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Dial Indicators
1. Always select the dial test indicator that best fits the application.2. Care should be taken while using a dial test indicator, try not to jolt the indicator, should you be unfortunate and drop a dial test indicator, get it re-calibrated/repaired before reusing it.3. Replace worn contact points only with those of a similar length from the centre of the ball stylus to the abutment shoulder.4. Always clean dial test indicators after use with a lint free paper or cloth and store the indicator in its box or in a dust free area.5. When using a dial test indicator, always position the dial test indicator in a horizontal plane to the surface media.6. Always use a rigid stand for mounting the dial test indicator.7. When measuring a rotating object, either between centres or in a vee block, ensure that the object is rotating in the correct direction. Never rotate the workpiece towards the contact point.8. When measuring a sliding object, only take readings when the object is moving directly towards the contact point, never away from the contact point or in a sideways manner.9. Avoid parallax errors by reading the dial directly from the front and square on to the dial.10. Never oil a dial test indicator as this attracts contamination, should the movement become erratic then the dial test indicator should be submitted to a reputable repair agent.11. Try not to expose dial test indicators to direct sunlight or in a high humidity environment.12. Never use a dial test indicator that has not been calibrated, if in doubt consult an appropriate authority.
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Geiger Counter
ONYX®
ONYX features a modern, streamlined look and the use of advanced technologies, making it a one-of-a-kind Geiger Counter. It weighs only 7 oz. (200g.) and measures a mere 5.1 X 2.6 X 0.9 in. (72 X 37 X 13 mm.) making it easy to transport. Despite its compact size ONYX is capable of detecting alpha, beta and gamma radiation with the same sensitivity as the IMI Inspector Alert™, and like the IMI Inspector Alert™ V2, ONYX is optimized for surface contamination measurements through use of its 2 in. pancake Geiger Mueller tube.
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Leadframe Inspection Machine
IV-L200
The IV-L200 is a leadframe inspection machine ideal for measuring leadframe dimension and pitch. Aside from identifying leadframe warpage, it is also used to detect bent or skewed leads as well as surface defects such as scratch, ink, and contamination, among others.
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SOLUBLE SALT TESTER
The PosiTector SST Soluble Salt Tester measures the concentration of soluble salts (salt contamination) on metal surfaces in accordance with ISO 8502-6, 8502-9. View Video
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Surface Contamination Monitor
IMI Inspector Alert™ V2
The IMI Inspector Alert™ V2 measures alpha, beta, gamma and x-radiation using a 2-inch “pancake” GM detector with high sensitivity to common beta and alpha sources. The easy-to-read digital display shows readings in your choice of µSv/hr, mR/hr, CPM, or CPS. The Total/Timer feature allows timed readings from one minute to 40 hours for precise measurement of low level contamination. An audible alert sounds when the radiation reaches a user-adjustable level.
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Surface contamination monitoring
Personal surface contamination monitor [IEC 61098/IEC 61256 compliant]. *Innovative plastic scintillation detector for beta rays
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Total Reflection X-ray Fluorescence (TXRF) Services
A highly surface-sensitive technique, TXRF is optimized for analyzing surface metal contamination on semiconductor wafers.
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Pulse AC Method Area Ionizers
ER-X Series
Panasonic Industrial Devices Sales Company of America
The ER-X Series Area Ionizers utilize the pulse AC ionization design to achieve high-speed charge removal of wide surface areas for high-volume production lines. In addition to supporting compressed air ionization, the ER-X also features both airless and low-pressure ionization modes for applications where tiny workpieces can be easily blown away. Additional features include automatic ion balance and discharge frequency control (manual control is also possible), flat discharge surface for easy cleaning, discharge needle air barrier design to reduce contamination of the needles, replaceable discharge needle unit for easy maintenance, and a dual head configuration for enhanced charge area and layout (2 different ionizer heads can be connected to a single controller).
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Analytical Techniques
Anderson Materials Evaluation, Inc.
