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Shock wave
short moment intense amplitude faster than sound wave
See Also: Wave, Long-Wave IR, Lightwave, Shear Wave, Sub-mm Wave, Microwave, Wavelet, Continuous Wave, Submillimeter Wave, Sine Wave, Millimeter Wave
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Ultrasonic Bolt Meter - Bolting System
Mini-MAX-Series
The MINI-MAX, Ultrasonic Bolt Tension Monitor, defines the state of the art in the measurement of the actual elongation produced by tightening a threaded fastener. The MINI-MAX can measure the elongation very accurately in fasteners of virtually any material from 1/2 inch to 4 feet in length. The measurement is achieved by determining the change in the transit time, of an ultrasonic shock wave along the length of the fastener as the fastener is tightened by any method. The on-board microcomputer automatically interprets this time measurement to display the time(nanoseconds), elongation, load, stress, or %strain from stretching a fastener. Through the use of high speed digital signal processing and automated diagnostics, the MINI-MAX minimizes the requirement for extensive operator training. With built in data recordation and reporting through an RS232 interface, the MNI-MAX offers an easy to use and reliable solution to the most difficult bolting problem.
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The Nanomotor®
The patented Nanomotor® is a piezo driven linear motor. It is a multifunctional basic part for many positioning and manipulation devices. It has a positioning stroke of up to more than a centimeter while operating with atomic resolution. The Nanomotor thus bridges eight orders of magnitude. The Nanomotor consists of a cylindrical housing and a slider with a free axial hole inside. It combines high resolution in the sub-nanometer range with a large positioning stroke. The Nanomotor utilizes a piezo tube for fine positioning and a shock wave produced by the same piezo tube for coarse movements. The small Nanomotor is half the size of a match stick. It can lift six times its own mass. Every point of its stroke can be reached with a speed of up to 1 mm/s. The Nanomotor also works in ultrahigh vacuum or even under water. It is driven by a PC card at a supply voltage of only ±15 volts.
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Acoustic Scoring System
AcoustiScore
Provide realistic weapons training. Consisting of a sensor and a data reception and display unit, the system senses the shock waves from passing projectiles and converts these waves into electronic signals for miss-distance measurement and display.
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High-acceleration Shock Tester
DP-1200-18
King Design Industrial Co., Ltd.
The precise-type high-acceleration shock tester can provide all half-sine short wave specification specified in JESD22-B110. To meet them, merely change different shock rubber-pad on shock seat. The wave is complete with high repeatability, able to provide user accurate test result.Conform to different test specs such as JESD22-B110 and IEC spec.High repeatability on consecutive shock; acceleration +/- 10%; run time +/- 15%; speed deviation +/- 10%.Table’s four corner-points uniformity P160mm +/- 10%.Can add spring system to reach the requirement of extra high acceleration specification.Using high-efficiency vibration-absorbing seat pad can block out possible floor resonance and protect the factory structure.Easy in operation; no complicate training course required.Module shock rubber-pads are applied per different standards independently. And the rubber-pad lifetime can be prolonged.
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Pressure Sensors For Blast Testing
Pressure sensors with quartz, ceramic and tourmaline sensing elements are used for a wide variety of shock wave, blast and explosive testing. All of these applications require high frequency response and durability, ability to drive long cables and operate in adverse environments.
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Pneumatic Horizontal Shock Test System
KRD12 series
The KRD12 series shock test system is used to measure and determine the horizontal impact resistance of a product or package, and to evaluate the reliability and structural integrity of the test unit in a horizontal impact environment. The system can perform conventional half-sine wave, post-peak sawtooth wave, or trapezoid wave shock test to realize the shock energy that the product is subjected to in the actual environment, thereby improving the product or packaging structure.
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Hydraulic Vertical Shock Test System
KRD10 series
KRD10 series full-automatic hydraulic shock test system is used to measure and determine the impact resistance of products or packaging, and to evaluate the reliability and structural integrity of products in a shock environment. The system can perform conventional half-sine wave, post-peak sawtooth wave, trapezoid wave and other waveform shock tests to achieve the shock wave and impact energy that the product is subjected to in the actual environment, thereby improving the product or packaging structure.
