
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Operating Instructions Radar sensor for continuous level measurement of bulk solids VEGAPULS 69 4 ... 20 mA/HART - two-wire Document ID: 47247 2 Contents VEGAPULS 69 β’ 4 ... 20 mA/HART - two-wire 47247-EN-150615 Contents 1 About this document 1.1 Function ...........................................................................................................................4 1.2 Target group .....................................................................................................................4 1.3 Symbols used...................................................................................................................4 2 For your safety 2.1 Authorised personnel .......................................................................................................5 2.2 Appropriate use ................................................................................................................5 2.3 Warning about incorrect use .............................................................................................5 2.4 General safety instructions ...............................................................................................5 2.5 CE conformity ...................................................................................................................6 2.6 NAMUR recommendations ..............................................................................................6 2.7 Radio license for Europe ..................................................................................................6 2.8 Radio License for USA .....................................................................................................6 2.9 Radio license for Canada .................................................................................................7 2.10 Environmental instructions ...............................................................................................8 3 Product description 3.1 Configuration ....................................................................................................................9 3.2 Principle of operation......................................................................................................10 3.3 Packaging, transport and storage ...................................................................................11 3.4 Accessories and replacement parts ...............................................................................11 4 Mounting 4.1 General instructions .......................................................................................................14 4.2 Mounting versions, plastic horn antenna ........................................................................14 4.3 Mounting preparations, mounting strap ..........................................................................17 4.4 Mounting instructions .....................................................................................................18 5 Connecting to power supply 5.1 Preparing the connection ...............................................................................................29 5.2 Connecting .....................................................................................................................30 5.3 Wiring plan, single chamber housing..............................................................................31 5.4 Wiring plan, double chamber housing ............................................................................32 5.5 Double chamber housing Ex d .......................................................................................34 5.6 Wiring plan, double chamber housing Ex d ia ................................................................35 5.7 Double chamber housing with DIS-ADAPT ....................................................................37 5.8 Wiring plan - version IP 66/IP 68, 1 bar ...........................................................................38 5.9 Switch-on phase.............................................................................................................38 6 Set up with the display and adjustment module 6.1 Insert display and adjustment module ............................................................................39 6.2 Adjustment system .........................................................................................................40 6.3 Measured value indication - Selection national language ...............................................41 6.4 Parameter adjustment - Quick setup ..............................................................................42 6.5 Parameter adjustment - Extended adjustment................................................................43 6.6 Saving the parameter adjustment data ...........................................................................57 7 Setup with PACTware 7.1 Connect the PC ..............................................................................................................59 7.2 Parameter adjustment ....................................................................................................60 7.3 Saving the parameter adjustment data ...........................................................................61 3 Contents VEGAPULS 69 β’ 4 ... 