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  • K4000微量氣體分析系統

K4000微量氣體分析系統 K4000微量氣體分析系統

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  • 型號K4000微量
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  • 更新時間2023-03-12
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  • 產品數量1883
  • 人氣值3906
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上海美盛自動化設備有限公司始創(chuàng)于2008年,公司主要經營產品:1,自控和工程2,環(huán)保監(jiān)測設備和工業(yè)安全防爆設備3,實驗室和在線分析產品4,醫(yī)藥化工食品設備工程(制藥機械,水處理設備,壓力容器設備的加工生產以及工程安裝)5,電子半導體設備工程(無塵無菌室工程設計施工,機電工程,儀器儀表)6,工業(yè)和民用消防工程(Honeywell,Protectwell,esser,ansul,tyco,vesda等)公司的辦公地址位于上海市閔行區(qū)莘莊工業(yè)商務區(qū)。公司自創(chuàng)辦以來,一直致力服務于石油,石化,天然氣,電力,水泥,煤化工,以及醫(yī)藥化工,電子半導體,食品等行業(yè),同時為各行業(yè)提供綜合服務,通過**的非標生產制造技術,高標準的設備以及工程設計豐富的施工經驗獲得了擁護的贊譽。在環(huán)境分析儀器和工業(yè)安全火氣監(jiān)控設備方面主要的產品有:粉塵分析儀,火焰檢測器,火花探測器,高純特氣在線分析,微量氧分析,工業(yè)CEMS煙氣分析系統,以及供氣式呼吸防護產品,過濾式呼吸防護產品,頭臉眼耳手足防護產品,身體和跌落防護產品,便攜式氣體檢測儀,固定式氣體檢測儀,消防設備,環(huán)境檢測產品等。在實驗室和工業(yè)分析檢測設備方面的產品有:實驗室分析儀器,過程檢測系統,產品檢測設備,商用衡器工業(yè)稱重和系統等。在醫(yī)藥化工食品設備工程方面的主要產品有:醫(yī)藥化工,石油化工設備安裝施工,低壓配電裝置,工業(yè)自動化儀表,主導產品為各種反應釜,電加熱釜,換熱器,不銹鋼輸送機,儲罐,計量罐,過濾器,薄膜蒸發(fā)器,真空罐,發(fā)酵罐,層析柱,配液罐,多效蒸餾水機,純蒸汽發(fā)生器,冷凍千燥機,乳化機,全自動純水制備系統,全自動CIP在線清洗系統,不銹鋼管道,閥門以及配件,衛(wèi)生型水泵,過濾器,呼吸器,衛(wèi)生級不銹鋼制品,符合CGMP/FDA/TGA要求認證的醫(yī)藥化工設備。在電子半導體設備工程方面主要的產品有:機電設備供應和工程安裝,無塵無菌室工程設計施工,潔凈管道,暖通空調,潔凈室,自動化控制設備,采購管理,施工安裝,調試以及驗證服務等。上海美盛自動化設備有限公司是貿易公司,康洛吉自動化系統工程(上海)有限公司是工程公司,兩家公司是兄弟公司。PROFESSIONAL專業(yè)TECHNOLOGY技術INNOVATION**SERVICE服務
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K4000微量氣體分析系統1,空氣分離業(yè)務,其使用會受惠2,事實上,基本配置可以替換多達5臺分析儀 3,校準和采樣系統的成本的節(jié)省4,這種成本通常是*的 K4000 成本本身 5,電子、 特種氣體中,空氣分離、 鋼鐵工業(yè)和實驗室是這類產品的優(yōu)選
K4000微量氣體分析系統 產品詳情
K4000微量氣體分析系統
1,空氣分離業(yè)務,其使用會受惠
2,事實上,基本配置可以替換多達5臺分析儀
3,校準和采樣系統的成本的節(jié)省
4,這種成本通常是*的 K4000 成本本身
5,電子、 特種氣體中,空氣分離、 鋼鐵工業(yè)和實驗室是這類產品的優(yōu)選
6,可以用來分析測量H2,O2、 N2,Ar、 CH4、 鈷、 二氧化碳、 氖、 氙、 Kr、 和輕烴中的雜質。

K 4000

Applications

  • Air separation plants
  • Argon purification plants
  • Cryogenic truck loading stations
  • Specialty gas laboratories
  • Process control
  • Steel industries
  • Chemical plants
  • Gas management system
  • Welding gas control
Contrôle Analytique, a leading manufacturer of trace gas analyzers since 1993, is now offering the K4000 analyzer series with its patent pending plasma emission detector. Its unique features allow it to optimize plasma parameters for each impurity to be measured and all this in real time, something never achieved until now. Standard chromatographic configurations can be done, as for example: back-flush, heart cut, multiple sample loops, multiple separation columns and multiple detectors.

