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EIT Power Map能量計

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  • 公司名稱東莞市艾華儀器設備有限公司
  • 品       牌
  • 型       號EIT Power
  • 所  在  地東莞市
  • 廠商性質經銷商
  • 更新時間2018/5/14 9:00:00
  • 訪問次數629
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東莞市艾華儀器設備有限公司專業從事各類進口國產涂裝檢測、光學儀器、及金相試樣儀器設備的代理經銷和國內外優質產品的推廣工作,為客戶提供質優價廉的產品,完善的技術支持和售后服務是本公司的一貫宗旨; 在過去數年里,艾華儀器以技術到位、高性能價格比、交貨及時、售后服務完善得到客戶的滿意和支持,我們將努力提高員工綜合素質,不懈致力于“您”的要求,專業化的技術支持和服務,以及良好的職業道德,不斷滿足“您”日益提升的需求! 公司主要代理經銷:德國Rosler振動耐摩試驗機,ERICHSEN德國儀力信PIG,美國NORMAN耐磨試驗機 美國TABER 耐磨試驗機,NORMAN耐磨試驗機紙帶、美國EIT 德國UV-DESIGN能量計 德國BYK百格刀(附著力試驗儀)、光澤度計、美能達分光光度計、色差計、美國DeFelsko涂層測厚儀、超聲波膜厚計、美國博勒菲,日本理音粘度計、細度計、耐磨機用測試橡皮擦條,用研磨輪,日本三菱鉛筆,3M 膠帶等。 金相顯微鏡,體視顯微鏡,電視顯微鏡,數碼顯微鏡,偏光顯微鏡3D顯微鏡,LCD顯微鏡及專業的圖像分析與專業的金相分析軟件等。金相微型切割機,金相拋光研磨實驗機、日本制PROTEC線徑線寬測量儀及金相實驗室整體解決方案等。選擇艾華儀器設備公司, 我們將成為您*的合作伙伴,愿艾華儀器與您同行,以*質的產品,Z真誠的服務,Z合理的價格,成為您永遠的朋友。我們隨時恭候您的光臨和垂詢!

鉛筆硬度計,百格刀,(德國/國產/美國/日本)UV能量計,德國Rosler振動耐摩試驗機,ERICHSEN德國儀力信PIG,美國NORMAN耐磨試驗機 美國TABER 耐磨試驗機,NORMAN耐磨試驗機紙帶、美國EIT 德國UV-DESIGN能量計 德國BYK百格刀(附著力試驗儀)、光澤度計、美能達分光光度計、色差計、美國DeFelsko涂層測厚儀、超聲波膜厚計、美國博勒菲,日本理音粘度計、細度計、耐磨機用測試橡皮擦條,用研磨輪,日本三菱鉛筆,3M 膠帶等。 金相顯微鏡,體視顯微鏡,電視顯微鏡,數碼顯微鏡,偏光顯微鏡3D顯微鏡,金相微型切割機
產品名稱:EIT Power Map能量計
詳細介紹:
信息內容:
測量并且圖解的UV光強表示為時間的函數(W/cm2);UV PowerMAP可同時測量4個光波段的UV能量密度(J/cm2),UV Map Plus只能測量一個光波段;
檢測系統的焦距,監測產品使用環境的溫度狀況;
比較多個燈的特征;
比較單個UV系統在不同時間的表現,或者比較不同系統;
使用PowerView軟件查看、分析、操作、儲存數據(數據以圖表方式顯示和儲存)

EIT Power Map能量計 產品信息

產品名稱:EIT Power Map能量計  
詳細介紹:
產品名稱:EIT Power Map能量計  
詳細介紹:

信息內容:
測量并且圖解的UV光強表示為時間的函數(W/cm2);UV PowerMAP可同時測量4個光波段的UV能量密度(J/cm2),UV Map Plus只能測量一個光波段;
檢測系統的焦距,監測產品使用環境的溫度狀況;
比較多個燈的特征;
比較單個UV系統在不同時間的表現,或者比較不同系統;
使用PowerView軟件查看、分析、操作、儲存數據(數據以圖表方式顯示和儲存)

Features (Benefits) :-

  • UV PowerMAP measures peak irradiance and total energy density in four spectral regions: UVA, UVB, UVC, and UVV

  • UV MAP Plus measures the peak irradiance and total energy density for any one channel

  • Collection and storage of up to I million data points for accurate UV and temperature mapping in your system

  • Collected data displayed in graphical and tabular forms in the PowerView software package

  • Ultra-fast, user-adjustable sampling rate - up to 2048 samples/second - ensures high resolution even at high speeds

  • Detachable Optics Head - allows the use of different optics heads with the Data Collection Unit to minimize downtime during recalibration

  • Offset optics for easy measurement at conveyor edge

  • Type J thermocouple records temperatures from 0-500°C


  • Low, narrow profile to allow access to most curing applications
  • Rugged aluminum chassis and stainless steel case

 

Application :-

  • Measure the performance of the entire UV process from the beginning of the system to the end

  • Evaluate lamp focus, reflector focus, and reflector efficiency in one spectral region with the UV MAP Plus and all four regions with the UV PowerMAP

  • Compare reflector materials and shapes, wavelength-specific degradation, and uniformity over time or to other systems

  • Compare spectral output, degradation, and uniformity of one or more UV lamps

  • Measure and document substrate temperatures during the cure process to prevent damage to temperature-sensitive materials

  • Track and store data for statistical quality control, regulation compliance, or historical comparisons

  • Print run data to attach to work orders, reports, or ISO and FDA audits

  • Archive measurement data to track system performance over time



Introduction

EIT's UV PowerMAP and UV MAP Plus are advanced measurement systems that measure and store UV energy, UV irradiance, and temperature information derived from their optics and thermocouple probes in UV curing processes. The UV PowerMAP simultaneously measures all four UV channels while the UV MAP Plus measures one channel.

