
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
VAM (VISTA Automation Module) - Installation & Setup Guide Introduction VISTA Automation Module (herein referred to as “VAM”) combines home automation and home security and is intended for use with compatible VISTA ® series control panels. VAM includes a built-in web server, Wi-Fi ® capability, and Z-Wave ® technology allowing VISTA installations to support Z-Wave devices. The VISTA Automation Module also supports Remote Services for controlling Z-Wave devices and Scenes remotely from an associated Total Connect™ account. VAM is controlled using a web browser on a Wi-Fi enabled smart device such as a Tablet PC, laptop, Smartphone, etc. DISPLAY NOTE: For optimum viewing of the screens and menus, the tablet’s font size setting may need to be adjusted. Make Wiring Connections Connect VAM to the control panel’s keypad data (ECP) terminals using a standard 4-wire keypad connector harness. vam-003-V1 TO CONTROL PANEL ECP TERMINALS YELLOW RED BLACK GREEN CONTROL PANEL PC BOARD VAM REFER TO THE CONTROL PANEL’S INSTRUCTIONS FOR MAXIMUM WIRE LENGTHS . 4-WIRE CONNECTOR HARNESS Wire Connections to the Control Panel Verify that VAM and other connected devices do not ex ceed the control’s Aux Power output capability. If it does, use a supplementary power supply as shown. IMPORTANT: When VAM is powered from an auxiliary power supply, always apply power to the control panel first and then VAM. Failure to observe this sequence results in improper operation of VAM and may result in an ECP Error indication. pwr_supp_conn-011-V0 BLACK POWER FROM SUPPLEMENTARY POWER SUPPLY IF USED R E D BLACK GREEN YELLOW CONTROL TERMINAL STRIP SUPPLEMENTARY +12 VDC POWER SUPPLY P/N AD12612 DATA IN DATA OUT AUX AUX Supplementary Power Connections Mount the VAM VAM is for indoor use only and should be mounted near the control panel or a keypad connected to the control panel for ease of wiring. VAM mounts to a wall surface by hanging on two screws . See the diagram below. •Leave the screw heads 1/8” above the wall surface. •If necessary, drill a hole in the wall for the wire harness to pass through. •Connect the wire harness to the VAM before mounting. MOUNTING SCREW DRILL 3/16” DIA. HOLES 2 PLACES 1.65” 2.5”2.54” vam-004-V0 Insert an SD/SDHC Memory Card An SD card must be installed to receive automatic software upgrades. The SD card can be left in the VAM. See Software Upgrades section. •Avoid touching the contacts on the card •4GB SD card supplied •Supports up to 16GB SD Card Insert the memory card (SD/SDHC Card) as shown. INSERT SD CARD \ EXHIBIT 7-1 CFS8DLVAM / 573F-VAM EXHIBIT 7-1 – 2 – Front Panel LEDs SD/SDHC Card Slot Power Status LED (Green) Network Status LED (Blue) Operation Status LED (Yellow) Reset Button Wi-Fi & Factory Default Button vam-001-V0 LED FUNCTION Power Status (Green) Indicates power status. Blinking when it is powered up and booting. Solid green when it is fully functional. Network Status (Blue) When the WIFI is connected to the VAM, it will show the WIFI status through the blue LED. The LED is blinking when VAM is booting and solid blue when VAM is ready as AP mode (acting as an Access Point) or connects to the internet as STA mode (station mode, device is connected to the Wi-Fi router). Operation Status (Yellow) Normally off. It will blink slowly when there is no ECP(including ECP error) or Z-wave controller not responding. Fast blinking indicates Z-wave is in enrollment or deletion status. Reset Button Press to reset the device. Wi-Fi & Factory Default Button • Wi-Fi Network Reset: Press and hold down for more than 5 seconds to clear the VAM’s Wi-Fi network connection. You will then need to reconnect the VAM to your home Wi-Fi network. • Factory Default Reset: Double press this button, then, while the green, blue, and yellow LEDs blink in sequence, press and hold down this button for more than 5 seconds to set the VAM to its factory default settings. Specifications Mechanical Width: 7.58’’ (192.5mm) Height: 5.31’’(135.0mm) Depth: 0.53’’(13.45mm) Electrical Voltage: 12VDC Current: 180mA Operating Environment Humidity : 93% RH, non- condensing Temperature: Operating : 14 ̊F to 131 ̊F / -10 ̊C to 55 ̊C Shipping / Storage: -40 ̊F to 158 ̊F / -40 ̊C to 70 ̊C Set Up the WiFi Network To set up the WiFi network for VAM, you will need the following: • Wi-Fi enabled smart device (Tablet PC, laptop, Smartphone, etc.) • VAM SSID and WPA2 password (located on the VAM’s label) • VAM default IP address: 192.168.2.1 • Home router SSID and WPA2 password (typically located on the home router’s label); home router must use WPA2 encryption and have a password (key) assigned. NOTES: 1. Before setting up the network, set your smart device for Wi-Fi operation only (turn off 3G/4G option). 