When configuration becomes complex, a slave chassis of smaller physical size can be added to allow more valves, columns and/or detectors. All of this under control of the K4000 mainframe. The unique nature of the plasma based detector makes it insensitive to momentary pollution or the absence of carrier gases.

The Air Separation business will benefit of its use. The fact is that the basic configuration can replace as much as 5 analyzers! Just think about the cost saved for calibration and sampling system. This cost is often superior to the cost of the K4000 itself! The electronic, specialty gas, air separation, steel industries and laboratories are some of the fields of application that the K4000 can fulfill. Typical measurements are impurities found in H2, O2, N2, Ar, CH4, CO, CO2, Ne, Xe, Kr, He and light hydrocarbons. Other applications are under development.


The K4000 easily fits in portable cart commonly used in semiconductor industries. The system is designed to operate as a process gas analyzer in stand alone mode. All of these features with an incredible simplicity of use and fast start-up.

Its flexible configuration permits it to adapt to many particular applications like lab, field or in process control. There is no separate data handling equipment or software required to quantify peak data. The concentration of each impurity is displayed. The K4000 is a basic mainframe tailored for the required application. The K4000 can be configured to execute measurements from ppb levels to percentage in a variety of backgrounds. In its basic configuration, the K4000 is configured with one detector and one separation column. An example of an application is the measurement of H2, O2, N2, CH4 and CO in Argon/Helium/Neon. CO2 can also be added to this list as an impurity.

Every system is shipped preconfigured and fully tested. All parameter settings are included in a report with the typical chromatogram. Most of the time, system has passed a minimum of 3 weeks running 24hrs/day for testing purposes.



Specifications

Detector New patent pending Contrôle Analytique plasma detector can be used with Argon, Helium and Neon as carrier gas. It can also be used with doped carrier gas. Other detectors can be used: Thermal conductivity detector (T.C.D.) Flame ionization detector (F.I.D.), to be released
Valves Diaphragm based chromatographic valves and/or Contrôle Analytique electrically actuated valves. All valves mounted in a purged enclosure. For diaphragm valves, the actuating gas is always the carrier gas, eliminating the possibilities of air contamination
Gas lines All stainless steel, passivated or electro polished
Columns Many column types and sizes may be used (defined by the final application) Ex: molecular sieve, poropak, Hayesep, etc.As for the analyze of Argon in O2, proprietary material is used. Various columns filled with catalyst material can also be used to eliminate interference caused by various backgrounds.
Gas connections 1/8" Compression Swagelok ®
Gas connections for trap 1/8" VCR
Sample flow Adjustable from 0 to 200 cc/minSample flow is electronically monitored and regulated Accuracy: ± 1% of full scale
Sample pressure 5 (35 Kpag) to 15 PSIG (103 Kpag)
Carrier flow requirement From 25 cc/min to 175 cc/min for one chassis. This is application dependant.
Carrier flow measurement Electronic flow transducer ranging from 0-200 cc/min Accuracy ± 1% of full scale
Instrument operating temperature 10 to 350C
NOTE: wide and rapid variation of temperature should be avoided
Weight 20 kg (44 lbs)
Dimensions Standard enclosure is rack mount 4U
Width: 19" (482 mm)
Height: 7" (177 mm)
Depth: 18" (460 mm)
Electronic system display: high resolution, TFT type color L.C.D. display with C.C.F.L. back light multi processor systems
A/D resolution: chromatogram: true 24 bit differential type converter
other inputs: 12 bit differential or single ended used for pressure, flow, temperature and voltage measurements
shielded flat membrane keyboard
flow transducer: thermal conductivity type, flow tables are already loaded in software for various gas types
Standard features Easy configuration and stand alone operation
one isolated 4-20 mA output
Remote range I.D. contacts
Two alarm dry contacts
System status dry contact
Electronic carrier flow monitoring
Electronic sample flow-loop control system
User's selectable carrier gas type
Accessories Palladium H2 separation device for fast measurement in pure H2.
Various traps: these traps can be mounted on the rear panel. Some of them can be regenerated in place. The type of trap to use is application dependant. Generally speaking, a trap is used in a configuration where the bulk part of the background is vented. The trap will get the background trace resulting in a zero baseline resolved peak. They are available for H2 and O2.
Gas purifier: the GP-200 series of gas purifiers is used to generate high quality carrier gases and zero calibration gas.
Sample stream selection system. The K4000 can be fed by a MSS or an ISS. These patent pending sample stream selection systems are the best available on the market. They allow sample stream selection remotely or locally. There is no sample stream cross contamination, air diffusion or dead volume.
Proprietary column for the separation of Ar and O2. This column is used when the measurement of Ar and O2 has to be done. The plasma detector for an Argon impurity has a sensitivity of 100 ppt. The separation is done from room temperature to 50ºC.
Optional features