20 mA/HART - two-wire 47247-EN-150615 8 Set up with other systems 8.1 DD adjustment programs ...............................................................................................62 8.2 Field Communicator 375, 475 ........................................................................................62 9 Diagnosis, asset management and service 9.1 Maintenance ..................................................................................................................63 9.2 Measured value and event memory ...............................................................................63 9.3 Asset Management function ...................................β¦
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Technical Comments and Response
Docu NΒ° VEGAZW-6-24202 Photographs February 17, 2015 VEGAPULS 69 FCC: O6QPS60XW1 IC: 3892A-PS60XW1 1 Table of Contents 1. Sensors ............................................................................................. 2 1.1 VEGAPULS 69 with 75 mm Plastic Horn Antenna ....................... 2 1.2 VEGAPULS 69 with DN80 Lens Antenna .................................... 3 2. Electronics Unit ................................................................................. 5 2.1 PS60HW ...................................................................................... 5 3. Printed Circuit Boards ....................................................................... 6 3.1 PULSW-HF .................................................................................. 6 3.2 PULSW-PLL ................................................................................ 7 3.3 PULSW-H .................................................................................... 8 3.4 LEVEL-BPPA ............................................................................... 9 3.5 LEVEL-BPFF ............................................................................... 9 Docu NΒ° VEGAZW-6-24202 Photographs February 17, 2015 VEGAPULS 69 FCC: O6QPS60XW1 IC: 3892A-PS60XW1 2 1. Sensors 1.1 VEGAPULS 69 with 75 mm Plastic Horn Antenna Side View Top view Label Docu NΒ° VEGAZW-6-24202 Photographs February 17, 2015 VEGAPULS 69 FCC: O6QPS60XW1 IC: 3892A-PS60XW1 3 1.2 VEGAPULS 69 with DN80 Lens Antenna Side View Bottom View Label Docu NΒ° VEGAZW-6-24202 Photographs February 17, 2015 VEGAPULS 69 FCC: O6QPS60XW1 IC: 3892A-PS60XW1 4 Top View
Docu NΒ° VEGAZW-6-24200 Label Drawing February 12, 2015 VEGAPULS 69 FCC: O6QPS60XW1 IC: 3892A-PS60XW1 1 Label Drawing
Docu NΒ° VEGAZW-6-24202 Photographs February 17, 2015 VEGAPULS 69 FCC: O6QPS60XW1 IC: 3892A-PS60XW1 5 2. Electronics Unit 2.1 PS60HW Front View Back View Top View Bottom View Docu NΒ° VEGAZW-6-24202 Photographs February 17, 2015 VEGAPULS 69 FCC: O6QPS60XW1 IC: 3892A-PS60XW1 6 3. Printed Circuit Boards 3.1 PULSW-HF Top View with Cover Top View Cover Inside Bottom View Docu NΒ° VEGAZW-6-24202 Photographs February 17, 2015 VEGAPULS 69 FCC: O6QPS60XW1 IC: 3892A-PS60XW1 7 3.2 PULSW-PLL Top View with Shielding Shielding Inside Top View Bottom View Docu NΒ° VEGAZW-6-24202 Photographs February 17, 2015 VEGAPULS 69 FCC: O6QPS60XW1 IC: 3892A-PS60XW1 8 3.3 PULSW-H Top View Bottom View Docu NΒ° VEGAZW-6-24202 Photographs February 17, 2015 VEGAPULS 69 FCC: O6QPS60XW1 IC: 3892A-PS60XW1 9 3.4 LEVEL-BPPA Top View Bottom View 3.5 LEVEL-BPFF Top View Bottom View
Rhein Tech Laboratories, Inc. Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite. 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: Part 15C http://www.rheintech.com Project #: 2014196 47 of 71 Appendix A: RF Exposure Compliance FCC Rules and Regulations Part 1.1307, 1.1310, 2.1091, 2.1093 1. General Information Environment: General Population/Uncontrolled Exposure Device category: Level Probing Radar Modulation Type/Mode: Pulsed Radar 2. Operating Configurations and Test Conditions Antenna Type Highest Gain Antenna Used (dBi) Numeric Gain Highest 50 MHz EIRP Power (Watt) Highest 50 MHz ERP Power (Watt) Plastic 33.8 2400 0.575 0.00024 3. MPE Calculation The maximum distance from the antenna at which MPE is met or exceeded, is calculated from the equation relating field strength E in V/m, transmit power P in Watts, transmit antenna numeric gain G, and separation distance in meters. The limit for general population/uncontrolled exposure from 1500-100000 MHz is 1mW/cm 2 or 10W/m 2 . The Electric field generated for a 1 mW/cm 2 exposure (S) is calculated as follows: Z E S 2 ο½ or Z S E ο ο½ 377 10 ο ο½ = 61.4 V/m where: S = Power density (W/m) E = Electric field (V/m) Z = Impedance of free space (377 ohms) MPE Calculation solving for distance (d): d G P E ο ο ο½ 30 or E G P d ο ο ο½ 30 m E 07 . 0 4 . 61 2400 4 . 2 30 4 ο½ ο ο ο½ ο where: E =Electric field (V/m) P = Power (W) G = Antenna numeric gain d = distance (m) Separation Distance = 7 cm Additionally, the power density at 20 cm is: 2 2 /21.010 377 )/( cmmW mVE Sο½οΈο½ 4. Conclusion The device complies with the MPE requirements by providing a safe separation distance between the antenna, including any radiating structure, and any persons.
