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The CS18-VLF is a low-frequency sensor calibration device. It is capable of excitation at ultra-low frequencies required for seismic measurements and can achieve the necessary G output from large amplitude strokes. It allows for the calibration of seismometers and accelerometers in the low-frequency range needed for vibration analysis of structures in the fields of seismic resistance, vibration control, and isolation. Additionally, its application range is extensive, including modal analysis in transportation machines such as automobiles and aircraft, as well as in electronics, industrial machinery, and machine tools. This calibration device is intended for secondary calibration in the private sector, but primary standard calibration devices (NIST traceable) are also available.
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IES2098 is an optical belt displacement measurement sensor. The measurement range is ±1024mm, and the resolution is 0.5mm. It also guarantees a maximum seat belt movement speed of 50m/s. Please consider it when measuring the displacement of seat belts during crash tests or thread tests for automotive and aircraft seats.
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The IES1402 is a compact and lightweight tilt sensor measuring 25×12×10mm³. With dedicated software and a USB cable, it allows you to view angles from a laptop or pocket PC. It can be used for confirming the posture of crash test dummies, among other applications. Additionally, static angle detection can be utilized in a wide range of fields beyond just collision safety.
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The IES3103 series is a gyro sensor that achieves three-axis measurement with a size of 28×28×15mm³. The sensor weighs 22 grams, making it lightweight. It can measure from DC, and the range can be widely selected from ±150°/s to ±4800°/s according to the measurement needs. Additionally, it has impact resistance performance of up to 1000G, making it widely used in collision testing fields.
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The IES3101 is a compact gyroscope sensor that achieves a size of 17×10.2×7mm³ (the high-range version is 17×10.2×8.5mm³). The sensor weighs only 3 grams, making it extremely lightweight. It can measure from DC and offers a wide range of options from ±150°/s to ±9600°/s to suit various measurement applications. Additionally, it has shock resistance of up to 2000G and is widely used in collision testing fields.
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The Model 801X-01 series accelerometer is an amplifier-integrated IEPE type accelerometer designed and developed to withstand harsh environments, featuring an excellent dynamic range and stability. It offers a maximum output of up to 5000mV, shock resistance (5000g), and a response of up to 18KHz (±3dB). The housing is made of stainless steel, and it is equipped with a shared piezo ceramic crystal inside. Additionally, you can choose between two cable options: integrated or detachable. Mounting is stud mount for both cable types.
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The Model 7204A accelerometer is an IEPE type accelerometer with a built-in amplifier, offering excellent dynamic range and stability. It features an output of up to 5000mV, shock resistance (5000g), and a response of up to 20KHz (±1dB). The housing is made of stainless steel, and it incorporates a shared piezoelectric ceramic crystal internally. Additionally, the mounting is through-hole.
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The Model 7202A accelerometer is an IEPE-type accelerometer with a built-in amplifier, offering excellent dynamic range and stability. It features an output of up to 5000mV, shock resistance (5000g), and a response of up to 20KHz (±1dB). The housing is made of stainless steel, and it is equipped with a shared piezoelectric ceramic crystal inside. Additionally, the mounting is through-hole.
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The Model 7530A accelerometer is a three-axis integrated charge accelerometer that possesses an excellent dynamic range and stability performance. This accelerometer has a temperature usage range of -73°C to +200°C, with shock resistance of 10,000g and a response capability up to 6000Hz (±2dB). The housing is made of anodized aluminum, and it features a shared piezoelectric ceramic crystal inside. Its lightweight and compact design allows for high-temperature use, making it suitable for measurements in various fields.
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The Model 7508A accelerometer is a charge-type accelerometer that has an excellent dynamic range and stability performance. This accelerometer has a temperature operating range of -73°C to +200°C, shock resistance (10000g), and can respond up to a maximum of 7KHz (±2dB). The housing is made of stainless steel, and it features a shared piezoelectric ceramic crystal inside. Its lightweight and compact design, along with its capability for high-temperature use, makes it suitable for measurements in various fields, such as engine testing.
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The Model 7501A accelerometer is a charge-type accelerometer that possesses an excellent dynamic range and stability performance. This accelerometer has a temperature operating range of -73°C to +260°C, with shock resistance of 10,000g and a response capability up to 10kHz (±2dB). The housing is made of a high-density titanium body, and it features a shared piezoelectric ceramic crystal inside. Its lightweight and compact design, along with its ability to operate at high temperatures, make it suitable for measurement applications in various fields.
