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HCQ3B6ETRT2MKey Chain Remote

Inovonics Wireless Corporation
Key Chain Remote - FCC ID HCQ3B6ETRT2M - Inovonics Wireless Corporation
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
May 05, 2005
Application Purpose
Original Equipment
Date of Application
Mar 29, 2005
Equipment Note
Key Chain Remote
Frequency Range
902.40000000 - 927.60000000
Company
Inovonics Wireless Corporation
Country
United States

Documents & Files

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Users Manual

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Cover Letter(s)

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

DS200 Key Chain Remote Control WARNING: Read and understand all instructions and warnings for this product. In addition, read and follow all instructions and warnings provided with the DS100 JobSite Security Portable Alarm System. CAUTION: DANGER OF EXPLOSION, INJURY OR FIRE. Carefully follow all instructions and warnings on the battery label and package. • Never use a damaged or worn out battery. • Discharged batteries should be replaced only with type CR-2 3.0 Volt Lithium batteries. • Do not use re-chargeable batteries or attempt to charge batteries. • Carefully remove the old, discharged battery. • Do not attempt to open. • Do not peel the label from the battery. • Never dispose of a battery in a fire. • Dispose of used batteries in accordance with local regulations. • Recycle batteries. • Always insert batteries correctly with regard to polarity (+ and -) marked on the battery and the equipment. • When installing the battery, do not use excessive force. If the bat- tery does not fit, check to make sure that it matches the polarity markings. • Never expose the battery terminals to any other metal object. This can short circuit the battery. • Avoid exposure to temperature extremes. • When not in use, store the battery in a cool, dark, dry place. • Keep batteries out of reach of children. CAUTION: POTENTIAL EQUIPMENT MALFUNCTION OR FAILURE. Do not use near water. Damage to the equipment may occur. Equipment shall not be exposed to liquids. FCC REGULATORY STATEMENT (FCC: HCQ3B6ETRT2M) • This device complies with Part 15 of the FCC rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) the device must accept any interference received, including interference that may cause unde- sired operation. INDUSTRY CANADA(IC: 2309A-ETRT2M) •NOTICE:This equipment meets the applicable Industry Canada Terminal Equipment Technical Specifications. This is confirmed by the registration number. The abbreviation, IC, before the reg- istration number signifies that registration was performed based on a Declaration of Conformity indicating that Industry Canada technical specifications were met. It does not imply that Industry Canada approved the equipment. Components (Fig. 1, 2) A. AntennaE. Battery B. LEDF. Reset Button C. Lock ButtonG. Carabiner D. Unlock Button Product Function The DS200 Key Chain Remote Control is used for arming or disarming the system from a range of up to 2000' (610 m). Once activated, this device will work exclusively with the assigned DS100 JobSite Security Portable Alarm System. • The remote uses 900 MHz spread spectrum communication to provide superior range and robustness. • The DS200 has an LED feedback light which notifies the user when a signal is being sent to the Base Unit. •LOCK (C) – press and release to arm the system. •UNLOCK (D) – press and release to disarm the system. • The DS200 remote uses a CR-2 3.0V Lithium battery (E) for long life. • The reset button (F) allows the Key Chain Remote Control to be registered to any D EWALT JobSite Security system with easy set up. • A convenient carabiner clip (G) is included for versatility. NOTE:Metal objects blocking radio frequency (RF) transmission can affect the range of the Key Chain Remote. Prevention of False Alarms The majority of alarms that occur are false. These situations happen every day due to user error, incorrect installation or improper mainte- nance of the system. False alarms will limit the responsiveness to the system, and become a general inconvenience. As the number of false alarms increases, authorities have become less apt to respond to alarm systems due to this problem. Many of these situations can be avoided by following some very simple practices. • Ensure all users are properly trained on the operation of the system. • Always turn off the system with the Key Chain Remote Control before entering protected area. • Lock all protected doors, windows or any other asset attached to a sensor. • Check that motion detectors are not obstructed. Do not allow sources of heat or sound in range of the motion or vibrationsen- sors. • Check that premises are cleared and assets secured before setting the system. • Turn off all noise sources – radios, compressors, generators, heavy equipment, etc. • Know how to cancel an alarm or turn off the system before activating. • If a false alarm is tripped notify customer service immediately. • Test the system on a monthly basis to ensure proper functioning • Check cellular signal, power supply, and that sensors are secured on a daily basis. Recommended Uses The DS200 Key Chain Remote Control is useful for arming and disarming the system without typing a user code on the keypad. Up to 6 Key Chain Remotes can be added to the system. Installing & Changing Battery The DS200 Key Chain Remote Control requires a non-rechargeable CR-2 3.0 Volt Lithium battery. CAUTION: POTENTIAL EQUIPMENT MALFUNCTION OR FAILURE. Do not touch the electronic components inside the device, except the reset button and battery. SITELOCK LLC, 626 Hanover Pike, Hampstead, MD 21074(SEP04) Form No. 626133-00 DS200 Copyright © 2004 DEWALT CAUTION: POTENTIAL EQUIPMENT MALFUNCTION OR FAILURE. Do not touch the electronic components inside the device, except the reset button and battery. A B C D E F G FIG. 1FIG. 3FIG. 2 2 TO INSTALL A BATTERY 1. Using a flat screwdriver, open the housing. Insert the screwdriver about .25" (6mm) at the tab on the top of the unit (Fig. 3). Pry downward on the handle of the screwdriver until the latch holding the cover to the housing base releases. 2. Install the battery using the polarity (+ and -) markings on the battery and equipment. Do not use excessive force. If the battery does not fit, ensure that it matches the polarity markings (Fig. 2). 3. Press the reset button (F) on the device. After resetting the Key Chain Remote (see Device Registration), replace the cover. TO CHANGE THE BATTERY CAUTION: Never use a damage…

