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SZV-EOSC01CEILING MOUNTED OCCUPANCY SENSOR

EnOcean GmbH
CEILING MOUNTED OCCUPANCY SENSOR - FCC ID SZV-EOSC01 - EnOcean GmbH
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Application Details

Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Date of Grant
Sep 10, 2012
Application Purpose
Original Equipment
Date of Application
Sep 10, 2012
Equipment Note
CEILING MOUNTED OCCUPANCY SENSOR
Frequency Range
315.00000000 - 315.00000000
Company
EnOcean GmbH
Country
Germany

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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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

Occupancy Sensor - Ceiling Mounted Installation Guide Model: EOSC Package Contents ▪Occupancy Sensor ▪2 screws, 2 wall anchors ▪Wire bracket Product Description The ceiling-mounted Occupancy Sensor saves energy and adds convenience by accurately detecting when an area is occupied or vacant. This device is wireless, powered by indoor light, and uses a pas- sive infrared (PIR) sensor to detect motion. The occupancy sen- sor transmits RF signals that control lighting, HVAC and outlets to manage energy more efficiently. Features Include: ▪Sends wireless messages to other devices whenever motion is detected ▪Harvests ambient solar energy to power the sensor and wire- less communication ▪Mounts easily on any ceiling material ▪Works with other sensors for enhanced occupancy tracking ▪Built-in tests to confirm operation at installed location ▪Supplemental battery or alternative power supply options for extreme low-light conditions Specifications Power SupplyIndoor light energy harvesting (Optional) Supplemental battery or 2-wire connector for external power or remote solar cell (3-5VDC) Transmission Range80 ft. (25 m) Radio FrequencyEnOcean 315 MHz, ISO/IEC 14545-3-10 standard Light Required to Sustain Operation 50 lux for 30 transmissions/hour 100 lux for 60 transmissions/hour Charge Time before Linking 2 minutes @ 50 lux Charge Time for Full Charge 3 hours @ 200 lux (after startup) 6 hours @ 200 lux (cold start) Operating Life in Dark- ness (after full charge) 48 hours EEP (EnOcean Equipment Profile) A05-07-01 Heartbeat Intervals (for gateway systems) 2 - 12 mins., randomized Dimensions2.35” H x 6.3” W x 1.47” D (60 mm x 160 mm x 37 mm) Weight4.4 oz. (125 g) EnvironmentIndoor use only 14° to 104°F (-10° to 40°C) 20% to 95% relative humidity (non-condensing) Agency ComplianceFCC, IC Functional Description If occupation is detected by the permanently active PIR sensor, a radio telegram indicating the occupied status will transmit immediately. An internal timer starts to run with a variable timer length. The timer value may vary between 60 and 300 seconds, depending on the light level. No radio telegrams will be sent out when the timer is counting down. After the timer has finished the countdown, the unit will trans- mit again if occupancy was detected during the countdown time period. If occupancy was not detected, the unit will transmit a heartbeat signal - sending the unoccupied status with a ran- dom timing of 2 to 12 minutes. There are two buttons which allow entrance to a “Walk” or “Light-level” test mode. These test modes are for installation purposes only and will be exited automatically after 3 minutes. Tools Required ▪Power drill, 3/16” bit ▪Screwdriver ▪Light meter ▪Battery (CR2032) for testing Page 1 Planning Take a moment to plan for the sensor’s successful operation and optimal communication with other system components. Remove the sensor from its packaging and place it under a bright light to provide the required startup charge. To quickly ensure the sensor energy storage is fully charged, insert a CR2032 battery for 5 minutes. ▪Ensure the location provides consistent and adequate light ▪Install with the appropriate lens for the required coverage ▪Avoid installed near ceiling fan or hanging fixtures ▪Consider the area’s traffic patterns and principal use, for example, walking, working, lounging or sleeping ▪Provide a minimum clearance of 4 ft. (1.2 m) away from heat sources, light bulbs, forced air, or ventilation systems ▪Consider the construction materials (such as metal) in the space and obstacles that may interfere with RF signals Sensor Range A single occupancy sensor provides sufficient coverage for most applications. For some applications, multiple sensors may be required to provide complete coverage. Coverage Diagrams To provide coverage for very high ceilings, a wall sensor can be incorporating in the plan for complete coverage. Installing The occupancy sensor can be mounted on most ceilings with the provided screws, or mounted on dropped ceilings, using the provided wire bracket. NOTE: It may be easier to link the sensor before it is mounted on the ceiling. Refer to the “Linking” section. 1. Decide where you want to install the occupancy sensor. Tip: For visual alignment, orient the sensor parallel to one of the walls. 2. Remove the mounting plate from the sensor. 3. Decide which of the two installation options is appropriate. A. Screw Mounting Plate to the Ceiling i. Hold the mounting plate in place on the ceiling and use a pencil to lightly mark two small dots for the screw drill points. ii. Drill two holes with a 3/16” drill bit and insert the wall anchors. iii. Insert the first screw loosely and level the mounting plate. iv. Insert the second screw and then hand-tighten the first screw. B. Mount Using the Wire Bracket i. Remove the ceiling tile where you want to mount the sensor. ii. Place the mounting plate squarely on the ceiling tile and use the wire to mark two points for the holes. iii. Punch two small holes through the ceiling tile at the marked points. iv. Insert the wire bracket through the two holes in the mounting plate. Make sure the ends are roughly even. v. Feed the wires through the holes in the ceiling tile. vi. On the front of the ceiling tile, flatten the wire bracket so it is snug against the mounting plate. estimated time: 20 minutes Occupancy Sensor – Ceiling Mounted • Installation Guide Page 2 vii. On the back of the ceiling tile, twist the wires together to hold the mounting plate securely. viii. Replace the ceiling tile. 4. Attach the sensor to the mounting plate. With the 2-button interface facing you, slide the sensor to the left on the mounting plate until it snaps into place. 5. Confirm the sensor is properly positioned to detect motion and has sufficient light to operate - refer to the “Walk Test” and “Light Test” sections. Linking Two or more compatible devices can be linked and configured to provide the desired control. There are two basi…