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 15.256 Certification Application Report Test Lab: Rhein Tech Laboratories, Inc. Tel: 703-689-0368 360 Herndon Parkway Fax: 703-689-2056 Suite 1400 www.rheintech.com Herndon, VA 20170 E-Mail: [email protected] Applicant: VEGA Grieshaber KG Tel: 49-7836-50113 Am Hohenstein 113 D-77716 Schiltach Germany Contact: Juergen Motzer FCC ID O6QPS60XW1 Test Report Date May 8, 2015 Platform N/A RTL Work Order # 2014196 Model VEGAPULS 69 RTL Quote # QRTL14-196A FCC Classification LPR β Level Probing Radar FCC Rule Part(s)/Guidance Part 15.256: Level Probing Radar FCC 14-2: ET Docket No. 10-23: Amendment of Part 15 of the Commissionβs Rules To Establish Regulations for Level Probing Radars and Tank Level Probing Radars in the Frequency Bands 5.925-7.250 GHz, 24.05-29.00 GHz and 75-85 GHz KDB 890966-D01 Meas Level Probing Radars V01 (April 4, 2014) TR 14-1007 Measurement of Fundamental Emissions of FMCW Level Probing Radars (LPR) under Part 15, Section 15.256 (June 13, 2014) Test Procedure ANSI C63.4-2009: Methods of Measurement of Radio-Noise Emissions from Low- Voltage Electrical and Electronic Equipment in the Range of 9 kHz to 40 GHz Digital Interface Information Digital Interface was found to be compliant Frequency Range (GHz) Output Power (W) (Peak EIRP) Frequency Tolerance Emission Designator 78.5 β 79.5 0.575 N/A N/A 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 and ANSI C63.4. Signature: Date: May 8, 2015 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, Inc. and VEGA Grieshaber KG. The test results relate only to the item(s) tested. These test(s) are accredited under Rhein Tech Laboratories, Inc. ISO/IEC 17025 accreditation issued by the ANSI-ASQ National Accreditation Board. Refer to certificate and scope of accreditation AT-1445. Rhein Tech Laboratories, Inc. Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite. 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: Part 15C http://www.rheintech.com Project #: 2014196 2 of 71 Table of Contents 1 General Information ............................................................................................................................... 6 1.1 Scope .............................................................................................................................................. 6 1.2 Test Facility ..................................................................................................................................... 6 1.3 Modifications ................................................................................................................................... 6 2 Tested System Details ........................................................................................................................... 7 2.1 Test Configurations......................................................................................................................... 8 2.2 Test Distance ................................................................................................................................ 10 3 Modulated Bandwidth β ANSI C63.10 6.9, FCC 14-2 (15.256(f)(1)) ................................................... 11 3.1 Modulated Bandwidth Test Procedure - FCC 14-2 (15.256(f)(1)) ................................................ 11 3.2 Limits ............................................................................................................................................ 11 3.3 Modulated Bandwidth Test Data .................................................................................................. 11 4 Radiated Emissions β ANSI C63.10 6.3, FCC 15.256(g)(3)................................................................ 14 4.1 Radiated Fundamental Emissions Test Procedure β FCC 15.256(g)(3) ...................................... 14 4.2 Radiated Fundamental Emissions Test Data ............................................................................... 14 4.2.1 Test Configuration #1 ............................................................................................................ 15 4.2.2 Test Configuration #2 ............................................................................................................ 19 4.3 Radiated Emissions β ANSI C63.10 6.3, FCC 14-2 (15.256(h)(k)) .............................................. 21 4.4 Radiated Emissions Harmonics/Spurious Test Procedure - FCC 14-2 (15.256(h)(k)) ................ 21 4.5 Radiated Emissions Harmonics/Spurious Test Data .................................................................... 21 4.5.1 Test Configuration #1 ............................................................................................................ 22 4.5.2 Test Configuration #2 ............................................................................................................ 29 4.6 Radiated Emissions Unintentional/Digital Test Data .................................................................... 36 5 Frequency Stability ANSI C63.10 6.8, FCC 14-2 (15.256(f)(2)) .......................................................... 39 5.1 Frequency Stability Test Procedure - FCC 14-2 (15.256(f)(2)) .................................................... 39 5.2 FCC 15.256(f)(2) Limit ...........................................................................................β¦
