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PV3WFSADPTUSB Adapter

Honeywell International Inc.
USB Adapter - FCC ID PV3WFSADPT - Honeywell International Inc.
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Dec 30, 2013
Application Purpose
Original Equipment
Date of Application
Dec 30, 2013
Equipment Note
USB Adapter
Frequency Range
927.12500000 - 927.12500000
Company
Honeywell International Inc.
Country
United States

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

PRELIMINARY N0 P/N LS10036-000NF-E:N0ECN xx-xxx Document LS10036-000NF-E 10/10/2013 Rev: Notifier Wireless Sensor Network LS10036-000NF-E User Manual 2PRELIMINARY: Notifier Wireless Sensor Network — P/N LS10036-000NF-E:N0 10/10/2013 Fire Alarm & Emergency Communication System Limitations While a life safety system may lower insurance rates, it is not a substitute for life and property insurance! An automatic fire alarm system—typically made up of smoke detectors, heat detectors, manual pull stations, audible warning devices, and a fire alarm control panel (FACP) with remote notifi- cation capability—can provide early warning of a developing fire. Such a system, however, does not assure protection against property damage or loss of life resulting from a fire. An emergency communication system—typically made up of an automatic fire alarm system (as described above) and a life safety communication system that may include an autonomous control unit (ACU), local operating console (LOC), voice commu- nication, and other various interoperable communication meth- ods—can broadcast a mass notification message. Such a system, however, does not assure protection against property damage or loss of life resulting from a fire or life safety event. The Manufacturer recommends that smoke and/or heat detectors be located throughout a protected premises following the recommendations of the current edition of the National Fire Protection Association Standard 72 (NFPA 72), manufacturer's recommendations, State and local codes, and the recommendations contained in the Guide for Proper Use of System Smoke Detectors, which is made available at no charge to all installing dealers. This document can be found at http:// www.systemsensor.com/appguides/. A study by the Federal Emergency Management Agency (an agency of the United States government) indicated that smoke detectors may not go off in as many as 35% of all fires. While fire alarm systems are designed to provide early warning against fire, they do not guarantee warning or protection against fire. A fire alarm system may not provide timely or adequate warning, or simply may not function, for a variety of reasons: Smoke detectors may not sense fire where smoke cannot reach the detectors such as in chimneys, in or behind walls, on roofs, or on the other side of closed doors. Smoke detectors also may not sense a fire on another level or floor of a building. A second-floor detector, for example, may not sense a first-floor or basement fire. Particles of combustion or “smoke” from a developing fire may not reach the sensing chambers of smoke detectors because: • Barriers such as closed or partially closed doors, walls, chim- neys, even wet or humid areas may inhibit particle or smoke flow. • Smoke particles may become “cold,” stratify, and not reach the ceiling or upper walls where detectors are located. • Smoke particles may be blown away from detectors by air outlets, such as air conditioning vents. • Smoke particles may be drawn into air returns before reach- ing the detector. The amount of “smoke” present may be insufficient to alarm smoke detectors. Smoke detectors are designed to alarm at var- ious levels of smoke density. If such density levels are not cre- ated by a developing fire at the location of detectors, the detectors will not go into alarm. Smoke detectors, even when working properly, have sensing limitations. Detectors that have photoelectronic sensing cham- bers tend to detect smoldering fires better than flaming fires, which have little visible smoke. Detectors that have ionizing-type sensing chambers tend to detect fast-flaming fires better than smoldering fires. Because fires develop in different ways and are often unpredictable in their growth, neither type of detector is necessarily best and a given type of detector may not provide adequate warning of a fire. Smoke detectors cannot be expected to provide adequate warn- ing of fires caused by arson, children playing with matches (especially in bedrooms), smoking in bed, and violent explosions (caused by escaping gas, improper storage of flammable materi- als, etc.). Heat detectors do not sense particles of combustion and alarm only when heat on their sensors increases at a predetermined rate or reaches a predetermined level. Rate-of-rise heat detec- tors may be subject to reduced sensitivity over time. For this reason, the rate-of-rise feature of each detector should be tested at least once per year by a qualified fire protection specialist. Heat detectors are designed to protect property, not life. IMPORTANT! Smoke detectors must be installed in the same room as the control panel and in rooms used by the system for the connection of alarm transmission wiring, communications, signaling, and/or power. If detectors are not so located, a devel- oping fire may damage the alarm system, compromising its abil- ity to report a fire. Audible warning devices such as bells, horns, strobes, speakers and displays may not alert people if these devices are located on the other side of closed or partly open doors or are located on another floor of a building. Any warning device may fail to alert people with a disability or those who have recently consumed drugs, alcohol, or medication. Please note that: • An emergency communication system may take priority over a fire alarm system in the event of a life safety emergency. • Voice messaging systems must be designed to meet intelligi- bility requirements as defined by NFPA, local codes, and Authorities Having Jurisdiction (AHJ). • Language and instructional requirements must be clearly dis- seminated on any local displays. • Strobes can, under certain circumstances, cause seizures in people with conditions such as epilepsy. • Studies have shown that certain people, even when they hear a fire alarm signal, do not respond to or comprehend the meaning of the signal. Audible devices, such as horns and bells, can have different tonal patterns and frequencies. It …