2. If the wireless router is later replaced, these steps must be repeated to connect the VAM to the new router. 1. Connect a smart device to VAM. a. Power up the VAM. b. Connect the smart device to the VAM using the device’s WiFi settings menu (VAM is a wireless access point). Enter the VAM SSID: VAM_xxxx (SSID is case-sensitive) NOTE: xxxx = the last 4 digits of the MAC address Enter the Key (found on the VAM label “WPA2 pw” line) 2. Access VAM’s home screen. a. Open a web browser on the computer device. b. Go to VAM’s default IP address: 192.168.2.1 c. Optional: Z-Wave devices can be installed and added into the system before connecting to the home router (ex. the home router is not available at the time of VAM installation). by using the VAM automation menus. Refer to the Adding Z-Wave Devices section for details. d. When ready to connect the VAM to the home router network, go to step 3. 3. Connect the VAM to the home router. a. From the main menu, click the Set Home Router button. b. Enter the home router SSID and security key (SSID and security key are case-sensitive). c. Click Connect. A countdown begins and displays “Trying to connect to the Router: xxxx, please stay in this page and wait...” VAM can take about 2 minutes to conne…
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V VV V V VV V I II I I II I S SS S S SS S T TT T T TT T A AA A A AA A ® ®® ® ® ®® ® A AA A A AA A u uu u u uu u t tt t t tt t o oo o o oo o m mm m m mm m a aa a a aa a t tt t t tt t i ii i i ii i o oo o o oo o n nn n n nn n M MM M M MM M o oo o o oo o d dd d d dd d u uu u u uu u l ll l l ll l e ee e e ee e User Guide 800-15629 12/13 Rev. A Beta 3 EXHIBIT 7-2 CFS8DLVAM / 573F-VAM – 2 – – 3 – TABLE of CONTENTS INTRODUCTION ........................................................................................................... 5 VAM Features ......................................................................................................... 5 Memory Card .......................................................................................................... 6 Navigating the VAM Menus .................................................................................... 6 Navigation Button Descriptions............................................................................... 7 LED Functions ........................................................................................................ 8 USING CAMERAS (MULTIMEDIA MENU) ................................................................... 9 Viewing Cameras ................................................................................................... 9 Adding Cameras to the System .............................................................................. 9 Removing Cameras from the System ................................................................... 10 AUTOMATION AND USING Z-WAVE DEVICES (AUTOMATION MENU) ................ 11 Manually Operating Devices ................................................................................. 11 Adding (Include/Add) Z-Wave Devices ................................................................. 11 Editing Z-Wave Device Names ............................................................................. 13 Removing (Exclude/Delete) Z-Wave Devices ......... Error! Bookmark not defined. Abort a Z-Wave Action ......................................................................................... 13 CREATING SCENES .................................................................................................. 16 Definitions of Trigger, Condition, and Action ........................................................ 16 Steps To Create a Scene ..................................................................................... 