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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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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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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 Vertical Shock Response Spectrum Test System
KRD14 series
KRD14 series pneumatic shock response spectrum tester is used to measure and determine the shock resistance of electrical and electronic products or packaging, and to evaluate the reliability and structural integrity of the test product in a shock environment. The shock response spectrum is the total result of a series of single-degree-of-freedom linear systems with different natural frequencies subjected to the same shock excitation response. When a product is subjected to an impact, the maximum value of its impact response means that the product has a maximum stress. Therefore, the shock response spectrum tester can better simulate the shock wave and shock energy suffered in the real environment.
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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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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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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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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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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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Shock Testers
Shock test data is key information when determining if your product is capable of withstanding its intended distribution and use environment. For any mechanical shock testing application, Lansmont builds a Shock Test System to meet your needs.
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Industrial Shock Absorbers
ACE industrial shock absorbers work hard. Their application means moving loads are evenly decelerated over the full stroke. The result: the lowest braking force and shortest braking time. The MAGNUM series from ACE is viewed as the reference standard for medium-sized damping technology.
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Rotary Shock Machines
GHI Systems
* 0 Velocity before shock ? eliminates inertia effects. * Compact design allows use of imaging sensors. * Bidirectional operation. * Unsurpassed for latch testing, any format size. * Reliable MEP programmers in various durometers. * Interchangeable high amplitude table option. * Conforms to ?Dell? requirements.
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Wave Quality Analyzer
Nexus 1500
From the Industrial Giants, Fortune 100 companies to municipal utilities, an energy management and power monitoring program is critical to their success. The Nexus® 1500, the most advanced monitoring product, provides the global picture of power quality and usage from any metered point within a distribution network, enabling users to make power-related decisions quickly and effectively.
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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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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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Mechanical Shock Machines
SD Series
The need for products to survive various shock levels in an operating environment requires in-house testing of products during design and evaluation stages. L.A.B. Equipment, Inc.''s SD-series of mechanical free-fall test systems produces accurate and repeatable half-sine, squarewave and sawtooth pulses in accordance with military and industry specifications.
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Microwave/Millimeter Wave Devices
We at AET Associates, Inc. take pride in our engineers who have in-depth technical knowledge in the areas of microwave and millimeter wave technology. We hope that we can serve you to benefit your research and development, production, and purchase strategies.
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Thermal Shock Chambers
VTS-Series
Vertical Thermal Shock chambers consist of two separately controlled hot and cold zones. Product is transferred between these zones for rapid product temperature changes. Thermal Shock Chambers are designed to perform tailored environmental stress screening of component and board level electronic assemblies. The return on investment in both actual savings and customer confidence adds greatly to the value of electronic assemblies screened in a CSZ thermal shock system.
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Millimeter Wave Orthomode Transducers
We are developing a series of millimeter wave orthomode transducers. These orthomode transducers are fullband, compact components. They achieve astounding cross-polarization while maintaining Micro Harmonics’ impressively low insertion loss.
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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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Shock Absorber Filling System
MS200
The system is used for filling mono-tube and twin-tube shock absorbers with gas after repair. MS200 has pressure adjustment function and is used for shock absorbers of power pressure up to 120 bar.
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Mm Wave Measurement
Erickson PM5B
bsw TestSystems & Consulting AG
Erickson PM5B from VDI, which has been further optimised in the version just presented. The measuring head of the PM5B operates in the WR10 band, i.e. in the 75 - 110 GHz range. High-precision accessories, so-called tapers, provide for adjustments and thus make measurements in the waveguide bands, currently up to WR0.34 beyond 3 THz, possible.
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Shock Absorber Tester
Maschinenbau Haldenwang GmbH & Co. KG.
Display on LON analog displays with theEvaluation in "Lehr''s damping factor" or damping ratio "D"Fully automatic testAutomatic test start after bilateral plate load of more than 60kgFrequency controlled drive excitation by electric motors to determine the maximum vibration amplitude with subsequent evaluation of the axle dampingrunning underbody as self-supporting frame constructionParallelogram guided test plates, thus no fixed wheel contact requiredgalvanized version
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Shock Control
Shock testing simulates an extreme event that a unit under test is exposed to during handling, shipment, explosive event and/or daily use (e.g. dropping an object). The profile for this type of testing is defined by the shape of the time domain waveform together with its amplitude and duration. The m+p VibControl vibration control system offers full functionality for classical shock and shock response spectrum testing as well as for tests using external pulses or the capture of transient signals.
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Bulk Acoustic Wave Technology
BAW
Macom Technology Solutions Holdings Inc.
MACOM’s BAW product portfolio is ideal for high performance Industrial, Aerospace, Defense, and Communications applications that require critical frequency filtering. Our high-performance RF filters enable our customers manage signal integrity in the 1 to 6 GHz frequency range. Bulk Acoustic Wave Resonators consist of two metal electrodes above and below a layer of a piezoelectric material. The piezoelectric material converts an electrical signal to a mechanical signal and vice versa. The metal electrodes provide the connections to/from the piezo material. The frequency at which resonance occurs depends on the thickness of the combined metal-piezo-metal stack. Advances in thin-film piezoelectric fabrication have enabled BAW resonators to meet RF filtering challenges up to 6000 MHz using standard MEMS fabrication process. High-performance BAW resonators-based RF filters are made of piezoelectric material having high Q-factor (>3000) and high coupling coefficient. Currently, no competitive technology provides the same high performance for RF filter applications when compared to BAW resonator-based RF filter up to 6000 MHz for the same size and cost.
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Vertical Thermal Shock Chambers
FSV Series
Bemco FSV Series Vertical Thermal Shock chambers are available in two zone (FS2V - hot and cold) and three zone (FS3V hot - cold - hot) versions, with two temperature ranges (-75 C to +200 C or -160 C to +200 C), and two types of cooling systems (all mechanical cooling - no expendable refrigerant required, or all LN2). Very low temperature, -160 C chambers, are always liquid nitrogen cooled. Two zone chambers are offered in four standard sizes, while three zone chambers are offered in three standard sizes.
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Viscoelastic Shock Absorbers
This series is the interesting addition to ACE's security portfolio. Simple and compact in design, durable and maintenance-free in operation, these dampers are effective alternatives to existing emergency stop solutions.
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ICP® Shock Accelerometers
Piezoelectric ICP® accelerometers afford a very high signal output (+/- 5 volts full scale) and the ease of two-wire electrical connectivity. Their inherent ruggedness enables them to be severely over ranged without damage. The addition of internal mechanical isolation minimizes the high frequency stress that would otherwise be encountered by their ceramic sensing elements. This mechanical isolation, coupled with an internal 2-pole electrical filter, built into the ICP® circuitry, tailors the overall accelerometer response to assure data quality to frequencies as high as 10 kHz. Depending on the specific model, accelerations in excess of 50 kg can be successfully measured. These modern designs, with their internal elastomeric isolation materials are verified through calibration to remain dynamically linear and are enabling piezoelectric accelerometers to operate in increasingly severe acceleration environments.
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Shock Reactance
ICR260 330
Lifasa - International Capacitors, SA
Shock reactors are necessary to limit the transient currents that occur in the connection of the capacitors.





