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External Photos

USB Adapter - Internal and External Photos Top View Bottom View

ID Label/Location Info

Nameplate W-USB Radio Dongle DRAWING NUMBER N04-5183-000 SHT OF 1:1 DRAWING NUMBER N04-5183-000 SCALE N/A TITLE Nameplate W-USB Radio Dongle LIFE SAFETY DISTRIBUTION AG JAVASTRASSE 2 CH-8604 HE GNAU (SWITZERLAND) UNLESS OTHERWISE SPECIFIED, DIMENSIONS ARE IN MM DO NOT SCALE DATE 12.06.13 DRAWN BY A.Cowley SHEET A4 SIZE THIS PRINT AND INFORMATION THEREIN ARE PROPRIETARY TO LIFE SAFETY DISTRIBUTION AG AND SHALL NOT BE USED IN WHOLE OR IN PART WITHOUT THEIR EXPRESSED CONSENT. TOLERANCES UNLESS OTHERWISE SPECIFIED .X +/- .XX +/-N/A .XXX +/- HOLES +/- ANGLES +/- MATERIAL L00-80-1212 Label, White 12 x 12mm FINISH DATE DESCRIPTION OF CHANGE ISSUE CHG BY 31/10/13 Add Country of Origin and Model Number Pr2 AC Date Code: YY = Year WW = Week T = Manufactured in Trieste

