Products & Services
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Supplier: DigiKey
Description: Ball Shock Sensor Chassis Mount
- Operating Temperature: 32 to 140 F
- Features: Other
- Device Type: Sensor / Transducer
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Supplier: GIMATIC S.r.l.
Description: The shock sensors are devices that change the outlet status of their circuit when shocks or vibrations are sensed. They are normally used to prevent breaking of mechanical actuators (linear and rotating). Using the MEMS (Micro Electro Mechanical System) technology, these
- Frequency Range: 100 Hz
- Maximum Shock: 35 g
- Operating Temperature: 14 to 158 F
- Measurement Axes: Biaxial
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Supplier: enDAQ Vibration Solutions
Description: The S3-E2000D40 is a shock recorder with a high performance piezoelectric accelerometer, a secondary capacitive accelerometer and other environmental sensors. This model is most popular for shock testing due its wide 2,000g range.
- Maximum Acceleration / Shock: 40 to 2,000 g
- Frequency Range: 4,000 to 20,000 Hz
- Maximum Shock: 3,000 g
- Operating Temperature: 14 to 176 F
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Supplier: ODG (Origin Data Global)
Description: SENSOR SHOCK 50G PIEZO FILM
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Supplier: ROHM Semiconductor GmbH
Description: BD3852MUZ-Z is connected with an external shock sensor. It is equipped with a function to amplify the shock detection signal from the shock sensor and transmit the amplified signal externally. It delivers high S/N characteristics and is ideal for control system
- Operating Range: Commercial
- Standards and Certifications: RoHS Compliant
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Supplier: Comus International
Description: Adjustable Shock Module Type: NPN or PNP Digital Output Voltage Range: 6 to 30 VDC Supply Current: 15 mA Shock Level Resolution: ±15 mg
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Supplier: SignalQuest, Inc.
Description: RoHS compliant, lead-free SMD package Description The SQ-ASx series act like acceleration sensitive switches that open or close when accelerated past an acceleration threshold. Function On / off shock & acceleration sensing Features Ultra low power - As little as 0.25 μA Surface mount device
- Acceleration: 20 to 2,000 g
- Operating Temperature: -40 to 185 F
- Maximum Acceleration / Shock: 20 to 2,000 g
- Sensor Outputs: Acceleration
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Supplier: Win Source Electronics
Description: Manufacturer: Murata Electronics North America Win Source Part Number: 1089311-PKGS-00LDP1-R Mounting: Surface Mount Output Type: Voltage Sensitivity: 0.840pC/G Sensing Range: 0 to 50G Sensor Type: Vibration, Piezo Film Categories: Sensors, Transducers Status: Active Temperature Range
- Operating Temperature: 32 to 158 F
- Features: Other
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Supplier: Win Source Electronics
Description: Manufacturer: Murata Electronics North America Win Source Part Number: 061941-PKGS-25SXAP1-R Mounting: Surface Mount Output Type: Voltage Sensitivity: 0.350pC/G Sensing Range: 0 to 50G Sensor Type: Vibration, Piezo Film Categories: Sensors, Transducers Status: Active Temperature Range
- Operating Temperature: -40 to 185 F
- Features: Other
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Supplier: Win Source Electronics
Description: Manufacturer: Panasonic Electronic Components Win Source Part Number: 109050-EFJ-G25EF01 Mounting: Surface Mount Output Type: Voltage Sensitivity: 1mV/g Sensing Range: 0 to 1500G Sensor Type: Vibration, Piezo Film Categories: Sensors, Transducers Status: Obsolete(EOL) Temperature Range
- Operating Temperature: 14 to 140 F
- Features: Other
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Supplier: Heilind Electronics, Inc.
