
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
ClareOne Rate-Of-Rise Heat Detector Installation Manual CLR-C1-HT Page 1 of 2 CLR-C1-HT IM V1 02192020 Rate of Rise Heat Detector CLR-C1-HT The ClareOne Rate-Of-Rise heat detector uses a built-in thermistor to sample and report on a specific set temperature or a sudden rise in temperature. Heat – selectable 135F or 200F Rate of Rise – rapid temp rise 12F per minute Note: The device is powered by a 3V lithium battery providing up to 10 years of battery life. Installation: Heat detectors are normally installed in areas that are prone to smoke as kitchens and garages. Avoid areas that may have rapidly increasing temperatures as, fireplaces, stoves, heaters, etc. When mounting the detector should be placed on a ceiling at least 4 inches away from any wall. If placed on a wall the detector must be within 6 inches if the ceiling. If using as a 135F make sure the ceiling location does not exceed this temperature. Setup: The detector can be setup to detect a fixed temperature of either 135F or 200F. Use the jumper to select Low or Hi: Fixed Temperature Low – 135F High – 200F Note: if no jumper is installed the detector is set to 200F. Programming: Enrolling The panel must learn (program) the detector ID code in order to respond to detector signals. For complete programming information, refer to the specific control panel documentation. To add the detector to panel memory: 1. Place the panel in program mode. 2. Proceed to the Learn Sensors menu. When the panel prompts you for a sensor group number, select the proper fire group. 3. Select the desired sensor number. When the panel prompts you to trip the detector, remove the battery pull tab. (If pull tab is already removed, press and then release the tamper switch until the panel beeps, indicating successful programming.) 4. Exit program mode. Mounting the Detector 1. Locate the base mounting holes and mount the base to the wall or ceiling with the appropriate hardware (Figure 3). 2. Attach the detector to the mounting base. Replacing the Batteries Battery life depends on how often the detector transmits signals, but is more dependent on the temperature of the installation environment. When the battery voltage gets low, the detector transmits a low battery signal to the panel. The panel then activates trouble beeps to notify the customer that the detector battery must be replaced. Pressing the status button identifies the sensor with the low battery. Replace the battery immediately when this condition occurs, using the following battery: Panasonic CR123A 3V. Tamper Switch Mounting Holes ClareOne Rate-Of-Rise Heat Detector Installation Manual CLR-C1-HT Page 2 of 2 CLR-C1-HT IM V1 02192020 Battery Disposal The batteries used in this sensor are lithium batteries and are not reusable. Be sure to properly dispose of used lithium batteries according to your local hazardous waste disposal laws. Specifications Rate of Rise rating 12° to 15ºF (6.7° to 8.3C) UL max. Ambient ceiling 100°F/150°F (37.8ºC / 65.6ºC) Storage Temperature -30 to 167°F (-34 to 75°C) Relative Humidity 0 to 95% noncondensing Maximum UL Spacing 50ft (15.2m) x 50ft (15.2m) Frequency 319.5 MHz Expected Battery Life 10 years Standby Current Less than 0.9 μA Supervision Interval 62-68 minutes Enclosure Dimensions Diameter: 2.29" (58.25mm) Height: 1.28" (32.4mm) Regulatory UL 521 Heat Detectors for Fire Protective Signaling Systems UL 985 Household Fire Warning System Units CAN/ULC-S530 Heat Actuated Fire Detectors for Fire Alarm Systems CSFM Category 7270 FCC: 15.109 Class B, 15.231 Industry Canada: ICES-003, RSS-210 FCC / IC Statement This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This device complies with part 15 of the FCC Rules. Operation is subject to the following conditions: (1) this device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesirable operation. Per FCC 15.21, The user manual or instruction manual for an intentional or unintentional radiator shall caution the user that changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate the equipment. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined 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 receiver. • Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. • Consult the dealer or an experienced radio/TV technician for help. This device complies with Industry Canada license-exempt RSS standard(s). Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device. Cet appareil est conforme avec Industrie Canada exempts de licence standard RSS (s). Son fonctionnement est soumis aux deux conditions suivantes: (1) cet appareil ne doit pas provoquer d'interférences et (2) cet appareil doit accepter toute interférence, y compris celles pouvant causer un mauvais fonctionnement de l'appareil. In accordance with FCC requirements of human exposure to radio frequency fields, the radiating element shall be installed such that a minimum separation distan…