Internal Photos

Internal Photo – 1 PCB – Top View PCB –Bottom View Top Cover Bottom Cover

Test Report

Honeywell Technology Solutions Honeywell Confi dentia l and Prop rieta ry Page 1 of 32 USB Adaptor Model No.: W-USB Date: 22-Dec-2013 Report Prepared By: Sasikala Subramani EMC Test Report Honeywell Technology Solutions Honeywell Confi dentia l and Prop rieta ry Page 2 of 32 Report Num ber EMC-1210-1 EUT Nom enclature USB Adapter Sam ple Identification Model No. : W-USB Sl. No. : 01 Sof tw are Version : 1.00 Hardw are Version : Rev 4 Num ber of Sam ples 1 Date of receipt of Sam ple 15-07-2013 Condition of Sam ple on receipt Good Client name Honeyw ell Internat ional Inc. Client Address Honeyw ell Lif e Saf ety, 12 , Clint onville Road, Nort hf ord, Connect icut, USA - 06472 Testing Laboratory Honeyw ell Technology Solutions Lab Pvt. Ltd. Address RMZ ECOWORLD INFRASTRUCTURE PV T. LTD., (For merly Adarsh Pr ime Projects Pvt. Ltd., SEZ). Survey # 19/2, Devarabisanahalli Village, Varthur Hobli , Bangalore East Taluk, Bangalore – 560103 Test Dates 15-07-2013 to 14-Dec-2013 Applicable Standard FCC Part 15 Subpart C Test Results PA SS Pr epared By: Technical Lead Name : Sasikala Subramani Signature: Date : 23-Dec-2013 Rev iew ed By: Project Lead Name : Loganathan Joghee Signature: Date : 23-Dec-2013 Authorized By: Quality Manager Name : Prasanna Kumar BT Signature: Date : 23-Dec-2013 Authorized By: Lab Manager Name : Ananth Krishna Signature: Date : 23-Dec-2013 This Report relates to the above mentioned test sample only. Without the approval of Lab manager, this report shall not be reproduced except in f ull. Honeywell Technology Solutions Honeywell Confi dentia l and Prop rieta ry Page 3 of 32 TEST SUMMARY # Nam e Specification Test Method Pass Fail NA FHSS 1 20dB Bandw idth FCC Part 15.247 DA 00-705 2 Maximum Peak Output Pow er FCC Part 15.247 DA 00-705 3 Carrier Frequency Separat ion FCC Part 15.247 DA 00-705 4 Number of Hopping Frequencies FCC Part 15.247 DA 00-705 5 Band Edge compliance FCC Part 15.247 DA 00-705 6 Time of Occupancy (Dw ell Time) FCC Part 15.247 DA 00-705 7 Spurious RF Conducted Emissions FCC Part 15.247 DA 00-705 8 Spurious Radiated Emissions FCC Part 15.247 and 15.209 DA 00-705 DT S 1 DTS 6dB Bandw idth FCC Part 15.247 KDB 558074 2 Maximum Peak Output Pow er FCC Part 15.247 KDB 558074 3 Maximum Pow er Spectral Density FCC Part 15.247 KDB 558074 4 Band Edge Conducted Emissions FCC Part 15.247 KDB 558074 5 Radiated Spurious Emissions FCC Part 15.209 and 15.209 KDB 558074 MEASUREMENT UNCERTAINTY Where relevant, the f ollow ing measurement uncertainty levels has been estimated f or tests perf ormed on the EUT as specif ied in CISPR 16-4 The Expanded measurement uncertainty (K=2) is provided below # Name Value 1 20dB & 6dB Occupied Bandw idth 1.4dB 2 Maximum Peak Output Pow er Level 1.4dB 3 Pow er Spectral Density 1.4dB 4 Band Edge Conducted Emission 1.4dB 5 Spurious RF Conducted Emission 1.4dB 6 Radiated Spurious Emission < 1GHz 4.9dB 7 Radiated Spurious Emission > 1GHz 6.3dB Honeywell Technology Solutions Honeywell Confi dentia l and Prop rieta ry Page 4 of 32 1 PRODUCT DETAILS PRODUCT OPERATION AND INTENDED USE The Wireless USB Adapt er is an int erf ace that can be connected to a PC t hrough USB port. It communicat es w ith RF devices using 914. 325 MHz and 927.125 MHz f requencies as same as mesh prot ocol f requenc ies. This device is pow ered directly by the USB port. RATINGS AND SYSTEM DETAILS Operating Frequency 914.325MHz and 927.125MHz Number of Channels DTS :2 FHSS :NA Channel Bandw idth (20dB) DTS :1MHz FHSS :NA Transmitted Power DTS :2dBm FHSS :NA Modulation Type FSK Data Rate DTS :300Kbps FHSS :NA Antenna Type Chip Ant enna No. of Antenna 1 Antenna Gain 0 dBi Supply Voltage and Current 5V, 33mA Dimensions (Diameter x Height) 96.2 mm x31.2mmx13 mm Env ironmental Conditions Operat ing Temperature :0°C t o 50°C Storage Temperature : -10°C t o 60°C Humidity : 10% to 93% RH Honeywell Technology Solutions Honeywell Confi dentia l and Prop rieta ry Page 5 of 32 TEST CONFIGURATION Config # Description DTS EUT is plugged into t he USB port of the Laptop. EUT Debug port ( UA RT) is connected to USB to UART converter cable w hich is in turn connected to Laptop. EUT is conf igured t o cont inuous trans mission mode t hrough HyperTer minal. OPERATING MODES Mode # Description DT S Follow ing DTS channels have been used f or Continuous Trans mission Channel 1 : 902.875MHz Channel 2 : 927.125MHz INPUT AND OUTPUT CABLES Port # Name Port Type Cable Length Cable type Shielded/ Unshielded Comments Not applicable *Note : AC = AC Power Port DC = DC Power Port TP = Telecommunication Ports (E.g. Ethernet) DI / DO = Digital Input / Output N /E = Non Electrical AI / AO = Analog Input / Output SUPPORT EQUIPMENTS AND ACCESSORIES USED # Item Description Make Model Part No. / Sl. No Cal Due Date 1 Laptop DELL E6400 3351399400 NA 2 USB t o UA RT Cable FTDI NA TTL-232R-3V3 NA Honeywell Technology Solutions Honeywell Confi dentia l and Prop rieta ry Page 6 of 32 CONNECTION DIAGRAM AND SETUP DIAGRAM Figure1 : Radiated Emission Test Setup Honeywell Technology Solutions Honeywell Confi dentia l and Prop rieta ry Page 7 of 32 2 DTS CHANNELS 3.1 DTS 6dB Bandwidth EUT Nomenclature USB Adapter Test Report No. EMC-1210-1 Model No. W-USB Serial No. 01 Test Start Date 21-Dec-2013 Temperature ( ̊C) 23.1 Test End Date 21-Dec-2013 Humidity RH (%) 55.2 Tested By Sasikala Subramani Pressure (mbar) NR Input Voltage / Freq 5Vdc Operating Mode Ref er Page 5 Operating Modes Table Test configuration Ref er Page 5 Test Conf igurat ion Table Dev iation from Std NA Applicable standard FCC Part 15.247 Test Method KDB 558074 Comment TEST DETAILS Method Conducted Radiated TEST PARAMETERS Antenna Height 1m to 4m Turn table Rotation 0° to 360° Equipment Class NA Measurement Distance 3m TEST EQUIPMENT Y/ N Equipm ent Make Model Sl. No. Cal Due Date Y 3m Semi Anechoic Chamber ETS Lindgren DKE 6X7 DBL. DR 1625 31-Dec-2014 Y EMI Test Receiver R&S ESU26 100229 04-Feb-2014 Y Bilog Antenna TDK HLP3003C 130525 30-Nov-2013 Y N t o…