Description: Sensors Vibration, Tilt, & Shock
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Supplier: enDAQ Vibration Solutions
Description: The new S2 ("mini") vibration & shock sensor comes equipped with two accelerometers in addition to the standard embedded sensor suite of a gyroscope, magnetometer, pressure, temperature, humidity, and light. The primary accelerometer has a ±40g range which provides the greatest
- Acceleration: 40 to 200 g
- Frequency Range: 3,200 to 4,000 Hz
- Maximum Shock: 3,000 g
- Operating Temperature: 14 to 176 F
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Supplier: Radwell International
Description: SHOCK ABSORBER SENSOR, 8 MM BORE, THREADED BODY, 3 NM, (367509). FREE 2 YEAR RADWELL WARRANTY
- Shock Absorber / Damper Type: Shock Absorber
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Supplier: Instrumented Sensor Technology
Description: stamp. Once installed and activated by the user, the Shock Timer, shock detector, logger and recorder, measures bi-axial shocks and impacts on the surface plane (product or shipping container) to which it is mounted. If any shocks occur that exceed the trip level for the
- Measurement Axes: Biaxial
- Device Type: Recorder / Totalizer, Sensor / Transducer
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Supplier: Newark, An Avnet Company
Description: SENSOR, ELECTRONIC SHOCK
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Supplier: Accuris
Description: FUZE, PIBD, XM740, (M740) SHOCK WAVE SENSOR FOR
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Supplier: Instrumented Sensor Technology
Description: logger and recorder also measures and records environment temperature using sensors built into the instrument. Optional external temperature and relative humidity sensors are also available. Signal Conditioning The PANTHER model EDR-4 shock & vibration data monitor, logger and
- Inputs: Accelerometer Input
- Data Acquisition: Datalogger / Recorder
- Application: General Lab and Industrial, Vehicular
- User Interface: None
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Supplier: Accuris
Description: Fuze, PIBD, XM740, (M740) Shock Wave Sensor for
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Supplier: Kistler Group
Description: Small, light weight accelerometer for measuring impulse and high impact shock. • High impedance charge mode • Wide measuring range • Stable quartz element • Lightweight, miniature package
- Acceleration: -20,000 to 30,000 g
- Frequency Range: 0 to 8,000 Hz
- Maximum Shock: 30,000 g
- Operating Temperature: -319 to 392 F
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Supplier: Exsenco, LLC
Description: Using acceleration sensor (electrostatic capacitive type), SANTEST's IMPAK-02 observes shocks given during transportation. Setting a threashold for shock value (G) and selecting a recording interval (Seven sampling periods are available, from 1 second to 60 minutes) beforehand,
- Maximum Acceleration / Shock: 0.5 to 16 g
- Frequency Range: 200 to 3,200 Hz
- Minimum Accuracy: 0.2 +/-% FS
- Operating Temperature: 23 to 113 F
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Supplier: Hottinger Brüel & Kjær A/S
Description: The Dytran series 3200 is a highly rugged IEPE accelerometer with a natural frequency greater than 90 kHz, designed to measure severe shocks and other extreme short duration events. High shock measurements are typically characterized as such above the range of 2,500 g's. In order to
- Acceleration: 70,000 g
- Frequency Range: 0.49 to 10,000 Hz
- Operating Temperature: -58 to 248 F
- Maximum Acceleration / Shock: 70,000 g
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Supplier: DynaTronic Corporation
Description: VENZO 640 shock test systemis the tailored instrument for drop tester, shock tester and bump testing machine. It allows the test engineer to acquire any transient event such as drop test, crash test or shock pulses.When the external input match the defined trigger conditions-
- Maximum Acceleration / Shock: 100,000 g
- Operating Temperature: -22 to 158 F
- Device Type: Instrument / Meter / Analyzer
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Supplier: SpotSee
Description: battery life Option to build temperature/humidity sensor into unit, or add a temperature/pressure/humidity accessory sensor Captures coordinates when event occurs at summary intervals with GPS (optional) GPS allows users, through hyperlinks, to pinpoint the exact location of an event
- Application: Aerospace / Military, Environmental, General Lab and Industrial, Marine, Medical / Biomedical, Vehicular
- Features: Application Software Included
- User Interface: Computer Programmable
- Data Acquisition: Datalogger / Recorder
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Supplier: Newark, An Avnet Company
Description: SENSOR, SHOCK GLASSBREAK WHITE CLOSED LOOP DRW# 1-179
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Supplier: Spectral Dynamics, Inc.