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SHOCK TESTER
King Design Industrial Co., Ltd.
*Shock amplifier is mainly used to small object, and can reach the pulse duration and high acceleration that shock table couldn’t achieve.*Equipped with shock table or different shock module (the theory is to amplify impact energy through second impact), shock amplifier can reach the requirement of high acceleration.
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Shock Test
Shock testing determines the ability of equipment to withstand the infrequent non-repetitive shocks encountered in handling, transportation, and service and to continue to function, where required. Also, shock tests verify that equipment will not detach from its mounting during these tests.
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Shock & Drop Testing
Shock testing is often performed as part of a hardware qualification or design process. Information obtained during shock testing can improve the survivability of products as well as verify that they will perform properly in service. These types of tests require special transducers and measurement systems to record and process the high level, high frequency response.
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Wave Buoy
MOTUS
The MOTUS (movement in Latin) Wave Buoy is a perfect solution for collecting environmental data in coastal areas.Collect reliable environmental data with MOTUS Wave Data Buoy.The MOTUS (movement in Latin) Buoy is a perfect solution for collecting environmental data in coastal areas for all-year deployments. The platform used for collecting data is a robust buoy which has proven to be an excellent platform for providing high accuracy and reliable meteorological and oceanographic data. The wave buoy can effectively combine various Hydrological and Meteorological parameters. Basic parameters such as wind, waves, and currents can easily be expanded to include sensor packages with different water quality sensors. Data is controlled and synchronized by the data management systems that Xylem Analytics offers, which also controls and powers real-time communication. This provides a low-power efficient system offering long-term deployment capabilities.The MOTUS Wave Buoys combine our ultra-low power and field-proven solutions from developing oceanographic and water quality sensors. We have 60 years of experience operating in the industry, providing you with an optimal platform based on the buoy, a rugged, lightweight polyethylene buoy deployed in more than 40 countries all over the world. By selecting Xylem as your partner in your projects, you are on track for the lowest overall cost of ownership and a versatile platform that can be tailored to your needs. The MOTUS Buoy is developed for both scientific and commercial use.
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Millimeter Wave Converter
ZVA-Z Series
Millimeter-wave measurements in the V, E, W, F, D, G, J and Y band – network analysis in frequency ranges from 50 GHz to 500 GHz depending on the converter model. Featuring a wide dynamic range, the RPG converters offer high operating convenience and allow fast measurements. Two-port measurements can be performed using a four-port network analyzer and two converters; no external generator is required. When using a two-port network analyzer, an external generator is needed to supply the LO signals.
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Thermal Shock Chambers
Weiss Technik Thermal Shock chambers are designed to give quick transitions between a HOT and COLD temperature zones. Available in vertical, horizontal and liquid models. Thermal stock chambers are used in all industries including Automotive, Electronics, Aerospace, and others to help find product defects in electronic components and product assemblies. Thermal shock is important with MIL -STD 883 test standard.
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Thermal Shock
Trialon routinely test products for the automotive, military, medical, aerospace, heavy truck and customer markets in our facilities in Michigan and Indiana.
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Safety Shock Absorbers
As an alternative to the standard shock absorber, Safety shock absorbers are the tried and tested low cost method of preventing those occasional emergency stops. Designed for occasional use, they primarily serve as reliable, effective protection in emergency stop situations.
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Shock Test Apparatus
SCR Elektroniks make Shock test Apparatus is used to test the Electrical accessories / appliances for their mechanical strength. A wooden base fixed to a concrete block and a wooden platform is hinged base. This platform carries a wooden board, which can be fixed at various distance from the hinge and two vertical positions. The end of board bears a metal stop plate, which rests on coiled spring having constant 25N/mm.
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Pressure Based Waves
5218
Measure pressure based Waves with the Aanderaa Wave Sensors- compact fully integrated sensors for measuring wave and tide conditionsThe 5218 wave sensor is designed to be mounted on the Aanderaa SeaGuard top-end plate or connected to SmartGuard using AiCaP CANbus or in other measurement systems using the RS-232 interface.The 5218R wave sensor sensor is designed for use with long cables by means of RS-422 full duplex interface.Both wave sensors are based on a silicon piezoresistive pressure sensor. The pressure measurements are sampled and temperature compensated by an advanced Digital Signal Processor.The wave sensor application areas are in fixed installations, either deployed in a seabed installation in shallow waters, or mounted onto a fixed structure in the upper water column.
