T&B KOPEX-EX DTS UL XP-Flexible Coupling 사양소개

 

안녕하세요 TIATIP 입니다.

 

오늘 이 시간에는 Thomas&Betts 의 UL XP-Flexible Coupling 에 대해 살펴보도록 하겠습니다.

 

 

 

Thomas&Betts

KOPEX-EX DTS

UL XP-Flexible Coupling For Hazardous Areas and Applications

UL XP-Flexible Coupling For use in potentially explosive atmospheres

 

 

KOPEX-EX

XP Flex Explosion Proof Coupling

A range of explosion proof flexible coupling for hazardous areas (UL)

 

 

 

Technical Data

DTS KOPEX Hazardous Area CAT01.pdf

DTS KOPEX Hazardous Area CAT02.pdf

 

 

 

 

 

 

Catalogue No.

ThomasandBetts,Thomas&Betts,TnB,T&B,KOPEX,KOPEX-EX,UL XP, Flexible Coupling, DTS,XPLFL318,XPLFL236,XPLFL224,XPLFL218,XPLFL215,XPLFL212,

XPLFL124,XPLFL118,XPLFL115,XPLFL112,XPLFL110,XPLFL18,XPLFL16

 

 

 

 

 

 

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KOPEX-EX DTS Ex d Metallic Conduit System 사양소개

 

안녕하세요 TIATIP 입니다.

 

오늘 이 시간에는 Thomas&Betts 브랜드 가운데, 방폭컨듀이트시스템(Ex Conduit System)분야에서 탁월한 사양과 검증을 갖추고 있는 KOPEX-EX DTS Ex d Metallic Conduit System 을 소개드립니다.

 

 

Thomas&Betts

T&B (TnB) KOPEX-EX DTS

Ex d Metallic Systems For Hazardous Areas and Applications

Ex d Metallic Systems for use in potentially explosive atmosphers

 

 

 

 

1. KOPEX-EX DTS Ex d Conduit Glands

A range of conduit fittings and stopping glands for Exd applications.

 

 

(1) Group I Flameproof Gland

Constructed from either brass or stainless steel, the Group I Flameproof Gland is a high quality, high specification product, ideal for Ex I & II 2 GD gas and dust, Exde IIC and Exe II applications.

 

 

(2) Group I Flameproof 90˚ Elbow

Constructed from either brass or stainless steel, with a nylon seal and epoxy resin, the Group I 90 degree flameproof gland is a high quality, high specification product, ideal for Ex I & II 2 GD gas and dust, Exde IIC and Exe II applications.

 

 

 

(3) Group I Universal Flameproof Gland

Constructed from either brass or stainless steel, with a nylon seal and epoxy resin, the Group I universal flameproof gland is a high quality, high specification product, ideal for Ex I & II 2 GD gas and dust, Exde IIC and Exe II applications.

 

 

(4) Group II Flameproof Gland

Constructed from either brass or stainless steel, with a nylon seal and epoxy resin, the Group II flameproof gland is a high quality, high specification product, ideal for Ex II 2 GD gas and dust, Exd IIC and Exe II applications.

 

 

 

 

2. KOPEX-EX DTS Metallic Liquid Tight Conduits

 A range of liquid tight conduits for use in hazardous areas

 

 

 

(1) Oil Resistant (Galvanised Steel Type)

Robust conduit made from galvanised core with a coating for increased protection from dilute acids, alkalis, and hydro-carbon products.

 

 

(2) High Temperature (Galvanised Steel Type)

Conduit for high temperature applications made from Galvanised core with a chemical resistant coating.

 

 

 

(3) Low Fire Hazard (Galvanised Steel Type)

Is a low fire hazard conduit which is fully compliant with London Underground, and MOD specifications. Conduit is available in galvanised core with a coating that offers low toxicity and zero halogen.

 

 

(4) High Temperature Highly Flexible (Galvanised Steel Type)

Conduit for high temperature applications, where a high degree of flexibility is required. Made from galvanised core with a thermaplastic rubber coating.

 

 

 

(5) Low Fire Hazard with EMC Protection (Galvanised Steel Type)

Is a low fire hazard conduit which is fully compliant with London Underground, and MOD specifications. Conduit is available in Galvanised steel core with a coating that offers low toxicity and zero halogen.