Description: repeatability of shock test. Shock absorption base: Shock absorption base is configured with a two-way damping device and large air bags. This can reduce the shock force transferring to the floor. No dedicated seismic base needed. Waveform Generators: Waveform generators
- Displacement: 0 to 20.472452 inch
- Peak Acceleration: 3 to 500 g
- Peak Velocity: 133.858267716535 to 354.330708661417 in/sec
- Features: Other, Other Test Mode
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Description: The TSR PRO is a self-powered shock recorder with 3 internal accelerometers. Small and rugged, it is ideal for unattended monitoring of acceleration” including package testing, vibration, blast and multi-event impacts. The TSR PRO is so easy to use it can be armed and ready to record in
- Maximum Acceleration / Shock: 250 g
- Frequency Range: 0 to 300 Hz
- Maximum Shock: 500 g
- Features: Battery Powered
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Supplier: Newark, An Avnet Company
Description: SENSOR, SHOCK GLASS BREAK OPEN LOOP DRW# 1-179-001
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Supplier: Enidine Inc.
Description: shock absorbers are engineered to meet OSHA, AISE, CMMA and other safety specifications such as DIN and FEM. ITT Enidine Inc.'s heavy duty industrial shock absorbers are offered with a wide variety of optional configurations, including bellows, clevis mounts and safety cables. Standard
- Absorber Stroke: 5 inch
- Maximum Force (P1): 50,000 lbs
- Energy per Cycle: 214,200 In-lbs
- Cylinder Diameter or Maximum Width: 5.1 inch
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Supplier: Piezo-Metrics
Description: Shock and vibration monitoring is necessary for many industries such as transportation and manufacturing to maintain an ideal environment for products and cargo. Affordable and long lasting, our shock monitoring equipment make it easy for any industry to safely monitor and retrieve
- Data Acquisition: Datalogger / Recorder
- Features: Other Input
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Supplier: DynaTronic Corporation
Description: most comprehensive vibration control software modules, including: random, sine, classical shock, RSTD, SRS, SoR,SoS,RoR, SRoR, TTH and FDR and other auxiliary applications. Each module provides basic functions and optional functions, so you can customize the desired system. The grateful and
- Acceleration: 50,000 g
- Frequency Range: 1 to 15,000 Hz
- Operating Temperature: -40 to 249.8 F
- Sensor Outputs: Acceleration
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Supplier: Micromega Dynamics
Description: your measurements. It is the only range of vibration and shock recorder that allows several sensors to be used simultaneously in a synchronized manner enabling the performance of modal analyses and operational deflection shape analyses on large structures such as bridges or walkways.
- Acceleration: 2 to 200 g
- Frequency Range: 0 to 250 Hz
- Minimum Accuracy: 0.3 to 0.5 +/-% FS
- Operating Temperature: 14 to 122 F
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Supplier: PCB Piezotronics, Inc.
Description: Shock accelerometer, 60 kg, MEMS sensor installed in chip carrier (SMT)
- Acceleration: 60,000 g
- Maximum Shock: 100,000 g
- Operating Temperature: -65 to 250 F
- Sensor Technology: MEMS, Piezoresistive
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Supplier: PCB Piezotronics, Inc.
Description: Shock accelerometer, 20 kg, MEMS sensor installed in chip carrier (SMT)
- Acceleration: 20,000 g
- Maximum Shock: 60,000 g
- Operating Temperature: -65 to 250 F
- Sensor Technology: MEMS, Piezoresistive
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Supplier: PCE Instruments / PCE Americas Inc.
