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長沙大龍儀器設備貿易有限公司

檢測認證人脈交流通訊錄

智能電鍍層測厚

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  • 智能電鍍層測厚
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    • MMS®儀器使用不同的探頭和測試模塊,可以實現不同的測試方法。 FISCHERSCOPE® MMS®系列儀器是通用的涂鍍層和材料特性測量系統。模塊化設計使使用者可以組合和配置不同的測試方法,這樣實際上就可以測量任意的涂層/鍍層組合。MMS®系統可以配置多種Fischer智慧型探頭,這樣,使用者就可以下列測試方法中的一種或其組合實現無損測量:磁感應法,渦流法,BETA散射法,霍耳效應或電阻法。 由于其具備多種不同的測試方法,MMS®系列廣泛應用于多種場合:   電鍍車間,   線路板生產過程,   汽車廠,   航天機械廠,等等。 FISCHERSCOPE® MMS® FISCHERSCOPE® MMS® PC 涂鍍層厚度測量 線路板質量保證 一次測量油漆/鋅涂層 鋁制圓筒管和飲料容器上的涂層厚度測量 薄塑料片的厚度 測量奧氏體鋼和雙煉鋼的鐵素體含量 非鐵磁金屬電導率 按照客戶規定來記錄,管理和統計測量數據 使用現代SPC/SQC法來設定控制圖和統計測量數據 組織測量數據 RS232接口 LAN網線接口和USB 存儲器擴展(CF卡) 自動測量設備 安裝任何插入型模塊 有限 最多4個模塊max. 4 modules 最多8個模塊 液晶圖像顯示 背景燈 126 x 70 mm (5 x 2.75) 彩色,觸摸屏 170 x 125 mm (6.6 x 5) FISCHERSCOPE® MMS® PC   集鍍層厚度測量和材料測試與一體,FISCHERSCOPE® MMS® PC是一款簡潔并極其通用的臺式多功能測量系統帶數據檔案和測量數據處理能力。可用于手工的樣品檢測,以及過程控制和生產過程中的晝夜監控。可配合品種繁多的測量探頭以適用于各種不同幾何形狀和測量范圍的測試工件。 許多不同的插入式測試模塊允許組合成許多不同的配置以滿足用戶需求。模塊化的設計允許儀器在任何時候進行擴展。根據應用程式可安裝類似或不同的模塊。 配置舉例: 為了在印刷線路板制造上實現多用途的鍍層厚度測量, 可以在FISCHERSCOPE® MMS® PC中裝入模塊BETASCOPE®, SIGMASCOPE®/PHASCOPE, SR-SCOPE 以及PERMASCOPE® 。這樣的儀器配置就允許下列的測量:   連接器上金鍍層,焊接框架上鉛錫合金層,以及感光膜涂層。( BETASCOPE®模塊)   表面覆銅板厚度和通孔內的銅鍍層厚度。(SIGMASCOPE®/PHASCOPE模塊)   積層板和多層板上銅的厚度,不受背面銅層的任何干擾。(SR-SCOPE).   銅上阻焊膜厚度。(PERMASCOPE®) 在汽車零部件工業,FISCHERSCOPE® MMS® PC 配置模塊PERMASCOPE®, NICKELSCOPE® 和 BETASCOPE®以達到多用途的應用于:   活塞表面的石墨涂層或剎車盤上抗腐蝕涂層。(PERMASCOPE®)   活塞表面的含鐵鍍層(NICKELSCOPE®). 我們提供了大量的插入式模塊以達到最大的靈活性:   PERMASCOPE®模塊   NICKELSCOPE®模塊   BETASCOPE®模塊   SR-SCOPE模塊   SIGMASCOPE®-PHASCOPE 1/TEMPERATURE模塊   Module SIGMASCOPE®-PHASCOPE 2模塊   TEMPERATURE模塊   MMS® PC PCMCIA模塊   LAN/USB模塊   User-Friendly The FISCHERSCOPE® MMS® PC features a large, high-resolution color LCD touch screen. The touch screen enables quick and easy handling of measurements, storage, evaluation, and documentation tasks. The instrument operates with a Windows® CE based application software comparable with MSWord or MSExcel. The operation is simple, easy to learn, and uniform for all test methods. The MMS® PC offers practically unlimited memory for measurement parameters and values as well as up-to-date possibilities for network integration and online applications. Three measurement presentation choices are available to discern important information immediately (Numeric Display Mode, Control Chart Display Mode, Specification Limit Display Mode or Simple Operation Mode).       Evaluation The FISCHERSCOPE® MMS® PC saves the user from having to do complicated and extensive mathematical computations for the statistical evaluation of the measurement data. The statistical characteristics can be viewed and printed in list form and as graphics such as sum frequency and histogram.       Module PERMASCOPE® This plug-in testing module utilizes the magnetic induction and eddy current test method to measure:   Thickness of paint, lacquer, plastic, synthetic, metallic coatings such as zinc, chromium, etc. on iron and steel (non-ferrous coatings/ferrous substrates).   Thickness of paint, plastic, lacquer, ceramics coatings on non-ferrous metals such as copper, brass, aluminum, etc. (non-conductive coatings/non-ferrous substrates). Also for measurements of anodized coatings on aluminum and for coating thickness measurement of tubes and beverage made of aluminum.   