The information is transferred to a PC where it is presented in graph and data format for viewing and analysis. The information is characteristic of the same energy and irradiance that would be impinged on an actual work piece passing through the curing process.

PowerView software
The UV PowerMAP and the UV MAP Plus are the ultimate tools for developing, monitoring, and maintaining UV curing processes. UV formulators, raw material suppliers, and equipment suppliers can take advantage of the UV PowerMAP's ability to measure all four UV channels to develop processes that are easily transferred from a laboratory to a production environment. The UV MAP Plus monitors the one UV channel specified (A, B, C, or V) when it is ordered. The UV MAP Plus was designed more for use on a production floor, and it is an economical alternative to the UV PowerMAP. With the PowerView software, the UV PowerMAP and the UV MAP Plus offer far greater resolution, data sampling, data storage, and data manipulation than previously available in mapping systems.

Variables such as reflector materials, reflector shapes, wavelength-specific reflector degradation and uniformity, and lamp focus can be documented. Companies using multi-lamp curing systems and those that are using different spectral lamps within a system will find these radiometers indispensable.

The UV PowerMAP and UV MAP Plus systems are composed of a data collection unit, detachable optic measurement head, and PowerView software package. The units measure UV energy in Joules/cm2 and UV irradiance in Watts/cm2. With PowerView, UV sample rates are adjusted from 128 to 2048 samples per second to match resolution and information requirements.

Setup View
PowerView uploads and displays the collected UV system data, unit configurations, and time/date stamps. This data is saved as a computer file that can be manipulated, customized, and exported into a spreadsheet by the user so the entire UV system can be evaluated.

Operation

The UV PowerMAP and UV MAP Plus are initially configured at the factory before they are shipped. Settings are easily viewed and changed in a Setup screen in PowerView. In Setup, the user can set the unit's configuration to best match the lamp system and get the desired data. The channels that are enabled, the time and date settings, port settings, and the UV sample rate are easily changed with the click of a mouse. The unit's maximum sample rate of 2048 samples/second and its ability to store up to I million data points ensures accurate and sharp resolution - even at high speeds.

The user inserts the unit into a stationary or conveyorized UV process for data collection in the same manner that an actual work piece would be inserted. The unit's low, narrow profile of only 0.5"H x 3.5"W allows usage in a wide range of demanding physical environments. The unit's optics are offset so it can collect data at the ends of the bulbs where lamp degradation tends to occur first.

Transfer View
Upon exiting from the curing environment, the unit is connected to a PC serial port via cable so that the "run" information can be uploaded into the PowerView application software.

The data transfer is initiated in PowerView's Transfer View screen, where the unit configuration and transfer progress are displayed. The user can enter information such as line speed, amp readings, lamp settings, types of bulbs, and any other information relevant to the run. The user can also see a preliminary view of the plot. A detailed look at the plot is available after the transfer is complete.

PowerView shows the status of a curing system in a clear, easy to read format. The user can see which lamps and reflectors in a system are well focused and performing most efficiently. PowerView's ability to compare two different runs is one of its most important features. The run data files are referred to as a "Sample" file and a "Reference" file.

Graph View
PowerView's Graph View screen shows the UV irradiance and temperature data for the runs in graphical form. The user can toggle the display of the temperature and any of the UV channels (for PowerMAP) either on or off. Graph View has a zoom feature to enlarge any portion of the plot, and cursor measurement for detailed analysis. The user can change the appearance or color of a curve, and a data-smoothing filter is available to improve plot viewing.

The Data View screen lists the total energy density (J/cm2) and the peak power density (W/cm2) for each active spectral channel. The average temperature and peak temperature readings collected by the thermocouple are also presented. If two files are open, Data View shows the differences between readings as absolute values and as percentages. Logged information and user-entered information is also displayed for both run files.

Data View
A Type J thermocouple probe is used for substrate temperature measurement. Temperatures from 0° to 500°C are recorded at 32 samples per second. This is an important function if curing is taking place on temperature sensitive substrates.

An over-temperature alarm alerts the user when the unit's internal temperature exceeds 65°C. This gives the user time to remove the unit from a thermally hostile environment before it overheats.

The UV PowerMAP and the UV MAP Plus are powered by nickel metal hydride (NiMH) batteries, which can be recharged approximay 500 times before needing replacement. An audible alarm sounds when the batteries need recharging.

Routine maintenance for the units consists of battery charging, cleaning, and returning the optics heads for routine calibration. Recharging is accomplished by a one-hour "quick" charge.

Keeping the optics clean is essential for getting proper measurement results, and it requires only cotton swabs and acetone. The case can be cleaned with isopropyl alcohol and a soft cloth.

Since the optics head disconnects from the DCU, only the optics head has to be returned for periodic calibration. It is connected to the collection unit by two mechanical pins and a row of electrical contacts, and locked into place by two setscrews. Another optics head may be purchased to avoid down time during recalibration or to upgrade from single to four-channel capability.

Summary

The UV PowerMAP and the UV MAP Plus have an enormous advantage over other UV measurement instruments on the market. Both allow the user to evaluate the entire lamp system to see how well it delivers UV light to the actual cure surface. Focused lamp systems with good reflectors typically cure more efficiently which is important considering that as much as 75% of the energy reaching the cure surface is reelected energy.

The collected data allows the user to adjust the curing process to ensure that the UV system is operating at maximum efficiency.

The data that is graphed can be archived for future reference or printed and attached to work orders for ISO or FDA audits. The historical data can be used to make comparisons between current runs and previous runs. UV lamps within a system can be compared to each other, or entirely different UV systems can be analyzed and compared.

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