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External Photos

Front View of the EUT Back View of the EUT

ID Label/Location Info

EOSC Occupancy Sensor, Ceiling-Mounted Made in China XEOSC01PL01A FCC ID: SZV-EOSC01 IC: 5713A-EOSC01 315 MHz

Internal Photos

View of the EUT and back of PCB with Back Cover Removed View of the EUT with Front Cover Removed View of the Front Side of the PCB

Test Report

Nemko-CCL, Inc. 1940 West Alexander Street Salt Lake City, UT 84119 801-972-6146 Test Report Certification Test Of: EOSC Test Specifications: FCC Part 15, Subpart C FCC ID #: SZV-EOSC01 Test Report Serial No: 207585-3.2 Applicant: EnOcean GmbH Kolpingring 18a Oberhaching 82041 Germany Date of Test: June 12, 2012 Report Issue Date: June 21, 2012 Accredited Testing Laboratory By: NVLAP Lab Code 100272-0 Nemko-CCL, Inc. TEST REPORT: 207585-3.2 REPORT ISSUE DATE: June 21, 2012 Page 2 of 28 CERTIFICATION OF ENGINEERING REPORT This report has been prepared by Nemko-CCL, Inc. to document compliance of the device described below with the certification requirements of FCC Part 15, Subpart C. This report may be reproduced in full. Partial reproduction of this report may only be made with the written consent of the laboratory. The results in this report apply only to the sample tested. - Applicant: EnOcean GmbH - Manufacturer: EnOcean GmbH - Brand Name: EnOcean - Model Number: EOSC - FCC ID #: SZV-EOSC01 On this 21 st day of June 2012, I, individually and for Nemko-CCL, Inc., certify that the statements made in this engineering report are true, complete, and correct to the best of my knowledge, and are made in good faith. Although NVLAP has accredited the Nemko-CCL, Inc. EMC testing facilities, this report must not be used to claim product certification, approval, or endorsement by NVLAP, NIST, or any agency of the federal government. Nemko-CCL, Inc. Tested by: Norman P. Hansen EMC Technician Nemko-CCL, Inc. TEST REPORT: 207585-3.2 REPORT ISSUE DATE: June 21, 2012 Page 3 of 28 TABLE OF CONTENTS PAGE SECTION 1.0 CLIENT INFORMATION .................................................................................4 SECTION 2.0 EQUIPMENT UNDER TEST (EUT) ..................................................................5 SECTION 3.0 TEST SPECIFICATION, METHODS & PROCEDURES .............................6 SECTION 4.0 OPERATION OF EUT DURING TESTING ..................................................10 SECTION 5.0 SUMMARY OF TEST RESULTS ...................................................................11 SECTION 6.0 MEASUREMENTS, EXAMINATIONS AND DERIVED RESULTS ..........12 APPENDIX 1 TEST PROCEDURES AND TEST EQUIPMENT ..........................................19 APPENDIX 2 PHOTOGRAPHS ................................................................................................22 Nemko-CCL, Inc. TEST REPORT: 207585-3.2 REPORT ISSUE DATE: June 21, 2012 Page 4 of 28 SECTION 1.0 CLIENT INFORMATION 1.1 Applicant: Company Name: EnOcean GmbH Kolpingring 18a Oberhaching 82041 Germany Contact Name: Armin Anders Title: Director Product Marketing 1.2 Manufacturer: Company Name: EnOcean GmbH Kolpingring 18a Oberhaching 82041 Germany Contact Name: Armin Anders Title: Director Product Marketing Nemko-CCL, Inc. TEST REPORT: 207585-3.2 REPORT ISSUE DATE: June 21, 2012 Page 5 of 28 SECTION 2.0 EQUIPMENT UNDER TEST (EUT) 2.1 Identification of EUT: Brand Name: EnOcean GmbH Model Number: EOSC Serial Number: None 2.2 Description of EUT: The EOSC is a ceiling mounted occupancy sensor for use in homes and businesses. The EOSC is integrated into the control/security system using a 315 MHz transmitter. The EOSC is powered by solar energy with a CR2032 battery for alternate/backup power. This report covers the transmitter circuitry of the device subject to FCC Part 15, Subpart C. The circuitry of the device, subject to FCC Part 15, Subpart B, was tested, found compliant, and is covered in Nemko-CCL, Inc. report #207585-2.1. 