Showing posts with label Testing. Show all posts
Showing posts with label Testing. Show all posts

Great Price DuraTrax for $5.36

6220B FT Inline Axle Front Aluminum Blue 5-40 Best




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6220B FT Inline Axle Front Aluminum Blue 5-40 Overview


This is Front Aluminum Front Inline Axle Blue.
Will work for the RC10/B2/10T/T2/GT and DS kits.

FEATURES: Blue aluminum inline axles

INCLUDES: Two aluminum axles

REQUIRES: Assembly onto kits

SPECS: Length: 1.103" (28mm)

COMMENTS: Works with only the Team Associated kits.

Associated

Part ASC6220B







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*** Product Information and Prices Stored: Mar 07, 2012 12:10:09

AE Develops Precision Amplifier For EMC Testing

AE Techron has developed the 7224 precision amplifier for the EMC compliance testing market. The precision amplifier can be used in a range of susceptibility test standards, including Ford EMC-CS-2009, DO-160, MIL STD 461 and T1.315-2001. Depending on the configuration, the 7224 can produce up to 1,500W and has an operating bandwidth of DC to 200kHz and a 70V/ms slew rate.

The precision amplifier can produce up to 30A of 13.5VDC with 2Vs peak to peak of line disturbances from DC to 150kHz. It can also produce up to 160Vp and 50Ap. The 7224 features a small chassis size (2U rack space, 45lb) for bench-top or rack-mounted operation. The amplifier will be available from 1 March 2010.

Bolt-On Load Cells For Wind-Turbine Testing

Applied Measurements has announced that it has seen a rise in demand for its standard and custom-designed bolt-on load cells for wind-turbine load testing. According to the company, with even larger 7.5MW and 10MW output wind turbines now under development, developers and manufacturers of next-generation turbines need to test new turbine blade designs and prototype platforms. This includes measuring and monitoring the loads on the platform and individual turbine blades.

To carry out these tests, small-scale wind-turbine models are normally constructed. Applied Measurements' Boss series of bolt-on strain sensors is designed to be attached directly to steel structures, including wind turbines, and is capable of detecting tensile, compressive and bending stresses. These forces can then be converted to a useable electrical signal, either using instrumentation provided by the company or by the customer's own systems. Peter Lewis, managing director at Applied Measurements, said: 'We've designed a number of load cells recently for wind energy applications.

'As well as load cells that measure vertical and horizontal forces on the turbine platform, we recently supplied a customer with a six-axis measurement system for monitoring the loads on the turbine blades. 'The system was fairly simple and comprised of our very robust, bolt-on load cells, which were positioned in the head of the wind turbine. 'Blocks were welded onto the head of the turbine, which the load cells were then attached to. 'The load cells monitor the stresses on the root of each turbine blade,' he added. Utilising the latest strain-gauge technology, each Boss strain sensor is manufactured from specifically selected high-grade alloy steel, with thermal coefficients of expansion matched to the structural steel of the wind-turbine platform or blade.

Each unit is temperature cycled to ensure that the effects of temperature fluctuations are minimised. To ensure complete protection from harsh environments, including high winds, rain and stormy weather, each sensor is fully encapsulated (potted) with a high-strength waterproof compound and sealed to IP65. Lewis said: 'To install the sensors to a wind turbine, each unit is supplied with a template to which the two mounting blocks are attached using high tensile cap head bolts. 'The mounting blocks are welded into position using the template, which is then removed and the bolt-on sensor attached in its place.

'The solution is simple but robust and the sensors are guaranteed for three years,' he added. According to Lewis, in another wind-turbine testing application, four of the company's load cells were positioned underneath each corner of a rectangular-shaped wind-turbine platform. Each load cell measures the vertical and horizontal forces on the structure, including the reaction and thrust forces present. These forces are constantly trying to tip over the structure while in operation; testing the loads at the prototype phase is, therefore, critical. As well as load cells for this project, Applied Measurements also supplied supporting instrumentation in the form of eight amplifiers.

Each load cell was set up to measure two axes on each corner of the platform. The load cells were custom designed and protected from the elements. Lewis claims that, as well as wind-turbine applications, the Boss series is also used in a variety of different weighing applications, including hoppers, silos, storage vessels, bins, tanks and overload protection systems on cranes, winches, lifts and presses.

Test Set Gets Bluetooth Low-Energy Testing Option

Anritsu has introduced a Bluetooth low-energy testing option that allows designers and manufacturers of Bluetooth products to conduct radio layer testing in compliance with Core Specification 4.0. With this option, engineers can use the MT8852B to complete a test script covering Bluetooth basic rate, enhanced data rate and low-energy measurements in <15 seconds by pressing a single key. The Bluetooth low-energy measurement option adds six low-energy test cases to the base MT8852B test set.

These test cases can be run as part of a test script to simplify creation of test programs and reduce test times. Bluetooth low-energy measurements are performed directly on the MT8852B, which controls the DUT using defined HCI or two-wire control commands. For development applications, the MT8852B low-energy measurement option is supplied with a PC application that displays low-energy reference test packets in graphical format, as well as providing clear pass/fail status for all supported measurements against the specified limits.

This facilitates the identification of the causes of any device failure during the critical design and development stages. Bluetooth low energy is ideal for applications that require occasional data transfer from devices that run for over a year from a single-button cell battery. Typical applications include sports and fitness devices such as heart-rate monitors, as well as medical products such as blood glucose meters and industrial sensors.