Description: of the acceleration sensor is 1600 Hz, the remaining sensors are sampled with max. 1 Hz. With the shock data logger PCE-VDL 24I the acceleration sensor is even delivered with a sampling rate of 2400 Hz. The shock and vibration logger is therefore ideally suited for
- Sampling Frequency: 2.4 kHz
- Inputs: Accelerometer
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Supplier: Hottinger Brüel & Kjær A/S
Description: The 3355A2T offers a sensitivity of 50 mV/g, making it a versatile choice for general-purpose vibration testing. It provides a balance between sensitivity and dynamic range, supporting measurements up to ±100 g peak. Its low noise and compact form factor make it ideal for modal analysis, structural
- Acceleration: 100 g
- Frequency Range: 1 to 5,000 Hz
- Operating Temperature: -67 to 257 F
- Sensor Mounting: Adhesive Base
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Using acceleration sensor (electrostatic capacitive type), IMPAK-02 observes shocks given during transportation. Setting a threashold for shock value (G) and selecting a recording interval (Seven sampling periods are available, from (read more)
Browse Shock and Impact Sensors Datasheets for Exsenco, LLC -
maintenance, all sizes of ITT Enidine Inc.'s heavy duty hydraulic shock absorbers are fully field-repairable. These products also offer piston rod extension sensor systems for reuse safety requirements. (read more)
Browse Shock Absorbers, Linear Dampers, and Dashpots Datasheets for Enidine Inc. -
optoNCDT laser sensors are setting milestones for industrial laser displacement measurement. Micro-Epsilon laser sensors stand out due to size, measuring rate, software and, above all, due to precision. The current optoNCDT range now offers numerous series, each of which is amongst the best in (read more)
Browse Optical Triangulation Position Sensors Datasheets for Micro-Epsilon Group -
quality sensors, including several varieties of inductive sensors. Each of our inductive sensors are vacuum sealed to protect the ultra-important electronics inside from variables such as: debris vibrations shock dirt moisture Thanks (read more)
Browse Inductive Proximity Sensors Datasheets for Locon Sensor Systems, Inc. -
Datasheet Linear Touchless Sensors Novotechnik’s linear touchless position sensors use a permanent magnet that is (read more)
Browse Linear Potentiometers Datasheets for Novotechnik U.S., Inc. -
High temperature inductive sensors are designed and built to operate effectively in extremely harsh environments. These sensors are widely employed in places like foundries, forges, and factories that use plastic injection molds. They must deliver consistent performance across a wide temperature (read more)
Browse Inductive Proximity Sensors Datasheets for Locon Sensor Systems, Inc. -
The Series BNS36 coded-magnet sensors are designed for use as a safety interlock switch on movable machine guards/articulating robot arms. Each sensor set consists of a multiple reed switch unit and a coded-magnet actuator. The reed switches, wired in series, will only (read more)
Browse Noncontact Safety Interlock Switches Datasheets for Schmersal Inc. -
linearity, increased signal to noise ratio and improved behavior under harsh vibrations, shocks and temperature environments. Over the last 15 years, Tronics has produced more than 1 million high performance MEMS inertial sensors for a large set of customers worldwide. These ITAR-free products (read more)
Browse Datasheets for Tronics Microsystems -
frequent mechanical shocks associated with auto body work. They must also be able to operate reliably over relatively long distances. For this type of application, we recommend inductive sensors such as the Series 700 sensors from Contrinex. (read more)
Browse Inductive Proximity Sensors Datasheets for Locon Sensor Systems, Inc. -
Fargo Controls offers two Low Profile Capacitive Proximity Sensors with exceptional pricing. These new models have a height of only 0.68" (17.5mm). Their small size allows them to be used in tight spaces where typical capacitive sensors cannot fit (read more)
Browse Capacitive Proximity Sensors Datasheets for Fargo Controls, Inc.
