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9

A G E N C Y   A P P R O V A L S

These units are in compliance with the EMC-directive 2004/108/EC, the PED-directive 97/23/EC and the ATEX directive 94/9/EC.

IEC 60079-0: 2001    IEC 60079-15: 2010    IEC 60079-26: 2006

Explosion Proof
US/Canada:

Class I, Div 1, Group B, C, D, T4
Class I, Zone 1 A Ex db ia IIB+H2 T4
Class I, Zone 1 Ex d ia IIB+H2 T4
Ta = -40º C to +70º C
Type 4X, IP67

Flame Proof 
ATEX – FM14ATEX0058X

II 1/2 G Ex db ia IIB + H2 T4… T1 Gb/Ga
Ta = -40º C to +70º C
IP67

IEC- IECEx FMG 15.0034X 

Ex db ia IIB + H2 T4…T1 Gb/Ga
Ta = -40º C to +70º C
IP67

Non- Incendive
US/Canada:

Class I, II, III, Div 2, Group A, B, C, D, E, F, G, T6 
Class 1, Zone 2 AEx nA ia IIC T4    
Class 1, Zone 2 Ex nA ia IIC T4    
Ta = -40º C to +70º C
Type 4X, IP67

ATEX - FM14ATEX0058X

II  3 G Ex nA   IIC Gc T6 
Ta = -15º C to +70º C
IP67

IEC – IECEx FMG 15.0034X

Ex nA IIC Gc T6
Ta = -15º C to + 70º C
IP67

Intrinsically Safe
US/Canada:

Class I, II, III, Div 1, Group A, B, C, D, E, F, G, T4
Class I, Zone 0 AEx ia IIC T4
Class I, Zone 0 Ex ia IIC T4 Ga 
Ta =-40º C to + 70º C
Type 4X, IP67

ATEX – FM14ATEX0058X:

II 1 G Ex ia IIC T4 Ga 
Ta = -40º C to +70º C
IP67

IEC – IECEx FMG 15.0034X:

Ex ia IIC T4 Ga 
Ta = -40º C to +70º C
IP67

Dust Ignition Proof 
US/Canada:

Class II, III, Div 1, Group E, F, and G, T5 
Ta = -15º C to +70º C
Type 4X, IP67

ATEX – FM14ATEX0059X:

II 2 D Ex ia tb IIIC T110º C Db
Ta = -15º C to +70º C
IP67

IEC – IECEx FMG 15.0034X:

Ex ia tb IIIC 100º C Db
Ex ia IIIC T85º C to T450º C Da
Ta = -15º C to +70º C
IP67

FM3600:2011, FM3610:2010, FM3611:2004, FM3615:2006, FM3616:2011, FM3810:2005, ANSI/ISA60079-0:2013,
ANSI/ISA 60079-1:2015, ANSI/ISA 60079-11:2013, ANSI/ISA 60079-15:2012, ANSI/ISA 60079-26:2011, NEMA 250:2003,
ANSI/IEC 60529:2004, C22.2 No. 0.4:2009, C22.2 No. 0.5:2008, C22.2 No. 30:2007, C22.2 No. 94:2001, C22.2 No. 213:2012,
C22.2 No. 1010.1:2009, CAN/CSA 60079-0:2011, CAN/CSA 60079-1:2011, CAN/CSA 60079-11:2014, CAN/CSA 60079-
15:2012, C22.2 No. 60529:2005, EN60079-0:2012, EN60079-1:2014, EN60079-11:2012, EN60079-15:2010, EN60079-26:2007,
EN60079-31:2009, A1:1991-2000, IEC60079-0:2011, IEC60079-1:2014, IEC60079-11:2011, IEC60079-15:2010,
IEC60079-26:2006, IEC60079-31:2008

“This equipment with chargeable non-conductive parts, e.g. enclosure’s paint and antenna use PTFE, Co-polymer
Polypropylene or Noryl En265, is provided with a warning label referring to the safety measures that must be taken if there is
electrostatic charging during operation. For use in hazardous area, the equipment and side to be installed, e.g. tank, must be
connected to earth and be attention to not only the measuring object, e.g. liquids, gases, powders and etc., but also the related
conditions, e.g. tank container, vessel and etc. (According to IEC 60079- 32-1).”