Our numerous analytical techniques, we tackle a wide range of materials challenges and commonly combines several analytical techniques to fully address complex and multi-dimensional materials issues. Our materials analysis laboratory provides XPS surface analysis, thermal analysis (TGA, DSC, TMA), FTIR infrared spectroscopy, UV-Vis spectrophotometry and reflectivity measurements, gas chromatography – mass spectroscopy (GC-MS), SEM/EDX, optical microscopy, mechanical testing, electrochemistry and corrosion analyses, residual gas mass spectroscopy, contact angle measurements, surface contamination measurements, adhesive bonding failure analysis, facility testing for silicone contamination, mechanical testing, metallography and fractography, density and porosity measurements, volatile organic component testing, friction, and other analytical capabilities. We continue to upgrade and expand our arsenal of analytical techniques and custom analytical methods to support our customers’ needs.
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Chemical Testing
Accolade Engineering Solutions
To ensure product environmental compliance or to gain better understanding of your materials or processes, chemical testing is often required. AES has state of the art the equipment for chemical analysis. For elemental analysis XRF, SEM/EDS or ICP can be used. For molecular analysis GCMS, HPLC and FTIR may be used. FTIR may also be used for surface analysis of contamination and our microFTIR system is suitable for the smallest samples.
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Materials And Chemical Analysis
Anderson Materials Evaluation, Inc.
Materials characterization, failure analysis, quality control, and materials and process development services are offered. Our analytical techniques allow us to assess elemental and chemical material composition, thermal properties, coating thickness, electrochemical properties, surface chemistry, surface wetting, corrosion rates and pitting potentials, contamination and degradation problems, metallography, fractography, phase transitions, static coefficient of friction, adhesive bonding strength and causes of adhesive bonding failures, surface tension and surface energy, tensile and compressive strength, bend deflection, lapshear strength, elasticity properties, UV and visible light absorption and reflection, density and porosity, and many other material properties integral to improving your products.
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Capacitive Proximity Sensors
Sometimes you need to know what is hidden beneath a surface. Behind a wall, for example, inside a storage container, inside a shipping container, or behind a cover. Capacitive proximity sensors are ideal for level and feed monitoring. From solid material, such as paper or wood, to granules or liquids, they can be relied upon to detect what is happening in the production process and during final inspection. Is there something behind that cover? Is the finished package really full? How much paint is still left in the tank? For capacitive proximity sensors, these are easy questions to answer. SICKs capacitive proximity sensors are never far from the action. Sensing ranges between 1 and 25 mm allow them to be used in nearly all installation situations, making them extremely adaptable for a wide range of applications. These sensors are also remarkably resistant to interference. Impurities, contamination, dust, and airborne spray particles have little effect on them, nor does electromagnetic interference. No wonder they are installed in a wide range of industries, such as food and automotive, or in storage and conveyor systems.
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Surface Analysis and Materials Characterization Services
The Materials Characterization division of Evans Analytical Group is the leading global provider of surface analysis and materials characterization services. Our international network delivers world-class analytical services directly to you. EAG''s expertise in surface analysis, composition and contamination measurement, trace elemental analysis and microscopy can help you and your company meet your goals, no matter what high technology industry you work in.
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Absolute Contamination Standards (ACS)
The Absolute Contamination Standard (ACS) is used to calibrate instruments which size and detect particles on the surface of bare silicon wafers. Use ACS to characterize particles, before particles characterize products.
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Sample Pretreatment For Optical Emission Spectrometry
Samples are taken from molten metal, thin sheet, semi-complete or complete products. When sampling molten metal with a ladle, small quantities of molten metal are poured into a casting mold. Unnecessary parts of the sample are removed using a grinder or a cutter. As particles from a grinder may contaminate the surface of the sample, a lathe or milling machine is used (not a grinder) to cut soft samples such as white metal. If trace elements are not being investigated, a grinder or belt sander can be used. However, to minimize contamination, the grinding wheel or belt should be changed for each sample. Samples excised from semi-complete or complete products must be at least 12 mm in diameter. Small rod-shaped samples can be analyzed using special equipment.
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Surface Contamination Monitors
Small-sized devices for measuring the ambient dose equivalent rate and the ambient dose equivalent of X-ray and gamma radiation, as well as measuring the flux density of beta particles (AT6130).