2.3 EUT and Support Equipment: Brand Name Model Number FCC ID Number or Compliance Description Name of Interface Ports / Interface Cables BN: EnOcean MN: EOSC (Note 1) SN: None SZV-EOSC01 Sensor See Section 2.4 2.4 Interface Ports on EUT: There are no interface ports on the EUT. 2.5 Modification Incorporated/Special Accessories on EUT: There were no modifications or special accessories required to comply with the specification. Nemko-CCL, Inc. TEST REPORT: 207585-3.2 REPORT ISSUE DATE: June 21, 2012 Page 6 of 28 SECTION 3.0 TEST SPECIFICATION, METHODS & PROCEDURES 3.1 Test Specification: Title: FCC PART 15, Subpart C (47 CFR 15) Section 15.203 Section 15.231 Periodic operation in the band 40.66-40.70 MHz and above 70 MHz. Purpose of Test: The tests were performed to demonstrate initial compliance. 3.2 Methods & Procedures: 3.2.1 §15.203 An intentional radiator shall be designed to ensure that no antenna other than that furnished by the responsible party shall be used with the device. The use of a permanently attached antenna or of an antenna that uses a unique coupling to the intentional radiator shall be considered sufficient to comply with the provisions of this Section. The manufacturer may design the unit so that a broken antenna can be replaced by the user, but the use of a standard antenna jack or electrical connector is prohibited. This requirement does not apply to carrier current devices or to devices operated under the provisions of Sections 15.211, 15.213, 15.217, 15.219, or 15.221. Further, this requirement does not apply to intentional radiators that must be professionally installed, such as perimeter protection systems and some field disturbance sensors, or to other intentional radiators which, in accordance with Section 15.31(d), must be measured at the installation site. However, the installer shall be responsible for ensuring that the proper antenna is employed so that the limits in this Part are not exceeded. 3.2.2 §15.231 (a) The provisions of this section are restricted to periodic operation within the band 40.66-40.70 MHz and above 70 MHz. Except as Shown in paragraph (e) of this section, the intentional radiator is restricted to the transmission of a control signal such as those used with alarm systems, door openers, remote switches, etc. Radio control of toys is not permitted. Continuous transmissions, such as voice or video, and data transmissions are not permitted. The prohibition …

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Test Setup Photos

Front View Radiated Disturbance Worst Case Configuration Back View Radiated Disturbance Worst Case Configuration

Contact Information

Applicant

Armin Anders(Director Product Marketing)
[email protected]+49 89 6734 689 - 33Fax: +49 89 6734 689 - 54

Test Firm

VPI TechnologyJason Stewart
[email protected]801-495-2310

Technical Specifications

#Rule PartsFrequency RangePower Output
115.231315 MHz - 315 MHz-
Confidentiality
Long Term

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