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Engineering Solutions & Electromagnetic Compatibility Services 360 Herndon Pkwy | Suite 1400 | Herndon | Virginia | 20170 Phone: 703.689.0368 | Fax: 703.689.2056 | www.rheintech.com VEGA Grieshaber KG Am Hohenstein 113 77761 Schiltach Germany MODEL: VEGAPULS 69 FCC ID: O6QPS60XW1 May 25, 2015 Standards Referenced for this Report Part 2: 0ctober 2014 Frequency Allocations and Radio Treaty Matters; General Rules and Regulations Part 15: October 2014 Radio Frequency Devices - Β§15.209: Radiated Emissions Limits RSS-210 Low Power License-Exempt Radio Communication Devices (All Frequency Bands) ANSI C63.10-2009: American National Standard of Procedures for Compliance Testing of Unlicensed Wireless Devices Frequency Range Output Power (W) Conducted Frequency Tolerance (ppm) Emission Designator 78.5 β 79.5 GHz 0.575 N/A N/A We, the undersigned, hereby declare that the equipment tested and referenced in this report conforms to the identified standard(s) as described in this attached test record. 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 above standards for Certification methodology. Signature: Date: May 25, 2015 Typed/Printed Name: Desmond Fraser Position: President Signature: Date: May 25, 2015 Typed/Printed Name: Dan Baltzell Position: Test Engineer Document Number: 2015107 This report may not be reproduced, except in full, without the written approval of Rhein Tech Laboratories, Inc. and VEGA Grieshaber KG. The test results relate only to the item(s) tested. These test(s) are accredited under Rhein Tech Laboratories, Inc. ISO/IEC 17025 accreditation issued by the ANSI-ASQ National Accreditation Board. Refer to certificate and scope of accreditation AT-1445. Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 2 of 126 Table of Contents 1 General Information ............................................................................................................................. 6 1.1 Scope ............................................................................................................................................. 6 1.2 Test Facility .................................................................................................................................... 6 1.3 Related Submittal(s)/Grant(s) ........................................................................................................ 6 1.4 Modifications .................................................................................................................................. 6 2 Tested System Details ......................................................................................................................... 7 2.1 Test Configurations ........................................................................................................................ 7 3 Test Distance and Exercising the EUT .............................................................................................. 11 4 Conducted Limits - Β§15.207 ............................................................................................................... 12 4.1 Conducted Emission Limits Test Data ......................................................................................... 12 4.1.1 Test Configuration #1 (TC #1) ................................................................................................. 12 4.1.2 Test Configuration #2 (TC #2) ................................................................................................. 14 5 Modulated Bandwidth β ANSI C63.10 6.9 ......................................................................................... 16 5.1 Modulated Bandwidth Test Procedure β ANSI C63.10 6.9.......................................................... 16 6 Radiated Emission Limits - Β§15.209 .................................................................................................. 18 6.1 Radiated Emission Limits Test Procedure ................................................................................... 18 6.2 Field Strength Calculation ............................................................................................................ 18 6.3 Radiated Emission Limits Test Data ............................................................................................ 