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Surface Quality Monitors
PET manufactures and markets non-destructive, non-contact surface contamination and thin film detection models and automated systems (surface quality monitoring system) capable of detecting thin layer contamination, thin films and coating down to the Angstrom level. These systems represent a major breakthrough by providing, for the first time, a quantitative measure of surface cleanliness. As surface cleanliness verification instruments, in a part cleaning environment, these products are capable of validating the cleaning quality of all the part cleaning equipment available in the market. Any of SQM model series is capable of verifying metal contamination; monitoring absence/presence of organic and/or inorganic on virtually on surfaces of all metals. They are, price/performance, the most sufficient product available for testing surface of metals for surface cleanliness. These systems operate in an ambient environment, require no sample preparation or deposit of any agents on the surface. In any parts cleaning environment where the quality and efficiency of part cleaning equipment for removal of surface contamination is highly desired, these systems provide a scientific solution by quantitatively measuring the surface cleanliness. The SQM series has the sensitivity and operational simplicity required to provide fast and cost effective surface evaluation for all metals.
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Omicron Fiber Optic Connector
Teledyne Impulse-PDM’s Omicron 5030/5070 optical connectors utilize proven small form factor ferrule technology and are available for multi-mode or single-mode operation.The connectors are offered, as standard, in stainless steel to BSEN10088-3 Grade 1.4404 (316L), which is electro-polished to remove surface contamination, thus improving resistance to corrosion. Connector bodies can also be manufactured in other materials, either to address specific anti-corrosion requirements, or to increase depth rating. Engaging nuts are normally manufactured in naval brass to UNS C46400.
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Optical 12,000 Meter Connector
Teledyne Impulse-PDM’s 5135/5175 optical connectors utilize proven standard ferrule technology and are available for multi-mode or single-mode operation.The connectors are manufactured in Titanium Ti 6Al-4V, which is electro-polished to remove surface contamination, thus improving resistance to corrosion. The engaging nuts are also manufactured in the same grade of Titanium and the threads are coated with a Nickel/PTFE composite coating to prevent galling. The connectors have been qualifi ed to 12,000 meter operating depth.
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Surface Cleanliness
Surface cleanliness: Soluble salts & ion specific contamination (sulphates, chlorides, nitrates etc.) which are often invisible to the eye, together with amine blush (for amine cured epoxy coatings) can result in premature coating failure, resulting in high re-coating and maintenance costs. Elcometer has a range of test equipment for assessing surface cleanliness prior to applying a coating.
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Surface Cleanliness
Surface cleanliness: Soluble salts & ion specific contamination (sulphates, chlorides, nitrates etc.) which are often invisible to the eye, together with amine blush (for amine cured epoxy coatings) can result in premature coating failure, resulting in high re-coating and maintenance costs. Elcometer has a range of test equipment for assessing surface cleanliness prior to applying a coating.
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Surface Contamination Kit
138/2
The Elcometer 138/2 Surface Contamination Kit provides the user with a means for testing invisible surface contaminants including:pHchloride ionsironsalts
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Elcometer Bresle Patches
135B
Elcometer 135B Original Bresle Patches are used to determine surface chloride contamination and are self-adhesive rubber film patches with a sealed compartment for sampling soluble impurities from steel surfaces with a suitable solvent.
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Surface Quality Measurement System
SQM-500W
SQM-500 Surface quality Measurement system is used for the surface cleanness testing and analyze of sample. SQM provide a quantitative analysis of the cleanness of the surface, which was the first announced by us. The system can be used to non-contract detect the contamination of the surface and provide an accurate result immediately. The result can provide a powerful and real data for analyze, which is the insurance for the quality.
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TTC-1 Tracking Test Chamber
TTC-1
It is according to IEC60695 and IEC60112 (GB4207), the Tracking Test Chamber TTC-1 is intended for determining the degree of protection against formation of conducting paths in solid insulating materials, due to the electric stress and electrolytic contamination of the surface. This method simulates tracking currents on insulation material by providing drops between electrodes. During the process of normal use, insulating material may be exposed to moisture and dirt, if conductive, may cause stress and fire hazard.