Conduct Research Top
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Development of a Damped Piezoresistive MEMS High Shock Sensor
Piezoresistive (PR) silicon accelerometers with micro-electromechanical systems (MEMS) technology are preferred in many high shock impact measurements. These devices exploit the strength of single crystal silicon (SCS) along with the minimal zero shifting associated with PR sensors. However
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Field Evaluations of a Damped MEMS Shock Sensor
Results from pyrotechnic, penetration and metal-to-metal impact field evaluations are presented which prove the performance of a new piezoresistive (PR) shock accelerometer. The microelectromechanical systems (MEMS) sensor incorporates sufficient squeeze-film damping to reduce resonant
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Aerospace-High g Testing
Reviews a new generation of high g shock sensors and their applications.
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Introduction to Piezoelectric Pressure Sensors
Dynamic pressure sensors are designed to measure pressure changes in liquids and gasses such as in shock tube studies, in-cylinder pressure measurements, field blast tests, pressure pump perturbations, and in other pneumatic and hydraulic processes. Their high rigidity and small size give them
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Tips for Selecting the Right Inductive Sensor
vacuum-sealed electronics and metal housings designed to protect against shock, vibrations, dirt, and moisture - which means you can use these sensors reliably under a variety of conditions.
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Micro and Nano Sensor Interconnections Energize New Applications
Sensors and their capabilities cover a wide range of functions based on the design and type used. Today 's sensor menu ranges from thermistors and infrared detectors to shock and vibration monitors and onto pressure transducers.
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Why did my Temperature Sensor Die?
Why did my temperature sensor die? Early engineering analysis matters for critical applications Temperature sensors used in harsh environments face numerous threats to survival. Failures are usually driven by external forces including thermal and mechanical shock, vibration, humidity, corrosion
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Application: Hospital Bed Position Detection Sensor (.pdf)
There are a large number of applications requiring the detection of end limit position, where electric shock can be a real concern. Hospital beds, for example, need end position limits when adjusting the bed position. Reed Sensors are ideal in this application because they reliably pass very low
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Application: Mobility Equipment & Hospital Beds - Reed Sensor
There are a large number of applications requiring. the detection of end limit position, where electric shock can be a real concern. Hospital beds, for example, need end position limits when adjusting the bed position. Reed Sensors are ideal here because they reliably pass very low level voltages
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Piezoelectric Sensor Technology
Shock and vibration can be expressed in terms of variations in displacement, velocity or acceleration with time. Acceleration is the most frequently used since the inertial load or destructive force is equal to mass times acceleration. Acceleration, velocity and displacement measurements can only
More Information Top
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Material Properties under Intensive Dynamic Loading
Reed, R.P., Graham, R.A., Moore, L.M., Lee, L.M., Fogelson, D.J., and Bauer, F., “The Sandia Standard for PVDF Shock Sensors ,” Shock Compres- sion of Condensed Matter – 1989, Schmidt, S.C., Johnson, J.N., and Davison …
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http://dspace.mit.edu/bitstream/handle/1721.1/41654/219729794-MIT.pdf?sequence=2
2.4.7 Shock Sensor . . . . . . . .
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Miniature MEMS-based data recorder for prognostics and health management (PHM)
Ridgetop has developed a prognostic indicator for detecting and recording hard landing events with a wireless MEMS shock sensor .
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An Optimized Low-Dissipation Monotonicity-Preserving Scheme for Numerical Simulations of High-Speed Turbulent Flows
Meanwhile, to reduce the nonlinear dissipation and errors, the shock sensor of Ducros et al. (J. Comput. Phys. 152, 517–549, 1999) is adopted to avoid the activation of the MP limiter in regions away from shock waves.
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28th International Symposium on Shock Waves
Approaches for decreasing excessive model dissipation for the solenoidal velocity field include the low-Mach number switch of [22], and the dilatation switch and shock sensor of [15].
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Shock response analysis on thermal stick–slip phenomenon in hard disk drive
We con- cluded that stress waves can be detected with a shock sensor before they arrive at the head if the sensor is located at the pivot bearing or the actuator, which are on the propagation path.
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