FCC (ID# LPN-R9C) Compliance Statement:

This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions:

1. This device may not cause in harmful interference, and

2. This device must accept any interference received, including interference that may cause undesired operation.

Changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to
operate the equipment. To comply with FCC/IC RF exposure limits for general population/uncontrolled exposure, the antenna(s)
used for this transmitter must be installed to provide a separation distance of at least 20cm from all persons and must not be
co-located or operating in conjunction with any other antenna or transmitter.

Содержание Pulsar R96

Страница 1: ...transmitters Enhanced performance and innovative diagnostics bring simplicity to an often complicated technology This latest entry into the radar level measurement field is designed to provide unpara...

Страница 2: ...iplied by the transit time divided by two Distance C Transit Time 2 then developing the level value by factoring in tank height and other configura tion information Figure 3 The exact reference point...

Страница 3: ...om the sensor reference point bottom of NPT thread top of BSP thread or face of flange to the bottom of the tank Refer to Figure 4 Ideally the 6 150 mm horn antenna should be used to ensure the best p...

Страница 4: ...uld illuminate the maximum liquid surface with a minimum striking other objects in the vessel including the tank wall Use these drawings to determine the optimum installation location O B S T R U C T...

Страница 5: ...0 68 17 Thread Engagement A C B D 3 76 H Aperture Model Antenna Extension maximum L dimension All All BSP 8th Digit Dim A Dim B Dim C 0 1 25 2 2 56 11 1 282 3 0 76 1 4 100 5 1 130 14 0 356 5 9 150 2...

Страница 6: ...ghout length no reducers Use only horn antennas sized to pipe ID 3 6 80 150mm 8 pipe can use a 6 horn Stillwell length must cover complete range of measure ment i e liquid must be in stillwell Welds s...

Страница 7: ...U R S T R A D A R S T O R A G E A N D I N T E R M E D I A T E H O L D I N G T A N K S CONDITIONS Calm Surfaces R E A C T O R S CONDITIONS Turbulence and Foam E N C L O S E D S U M P S CONDITIONS Turbu...

Страница 8: ...ause poor performance Tanks heavily cluttered with false targets mixers pumps ladders pipes etc During times of very low liquid levels of low dielec tric media the metal tank bottom may be detected wh...

Страница 9: ...NSI IEC 60529 2004 C22 2 No 0 4 2009 C22 2 No 0 5 2008 C22 2 No 30 2007 C22 2 No 94 2001 C22 2 No 213 2012 C22 2 No 1010 1 2009 CAN CSA 60079 0 2011 CAN CSA 60079 1 2011 CAN CSA 60079 11 2014 CAN CSA...

Страница 10: ...fieldbus Host System English Power Measured at instrument terminals HART General Purpose Weather proof Intrinsically Safe Explosion proof 11 VDC minimum under certain conditions refer to I O Manual 58...

Страница 11: ...rsion 0x01 P E R F O R M A N C E A N T E N N A S P E C I F I C A T I O N S F U N C T I O N A L P H Y S I C A L T E M P E R A T U R E P R E S S U R E C H A R T 11 50 45 0 15 0 100 7 200 14 300 21 400 2...

Страница 12: ...oils vinegar sour HCs Black liquor hot water steam hot aliphatic amines ethylene oxide propylene oxide molten sodium molten potassium Simriz SZ485 formerly Aegis PF128 8 400 F 232 psig 200 C 16 bar 75...

Страница 13: ...t of a complete purchase order through the Expedite Ship Plan ESP 13 1 4 20 mA with HART 2 FOUNDATION fieldbus R 9 6 5 R96 Through Air Radar Level Transmitter 6 GHz Pulse Radar 1 BASIC MODEL NUMBER 5...

Страница 14: ...antennas 6 GHz TECHNOLOGY OPERATING FREQUENCY A TFE Material of Construction codes A B C and K only B Polypropylene Material of Construction codes A G K and L only C Halar Material of Construction co...

Страница 15: ...051 055 052 056 Polypropylene 057 061 058 062 059 063 060 064 TFE 065 069 066 070 067 071 068 072 15 53 3 150 ANSI raised face flange EA DN 80 PN 16 EN 1092 1 Type A 54 3 300 ANSI raised face flange E...

Страница 16: ...on MAGNETROL shall not be liable for misap plication labor claims direct or consequential damage or expense arising from the instal lation or use of equipment There are no other warranties expressed o...

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