 

 

(6) Oil Resistant (Stainless Steel Type)

Robust conduit made from Stainless Steel 316 core with a coating for increased protection from dilute acids, alkalis, and hydro-carbon products.

 

 

(7) Low Fire Hazard (Stainless Steel Type)

Is a low fire hazard conduit which is fully compliant with London Underground, and MOD specifications. Conduit is available in Stainless steel core with a coating that offers low toxicity and zero halogen.

 

 

(8) High Temperature (Stainless Steel Type)

Conduit for high temperature applications made from Stainless core with a chemical resistant coating.

 

 

(9) High Temperature Highly Flexible (Stainless Steel Type)

Conduit for high temperature applications, where a high degree of flexibility is required. Made from Stainless steel core with a thermaplastic rubber coating.

 

 

3. KOPEX-EX DTS Ex d Metallic System Application

 

설치동영상 링크자료 : http://youtu.be/Kj7mo5jiarw

 

 

 

 

 

 

 

 

KOPEX-EX DTS Catalog Number

 

TnB, T&B, Thomas&Betts, KOPEX-EX, DTS, HAM0304G1,HAMM0304G1,HAMS0304G1,HAM0404G1,HAMM0404G1,HAMS0404G1,

HAM0505G1,HAMM0505G1,HAMS0505G1,HAM0606G1,HAMM0606G1,HAMS0606G1,

HAM0707G1,HAMM0707G1,HAMS0707G1,HAM0808G1,HAMM0808G1,HAMS0808G1,

HAM0909G1,HAMM0909G1,HAMS0909G1,HAA0304G1,HAAM0304G1,HAAS0304G1,

HAA0404G1,HAAM0404G1,HAAS0404G1,HAA0505G1,HAAM0505G1,HAAS0505G1,

HAA0606G1,HAAM0606G1,HAAS0606G1,HAA0707G1,HAAM0707G1HAAS0707G1,

HAA0808G1,HAAM0808G1,HAAS0808G1,HAA0909G1,HAAM0909G1,HAAS0909G1,

HAM0304E,HAMM0304E,HAM0404E,HAMM0404E,HAM0505E,HAMM0505E,

HAM0606E,HAMM0606E,HAM0707E,HAMM0707E,HAM0808E,HAMM0808E,

HAM0909E,HAMM0909E,HAA0304E,HAAM0304E,HAA0404E,HAAM0404E,

HAA0505E,HAAM0505E,HAA0606E,HAAM0606E,HAA0707E,HAAM0707E,

HAA0808E,HAAM0808E,HAA0909E,HAAM0909E,HAM0304U,HAMM0304U,

HAMS0304U,HAM0404U,HAMM0404U,HAMS0404U,HAM0505U,HAMM0505U,

HAMS0505U,HAM0606U,HAMM0606U,HAMS0606U,HAM0707U,HAMM0707U,

HAMS0707U,HAM0808U,HAMM0808U,HAMS0808U,HAM0909U,HAMM0909U,

HAMS0909U,HAA0304U,HAAM0304U,HAAS0304U,HAA0404U,HAAM0404U,

HAAS0404U,HAA0505U,HAAM0505U,HAAS0505U,HAA0606U,HAAM0606U,

HAAS0606U,HAA0707U,HAAM0707U,HAAS0707U,HAA0808U,HAAM0808U,

HAAS0808U,HAA0909U,HAAM0909U,HAAS0909U,HAM0304,HAM0404,

HAM0505,HAM0606,HAM0707,HAM0808,HAM0909,HAMM0304,HAMM0404,

HAMM0505,HAMM0606,HAMM0707,HAMM0808,HAMM0909,HAMS0404,

HAMS0505,HAMS0606,HAMS0707,HAMS0808,HAMS0909,HAA0304,

HAA0404,HAA0505,HAA0606,HAA0707,HAA0808,HAA0909,HAAM0304,

HAAM0404,HAAM0505,HAAM0606,HAAM0707,HAAM0808,HAAM0909,

HAAS0404,HAAS0505,HAAS0606,HAAS0707,HAAS0808,HAAS0909,

EXLB0110,EXLB0130,EXLB0210,EXLB0230,EXLB0310,EXLB0330,

EXLB0350,EXLB0410,EXLB0430,EXLB0450,EXLB0510,EXLB0530,

EXLB0550,EXLB0610,EXLB0630,EXLB0710,EXLB0720,EXLB0810,

EXLB0820,EXLB0910,EXLB0920,EXLLH0330,EXLLH0730,EXLLH0310,

EXLLH0410,EXLLH0430,EXLLH0510,EXLL0530,EXLLH0610,EXLLH0630,

EXLLH0710,EXLH0310,EXLH0330,EXLH0410,EXLH0430EXLH0510,

EXLH0530,EXLH0610,EXLH0630,EXLH0710,EXLH0730,EXLT0310,

EXLT0312,EXLT0330,EXLT0410,EXLT0430,EXLT0510,EXLT0530,

EXLT0610,EXLT0620,EXLT0710,EXLT0720,EXLT0810,EXLT0820,

EXLT0910,EXLT0920,EXLT0930,EXLHC0310,EXLHC0330,EXLHC0410,

EXLHC0430,EXLHC0510,EXLHC0530,EXLHC0610,EXLHC0620,EXLHC0710,

EXLHC0720,EXLHC0810,EXLHC0820,EXLHC0910,EXLHC0920,EXBBT0310,

EXBBT0330,EXBBT0410,EXBBT0430,EXBBT0530,EXBBT0610,EXBBT0630,

EXBBT0710,EXBBT0730,EXBBT0810,EXBBT0820,EXBBT0910,EXSB0910,

EXSB0830,EXSB0810,EXSB0730,EXSB070,EXSB0630,EXSB060,

EXSB0530,EXSB050,EXSB0430,EXSB041,EXSB0330,EXSB030,

EXST0310,EXST0330,EXST0410,EXST0430,EXST0510,EXST0530,

EXST0610,EXST0620,EXST0710,EXST0720,EXST0810,EXST0820,

EXST0910,EXST0920,EXSLLH0630,EXSLLH0430,EXSLLH0330,EXSLLH0710,

EXSH0310,EXSH0330,EXSH0410,EXSH0430,EXSH0510,EXSH0530,

EXSH0610,EXSH0620,EXSH0710,EXSH0720,EXSH0810,EXSH0820,

EXSH0910,EXSH0920,EXSLLH0310,EXSLLH0410,EXSLLH0510,EXSLLH0530,

EXSLLH0610,EXSHC0310,EXSHC0330,EXSHC0410,EXSHC0430,EXSHC0510,

EXSHC0530,EXSHC0610,EXSHC0620,EXSHC0710,EXSHC0720,EXSHC0810,

EXSHC0820,EXSHC0910,EXSHC0920,

 

 

 

 

 

 

Technical Data

DTS KOPEX Hazardous Area CAT01.pdf 

DTS KOPEX Hazardous Area CAT02.pdf

CAT02.06 KopexEx Hazardous Location Conduit Systems.pdf

CAT26.02 KopexEx Stainless Steel Conduit Systems.pdf

 

 

 

 

 

 

 

 

내 기술지원 및 구매상담처

CUSTOMER SUCCESS IDK

deric@jadongwha.com

www.tiatip.com

 

 

 

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토마스앤베츠의 대표적 방폭브랜드 DTSKOPEX-EX 를 소개합니다


안녕하세요 TIATIP 입니다.

 

T&B(Thomas&Betts,TNB)의 제품군 가운데 방폭과 같은 위험지역 및 관련 환경에 적용가능한 방폭형 조명, 피팅, 박스, 외함, 및 각종 접속자재를 소개합니다. 아래 카탈로그를 참고하시기 바랍니다. DTS, KOPEX-Ex, Lighting, Boxes, Cabinets, Conduits, Fittings & Accessories for Hazardous and Hostile Areas

 

 

 

Contents

Oil & Gas-Upstream Applications

Oil & Gas-Midstream Applications
Oil & Gas-Downstream Applications
Food & Beverage Applications
Chemical & Pharmaceutical Applications
World Standards & What They Mean
Zone Defi nitions-Onshore Gases & Vapours
Zone Defi nitions-Offshore Gases & Vapours
Zone Defi nitions-Dust
DTS-Product Marking Guide
Kopex Ex-Product Marking Guide
Index of Ingress Protection
Photometry

 

Ex Lighting Fittings

Lighting Fittings - Selection Guide
Ex Lighting
XFF Range - Ex d
XFP Range - Ex de
XEL Range - Ex d
XEP Range - Ex de
XF Range - Ex de
XFB / XFL Range - Ex n
XDF Range - Ex nA
EVS Range - Ex de
EVN Range - Ex n
EVD Range - Ex t
ESB Range - Ex de

 


 

 

Ex Emergency and Escape Lighting
XFF-EM Range - Ex d
XFP-EM Range - Ex de
XEL-BAES Range - Escape Lighting - Ex d
EVS-EM Range - Ex de
EVS-EMA Range - Ex de
EVN-EM Range - Ex n
EVN-EMA Range - Ex n
EVD-EM Range - Ex t
EVD-EMA Range - Ex t
ESB-EM Range - Ex de

 

 

Industrial Lighting
FF Range
EL Range
SF / QF / HF Range
EVT Range
EST Range
FB / FL Range
HF Range

 

 

 

 

 

Industrial Emergency Lighting
FR-EM / FF-EM Range
EVT-EM Range
EVT-EMA Range
EST-EM Range
Lighting Accessories & Spare Parts
Lamps Guide

 

 

 

              

 


Ex Boxes & Enclosures
Boxes & Enclosures - Selection Guide
XBL Range - XB100 Junction Boxes - GRP
XBL Range - Junction Boxes - GRP

XBL Range - Instrumentation Boxes - GRP
XBL-A Range - Control Boxes - GRP
XB Range - Instrumentation Boxes - Aluminium

XB-A Range - Control Boxes - Aluminium
XBi Range - Instrumentation Boxes - Stainless Steel
XBi-A Range - Control Boxes - Stainless Steel
GUV Range - Junction Boxes - Aluminium
EFDC / SRC / XMC Range - Control Boxes - Aluminium
EJB Range - Custom Built Panels - Aluminium
Box Accessories & Spare Parts

 

 

 

Conduit Systems
Conduit Fittings
EXB / EXBB Range
EXBQM / EXPQA Range
EXLB / EXLT / EXLH / EXBBT / EXLHC Range
EXSB / EXST / EXSH / EXSBBT / EXSHC Range
G1 Gland

90º Elbow Gland
Group II Gland
Universal & Universal Swivel Gland
PA / PAP NPT Range
PE / PEP ISO Range
PA-B / PAP-B NPT & ISO Range
XP Flex Range
Enlargers, Reducers

Thread Convertors

Ex d Stopping Plugs

Ex e Stopping Plugs

Ex Accessories

 

 

 

 

 

 

 

  

DTS KOPEX Hazardous Area Catalogue Part 1of2.pdf

DTS KOPEX Hazardous Area Catalogue Part 2of2.pdf

T&B Products Lineup Company Profile 2011EN IDK.pdf

 

 

 

 

 

 

T&B, TNB, TaNdB

Thomas&Betts, ThomasaNdBetts

티앤비, 티엔비, 티앤드비, 티엔드비

토마스앤베츠, 토마스앤배츠, 토마스엔베츠, 토마스엔배츠

토머스앤베츠, 토머스앤배츠, 토머스엔베츠, 토머스엔배츠

  

 

 

 

 

  

내 기술지원 및 구매상담처

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deric@jadongwha.com

www.tiatip.com

 

 

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안녕하세요 TIATIP 입니다.

 

오늘은 DTS시스템에 대한  첫번째 시간으로 DTS Basic을 살펴보겠습니다.

 

전체적인 개념으로는 DMS(Distributed Monitoring System)에 속하는 개념으로서

DTS는 Distributed Temperature Sensing 또는 Distributed Temperature System으로 불리우며 주로 154kV이상의 Power Cable의 온도모니터링(DTS)과 동적허용전류산출과 같은 DRS개념으로의 Smart Grid(스마트그리드)사업에 응용되고 있습니다.  때로는 DTMS(Distributed Temperature Monitoring System)으로 알려져있기도 합니다. 또한 산업플랜트환경에서는 LDMS(Leakage Detection Monitoring System)으로도 활용되고 있습니다.

이처럼 기본적인 원리를 바탕으로 다양한 애플리케이션이 가능한 시스템이며, DTS, DTS, LDMS 이외에도 FBG, DAS 등 다양한 확장 응용이 가능하다 하겠습니다.

 

 

 

 

DTS Basic

 

The fiber optic Distributed Temperature Sensing (DTS) method using the Raman-effect was developed at the beginning of the 1980s at Southampton University in England, UK.

 

The DTS method is based on Optical Time-Domain Reflectometer (OTDR) technology and uses a technique derived from telecommunication cable testing.

 

The fiber optic-based DTS method measures temperature using optical fiber instead of thermocouples or thermistors, as has typically been the case in the past. DTS systems represent a cost-effective method for obtaining thousands of accurate, high-resolution temperature measurements.

 

Fiber optic-based distributed temperature monitoring is of a particular advantage in several common situations:

 

 

 

지중선로 및 지하공동구 접속공사

 

 

 

 

1. When there are a large number of sensors to be placed.

If it is necessary to place a lot of temperature sensors for complete monitoring, then the ease of installation of fiber optic DTS becomes apparent. A single optical fiber can replace many point sensors, so all that is necessary is to route the fiber so that it provides the necessary measurement coverage and density.

 

2. When there is no a priori knowledge of sensor placement.

When the preliminary engineering is performed on a project, it is not always possible to determine the correct location for temperature sensors. The high spatial resolution and long range of a fiber optic sensor allows the operator to select which parts of the fiber to monitor after the project is complete.

 

3. When electrical temperature monitoring is impractical.

In a situation where there is a large amount of electromagnetic noise, the data being read from thermocouples and thermistors can be corrupted. However, the data being read by the DTS is purely optical and thus immune to contamination in this kind of environment.

 

4. When electrical temperature monitoring is unsafe.

There is a risk of sparking inherent in all electrical systems. If the atmosphere in the area being monitored is in danger of becoming volatile, then the fact that a fiber optic DTS does not present a spark hazard can be a significant safety advantage.

 

 

 

 

해당 측정 및 연산을 통해 다음과 같은 결과차트가 생성됩니다.

 

 

 

이 같은 결과차트를 DB로 구축하고 시각화(Visualization) 또는

GUI(Graphic User Interface) 작업을 하여 사용자편의성을 갖추게 됩니다.

 

 

 

DTS Technique Described

 

In the DTS technique, a pulsed laser is coupled to an optical fiber through a directional coupler. Light is backscattered as the pulse propagates through the fiber, owing to changes in density and composition as well as to molecular and bulk vibrations. In a homogeneous fiber, the intensity of the backscattered light decays exponentially with time.

 

Because the velocity of light propagation in the optical fiber is well known, the distance can be determined from the time-of-flight of the returning backscattered light. The backscattered light consists of different spectral components due to different interaction mechanisms between the propagating light pulse and the optical fiber.

 

These backscattered spectral components include Rayleigh, Brillouin, and Raman peaks or bands. The Rayleigh backscattering component is the strongest due to density and composition fluctuations and has the same wavelength as the primary laser pulse. The Rayleigh component controls the main slope of the intensity decay curve and may be used to identify the breaks and heterogeneities along the fiber. The Rayleigh component is not sensitive to temperature.

 

The Brillouin backscattering components are caused by lattice vibrations from the propagating light pulse. However, these peaks are spectrally so close to the primary laser pulse that it is difficult to separate the Brillouin components from the Rayleigh signal.

 

The Raman backscattering components are caused by thermally influenced molecular vibrations from the propagating light pulse. Thus, their intensity depends on temperature. The Raman backscattered light has two components that lie symmetric to the Rayleigh peak: the Stokes peak and Anti-Stokes peak.

 

The intensity of the Anti-Stokes peak is lower than that of the Stokes peak, but is strongly related to temperature; whereas the intensity of the Stokes peak is only weakly related to temperature. By calculating a ratio of the Anti-Stokes to Stokes signal intensities, an accurate temperature measurement can be obtained. Combining this temperature measurement technique with distance measurement through time-of-flight of light, the DTS provides temperature measurements incrementally along the entire length of the fiber.

 

   

 파워케이블에 온도모니터링에 활용되고 있는 광복합케이블

 

 

     

파이프라인의 누수감시에 활용되고 있는 DTS시스템

 

 

     

산업플랜트분야에서 더욱 강화되고 있는 모니터링시스템

 

 

 

국내 기술지원 및 상담구매처

CUSTOMER SUCCESS IDK

www.jadongwha.com or www.tiatip.com

 

 

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