19 6.3.1 Radiated Emissions Below 1 GHz Test Data .......................................................................... 19 6.3.1 Radiated Emissions Carrier Test Data, EUT Installed in Containers ...................................... 20 6.3.2 Radiated Emissions Test Data - 2 GHz β 26.5 GHz; Steel Container, TC #1 ......................... 24 6.3.3 Radiated Emissions Test Data - 2 GHz β 26.5 GHz; Steel Container, TC #2 ......................... 44 6.3.1 Radiated Emissions Test Data - 2 GHz β 26.5 GHz; Concrete Container, TC #1 .................. 64 6.3.2 Radiated Emissions Test Data - 2 GHz β 26.5 GHz; Concrete Container, TC #2 .................. 84 7 Conclusion ....................................................................................................................................... 105 Table of Appendices Appendix A: Test Configuration Test Photographs ............................................................................... 106 Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 3 of 126 Table of Tables Table 2-1: Equipment under Test (EUT) ..................................................................................................... 7 Table 2-2: Test Configuration #1 (TC #1) ..........................β¦
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Technical Comments and Response
Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 106 of 126 Appendix A: Test Configuration Test Photographs Photograph 4: Conducted Emissions β TC #1, Front View MOUSE MOUSE Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 107 of 126 Photograph 5: Conducted Emissions β TC #1, Rear View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 108 of 126 Photograph 6: Conducted Emissions β TC #2, Front View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 109 of 126 Photograph 7: Conducted Emissions β TC #2, Rear View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 110 of 126 Photograph 8: Radiated Emissions β TC #1; Steel Container, Front View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 111 of 126 Photograph 9: Radiated Emissions β TC #1; Steel Container, Rear View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 112 of 126 Photograph 10: Radiated Emissions β TC #1; Concrete Container, Front View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 113 of 126 Photograph 11: Radiated Emissions β TC #1; Concrete Container, Rear View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 114 of 126 Photograph 12: Radiated Emissions β TC #2; Steel Container, Front View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 115 of 126 Photograph 13: Radiated Emissions β TC #2; Steel Container, Rear View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 116 of 126 Photograph 14: Radiated Emissions β TC #2; Concrete Container, Front View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 117 of 126 Photograph 15: Radiated Emissions β TC #2; Concrete Container, Rear View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 118 of 126 Photograph 16: EUT Swivel Holder, In-Tank Installation Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 119 of 126 Photograph 17: Radiated Emissions β TC #1 Swivel; Steel Container, Front View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 120 of 126 Photograph 18: Radiated Emissions β TC #1 Swivel; Steel Container, Rear View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 121 of 126 Photograph 19: Radiated Emissions β TC #1 Swivel; Concrete Container, Front View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 122 of 126 Photograph 20: Radiated Emissions β TC #1 Swivel; Concrete Container, Rear View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 123 of 126 Photograph 21: Radiated Emissions β TC #2 Swivel; Steel Container, Front View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 124 of 126 Photograph 22: Radiated Emissions β TC #2 Swivel; Steel Container, Rear View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Report Number: 2015107 125 of 126 Photograph 23: Radiated Emissions β TC #2 Swivel; Concrete Container, Front View Rhein Tech Laboratories Client: VEGA Grieshaber KG 360 Herndon Parkway Model: VEGAPULS 69 Suite 1400 FCC ID: O6QPS60XW1 Herndon, VA 20170 Standard: FCC 15.209 http://www.rheintech.com Rβ¦
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360 Herndon Parkway Β· Herdon Β· United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15.209,15.256 | 79.00 GHz - 79.00 GHz | - |

VEGAMET-Air-841-842
Equipment Class
DTS - Digital Transmission SystemDisplay, adjustment and communication module
Equipment Class
DTS - Digital Transmission System
VEGAMET Air 141 / VEGAMET Air 142
Equipment Class
DTS - Digital Transmission System
VEGAPULS 42 radar sensor for continuous level measurement
Equipment Class
LPR - Level Probing Radar
Radar sensors for continuous level measurement
Equipment Class
DTS - Digital Transmission System