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External Photos

FCC ID: HCQ3B6ETRT2M DS200 4. External Photos: Bottom View Top View FCC Label

ID Label/Location Info

DOC NO: 626822-PDF1 REV: 0 VERSION: 1 TITLE: LABEL, N/P DS200 EC: EC0223527 PND

Internal Photos

FCC ID: HCQ3B6ETRT2M DS200 6. Internal photos: Cover removed PCB top side RF Shielding FCC ID: HCQ3B6ETRT2M DS200 6. Internal Photos (page 2) PCB top side with shield can removed PCB bottom side

Test Report

EMC EMISSIONS - TEST REPORT (Full) Test Report No. BC500159-1 Issue Date: Mon 14/Mar/2005 Model No. DS200 Product Type Security Key Fob Client Inovonics Wireless Corp. Manufacturer Inovonics Wireless Corp. License holder Inovonics Wireless Corp. 315 CTC Boulevard Address Louisville, CO 80027 Test Criteria Applied FCC CFR47 Part 15.247 Test Result PASS Test Project Number References BC500159-1 Total Pages Including Appendices: 35 Title 47 CFR 15: RADIO FREQUENCY DEVICES Reviewed By : Mike Spataro Approved By : Robert Cresswell INTERNATIONAL APPROVALS LABORATORIES (IAL) reports apply only to the specific samples tested under stated test conditions. It is the manufacturer's responsibility to assure that additional production units of this model are manufactured with identical electrical and mechanical components. IAL have no liability for any deductions, inferences or generalizations drawn by the client or others from IAL issued reports. This report is the confidential property of the client. As a mutual protection to our clients, the public and ourselves, extracts from the test report shall not be reproduced except in full without our written approval of IAL. This report shall not be used by the client to claim product endorsement by NVLAP (No. 200624- 0) or any agency of the US government. International Approval Laboratories and its professional staff hold government and professional organization certifications and are members of IEEE, NVLAP, and VCCI. Lab Code:200264-0 The entity logos above are for reference only and may not apply to this test report. D I R E C T O R Y Documentation Page(s) Test report 1 - 35 Directory 2 Test Regulations 3 General Remarks 4 - 5 Test-setup Photographs 6 - 9 Appendix A Test Data Sheets and Test Equipment Used 10 - 22 Appendix B Test Plan/Constructional Data Form 23 - 30 Appendix C Measurement Protocol/Test Procedures 31 - 35 STATEMENT OF MEASUREMENT UNCERTAINTY The data and results referenced in this document are true and accurate. The measurement uncertainty for Conducted Emissions in the frequency range of 150kHz – 30MHz is calculated to be ±2.30dB and for Radiated Emissions is calculated to be ±3.60dB in the frequency range of 30MHz – 200MHz and ±3.38dB in the frequency range of 200MHz – 1000MHz. EUT Received Date: 24-Feb-2005 Testing Start Date: 24-Feb-2005 Testing End Date: 9-Mar-2005 Project File: BC500159 Page 2 of 35 International Approvals Laboratories, LLC 5541 Central Avenue, Suite 110 Boulder, Colorado 80301 Voice: 303 786 7999 Fax: 303 449 6160 Rev.No 1 The tests were performed according to following regulations : 1. FCC CFR47 Part 15.205 2. FCC CFR47 Part 15.207 3. FCC CFR47 Part 15.209 4. FCC CFR47 Part 15.247 5. ICES-003 Emission Test Results: Conducted