18 Creating Groups & Rooms ................................................................................... 18 Z-Wave Troubleshooting ...................................................................................... 14 USING THE SECURITY SYSTEM (SECURITY MENU) ............................................. 19 User Codes........................................................................................................... 19 Introduction to Arming and Disarming the System ................................................ 19 Steps to Arm the System ...................................................................................... 19 Arming Multiple Partitions ..................................................................................... 20 Steps to Disarm the System ................................................................................. 20 How to Display Faults (Zones).............................................................................. 21 How to Bypass Zones ........................................................................................... 21 How to Clear Bypassed Zones ............................................................................. 22 Console Emulation Mode ..................................................................................... 22 How to Enter Console Emulation Mode ................................................................ 22 USING TOTAL CONNECT WITH VAM (REMOTE SERVICES) ................................. 23 – 4 – SYSTEM SETUP ......................................................................................................... 26 Email Setup .......................................................................................................... 26 Remote Access Log In Setup (Account Setup)..................................................... 27 Time and Date Setup ............................................................................................ 27 Options and ECP Address (for Installer use only) .. Error! Bookmark not defined. Changing the Home Router (Wi-Fi Setup) ............................................................ 28 SOFTWARE UPGRADES ........................................................................................... 30 System Information ............................................................................................... 30 Manual Software Upgrades .................................................................................. 30 Automatic Software Updates ................................................................................ 30 Compatible Z-Wave Devices ................................................................................ 31 NOTES ........................................................................................................................ 32 NOTE: This device is a Security Enabled Z-Wave Controller. – 5 – Introduction The VISTA Automation Module (herein after referred to as “VAM”) provides Z-Wave automation features to your VISTA ® security system, allowing control of various Z- Wave devices including cameras, lights, door locks, and thermostats. VAM does not have a physical keypad interface, but instead is controlled by using a web browser on a Wi-Fi ® enabled computer device that is connected to your home Wi-Fi network. VAM Features Feature Description Wi-Fi ® Connection VAM uses your home Wi-Fi network to communicate with a Wi-Fi enabled device such as a Smartphone, i-Pad TM , Androi…
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EXHIBIT 4-1 (PAGE 1 OF 1) EXTERNAL PICTURES CFS8DLVAM / 573F-VAM TOP PLASTIC: BOTTOM PLASTIC:
EXHIBIT 8 (PAGE 1 OF 2) LABELS CFS8DLVAM / 573F-VAM IMAGE TO SCALE IMAGE ENLARGED EXHIBIT 8 (PAGE 2 OF 2) LABELS CFS8DLVAM / 573F-VAM EXACT LOCATION ON BOTTOM PLASTIC
