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Wafer Backgrinding and Semiconductor Thickness Measurements

Wafer backgrinding is the first step in semiconductor packaging, the process of encasing one or more discrete semiconductor devices or integrated circuits (IC) for protection. Known also as wafer thinning or wafer lapping, backgrinding reduces wafer thickness to allow stacking and high-density IC packaging. Wafer thickness also determines package height, an important consideration as smartphones, laptops, and other electronic devices become thinner. With MEMS, wafer thinning also controls the proof mass for devices such as accelerometers or the diaphragm thickness for pressure sensors. Etching the surface of the wafer produces the IC but grinding the backside is what produces [...]

The Growing Need for Industry 4.0 Testing and Validation Tools

Industry 4.0 means that manufacturers need to test and validate more sensors. MTI Instruments 1510A portable signal generator can help. Industry 4.0 is spurring a dramatic increase in the number of sensors that manufacturers need to install, test, validate, and maintain. Although these industrial sensors are packaged to withstand harsh environments, they’re still susceptible to performance-related problems. Whether it’s to support predictive maintenance, asset monitoring, or process automation, proper testing and validation is required to keep systems running smoothly. Otherwise, the data that sensors collect won’t enable the operators of smart factories to make the right decisions. Smart [...]

By |January 21st, 2021|Categories: Brand-MTI, Industry-Cable Test, Industry-Compliance Testing, MTI Blog, News-MTI, Products-MTI-Capacitance, Products-MTI-Laser/Fiber Optic, Products-MTI-Signal Generators, Z-REPUB, z1|Comments Off on The Growing Need for Industry 4.0 Testing and Validation Tools

Silicon Carbide vs. Silicon in EV Power Electronics

Compare silicon carbide vs. silicon for electric vehicle (EV) power electronics and learn about SiC wafer measurement. As demand for electric vehicles (EVs) continues to grow, manufacturers are comparing two semiconductor technologies, silicon carbide and silicon, for power electronics applications. Silicon carbide (SiC) provides the high temperature resistance, low power consumption, rigidity, and support for smaller, thinner designs that EV power electronics need. Examples of SiC’s current applications include on-board DC/DC converters, off-board DC fast chargers, on-board battery chargers, EV powertrains, and automotive lighting for LEDs. According to Automotive World, SiC technology could also drive future EV innovations [...]

MTI Instruments Fulfills Historic Order for the United States Air Force

ALBANY, N.Y., November 16, 2020 — MTI Instruments, Inc. (“MTI Instruments”), the operating subsidiary of Mechanical Technology, Incorporated (OTC Pink: MKTY), announces the completion of its historic order for the United States Air Force, a $3.3 million contract awarded publicly in May 2020 that includes 52 PBS-4100+ engine vibration measurement and balancing systems. This order was made pursuant to the multi-year contract entered into by MTI Instruments and the United States Air Force in July 2016 and marks the single largest order of PBS-4100+ Systems received by MTI Instruments to date. MTI fulfilled the order in its entirety with [...]

By |November 17th, 2020|Categories: Application Notes-Vitrek, Brand-MTI, Industry-Aerospace, Industry-Government/Military, News-MTI, News-MTI-PBS, Press Releases-Vitrek, z1|Comments Off on MTI Instruments Fulfills Historic Order for the United States Air Force

EV Batteries Need Thickness Gauging for Lower Costs and Higher Performance

EV batteries need to cost less and last longer. Until the e-mobility industry solves these challenges, electric vehicle (EV) adoption won’t match the hype that’s driven by Tesla, the established automakers, and a host of startups who are attracting investors. According to Axios, the expense of owning an electric vehicle will exceed that of owning a conventional one until EV batteries cost less than $100/KWh to produce. Unfortunately, the EV industry isn’t expected to hit that target for another ten years. Yet, there is some encouraging news. Less expensive and better performing EV batteries are just a few years [...]

Transducer Selection for High Resolution Applications

High resolution applications do not always require an interferometer. If you want to make accurate measurements in the micron to picometer range, then an MTI Digital Accumeasure D100 HD or D200 system may be what you need. Laser interferometers can sell for more than $15,000 and be difficult to setup. For example, you may have to buy additional optics to guarantee a good return signal since the laser beam must reflect off a mirror surface or precision retro reflector in order for the beam to re-enter the interferometer’s optics at less than a degree of reflection angle. The downsides [...]

How to Measure Dielectric Separator Thickness in EV Batteries

The International Energy Agency predicts that as many as 125 million electric vehicles (EVs) will be on the road by 2030. At the heart of these electric cars, trucks, and buses is the lithium-ion (Li-ion) battery, a type of rechargeable battery with high energy density and low self-discharge. The plates in Li-ion batteries consist of lithium compounds that are applied to either a copper plate substrate (cathode) or an aluminum substrate (anode). In turn, these two plates are separated by a dielectric separator. All of the layers in an EV battery are extremely thin. In fact, the cathode and [...]

Capacitance Sensing for Non-Contact Thickness Measurements of Insulating Materials

Capacitance sensing can be used to make non-contact thickness measurements for most insulating materials. Capacitance sensors are known for their ability to precisely measure the thickness and position of conductive targets, but what’s less known is that these sensors can also measure the thickness of non-conductive materials. Examples include glass, sapphire, and plastics, as well as semi-insulating semiconductor materials such as GaAs and silicon nitride. Analog vs. Digital Technologies MTI Instruments, a global supplier of precision measurement technologies, takes the guesswork out of what used to be a complex measurement for non-conductive materials. MTI's Digital Accumeasure system features a [...]

Capacitance Sensing Provides Two Ways to Measure EV Battery Plate Thickness

MTI Instruments has released an application note that explains how to use capacitance to measure the thickness of the lithium battery plates in electric vehicles (EVs). Manufacturers need to check these plates for thickness before calendaring them together to ensure that the overall battery diameter is within specifications. In EV batteries, lithium ion compounds are applied to either a copper plate substrate (cathode) or an aluminum substrate (anode plate). These conductive plates are separated by a dielectric. MTI Instruments, a global supplier of precision measurement solutions, makes capacitance sensors that can measure thicknesses materials down to nanometers. Moreover, MTI [...]

How Aviation MROs Can Maximize Labor Efficiency and Asset Uptime

MTI Instruments is supplying the aviation industry with solutions to the skilled labor shortage and reduced equipment availability. No, our Albany, New York company isn’t providing aviation MROs with more flight line personnel, engine mechanics, or Boeing 737 MAX aircraft. Instead, we’re delivering precision measurement solutions that can help MROs to maximize labor productivity and asset uptime. Solving the Skilled Labor Shortage Aviation MROs have a choice. They can wait for training programs to provide new workers, poach workers from competitors, invest in robots, or look for ways to gain greater efficiency from existing labor assets. About 18 months [...]

By |March 10th, 2020|Categories: Application Notes-MTI, Brand-MTI, Industry-Aerospace, Industry-Compliance Testing, Industry-Government/Military, Industry-Manufacturing, Industry: Transportation, News-MTI-PBS, Products-MTI-Engine Balancing, Z-REPUB, z1|Comments Off on How Aviation MROs Can Maximize Labor Efficiency and Asset Uptime
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