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The Model 7500A accelerometer is a charge-type accelerometer that possesses an excellent dynamic range and stability performance. This accelerometer has a temperature operating range of -73°C to +260°C, shock resistance (10000g), and can respond up to a maximum of 15000Hz (±2dB). The housing is made of stainless steel, and it features a shared piezoelectric ceramic crystal inside. Its lightweight and compact design, along with its capability for high-temperature use, make it suitable for measurements in various fields, such as engine testing.
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The Model 7514A accelerometer is a charge-type accelerometer that boasts an excellent dynamic range and stability performance. This accelerometer has a temperature operating range of -73°C to +260°C, and it can withstand shock (10000g) with a response capability of up to 14000Hz (±2dB). The housing is made of stainless steel, and it features a shared piezoelectric ceramic crystal inside. Its lightweight and compact design, along with its ability to operate at high temperatures, make it suitable for measurement applications in various fields.
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The Model 7502A accelerometer is a charge-type accelerometer that possesses an excellent dynamic range and stability performance. This accelerometer has a temperature operating range of -73°C to +260°C, and it can withstand shock (10000g) and respond up to 14000Hz (±2dB). The housing is made of a high airtight titanium body, and it features a shared piezoelectric ceramic crystal inside. Its lightweight and compact design, along with its capability for high-temperature use, make it suitable for measurements in various fields, such as engine testing.
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The Model 7120A accelerometer is an IEPE-type accelerometer with a built-in amplifier, offering excellent dynamic range and stability. It features an output of up to 5000mV, shock resistance (10000g), and a response of up to 7KHz (±1dB). The housing is made of high-density titanium, and it incorporates a shared piezoelectric ceramic crystal inside.
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The Model 7105A accelerometer is an IEPE type accelerometer with a built-in amplifier, offering an excellent dynamic range and stability. It features an output of up to 5000mV, shock resistance (5000g), and a response of up to 10KHz (±1dB). The housing is made of stainless steel, and it incorporates a shared piezoelectric ceramic crystal internally.
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The Model 7104A accelerometer is an IEPE type accelerometer with a built-in amplifier, offering excellent dynamic range and stability. It features an output of up to 5000mV, shock resistance (5000g), and a response of up to 10KHz (±1dB). The housing is made of stainless steel, and it incorporates a shared piezoelectric ceramic crystal internally.
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The Model 7102A accelerometer is an IEPE-type accelerometer with a built-in amplifier, offering excellent dynamic range and stability. It features an output of up to 5000mV, shock resistance (5000g), and a response capability of up to 11KHz (±2dB). The housing is made of high-density titanium, and it incorporates a shared piezo ceramic crystal inside.
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Model 140 is an inline amplifier that converts the output of gauge-type sensors (strain gauge converters) that typically require a strain amplifier into a voltage output that can be monitored on an oscilloscope and other devices. This amplifier features five gain settings with an accuracy of ±0.5% and has a wide bandwidth of up to 100 kHz. The Model 140 allows for remote zero-point correction (patent pending). This function enables the correction of the converter's offset voltage from a distance, and it can also be done by pressing the "ZERO" button located on the main unit.
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The Model EGAXT3 accelerometer is an oil-damped acceleration sensor that uses advanced semiconductor piezoresistive MEMS sensor elements, providing an excellent dynamic range and stability. The oil damping achieves an optimal damping coefficient of 0.7 even in a compact and lightweight design, suitable for high g-range applications. Additionally, it features an internal stopper structure that enables shock resistance (up to 10,000 g) and a flat amplitude and phase response up to a maximum of 3 kHz.
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The Model 4623 accelerometer uses advanced semiconductor piezoresistive MEMS sensor elements that provide an excellent dynamic range and stability. The measurement range can be selected from ±2g to ±500g, and for the low range products, an optimal damping coefficient of 0.7 is achieved. In the ±2g range, it has a sensitivity of 1000mV/g, making it extremely sensitive and ideal for measuring small accelerations in the microg range. Additionally, it features a voltage mode output with a high output of up to 2000mV.
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The Model 4807A accelerometer is a gas-damped accelerometer that uses advanced semiconductor piezoresistive MEMS sensor elements, providing an excellent dynamic range and stability. It features specifications that minimize noise to the extreme, with measurement ranges selectable from ±2g to ±200g. It is also suitable for measuring small accelerations in the microg range, where the signal-to-noise ratio is significant. Additionally, it achieves an optimal damping coefficient for low g specifications. It includes a patented remote auto-zero function and offers a voltage mode output with high sensitivity of up to 1000mV/g.
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The Model EGCS-S425 accelerometer is a liquid-damped accelerometer that uses advanced semiconductor piezoresistive MEMS sensor elements, providing excellent dynamic range and stability. Despite being compact and lightweight due to its liquid damping design, it allows for optimal damping coefficients even for high g-range products up to ±2000g. Additionally, it features a special internal stopper structure, offering shock resistance performance of up to 10000g. The Model EGCS-S425 complies with the sensor standards SAE J211 and ISO6487 for human dummy testing.