EXHIBIT 5-4G D MPE CALCULATIONS CFS8DLVAM / 573F-VAM 1.0 APPLICANT: DATE:04/24/2014 NAME OF APPLICANT:HONEYWELL INTERNATIONAL INC. FCC ID:CFS8DLVAM IC:573F-VAM 2.0 FCC RULES CONCERNING MAXIMUM PERMISSIBLE RF EXPOSURE: 3.0 MPE CALCULATIONS : CALCULATIONS: BAND:CHANNEL:FREQ: uV/M @ 3M:MAXIMUM (dbm): ANTENNA GAIN(dbi):MAXIMUM EIRP (mW):DUTY CYCLE: FRISS mW/CM 2 :EXP LIMIT mW/CM 2 : % OF LIMIT: WIFI1-Jan 2412.0N/A22.682.79 352.371100%0.07010201.0000007.0102 Z-WAVEN/A908.445,300-2.11INTEGRAL0.615100%0.00012240.60560.0202 + 4.0 RESULTS: CO-MPE % : 7.0304 TEST RESULT: PASS § CFR 47 1.1310 Radiofrequency radiation exposure limits. The criteria listed in table 1 shall be used to evaluate the environmental impact of human exposure to radiofrequency (RF) radiation as specified in § 1.1307(b), except in the case of portable devices which shall be evaluated according to the provisions of § 2.1093 of this chapter. Further information on evaluating compliance with these limits can be found in the FCC’s OST/OET Bulletin Number 65, ‘‘Evaluating Compliance with FCC-Specified Guidelines for Human Exposure to Radiofrequency Radiation.’’ NOTE TO INTRODUCTORY PARAGRAPH: These limits are generally based on recommended exposure guidelines published by the National Council on Radiation Protection and Measurements (NCRP) in ‘‘Biological Effects and Exposure Criteria for Radiofrequency Electromagnetic Fields,’’ NCRP Report No. 86, Sections 17.4.1, 17.4.1.1, 17.4.2 and 17.4.3. Copyright NCRP, 1986, Bethesda, Maryland 20814. In the frequency range from 100 MHz to 1500 MHz, exposure limits for field strength and power density are also generally based on guidelines recommended by the American National Standards Institute (ANSI) in Section 4.1 of ‘‘IEEE Standard for Safety Levels with Respect to Human Exposure to Radio Frequency Electromagnetic Fields, 3 kHz to 300 GHz,’’ ANSI/IEEE C95.1–1992, Copyright 1992 by the Institute of Electrical and Electronics Engineers. FCC GENERAL POPULATION / UNCONTROLED EXPOSURE LIMITS : FOR 300 MHz to 1,500 MHz = F / 1500 mW/cm 2 ; FOR 1,500 to 100,000 MHz use 1 mW/cm 2 EQUATIONS : P=20 X LOG E -95.2289 THE FRIIS TRANSMISSION EQUATION = EIRP X DUTY CYCLE / ( 4 X PI X 2O CM 2 ) NOTE: THE Z-WAVE LEVEL CAME FROM "EXHIBIT 5-3A A", AND THE WIFI LEVEL CAME FROM "EXHIBIT 5-3B" (Channel 1, 2.412GHz, Data Rate=54M) In the configuration tested the EUT complied with the standards specified above. EXHIBIT 5-4G D MPE CALCULATIONS CFS8DLVAM / 573F-VAM
EXHIBIT 5-1 (PAGE 1 OF 1) REPORT OF MEASUREMENTS CFS8DLVAM / 573F-VAM Measurements for the Intentional Radiator,and OBW were made in accordance with the procedures and reporting requirements at: Honeywell's OATS ( FCC No: 152762 & IC No:573F-1 ) which is located at: 2 Corporate Center Drive, Melville, NY 11747. Measurements were made in accordance with the procedure and reporting requirements of ANSI C63.4-2003. The Test Set-Up (C63.4 section 10.1.3) is shown in EXHIBIT 5-2; "Test Setup Photos". The sequence of testing (C63.4 section 10.1.7) for radiated emissions is as follows: A preliminary scan was conducted with the receiver antenna close to the EUT in order to identify the emission characteristics of the EUT (C63.4 section 8.3.1.1). The antenna and EUT were then placed at the proper separation ( 3 Meters) with the EUT positioned on a non-conducting turntable. The EUT was rotated on the turntable to maximize the received signal strength, then the receiver antenna height was varied between one (1) and four (4) Meters to further maximize the received reading. Thereafter, the device was again rotated to a peak output position and the antenna height was re-adjusted for maximum received signal. This procedure was re-iterated until there was no further increase in signal level. This procedure was performed with the EUT rotating in three orthogonal planes (C63.4 section 13.1.4.1) to generate a final maximum reading which is recorded on the radiated emissions result sheet. Similar measurements were made on the receiver to ensure compliance as an unintentional radiator. Note, The Spectrum Analyzer resolution bandwidths set as follows; (Video Bandwidth is always set 3X greater than RBW) For occupied bandwidth measurements, RBW = 100 kHz and VBW = 300 kHz. For radiated emissions below 1 GHz, the RBW = 100 kHz. Detector function set to peak. For radiated emissions above 1 GHz, the RBW = 1 MHz. Detector function set to peak. TRANSMITTER RADIATED EMISSIONS are recorded in "EXHIBIT 5-3". OCCUPIED BANDWIDTH is recorded in "EXHIBIT 5-4". RECEIVER RADIATED EMISSIONS are recorded in "EXHIBIT 5-5". LINE CONDUCTED EMISSIONS are recorded in "EXHIBIT 5-6". TEST EQUIPMENT (per C63.4 section 10.1.4) is recorded in "EXHIBIT 6".