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Thermal Shock Testing
Quest Engineering has the capability that you've been seeking to perform thermal shock on a wide array of units. Using our specially designed Thermal Shock Chamber which works like a turnstile to shuttle units between extreme hot and extreme cold conditions.
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Wave display utility
GUI
GUI allowing users to view and analyze test vectors in all common formats (VCD/EVCD/WGL/STIL).
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Square Wave Frequency Generator
F125
The F125 square wave frequency generator replaces our F150/155/105 frequency generators. It is a completely new design with many new features. The main one being that it can run standalone up to 1500 program files copied from a PC or Mac. It is also possible to connect the F125 to a computer via a USB port and control it with the F100 3.0 software for MS-Windows in the same way our F150/155/105 operate from a PC. Program files written for our current F150/155/105 are compatible with the new F125.
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Medium Thermal Shock Chambers
TSD-100
The TSD-100 has our popular touch-screen controller, but with a new feature called Specimen Temperature Trigger (STT). This STT function actively monitors the temperature of the product and only advances the program to the next step once the product has reached the desired temperature. The STT dynamically reduces the overall testing time by adjusting the soak period according to how much product is being tested.
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Radar Systems / Millimeter Wave Radar / Micro Wave Radar
KEYCOM develops various radars for versatile applications based on its knowledge and expertise on millimeter wave and microwave technologies. KEYCOM’s product line of radars includes Radar Test Systems (RTS) to evaluate distance accuracy or output, Radar Alignment Systems (RAS) to help you adjust the alignment of radars, and Radar Cross Section (RCS) measurement systems to measure RCS of such radar targets as aircraft, ships and automobiles.
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Millimeter Wave Converters
ZC-Series
*variable output power*wide dynamic range*wide frequency range*highly stable measurement*convenient handling
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Electric Shock Protection Analysis
60364-4-41 StandardBS 7671 StandardEN 50122 StandardTN-C, TN-S, TN-C-S, TT & IT Earthing TypesElectric shock requirementsLoop impedance and current calculationTouch voltage calculation and evaluationCalculation considers resistance to ground / earthGround Fault Current Interrupter (GFCI) or Residual Current Circuit Breaker (RCCB) or Residual Current Detector (RCD) protectionReports in Crystal Reports and MS Excel
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Liquid-To-Liquid Thermal Shock Chambers
TSB Series
Purchasing a liquid thermal shock chamber needs close consideration of the long term operating costs. The specialized liquids used can easily evaporate, causing the loss of thousands of dollars of fluid per year, if not properly contained. ESPEC has led the industry in developing a sophisticated test chamber with multiple mechanisms to significantly reduce fluid usage. The new TSB-51 loses just 1.4 grams per test cycle, or less than a liter per 1,000 cycle test.
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Guided Wave Radar Sensors
LVRD10 Series
The LVRD10 Series guided wave radar transmitters provide continuous level measurement with a 4 to 20 mA signal output. Offered in single rod, coaxial, or weight & cable probes in 3 or 6 foot lengths
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Electrodynamic Shock Test System
FS SERIES
The system can test the sensor and ECU for an airbag and also reproduce the shock by assuming an automotive collision and full-scale crash. The system can be incorporated into the production line for total inspection. It can maintain the operating quality of the airbag to make a contribution to lifesaving against a traffic accident.
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Piezoresistive MEMS Shock Accelerometers
Piezoresistive shock accelerometers, manufactured by MEMS technology, have low power consumption while still providing +/- 200 mV full scale output. They afford a wider operating temperature range when compared to mechanically isolated ICP® accelerometers. Their frequency response ranges from DC (0 Hz) to 20 kHz. To lessen the severity of response when their resonant frequency is excited, they incorporate squeeze film damping, achieving values of 0.02 to 0.06 of critical.





