  • Remote start digital input Isolated RS-232 communication ports for remote monitoring and control of the instrument
  • INTERNET (Web enabled) communication (to be released). Allows to monitor or control the K4000 from anywhere around the world!
  • Quick check configuration: When the background is the same as the carrier gas, this option allows a total gas purity verification as a GO-NO-GO. One sample injection is done, the G.C. column is by-passed and all impurities are injected at the same time. Based on the degree of change in the baseline, the total impurities of the gas may be evaluated. It takes less than 30 seconds to have the result. It is a useful option when troubleshooting gas distribution line integrity in semiconductor industries for example. In some cases it is possible to work with gas different from the carrier gas. Please consult factory.

Standard industrial I/O interface

Many plants still use the standard 4-20 mA output as the way to transmit a process value to a remote system. In this case, digital dry contact outputs are needed to transmit the range on which the analyzer is. All the industrial type I/O's, i.e. analog or digital, are mounted in a separate enclosure called the I/O Box. The I/O Box has its own power inlet, filter, transient protection and switch. There is a set of terminals to connect analog or digital I/O. There is a DB-15 connection cable between the K4000 and the I/O board. Moving away this type of I/O from the main chassis eliminates the possibility of interference and allows configuration tailored to specific needs. It is also possible to install the I/O Box close to remote PLC or DCS. In this case, an isolated serial communication scheme is done between the K4000 and the I/O Box.


Industrial process 4-20 mA analog output

Up to sixteen 4-20 mA outputs can be installed in the I/O Box. Each one can be associated with one impurity. For this reason they can be seen as a standard 4-20 mA representing the ppb, ppm or % of the associated impurity.

4-20 mA output characteristics Maximum load impedance: 600 ohms
Fuse protected
Transient protected
Isolated from power ground and analyzer electrical circuit
Each output is completely floating and isolated from each other
One 4-20 mA output can be programmed (user programmable) to retransmit the chromatogram instead of process value. This can be useful for remote diagnostic or to drive a separate third party integrator Analog output can be programmed to be over driven or under driven in case of system status alarm. This is a useful feature for older plants that have to be retrofitted. By monitoring remote process charts, one can know if the system is operating normally
Each 4-20 mA can be driven manually to calibrate remote monitoring system as for troubleshooting
Digital output System status dry contact output: Contrôle Analytique was the first analyzer manufacturer to integrate, in all gas analyzers that we manufacture, this unique diagnostic feature. This contact will change state to indicate if there are any anomalies inside the system that can make the analyzer readings unreliable.
Remote range identification output: normally each impurity has 2 operating ranges. There is one dry contact output for each impurity to indicate on which range the impurity is being measured. Can be set to be closed or open on range 2.
Process alarm output: for each impurity, two alarm level process set points can be entered to activate their respective alarm dry contact outputs. The peak being in alarm will also be indicated on the K4000 display.
Digital output characteristics Each digital output is dry contact single pole single throw (SPST), snubber protected, fused protected at maximum 1A, 250 VAC resistive load. Digital outputs have their separate terminals for each contact, no common connection between contacts.
Each digital output can be configured to be normally open (N.O.) or normally closed (N.C.)
Digital input There is, as an option, a remote start isolated digital input. When proper voltage pulse is applied on this input, an injection is started. Another injection can be started only when the cycle is finished. Multiple trigging is not possible eliminating erratic functioning.
Other digital inputs can be added and configured to answer customer needs.
Digital input characteristics Inlet voltage: 24 volts DC or AC
Transients and over voltage protected
Fuse protected
Input completely floating and isolated
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