BAND EDGES CFS8DLVAM/ 573F-VAM EXHIBIT 5-4B CH1 @ 11 M CH1 @ 54 M BAND EDGES CFS8DLWIFI / 573F-WIFI EXHIBIT 5-4B CH11 @ 11M CH11 @ 54M
EXHIBIT 5-4D CONDUCTED RF MINIMUM 6DB BAND WIDTH CFS8DLVAM / 573F-VAM § 15.247 (2) Operation within the 2400–2483.5 MHz band. Systems using digital modulation techniques may operate in the 2400–2483.5 MHz band; provided that the minimum 6 dB bandwidth is at least 500 kHz. CHANNEL 1: The minimum 6 db bandwidth: 802.11b mode (11 Mbp) 802.11g mode (54 Mbp) 10.581 MHz 16.653 MHz CHA NNEL 6: The minimum 6 db bandwidth: 802.11b mode (11 Mbp) 802.11g mode (54 Mbp) 11.002 MHz 16.653 MHz CHA NNEL 11: The minimum 6 db bandwidth: 802.11b mode (11 Mbp) 802.11g mode (54 Mbp) 10.400 MHz 16.653 MHz
EXHIBIT 5-4E A POWER SPECTRAL DENSITY CFS8DLVAM / 573F-VAM Title: Power Spectrum Density Measurement Date: 4/17/2014 Device: VAM Criteria: Readings must not exceed 8 dBm. Rules followed as per ANSI C63.10-2009, section 6.11.2.3 Readings Table 11 Mbit 54 Mbit Chan 1 @ Chan 6 @ Chan 11 @ Chan 1 @ Chan 6 @ Chan 11 @ 2.412 GHz 2.437 GHz 2.462 GHz 2.412 GHz 2.437 GHz 2.462 GHz S/A Reading -22.60 -21.15 -22.04 -29.73 -21.47 -29.47 Cable Loss 11.5 11.5 11.7 11.5 11.5 11.7 Final Amplitude -11.1 -9.65 -10.34 -18.23 -9.97 -17.77 Figure 1 2 3 4 5 6 Figure 1 Page 1 of 6 EXHIBIT 5-4E A POWER SPECTRAL DENSITY CFS8DLVAM / 573F-VAM Figure 2 Page 2 of 6 EXHIBIT 5-4E A POWER SPECTRAL DENSITY CFS8DLVAM / 573F-VAM Figure 3 Page 3 of 6 EXHIBIT 5-4E A POWER SPECTRAL DENSITY CFS8DLVAM / 573F-VAM Figure 4 Page 4 of 6 EXHIBIT 5-4E A POWER SPECTRAL DENSITY CFS8DLVAM / 573F-VAM Figure 5 Page 5 of 6 EXHIBIT 5-4E A POWER SPECTRAL DENSITY CFS8DLVAM / 573F-VAM Figure 6 Page 6 of 6
Engineering Solutions & Electromagnetic Compatibility Services 360 Herndon Pkwy | Suite 1400 | Herndon | Virginia 20170 Phone: 703.689.0368 | Fax: 703.689.2056 | www.rheintech.com FCC Part 15.247 & RSS-210 Intentional Radiated Emissions Test Report Test Lab: Rhein Tech Laboratories, Inc. Tel: 703-689-0368 360 Herndon Parkway Fax: 703-689-2056 Suite 1400 Herndon, VA 20170 www.rheintech.com Applicant: Honeywell International 2 Corporate Center Drive Tel: 516-577-5935 Melville, NY 11747 Contact: Andrew Roussin FCC ID: IC: CFS8DLVAM 573F-VAM Test Report Date April 2, 2014 Platform N/A RTL Work Order Number 2014046 Model # Vista Automation Module (VAM) RTL Quote Number QRTL14-047C American National Standard Institute ANSI C63.4-2003: Methods of Measurement of Radio-Noise Emissions from Low-Voltage Electrical and Electronic Equipment in the Range of 9 kHz to 40 GHz American National Standard Institute ANSI C63.10-2013: American National Standard for Testing Unlicensed Wireless Devices FCC Classification DTS – Part 15 Digital Transmission System FCC Rule Part(s) FCC Rules Part 15.247: Operation within the bands 920-928 MHz, 2400- 2483.5 MHz and 5725-5850 MHz Direct Sequence System (10-01-13) IC Rule Part(s) RSS-210 Issue 8: Licence-exempt Radio Apparatus (All Frequency Bands): Category I Equipment RSS-Gen Issue 3: General Requirements and Information for the Certification of Radio Apparatus I, the undersigned, hereby declare that the equipment tested and referenced in this report conforms to the identified standard(s) as described in this test report. No modifications were made to the equipment during testing in order to achieve compliance with these standards. Furthermore, there was no deviation from, additions to, or exclusions from, the applicable parts of FCC Part 2, FCC Part 15 , IC RSS-210, IC RSS-Gen and, ANSI C63.4. Signature: Date: April 2, 2014 Typed/Printed Name: Desmond A. Fraser Position: President This report may not