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Cinch Systems, Inc. 12075 43 rd St NE Suite 300 St. Michael MN 55376 USA Application Cover Letter FCC ID: 2ABBZ-RF-RORS-433 Cinch Security Systems is applying for original certification to FCC Part 15 Subpart C §15.231 for FCC ID number 2ABBZ-RF-RORS-433 Wireless Rate-of-Rise heat sensor. The wireless communication interface with a security panel is regarded as a proprietary security protocol. The following model numbers are associated with this application: RF-ROR-135S-433-CLR CLR-C1-HT The radio in all models are electrically identical. The differences in the models are the company model naming format. Cinch model Number Clare model number Remark RF-ROR-135S-433-CLR CLR-C1-HT Electrically equivalent devices Electrically all the units are identical. Company Officer: Vice President Telephone Number: 763-497-1059 Email: [email protected]
Cinch Security Systems, Inc. 12075 43 rd St NE Suite 300 St Michael, MN 55376 USA Confidentiality Request FCC ID: 2ABBZ-RF-RORS-433 Pursuant to Sections 0.457(d) and 0.459 of the Commission’s Rules, Cinch Systems hereby requests permanent confidential treatment of information accompanying this application as outlined below: Common exhibits for which confidentiality is requested are: Schematics: Block Diagrams: Theory of Operation: Bosch Security Systems also hereby requests short-term confidential treatment of information accompanying this application as outlined below for a period of 180 days: Exhibits for which short-term confidentiality is commonly requested are: Internal Photos: External Photos: User Manual: Test Set-up Photographs: The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these matters might be harmful to the Applicant and provide unjustified benefits to its competitors. The Applicant understands that pursuant to Rule 0.457(d)(1)(ii), disclosure of this Application and all accompanying materials will not be made before the date of the Grant for this Application. Company Officer: Vice President Telephone Number: 763-497-1059 Email: [email protected]
Model: RF-ROR-135S-433-CLR Cinch Systems Inc. FCC ID: 2ABBZ-RF-RORS-433 Model: RF-ROR-135S-433-CLR IC : 11817A-RFRORS433 Model: CLR-C1-HT Clare Control Inc. FCC ID: 2ABBZ-RF-RORS-433 Model: CLR-C1-HT IC : 11817A-RFRORS433
OOK Transmitter ‐ U1 Brass Rod Antenna 24MHz Crystal for OOK Transmitter
Model: RF-ROR-135S-433-CLR Antenna info Overview: Antenna description: The antenna is a piece of wire and used in a monopole arrangement. Antenna is permanently attached to the units. Antenna does not use reverse polarity connector. Antenna Drawing Antenna design/Simulation data: Antenna specification Frequency band 433.95MHz Frequency (MHz) 430 431 433 434 436 Return loss (dB) < -13 Peak gain (dBi) 0.23 0.18 -0.97 3.11 2.5 Average gain (dBi) -1.24 -2.56 -3.47 -2.11 -1.85 Efficiency (%) 27.5 31.8 55.8 70.3 63.83
This report must not be used to claim product certification, approval, or endorsement by NVLAP, NIST, or any agency of the U.S. Government. This Report shall not be reproduced, except in full without written approval of the laboratory. CINCH Systems RF-ROR-135S-433-CLR FCC 15.231:2020 Low Power Radio Report # CINC0049.1 NVLAP LAB CODE: 200881-0 CERTIFICATE OF TEST 2018-09-14 Product compliance is the responsibility of the client; therefore, the tests and equipment modes of operation represented in this report were agreed upon by the client, prior to testing. The results of this test pertain only to the sample(s) tested. The specific description is noted in each of the individual sections of the test report supporting this certificate of test. This report reflects only those tests from the referenced standards shown in the certificate of test. It does not include inspection or verification of labels, identification, marking or user information. As indicated in the Statement of Work sent with the quotation, Element’s standard process is to always use the latest published version of the test methods even when earlier versions are cited in the test specification. Issuance of a purchase order was de facto acceptance of this approach. Otherwise, the client would have advised Element in writing of the specific version of the test methods they wanted applied to the subject testing. Last Date of Test: March 3, 2020 CINCH Systems EUT: RF-ROR-135S-433-CLR Radio Equipment Testing Standards Specification Method FCC 15.231:2020 ANSI C63.10:2013 Results Method Clause Test Description Applied Results Comments 6.2 Powerline Conducted Emissions (Transmitter) No N/A Not required for a battery powered EUT. 6.5, 6.6 Field Strength of Fundamental Yes Pass 6.5, 6.6 Spurious Radiated Emissions Yes Pass 6.9.2 Occupied Bandwidth Yes Pass 7.5 Duty Cycle Yes Pass Deviations From Test Standards None Approved By: Eric Brandon, Department Manager Report No. CINC0049.12/24 REVISION HISTORY 2018.07.17 Revision Number Description Date (yyyy-mm-dd) Page Number 00 None Report No. CINC0049.13/24 ACCREDITATIONS AND AUTHORIZATIONS 2019.03.08 United States FCC - Designated by the FCC as a Telecommunications Certification Body (TCB). Certification chambers, Open Area Test Sites, and conducted measurement facilities are listed with the FCC. A2LA - Accredited by A2LA to ISO / IEC 17065 as a product certifier. This allows Element to certify transmitters to FCC and IC specifications. NVLAP - Each laboratory is accredited by NVLAP to ISO 17025 Canada ISED - Recognized by Innovation, Science and Economic Development Canada as a Certification Body (CB) and as a CAB for the acceptance of test data. European Union European Commission – Within Element, we have a EU Notified Body validated for the EMCD and RED Directives. Australia/New Zealand ACMA - Recognized by ACMA as a CAB for the acceptance of test data. Korea MSIT / RRA - Recognized by KCC’s RRA as a CAB for the acceptance of test data. Japan VCCI - Associate Member of the VCCI. Conducted and radiated measurement facilities are registered. Taiwan BSMI – Recognized by BSMI as a CAB for the acceptance of test data. NCC - Recognized by NCC as a CAB for the acceptance of test data. Singapore IDA – Recognized by IDA as a CAB for the acceptance of test data. Israel MOC – Recognized by MOC as a CAB for the acceptance of test data. Hong Kong OFCA – Recognized by OFCA as a CAB for the acceptance of test data. Vietnam MIC – Recognized by MIC as a CAB for the acceptance of test data. SCOPE For details on the Scopes of our Accreditations, please visit: https://www.nwemc.com/emc-testing-accreditations Report No. CINC0049.14/24 FACILITIES 2019.03.08 California Labs OC01-17 41 Tesla Irvine, CA 92618 (949) 861-8918 Minnesota Labs MN01-10 9349 W Broadway Ave. Brooklyn Park, MN 55445 (612)-638-5136 Oregon Labs EV01-12 6775 NE Evergreen Pkwy #400 Hillsboro, OR 97124 (503) 844-4066 Texas Labs TX01-09 3801 E Plano Pkwy Plano, TX 75074 (469) 304-5255 Washington Labs NC01-05 19201 120 th Ave NE Bothell, WA 98011 (425)984-6600 NVLAP NVLAP Lab Code: 200676-0 NVLAP Lab Code: 200881-0 NVLAP Lab Code: 200630-0 NVLAP Lab Code:201049-0 NVLAP Lab Code: 200629-0 Innovation, Science and Economic Development Canada 2834B-1, 2834B-3 2834E-1, 2834E-3 2834D-1 2834G-1 2834F-1 BSMI SL2-IN-E-1154R SL2-IN-E-1152R SL2-IN-E-1017 SL2-IN-E-1158R SL2-IN-E-1153R VCCI A-0029 A-0109 A-0108 A-0201 A-0110 Recognized Phase I CAB for ISED, ACMA, BSMI, IDA, KCC/RRA, MIC, MOC, NCC, OFCA US0158 US0175 US0017 US0191 US0157 Report No. CINC0049.15/24 MEASUREMENT UNCERTAINTY TMU.2015.07.10 Measurement Uncertainty When a measurement is made, the result will be different from the true or theoretically correct value. The difference is the result of tolerances in the measurement system that cannot be completely eliminated. To the extent that technology allows us, it has been our aim to minimize this error. Measurement uncertainty is a statistical expression of measurement error qualified by a probability distribution. A measurement uncertainty estimation has been performed for each test per our internal quality document QM205.4.6. The estimation is used to compare the measured result with its "true" or theoretically correct value. The expanded measurement uncertainty (K=2) can be found included as part of the applicable test description page. Our measurement data meets or exceeds the measurement uncertainty requirements of the applicable specification; therefore, the test data can be compared directly to the specification limit to determine compliance. The calculations for estimating measurement uncertainty are based upon ETSI TR 100 028 (or CISPR 16-4-2 as applicable), and are available upon request. The following table represents the Measurement Uncertainty (MU) budgets for each of the tests that may be contained in this report. Test + MU - MU Frequency Accuracy 0.0007% -0.0007% Amplitude Accuracy (dB) 1.2 dB -1.2 dB Conducted Power (dB) 1.2 …
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photo PSA-ESCI 2019.11.08.1 photos PSA-ESCI 2019.11.08.1 SRE ROR 001.jpg SRE ROR 002.jpg ROR 002 FIELD STRENGTH OF FUNDAMENTAL photo PSA-ESCI 2019.11.08.1 photos PSA-ESCI 2019.11.08.1 SRE ROR 003.jpg SRE ROR 004.jpg ROR 004 FIELD STRENGTH OF FUNDAMENTAL photo PSA-ESCI 2019.11.08.1 photos PSA-ESCI 2019.11.08.1 SRE ROR 001.jpg SRE ROR 002.jpg ROR 002 SPURIOUS RADIATED EMISSIONS Report No. CINC0049.12/6 photo PSA-ESCI 2019.11.08.1 photos PSA-ESCI 2019.11.08.1 SRE ROR 003.jpg SRE ROR 004.jpg ROR 004 SPURIOUS RADIATED EMISSIONS Report No. CINC0049.13/6 photo PSA-ESCI 2019.11.08.1 photos PSA-ESCI 2019.11.08.1 SRE ROR 005.jpg SPURIOUS RADIATED EMISSIONS Report No. CINC0049.14/6 XMit 2019.09.05 SRE ROR 001.jpg SRE ROR 002.jpg DUTY CYCLE & OCCUPIED BANDWIDTH Report No. CINC0049.15/6
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15.231 | 433.95 MHz - 433.95 MHz | - |
RF-ROR-V3-319-NN
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