Emissions, Powerline (15.207) - Not Applicable Test Result Minimum limit margin NA dB at NA MHz Maximum limit exceeding dB at MHz Remarks: Radiated Emissions (15.209) - PASS Test Result Minimum limit margin -14.5 dB at 1.03 MHz Maximum limit exceeding dB at MHz Remarks: Radiated Emissions (15.205)/(15.247)(c) - PASS Test Result Minimum limit margin -7.38 dB at 1 2744.40 MHz Maximum limit exceeding dB at MHz Remarks: Peak Output Power (15.247) (b)(1) - PASS Test Result Minimum limit margin -14.9 dB at 914.80 MHz Maximum limit exceeding dB at MHz Remarks: Project File: BC500159 Page 3 of 35 International Approvals Laboratories, LLC 5541 Central Avenue, Suite 110 Boulder, Colorado 80301 Voice: 303 786 7999 Fax: 303 449 6160 Rev.No 1 GENERAL REMARKS: The following remarks are to be considered as “where applicable“ and are taken into account while completing any FCC/IC/ETSI radio tests at International Approvals Laboratories, LLC. Testing was performed in 3 different orthogonal axis to determine the worst case emissions from the device. The worst case emissions measurements are shown in this report. FCC CFR47 Part 15.31: Measurement Standards: In any case where the device is powered off a battery, a fresh battery was used during test. In cases where the device is powered off an AC supply, voltage was varied per Part 15.31 to find worst case emissions. FCC CFR47 Part 15.35: Measurement Detector Functions and Bandwidths: FCC Part 15.35 was utilized when performing the measurements within this report. In any case where the device is powered off a battery, a fresh battery was used during test. In cases where the device is powered off an AC supply, voltage was verified per Part 15.31 to find worst case emissions. The actual test distance for the FCC Part 15.209 testing was conducted at 10m for the fact that the device was being tested to EN55022 Class B from 30 MHz to 1000 MHz (meets/exceeds the FCC Part 15.209 & 109B limits) The data is automatically extrapolated back to the FCC 3m limits and measurements are corrected to better show the compliance to FCC requirements and reduce confusion. A correction factor of 10.54dB is used in cases of 30MHz and up for a difference between 10m and 3m measurement distances. All measurements that are lesser than 30MHz where applicable are accompanied with the fall of measurements and calculations to support the interpolation. Modifications required to pass: Test Specification Deviations: Additions to or Exclusions from This test report is in-part, International Approvals Laboratories, LLC was asked to test only the field strength of the fundamental and harmonics as well as the unintentional radiated and conducted emissions when applicable. Project File: BC500159 Page 4 of 35 International Approvals Laboratories, LLC 5541 Central Avenue, Suite 110 Boulder, Colorado 80301 Voice: 303 786 7999 Fax: 303 449 6160 Rev.No 1 Required Information In Accordance to FCC CFR 47 Part 2.1033: Exhibits Including (where applicable): 1. Users Manual 2. Operation Description 3. Block Diagram 4. Report of Measurement 5. External & Internal Photographs 6. Schematic 7. Parts List 8. Tuning Procedure (if applicable) 9. Test Setup Photograph 10. Label Drawings and or Photograpghs 11. Desc…