be reproduced, except in full, without the written approval of Rhein Tech Laboratories and Honeywell International. The test results relate only to the item(s) tested. These tests are accredited and meet the requirements of ISO/IEC 17025 as verified by ANSI-ASQ National Accreditation Board/ACLASS. Refer to certificate and scope of accreditation AT-1445. Rhein Tech Laboratories, Inc. Client: Honeywell International 360 Herndon Parkway, Suite 1400 Model #: Vista Automation Module (VAM) Herndon, VA 20170 Standard: FCC 15.247/IC RSS-210 http://www.rheintech.com Report #: 2014047 Page 2 of 20 Table of Contents 1 General Information ............................................................................................................................... 4 1.1 Scope ................................................................................................................................................ 4 1.2 Description of EUT ............................................................................................................................ 4 1.3 Test Facility ....................................................................................................................................... 4 1.4 Modifications ..................................................................................................................................... 4 2 Test Information ..................................................................................................................................... 5 2.1 Description of Test Modes ................................................................................................................ 5 2.2 Exercising the EUT ........................................................................................................................... 5 2.3 Test Result Summary ........................................................................................................................ 5 2.4 Related Submittal(s)/Grant(s) ........................................................................................................... 5 2.5 Test System Details .......................................................................................................................... 5 3 Radiated Emissions – FCC 15.209; IC RSS-210 .................................................................................. 7 3.1 Limits of Radiated Emissions Measurement ..................................................................................... 7 3.2 Radiated Emissions Measurement Test Procedure ......................................................................... 7 3.3 Radiated Emissions Test Results ..................................................................................................... 9 3.3.1 Radiated Emissions Harmonics/Spurious ................................................................................. 9 4 Compliance with the Band Edge – FCC 15.247(d); RSS-210 2.2 ....................................................... 13 4.1 Band Edge Test Procedure ............................................................................................................. 13 4.2 Restricted Band Edge Test Results ................................................................................................ 14 4.2.1 Lower Band Edge – 802.11b ................................................................................................... 14 4.2.2 Upper Band Edge – 802.11b ................................................................................................... 15 4.2.3 Lower Band Edge – 802.11g ................................................................................................... 16 4.2.4 Upper Band Edge – 802.11g ................................................................................................... 17 5 Conclusion ........................................................................................................................................... 18 Rhein Tech Labora…