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Test Setup Photos

Honeywell Technology Solutions Honeywell Confidential and Proprietary Page 1 of 5 USB Adapter –Test Setup Photos Honeywell Technology Solutions Honeywell Confidential and Proprietary Page 2 of 5 TEST SETUP PHOTOS EUT Arrangement Radiated Emission Setup – 9KHz to 30MHz [ Parallel] Honeywell Technology Solutions Honeywell Confidential and Proprietary Page 3 of 5 Radiated Emission Setup – 9KHz to 30MHz [ Perpendicular] Radiated Emission Setup –30 MHz to 1GHz [ Horizontal Polarization ] Honeywell Technology Solutions Honeywell Confidential and Proprietary Page 4 of 5 Radiated Emission Setup –30 MHz to 1GHz [ Vertical Polarization ] Radiated Emission Setup –1GHz to 10GHz [ Horizontal Polarization ] Honeywell Technology Solutions Honeywell Confidential and Proprietary Page 5 of 5 Radiated Emission Setup –1GHz to 10GHz [ Vertical Polarization ]

Contact Information

Applicant

Jonathan Potter(Senior Engineering Manager)
[email protected]203-484-6405Fax: 203-484-7309

Test Firm

Honeywell Technology Solutions Lab Pvt. LtdMr. Prasanna Kumar BudalTaranath
[email protected]91-80-39888400Fax: 91-80-39834455

Technical Specifications

#Rule PartsFrequency RangePower Output
215C927.125 MHz - 927.125 MHz1.60 mW
Confidentiality
Long Term
Grant Notes
Output power listed is EIRP. The antenna(s) used for this transmitter must not be co-located or operating in conjunction with any other antenna or transmitter.

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