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The Model EGCS-D0/D1S accelerometer is an oil-damped accelerometer that uses advanced semiconductor piezoresistive MEMS sensor elements, providing an excellent dynamic range and stability. Additionally, it achieves an optimal damping coefficient in a compact and lightweight body, offering an extremely wide specification range from ±5g to ±10000g. Furthermore, it features an internal stopper structure that enables shock resistance (up to 20000g) and a flat amplitude and phase response up to a maximum of 5kHz.
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The Model EGAXT accelerometer is an oil-damped accelerometer that uses advanced semiconductor piezoresistive MEMS sensor elements, providing an excellent dynamic range and stability. It offers a range selection from ±5g to ±2500g, achieving optimal damping coefficients for compact and high g-range applications. You can choose from options suitable for various testing environments. Additionally, it features an internal stopper structure, enabling shock resistance (up to 10,000g) and a flat amplitude and phase response up to 3kHz.
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The Model 3801A accelerometer is a gas-damped accelerometer that uses advanced semiconductor piezoresistive MEMS sensor elements, providing an excellent dynamic range and stability. Compared to metal gauges, it has less degradation of the gauge mounting adhesive surface, allowing for long-term use without aging or deterioration. Additionally, it features an internal stopper structure that enables shock resistance (up to 10,000g) and a flat amplitude and phase response up to a maximum of 5kHz.
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The Model 1201F accelerometer is a gas-damped accelerometer that uses advanced semiconductor piezoresistive MEMS sensor elements, providing an excellent dynamic range and stability. Compared to metal gauges, it has less deterioration of the gauge mounting adhesive surface, minimizing aging and degradation, allowing for long-term use. Additionally, it features an internal stopper structure, enabling shock resistance (up to 5000g) and a flat amplitude and phase response up to 3kHz. This product is designed to allow for screw mounting with a flange attached to the Model 1201.
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The Model 1201 accelerometer is a gas-damped accelerometer that uses advanced semiconductor piezoresistive MEMS sensor elements, providing an excellent dynamic range and stability. Compared to metal gauges, it has less degradation at the gauge mounting adhesive surface, resulting in minimal aging and deterioration, allowing for long-term use. Additionally, it features an internal stopper structure that enables shock resistance (up to 5000g) and a flat amplitude and phase response of up to 3kHz.
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The Model 58 accelerometer is a gas-damped accelerometer that uses advanced semiconductor piezoresistive MEMS sensor elements, providing an excellent dynamic range and stability. Compared to metal gauges, it has less degradation of the gauge mounting adhesive surface, resulting in minimal aging and deterioration, allowing for long-term use. Additionally, it features an internal stopper structure that enables shock resistance (5000g) and a flat amplitude and phase response up to a maximum of 4KHz.
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The Model 52 accelerometer is a gas-damped accelerometer that uses advanced semiconductor piezoresistive MEMS sensor elements, providing an excellent dynamic range and stability. The element is the same as that used in other sensors from the same company, making it a cost-effective version with reduced cable costs, while maintaining high performance. Additionally, it features an internal stopper structure that enables shock resistance (5000g) and a flat amplitude and phase response up to a maximum of 7KHz.
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The Model 52F accelerometer is a gas-damped accelerometer that uses advanced semiconductor piezoresistive MEMS sensor elements, providing an excellent dynamic range and stability. Compared to metal gauges, it has less degradation of the gauge mounting adhesive surface, resulting in minimal aging and deterioration, allowing for long-term use. Additionally, it features an internal stopper structure, enabling shock resistance (5000g) and a flat amplitude and phase response up to a maximum of 6kHz.
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The Model 64B accelerometer is a gas-damped accelerometer that uses advanced semiconductor piezoresistive MEMS sensor elements, providing an excellent dynamic range and stability. Compared to metal gauges, it has less degradation of the gauge mounting adhesive surface, resulting in minimal aging and deterioration, allowing for long-term use. Additionally, it features an internal stopper structure that enables shock resistance (up to 10,000g) and a flat amplitude and phase response of up to 7kHz. The Model 64B complies with the sensor standard SAE J211 for human dummy sensors used in shock testing.