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EXHIBIT 5-5 (PAGE 1 OF 3) CLASS B RADIATED EMISSIONS CFS8DLVAM / 573-VAM EXHIBIT 5-5 (PAGE 2 OF 3) CLASS B RADIATED EMISSIONS CFS8DLVAM / 573-VAM Honeywell Radiated Emissions 30 - 1000 MHz Top Horizontal Operator: BARTOLOTTI Friday, January 31, 2014 at 10:38:50 AM Frequency Class B Limit Hor Pks Hor QP Margin Turntable Mast Height Result MHz dBμV/M dBμV/M dBμV/M (dB) angle (°) (cm) PF_hor 31.069 40.5 25.793 22.473 -17.987 280.56 138.48 PASS 35.356 40.5 19.656 16.906 -23.554 180.56 162.18 PASS 38.646 40.5 16.137 16.037 -24.423 216.06 157.27 PASS 78.748 40.5 37.125 37.105 -3.355 43.93 169.39 PASS 234.063 47.5 47.171 44.741 -2.719 354.81 132.54 PASS 239.419 47.5 43.478 42.168 -5.292 356.06 120.06 PASS 359.99 47.5 31.062 28.222 -19.238 336.87 100.66 PASS 732.009 47.5 40.916 38.246 -9.214 30.93 99.57 PASS 775.013 47.5 44.156 42.496 -4.964 29.31 100.9 PASS EXHIBIT 5-5 (PAGE 3 OF 3) CLASS B RADIATED EMISSIONS CFS8DLVAM / 573-VAM
EXHIBIT 5-6B CLASS B CONDUCTED EMISSIONS CFS8DLVAM / 573F-VAM NOTE 1: AVERAGE DATA IS NOT SHOWN IN PLOT FORM. NOTE 2: AVERAGE DATA IS ONLY SHOWN IN THE TABLE FOR (1) THE FIRST MEASUREMENT FREQUENCY, and (2) SUBSEQUENT FREQUENCIES WHICH ARE IN VIOLATION OF THE AVERAGE POWER THRESHOLD. PAGE 1 OF 13
EXHBIT 6 (PAGE 1 OF 7) TEST EQUIPMENT USED CFS8DLVAM / 573F-VAM Part 15.231, ANSI C63.4, RSS 210 This is a list of all test equipment used in the exhibits. Equipment Mfg Model Cal Date Spectrum Analyzer Rohde & Schwarz FSU3 5/9/2013 5/9/2014 Spectrum Analyzer Rohde & Schwarz FSU26 5/9/2013 5/9/2014 Antenna (“Biconilog”) ETS (EMCO) Lindgren 3149 7/8/13 7/8/14 Horn Antenna Electro Metrics RGA-60 5/17/2013 5/17/2014 LNA 1 to 26 GHz MITEQ AFS42-00102650 Verified before use 1.5 to 12 GHz HPF’s Microlab HIGH PASS FILTER Verified before use Transient Limiter Agilent HP11947A 5/9/2013 5/9/2014 LISN Com-Power LI-115 10/17/2013 10/17/2014 If you need any additional information from Honeywell please contact: Ed Sayers, RF Engineer Acting for Ken Eskildsen Phone: (516) 577-5863 E-mail: [email protected] EXHBIT 6 (PAGE 2 OF 7) TEST EQUIPMENT USED CFS8DLVAM / 573F-VAM EXHBIT 6 (PAGE 3 OF 7) TEST EQUIPMENT USED CFS8DLVAM / 573F-VAM EXHBIT 6 (PAGE 4 OF 7) TEST EQUIPMENT USED CFS8DLVAM / 573F-VAM EXHBIT 6 (PAGE 5 OF 7) TEST EQUIPMENT USED CFS8DLVAM / 573F-VAM EXHBIT 6 (PAGE 6 OF 7) TEST EQUIPMENT USED CFS8DLVAM / 573F-VAM EXHBIT 6 (PAGE 7 OF 7) TEST EQUIPMENT USED CFS8DLVAM / 573F-VAM
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EXHIBIT 5-2C (PAGE 1 OF 3) PICTURES OF THE UNIT UNDER TEST AND THE TEST SETUP CFS8DLVAM / 573F-VAM SENSE HORZ, UUT HORZ SENSE HORZ, UUT VERT SENSE HORZ, UUT OBQ SENSE VERT, UUT HORZ SENSE VERT, UUT VERT SENSE VERT, UUT OBQ THE OATS SITE: THE PHYSICAL LOCATION IS: 2 Corporate Center Drive Melville, NY 11747
EXHIBIT 5-2C (PAGE 2 OF 3) PICTURES OF THE UNIT UNDER TEST AND THE TEST SETUP CONT. CFS8DLVAM / 573F-VAM SETUP FOR TESTING
EXHIBIT 5-2C (PAGE 3 OF 3) PICTURES OF THE UNIT UNDER TEST AND THE TEST SETUP CONT. CFS8DLVAM / 573F-VAM CART TURNED AROUND TO SHOW CABLES
2 Corporate Center Drive · Melville · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 185.00 mW |

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