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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 [...]

Echocardiography Experiment

Echocardiography Experiment Customer Case This customer is involved in an Echocardiography experiment. The customer already has an ultrasound imager with a built-in A/D converter which can output 12-bit image data which must be analyzed with the customer's proprietary algorithms on a PC platform. In order to accomplish this, it is required to bring 12-bit digital data at 35 MHz clock rate into a PC. This data is arriving in a burst mode with a repeat frequency of 12.8 KHz with 1000 samples arriving in 28 us followed by no data for the next 50 us. There are 512 such [...]

By |March 12th, 2023|Comments Off on Echocardiography Experiment

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 [...]

Ultrasound Imaging

Ultrasound Imaging Customer Case This customer's application involves capturing ultrasound echoes from a medical imaging system, to be used in bedside monitors, defibrillators, intervascular ultrasound, ECG, etc. The live imaging rate is 30 frames per second (fps). Each image frame depicts a full 360-degree circular section. A frame is 240 echoes, so the pulse repeat frequency (PRF) is 7200 Hz, or one echo every 140 us. The customer anticipates signals at 50 MHz with a 50% bandwidth (the passband must extend to at least 75 MHz). The echo duration is 15 us; the signal size is roughly +/- 70 [...]

By |March 12th, 2023|Comments Off on Ultrasound Imaging

Ultrasonic Imaging

Ultrasonic Imaging Customer Case The customer is digitizing signals returned from an ultrasonic transducer used in the study of cardiac phenomena. At the moment, a 5 MHz transducer is being used, but the customer wants to upgrade to a 10 MHz transducer in the near future. This transducer will give him better spacial resolution. The customer needs one channel of very fast (100 MSPS), preferably 12-bit A/D conversion which is controlled by an external trigger signal. Bandwidth of the analog front-end of the A/D card or system must be very flat up to 15 or 20 MHz. The application [...]

By |March 12th, 2023|Comments Off on Ultrasonic Imaging

SEPTA Case Study: Major Metropolitan Transit System Uses Vitrek Power Analyzer to Monitor High-Power DC Feeders

- - - Challenges Personnel needed a reliable, portable instrument to accurately measure and record the current on each feeder over a selected time period. - Overview The Southeastern Pennsylvania Transportation Authority (SEPTA) operates the transit system throughout the city of Philadelphia, extending into the surrounding counties in Pennsylvania and across the Delaware River into New Jersey. A major component of this system is the network of subways and commuter trains. Power for the operation of these trains is provided by an array of substations distributed throughout the region. One [...]

By |April 7th, 2020|Categories: Brand-Vitrek, Case Studies-Vitrek, Industry: Transportation, News-Vitrek, Products-Vitrek, z1|Comments Off on SEPTA Case Study: Major Metropolitan Transit System Uses Vitrek Power Analyzer to Monitor High-Power DC Feeders

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 [...]

Ultrasound Tissue Imaging

Ultrasound Tissue Imaging Customer Case This customer is building a system to be used as a test station for examining human tissue for disease. Diseased organs differ from healthy organs in ways that can be measured via the echoes of ultrasound transmissions which are passed through the tissues. The customer's system will build a 3D image of the tissue under examination. In order to obtain a clear ultrasound image of the object being studied, the successive data captures have to be aligned to eliminate a distorted image. Jitter which would result from an asynchronous triggering is not acceptable. The [...]

By |March 12th, 2023|Comments Off on Ultrasound Tissue Imaging

Ultrasonic Medical Imaging System

Ultrasonic Medical Imaging System Customer Case A customer wants to construct an ultrasonic medical imaging system based on a transducer array. A central ultrasonic generation transducer generates a burst of ultrasonic energy which travels towards a tissue specimen. Echoes reflected off the tissue specimen are simultaneously detected by an array of 48 ultrasonic receiver transducers arranged in a dish-like pattern. The customer must simultaneously digitize all 48 signals and download them to PC RAM as quickly as possible. The customer requires 8 bit vertical resolution and would like to sample at 40 MS/s, but 20 MS/s would be acceptable. [...]

By |March 12th, 2023|Comments Off on Ultrasonic Medical Imaging System
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