 Issue 8 Annex 1 Test item description....................... : Multi-Protocol Security Sensors: Versa-X Manufacturer .....................................: Versa Wireless Model Number.................. .............: Versa-X FCC ID ................................. ........: 2AD9XVERSAX IC Certification No. ........................: 12637A-VERSAX Client: Versa Wireless Job No.: E10676-1501 Rev 2.0 Date:April-08-2015 Page 2 of 34 Security Sensors: Versa-X (EUT) Client: Versa Wireless Job No.: E10676-1501 Rev 2.0 Date:April-08-2015 Page 3 of 34 Revision History Date Report Number Rev # Details Authors Initials Feb-27-2015 E10676-1501 0.0 Draft Test Report AJ Mar-16-2015 E10676-1501 1.0 Final Test Report JQ April-08-2015 E10676-1501 2.0 Updated Final Test Report JQ All previous versions of this Report have been superseded by the latest dated Revision as listed in the above table. Please dispose of all previous electronic and paper printed revisions accordingly. Client: Versa Wireless Job No.: E10676-1501 Rev 2.0 Date:April-08-2015 Page 4 of 34 Index EMC TEST SUMMARY....................................................................................................... 5 PRODUCT DESCRIPTION ................................................................................................. 6 EUT DESCRIPTION ........................................................................................................... 6 FACILITIES AND ACCREDITATION .................................................................................. 7 ENVIROMENTAL CONDITIONS: ....................................................................................... 7 TESTING METHODOLOGY ............................................................................................... 7 EUT TESTING CONFIGURATION ..................................................................................... 7 GENERAL TEST PROCEDURES ...................................................................................... 7 MEASUREMENT UNCERTAINTY ..................................................................................... 8 TEST EQUIPMENT LIST .................................................................................................... 8 Part 1 - Radiated Emissions Testing (Unintentional Mode) ................................................ 9 Part 2 - Transmitter Radiated Emissions Testing ............................................................. 10 Part 3 - Duty CycleTesting ................................................................................................ 21 Part 4 - 20 dB Bandwidth Testing ..................................................................................... 28 Part 5 - Transmitter Time Testing ..................................................................................... 31 Test Setup Pictures ........................................................................................................... 33 Client: Versa Wireless Job No.: E10676-1501 Rev 2.0 Date:April-08-2015 Page 5 of 34 EMC TEST SUMMARY The following tests demonstrate the testimony to “FCC & IC” Mark Electromagnetic compatibility testing for “Versa-X” manufactured by Versa Wireless. The testing was performed pursuant to FCC CFR47 Part 15 Subpart B, Subpart C 15.231 15.205; RSS Gen issue 4, ICES-003 Issue 5 & RSS 210 issue 8, Annex 1 Tests were conducted on a sample of the equipment as requested by Versa Wireless for the purpose of demonstrating compliance with FCC CFR47 Part 15 Subpart B, Subpart C 15.231 15.205; RSS Gen issue 4, ICES-003 Issue 5 & RSS 210 issue 8, Annex 1. Versa Wireless is responsible for the tested product configuration, continued product compliance with these standards listed, and for the appropriate auditing of subsequent products, as required. Please note that this list of tests may only comprise a partial list of the tests that are required before a FCC or IC label can be produced by the manufacturer. This is to certify that the following report is true and correct to the best of our knowledge. Test Item Applicable Standard Description Performance Criteria Part 1 Radiated Emissions FCC CFR47 Part 15 Subpart B; RSS Gen issue 4, ICES-003 Issue 5 The emission are measured when the transmitter is not actived. Complies Part 2 Transmitter Radiated Emission FCC CFR47 Part 15 Subpart C 15.231 15.205; RSS Gen issue 4 & RSS 210 issue 8, Annex 1 Field stre…
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Test Setup Pictures Radiated Emission test setup below 30MHz Radiated Emission test setup 30MHz - 1GHz Radiated Emission test setup above 1GHz Worst-Case Orientation
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15.231 | 319.5 MHz - 433.9 MHz | - |

Z-Wave Dimmer Plug(800S)
Equipment Class
DTS - Digital Transmission System
(DSC) Wireless Shock Sensing Security Sensor for Doors/Windows
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Motion Sensor
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Intrusion Detector Sensor
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Intrusion Detector Sensor
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter