999精品免费视频 I 在线欧美激情 I 亚洲丰满少妇毛片 I 欧美三级在线观看视频 I 久久久久久91香蕉国产蜜臀 I 成人精品视频m3u8 I 国产一级淫片a直接免费看 I xxxx亚洲 I 国产精品秘入口18禁麻豆免会员 I 短视频在线观看 I 亭亭色 I 久久精品av麻豆 I 九九热爱视频精品视频 I 欧美一区二区三区日韩 I 三级黄色在线视频 I 国产高清激情 I www.毛片com I 成人啪啪18免费网站看 I 少妇无码av无码去区钱 I 欧美日本中文字幕 I 日本黄色wwww I 成人亚州 I 久久久久久久久毛片精品 I 国产欧美日本在线 I 成人性生交大片免费看中文视频 I 亚洲 日本 欧美 I av操一操 I 操操操视频 I 色欲人妻aaaaaa无码 I 九九九在线视频 I 乱子伦av无码中文字 I 甜性涩爱下载 I 国产精品女同一区二区三区 I 我和大叔的激情生活 I 国产一二三四ts人妖

EnglishGermany
PRODUCT.產品

Gas transmitter - ADOS GTR 210

The gas transmitter ADOS GTR 210 is suitable for continuous measurement of gases in normal areas and areas where there are risks of explosion.

Available basic versions:
– Ex-version: with current interface 4-20 mA
– Standard: 4-20 mA or LON?-4-wire techniques
– Comfort: 4-20 mA, with additional changeover contacts for alarms and failure

The type test of the explosion-protected gas transmitter, is completed by the KEMA.
ATEX certificate: DEKRA 11ATEX0257 X
IECEx certificate: IECEx DEK 11.0090X
Type of protection: Ex d e ia mb IIC T4 Gb
  • 技術參數
  • 產品特點
  • 應用領域
  • 資料下載
Type TGS VQ GOW
Measurement method Semiconductor Heat reduction Thermal conductivity
Measurement range ppm ranges
to 100 % LEL
ppm ranges
to 100 % LEL
from 0-5 Vol%
to 0–100 Vol %
Percentage error
of f.s.d.
±5 % ±3 % ±5 %
Temperature range -25 °C to +55 °C -25 °C to +55 °C -25 °C to +55 °C
Temperature effect 3 % 2 % 3 %
Response time (t90) approx. 55 s approx. 40 s approx. 55 s
Pressure effect 1 % 1 % 1 %
Mounting position optional optional optional
Application Poisonous,
combustible and
explosive gases
in the LEL?region
Poisonous,
combustible and
explosive gases
in the LEL?region
Gases exhibiting
substantial differences
in thermal conductivity,
compared to air
Versions available industrial (Al),
industrial (VA)-
and Ex-version
industrial (Al),
industrial (VA)-
and Ex-version
industrial (Al),
industrial (VA)-
and Ex-version
Expected lifetime
of the sensor
unlimited, when used
for gases not causing
catalytic poisoning
unlimited, when used
for gases not causing
catalytic poisoning
unlimited, when used with gases that do not attack aluminium, rhenium-tungsten or gold
Dimensions
(W x H x D)
150 x 175 x 105 mm 150 x 175 x 105 mm 150 x 175 x 105 mm


 

Type TOX IR PID
Measurement method Electro-chemical reaction Infrared Photo-Ionisation
Measurement range ppm ranges
to 0–100 Vol %
0-100 % LEL CH4, C3H8,
C2H2, 0-100 Vol % CH4
0 –1, 2, 3, 4, 5 Vol % CO2
0 – 200 ppm to
0 – 2.000 ppm
Percentage error of f.s.d. ±3 % ±2 % ±5 %
Temperature range -25 °C to +55 °C -25 °C to +55 °C -25 °C to +55 °C
Temperature effect 2 % 2 % 3 %
Response time (t90) approx. 60 s approx. 45 s approx. 120 s
Pressure effect 1 % 4 % 1 %
Mounting position optional optional optional
Application O2, CO, NH3, NO2, SO2, H2S and others CH4 (Vol %; LEL) Propan (LEL), CO2 (Vol %) e.g. C7H8, C8H10
CHCl3, PH3
Versions available industrial (Al),
industrial (VA)-
and Ex-version
industrial (Al),
industrial (VA)-
and Ex-version
industrial (Al),
industrial (VA)-
and Ex-version
Expected lifetime
of the sensor
12 months to 5 years
depending on the
measuring cell
approx. 5 years 12 months
Dimensions (WxHxD) 150 x 175 x 105 mm
150 x 200 x 105 mm (O2)
150 x 175 x 105 mm 150 x 175 x 105 mm




Technical data – for all 3 basic versions of gas transmitter

Type GTR 210 Ex-Version GTR 210 Standard GTR 210 Comfort
Supply voltage 24 V DC +10% / -25% 24 V DC +10% / -25% 230 V AC, 50 Hz
115 V AC, 60 Hz (optional)
Power consumption 4 W 4 W 10 VA
Interface 3-wire techniques with current interface 4 – 20 mA 3-wire techniques with current interface 4 – 20 mA or LON®-4-wire techniques 1 current output 4 – 20 mA
4 potential-free changeover contact for alarm/failure
1 digital input for cancelling alarms
Type of protection II 2G
Ex d e ia mb IIC T4 Gb
none none
Ex-version ATEX certificate:
DEKRA 11 ATEX 0257 X
IECEx certificate:
IECEx DEK 11.0090 X
   
Protection class IP 54 IP 54 IP 54
Weight 2,3 kg 1,8 kg 2,0 kg



 

By employing 6 different types of sensor, noxious, explosive and non-combustible gases and vapours can be measured.

Display of the measured gas concentration and the adjustable alarm thresholds, are shown on a multi-colour graphic display. The keyboard input is by way of a touchpad.

A current signal is generated that is proportional to the measured concentration of gas, which is transmitted to an evaluation unit placed in a safe area, away from any dangers of explosion.

TOX sensor
The TOX sensor is a measurement system with electro-chemical cell, where the sampled gas is measured by diffusion. In the case of oxygen measurement the oxygen content is in an electrolyte, thus producing a small flow of current (electro-chemical process).
At a constant air pressure, this current is directly proportional to the oxygen concentration in the sampled air.


1 = Anode
2 = Electrolyte
3 = Cathode
4 = Diffusion path
5 = Diffusion filter
6 = Test gas



TGS sensor
The TGS sensor contains a semiconductor sensor, which is ­constructed on SnO2-sintered N-substrate.

When combustible or reducing gases are absorbed by the surface of the sensor, the concentration of the test gas is determined by the change in conductivity.



1 = Circuit voltage
2 = Heating voltage
3 = Load resistor
 

The IR sensor
The test gas flows through a measurement chamber that incorporates an IR radiating source and a two-channel
infrared detector. The intensitiy of the infrared radiation is reduced as it passes through the gas molecules.The concentration of the gas can then be calculated by the magnitude of the reduction in intensity.

Since only absorption of the wavelength specific to the gas under test in relation to the wavelength not absorbed by a test gas is considered, interference due to dust, ageing etc., is almost compensated.

1 = Infrared-radiating source
2 = Test gas
3 = Diffusion filter
4 = Infrared-detector
5 = Measurement chamber



GOW sensor
The GOW sensor functions on the principle of thermal conductivity. Two rhenium-tungsten resistors are used as a measuring element, where the comparison element is subjected to normal ambient air and the measuring element is subjected to the test gas. Any change in the concentration of gas at the measurement element, causes a change in temperature, which is due to the variation of conductivity.
The resultant change in resistance is a direct measure of the gas concentration.


 

1 = Diffusion filter
2 = Test resistor
3 = Comparsion resistor



The PID sensor
The sampled gas flows through a measurement chamber, that incorporates a UV radiating source and a pair of
electrodes with opposing polarity. The gas molecules to be detected are ionized by the UV radiation.
The resulting positively charged molecules and the electrons are attracted to the relevant electrode. The current generated is a measure of the gas concentration.

Using the PID measuring head, volatile organic compounds (VOC) can be measured, the ionisation potential of which is less than the energy in the UV radiating source (10,6 eV), e.g. aromatic hydrocarbons like toluol (C7H8) and xylene (C8H10) as well as chlorinated hydrocarbons like trichloroethylene (CHCl3). The detection of toxic gases like phosphine (PH3) is also possible.


 

1 = UV radiating source
2 = Test gas
3 = Capacitive charge
 


VQ sensor
The head of the VQ sensor functions on the principle of heat ­reaction. When combustible or reducing gases or ­vapours come in contact with the measuring element, they are subjected to catalytic ­combustion, which ­causes a rise in temperature; this rise causes a change in the resistance of the measuring element which is used as a measure of the component of gas being tested.
The inert element is for compensating the temperature and conduc­tivity of the test gas.

1 = Catalyzer pellistor
2 = Electric connections
3 = Inert pellistor
4 = Diffusion filter

 



 

  • Chemical industry
  • Manufacture of paints and varnishes
  • Plastics processing plants
  • Sewage works
  • Gas-fired boiler systems
  • Liquid gas storage houses
  • Laboratories
  • Oxygen concentration measurements
  • Refineries
  • Cold storage houses (Ammonia monitoring)
  • Paint spraying booths
  • ... and many more.
版權所有 ? 2004- 深圳市昂為電子有限公司 ONUEE / ONWARDS(HK) Ltd. All rights reserved. 粵ICP備09176163號/
主站蜘蛛池模板: av在线大全 | 人妻丰满熟妇岳av无码区hd | 国产suv精品一区二区四 | 亚洲欧美中文字幕 | 日本两人免费观看的视频 | 人妻互换精品一区二区 | 国产美女极度色诱视频www | 国产无夜激无码av毛片 | 91免费官网 | 一本伊大人香蕉久久网手机 | 五十路熟妇亲子交尾 | 日本一区二区三区免费观看 | 天天操天天透 | 99精品一区二区 | 狠狠干夜夜撸 | 久久精品一区二区三区四区 | 日本免费精品一区二区三区 | 国产在线精品一区二区三区不卡 | 国产乳摇福利视频在线观看 | 99精品国产在热久久婷婷 | 欧美黄 片免费观看 | 日本一区二区三区不卡在线看 | 亚洲欧美在线视频免费 | 青草九九 | 免费观看一级特黄欧美大片 | 国产一区二区三区高清在线观看 | 被摁着灌浓精囚禁高h1v1 | 王骏迪的个人资料 | 成年女人粗暴毛片免费观看 | 日本成人在线网站 | 亚洲精品第五页中文字幕 | 人妻熟人中文字幕一区二区 | 人人妻人人澡人人爽欧美一区 | 97国产精东麻豆人妻电影 | 天堂国产一区二区三区四区不卡 | 国产婷婷精品av在线 | 66亚洲一卡2卡新区成片发布 | 久久成人一区二区 | 日本簧片在线观看 | 污污内射在线观看一区二区少妇 | 一出一进一爽一粗一大视频 | 可以直接看的无码av | 精品无码一区二区三区在线 | 99久久无色码中文字幕人妻蜜柚 | 日本网站在线播放 | 青青在线香蕉精品视频免费看 | 日韩国产成人精品视频 | 免费观看一级特黄欧美大片 | 国产精品久久久久久影视 | 96自拍视频 | 日日碰狠狠添天天爽超碰97久久 | 国产成人精品午夜2022 | 在线观看国产wwwa级羞羞视频 | www.国产视频 | 日韩爽爽爽视频免费播放 | 偷拍免费视频 | 斗罗破苍穹在线观看免费完整观看 | av小说在线 | 草草视频免费观看 | 久久久久久久久国产 | 精品国产一区二区三区久久久狼 | 久久人人爽天天玩人人妻精品 | a三级毛片 | 天天爱天天做天天干 | 成人a视频片在线观看免费 中文字幕三区 | 国产呻吟久久久久久久92 | 日本色播| 欧美成人久久 | 日日碰日日操 | 91av在线免费 | 精品视频手机在线观看免费 | 四虎影视最新网站在线播放 | 久久久久久久久久爱 | 久久99亚洲精品久久99果 | 欧美性猛交久久久乱大交小说 | 成人啪啪97丁香 | 国精产品999国精产品官网 | 国产精品高清在线 | 国产精品人成视频免费播放 | 97超碰人人草 | 国产成人偷拍 | 91精品天美精东蜜桃传媒免费 | 亚州老熟女A片AV色欲小说 | 亚洲午夜久久久久久久久电影网 | 污视频免费观看网站 | 来个毛片 | 玩弄少妇高潮ⅹxxxyw | 免费国产黄线在线观看 | 欧美一级久久久久久久久大 | 亚洲中文字幕av一区二区三区 | 一级欧美在线的视频 | 人妻体内射精一区二区 | 国产乱码精品一区二区三区五月婷 | 久久精品一级 | 一级欧美毛片成人 | 久久精品中文字幕一区二区三区 | 亚洲人人视频 | 哪里可以看免费的av | 浮力影院国产第一页 |