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Test Report

FCC ID: HCQ3B6ETRT2M DS200 12. Test Report Additional Information The test report containing intentional/unintentional emissions data is attached as “11-TestReportIALabs-DS200.pdf”. International Approvals Laboratories generated this report. Additional data demonstrating compliance with 47CFR15.247 follows. For the following measurements, the antenna was replaced by a coaxial connection to an HP8594E spectrum analyzer. Minimum Channel Separation: Plot 1 is a spectrum plot showing a minimum channel separation of 800 kHz. Compliance with section 15.247(a)(1) is demonstrated by capturing several transmissions over a small portion of the 902-928 MHz ISM band. Plot 1: Demonstration of channel spacing requirement. FCC ID: HCQ3B6ETRT2M DS200 Number of hopping Channels: Plot 2 demonstrates compliance with 15.247(a)(1)(i) — Number of hopping channels. This is a stored display of many sequential transmissions to show the overall band occupied by the transmitter. The marker at 919.20 MHz represents the maximum conducted transmitter power across the band. Plot 2: Demonstration of 25 hopping channels. 20 dB bandwidth of a single channel: Plot 3 shows the 20 dB bandwidth of a single channel to demonstrate compliance with 15.247(a)(1)(i). The 20 dB occupied bandwidth is 253.8 kHz. Plot 3: Demonstration of occupied bandwidth. FCC ID: HCQ3B6ETRT2M DS200 Average radiated measurements for harmonic and spurious emissions: With regards to average radiated measurements for harmonic and spurious emissions that fall in the restricted bands of section 15.205 of the FCC Rules. This device uses pulsed operation, section 15.35(c) states, “Unless otherwise specified, e.g.§ 15.255(b), when the radiated emission limits are expressed in terms of the average value of the emission, and pulsed operation is employed, the measurement field strength shall be determined by averaging over one complete pulse train, including blanking intervals, as long as the pulse train does not exceed 0.1 seconds.” This device transmits for 20ms out of every 100ms and therefore has a duty cycle of 20%. Per section 15.35 the peak harmonic and spurious emissions may exceed the General Radiation Limit found in 15.209(a) by the ratio of the duty cycle, which in this case results in a 14 dB relaxation of the limit from 54 dB μV/m to 68 dB μV/m (above 1000 MHz) for the peak measurements shown in the report. Peak conducted RF power output measurements: Pursuant to FCC Public Notice DA 00-705, the following measurements were made using an Agilent 8594E spectrum analyzer having the following settings: Span: 1250 kHz (approximately 5 times the 20dB bandwidth) RBW: 300 kHz (RBW > the 20dB bandwidth) VBW: 300 kHz (VWB ≥ RBW) Sweep: auto Detector: peak Trace: max hold The device is modified so that the antenna is removed and a 3” semi-rigid coaxial cable having negligible insertion loss connects it to the spectrum analyzer. Please note that the device is designed to have an output power of +17dBm however a variation of +1, -2dB is anticipated. FCC ID: HCQ3B6ETRT2M DS200 Plot 4: RF output at the low channel Plot 5: RF output at the middle channel FCC ID: HCQ3B6ETRT2M DS200 Plot 6: RF output at the high channel Conducted spurious and harmonic emissions measurements: There is no way to measure conducted spurious and harmonic emissions without altering the device. The device was taken to an accredited and listed lab, International Approvals Laboratories, and the relevant radiated measurements were taken using their 3-meter Open-Air Test Site. Average time of occupancy measurement: Section 15.247(a)(1)(i) stated, “...if the 20 dB bandwidth of the hopping channel is 250kHz or greater, the system shall use at least 25 hopping frequencies and the average time of occupancy on any frequency shall not be greater than 0.4 seconds within a 10 second period” To effectively obtain this measurement, FCC Public Notice DA 00-705 requires the following spectrum analyzer settings: Span: 0 RBW: 1MHz VBW: 1MHz (VBW ≥ RBW) Sweep: 60ms (as necessary to capture the entire dwell time per hopping channel) Detector: peak Trace: max hold Plot 6 below clearly shows the dwell time is less than the 0.4 seconds required by 15.247(a)(1)(i). FCC ID: HCQ3B6ETRT2M DS200

Test Setup Photos

FCC ID: HCQ3B6ETRT2M DS200 13. Test Setup Photos The test setup photos are contained within the test report of the previous section.

Contact Information

Applicant

Jess Cobb(Manager of Program Mgmt)
[email protected]13032097290Fax: 13032097243

Technical Contact

Inovonics Wireless CorporationNeal Shurmantine
[email protected]303-209-7116

315 CTC Blvd · Louisville, Colorado · United States

Non-Technical Contact

Inovonics Wireless CorporationJoni Ripper
[email protected]303-209-7260

Test Firm

International Approval Laboratories, LLCTodd Seeley
[email protected]303-402-5272Fax: 303-449-6160

Technical Specifications

#Rule PartsFrequency RangePower Output
115C902.4 MHz - 927.6 MHz50.00 mW
Confidentiality
Long Term

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