Delta ferrite content in austenitic weld metal or duplex stainless steel.       Module NICKELSCOPE® This plug-in testing module utilizes the Hall effect method to measure the thickness of nickel or steel coatings on non-ferrous substrates. Use this module to measure:   Electroplated nickel coatings deposited on electrically non-conductive or non-ferrous substrates.   Thick non-ferrous metal coatings, e.g., copper, aluminum, or lead coatings on iron or steel.       Module BETASCOPE® This plug-in testing module utilizes the beta backscatter method. It allows the thickness measurement of coatings consisting of practically any material on any substrate under the condition that there is a difference of at least 5 atomic numbers between coating and substrate materials. This module is applied:   in the PC-board industry to measure the thickness of conformal coatings, SnPb, Au or Ni coatings.   in plating shops for the economical measurement of single coatings with hand probes.   in paint production and applications to measure the thickness of organic coatings on metallic substrates.   in sheet metal production and processing industries for quality inspection of anti-corrosive oil films, "Bonazinc" coatings, etc.       Module SR-SCOPE This plug-in testing module utilizes the electrical resistance method and is suitable for the surface copper thickness measurement on multilayers. Particularly Cu coatings on thin laminates, the starting material for multilayer pc-boards, as well as on multilayers with epoxy interim coatings can be measured.   Cu coatings with a thickness of 0.1 to 10 µm (0.04 to 0.4 mils) and 5 to 120 µm (0.2 to 4.7 mils) without interference of interim Cu.       Module SIGMASCOPE®-PHASCOPE 1/TEMPERATURE This plug-in testing module utilizes the phase-sensitive eddy current method. It is used for the measurement of the:   electrical conductivity of non-ferrous metals (automatic temperature compensation is possible with the probe integrated or external temperature sensor).   thickness of non-ferrous metal coatings, e.g. zinc, copper, aluminum etc., on steel and iron, especially in cases of high surface roughness or on electrically non-conductive substrates.   thickness of non-ferrous metal coatings with high electrical conductivity on non-ferrous parts with low conductivity, e.g. copper on brass or austenitic material.   thickness of plated nickel coatings on steel and iron.   copper coatings under solder resist.       Module SIGMASCOPE®-PHASCOPE 2 This module completes the module SIGMASCOPE®-PHASCOPE1/TEMPERATURE for the combination of the magnetic induction and eddy current phase-sensitive test method. It allows the one-step measurement of the individual thickness of a paint/zinc coating system (duplex coating) on steel and for copper plating thickness in bore holes of pc-boards.       TEMPERATURE Plug-in testing module for temperature measurement with the probe TF100 A (temperature probe with PT100 sensor) in a range of -20 °C to +80 °C (-4 to +176 °F). For some cases the temperature measurement may be useful, for the temperature compensation of measurements for example with the beta backscatter method or the electrical resistance test method.      

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