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This is a low-frequency vibration exciter from the German company SPEKTRA, a specialized manufacturer of calibration devices for vibration and acoustic sensors. The APS series provides excitation at ultra-low frequencies for seismic measurements and achieves large amplitude strokes, allowing for the verification of the response of low-frequency accelerometers necessary for vibration analysis of structures in the fields of seismic resistance, vibration control, and isolation. Additionally, its application range is extensive, including modal analysis in transportation systems such as automobiles and aircraft, as well as in the electronics field. It is a secondary calibration device certified by the German DKD, capable of issuing calibration certificates traceable to PTB and NIST.
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This is a shock-type accelerometer calibration device from the German company SPEKTRA, a specialized manufacturer of vibration and acoustic sensor calibration equipment. Generally, the calibration and response testing of accelerometers, which is performed statically through frequency calibration (ISO 16063-21 comparative secondary calibration), can now be conducted dynamically by applying actual acceleration and verifying the operation. With a wide testing capability of up to 10,000g, it enables calibration not only from low g levels but also high g calibration necessary for automotive crash tests, as well as in aerospace and military fields.
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This is a frequency characteristic calibration device for accelerometers from the German company SPEKTRA, a specialized manufacturer of vibration and acoustic sensor calibration equipment. It allows for the verification of the response of accelerometers in the high-frequency range. It is a secondary calibration machine certified by the German DKD, capable of issuing calibration certificates traceable to PTB and NIST, and there is also a primary calibration machine used by national verification bodies.
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This is a frequency characteristic calibration device for accelerometers from the German company SPEKTRA, a specialized manufacturer of vibration and acoustic sensor calibration equipment. It is a general-purpose type that can be used in a wide range of fields for verifying the response of accelerometers in a general frequency bandwidth. It is certified by the German DKD and can issue calibration certificates traceable to PTB and NIST, and there is also a primary calibration device used by national verification agencies.
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The Pre-PUR series is a flexible hose made of special polyurethane that excels in wear resistance and durability. Its range of applications is extensive, earning high praise and trust from a wide variety of fields.
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The Pre-PUR series is a flexible hose made of special polyurethane that excels in abrasion resistance and durability. Its range of applications is extensive, earning high praise and trust from a wide variety of fields.
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The heat-resistant hose "SIL 391 ONE" is a reinforced fiber hose that excels in heat resistance and torsional rigidity. It is suitable for applications such as hot air generators, cold air transport, powder and granule dryers, compressors, and various blowers. It has also been successfully used for engine exhaust gas analysis.
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The CP series is a flexible hose that is durable against high temperatures, wear, and chemical reactions. Its outer steel guide structure prevents dragging on the floor and damage (tearing) from contact with surrounding objects, making it highly durable. Its range of applications spans various industries, including automotive, chemical, woodworking, papermaking, steel, aerospace, and defense, earning high praise and trust from a wide array of fields.
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The CP series is a flexible hose that is durable against high temperatures, wear, and chemical reactions. Its outer steel guide structure prevents dragging on the floor and damage (tearing) from contact with surrounding objects, making it highly durable. Its range of applications spans various industries, including automotive, chemical, woodworking, papermaking, steel, and aerospace, earning high praise and trust from a wide array of fields.
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The Model 7131A is a compact IEPE 3-axis accelerometer (acceleration pickup, acceleration sensor) that allows you to choose from a range of ±50g to a maximum of ±2000g. It features a high-density titanium body, and the connector contact is a 4-pin micro-technology. The Model 7131A is equipped with a shared piezoelectric ceramic crystal, achieving a flat frequency response up to 10kHz.
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TE Connectivity Sensor Solutions (formerly Measurement Specialties) is a global company that designs and manufactures a variety of sensors, including pressure, force, position, vibration, acceleration, speed, temperature, humidity, and fluid characteristics. Their products are chosen in many fields, such as space where high durability is required, automotive crash safety testing where absolute reliability is essential, and household electrical appliances where high cost performance is demanded. They also offer a range of extremely low-cost products, such as accelerometers using MEMS technology. If you have any concerns regarding sensors, please feel free to contact us. 【Featured Sensors】 - Pressure Sensors - Force Sensors - Position Sensors - Vibration Sensors - Fluid Characteristic Sensors - Temperature Sensors - Humidity Sensors ◇◆◆◇◆━━━━━━━━━━━━━━━━━━━━━━━━━ For detailed specifications and functions of each sensor, please download the catalog or feel free to contact us. ━━━━━━━━━━━━━━━━━━━━━━━━━◇◆◆◇◆
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Free membership registrationThis product is a current sensor that applies the magnetic effect on current known as the Hall effect, allowing for current measurement simply by passing a cable through it. It is used in fields such as automotive collision safety.
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Free membership registrationThis product is a current sensor that applies the magnetic effect known as the Hall effect, allowing for current measurement simply by passing a cable through it. It is used in fields such as automotive collision safety.
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