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Supplier: American Sensor Technologies, Inc. - AST
Description: The AST4510 submersible pressure sensors are approved to UL/cUL913 (CSA 157) Class 1 Div 1, Groups C and D for use in intrinsically safe areas with an approved barrier. For pressure ranges from 0-2.5 to 100 PSI that require a wide range of media compatibility, the submersible series is an
- Accuracy: 0.2500 ±% FS
- Device Category: Transducer
- Electrical Output: Analog Voltage, Analog Current
- Features: Temperature Compensation
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Supplier: American Sensor Technologies, Inc. - AST
Description: The AST4500 submersible pressure sensors are approved to UL/cUL913 (CSA 157) Class 1 Div 1, Groups C and D for use in intrinsically safe areas with an approved barrier. For pressure ranges from 0-2.5 to 100 PSI that require a wide range of media compatibility, the submersible series is an
- Accuracy: 0.2500 ±% FS
- Device Category: Transducer
- Electrical Output: Analog Voltage, Analog Current
- Features: Temperature Compensation
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Supplier: Merit Sensor Systems
Description: The HTS Series is a surface-mountable pressure sensor that offers you a choice between an analog or digital output. But the HTS Series is not just your typical surface-mount device. Due to its backside-pressure-me asurement design, the sensor’s electronics are isolated, making the
- Device Category: Sensor
- Media: Liquid, Gas
- Operating Temperature: -40 to 257 F
- Pressure Reading: Absolute, Gauge
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Supplier: American Sensor Technologies, Inc. - AST
Description: American Sensor Technologies, presents the AST4100 as a compact, price-competitive stainless steel pressure sensor. Compatible with a wide range of liquids and gases over pressure ranges up to 10,000 PSI, the AST4100 covers a diversified variety of applications. AST4100
- Accuracy: 0.5000 ±% FS
- Device Category: Sensor, Transducer
- Electrical Output: Analog Voltage, Analog Current
- Features: Temperature Compensation
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Supplier: RS Components, Ltd.
Description: mounting Pressure Reading Type = Gauge Minimum Pressure Reading = 0bar Maximum Pressure Reading = 0.1bar Accuracy = ±1 % Media Measured = Gas, Liquid Level Electrical Connection = PCB Mount Response Time = 1 ms Maximum Current = 7 mA Supply Voltage = 4.75 - 5.5 V Housing Material =
- Accuracy: 1 ±% FS
- Device Category: Sensor
- Media: Gas, Other
- Pressure Reading: Gauge
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Supplier: RS Components, Ltd.
Description: stainless steel casing (protection IP65) with G1/8 Inch thread Pressure Reading Type = Gauge Minimum Pressure Reading = 0bar Maximum Pressure Reading = 10bar Accuracy = ±0.5 % Media Measured = Gas, Liquid Level Electrical Connection = PCB Mount Response Time = 1 ms Maximum Current = 23
- Accuracy: 0.5000 ±% FS
- Device Category: Sensor
- Media: Gas, Other
- Pressure Reading: Gauge
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Supplier: RS Components, Ltd.
Description: Type = Gauge Minimum Pressure Reading = 0bar Maximum Pressure Reading = 0.1bar Accuracy = ±1 % Media Measured = Gas, Liquid Level Electrical Connection = PCB Mount Supply Voltage = 10 V Housing Material = Plastic Maximum Operating Temperature = +85°C Minimum Operating Temperature =
- Accuracy: 1 ±% FS
- Device Category: Sensor
- Media: Gas, Other
- Operating Temperature: -22 to 185 F
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Supplier: RS Components, Ltd.
Description: mounting Pressure Reading Type = Gauge Minimum Pressure Reading = 0bar Maximum Pressure Reading = 1bar Accuracy = ±1 % Media Measured = Gas, Liquid Level Electrical Connection = PCB Mount Response Time = 1 ms Maximum Current = 7 mA Supply Voltage = 4.75 - 5.5 V Housing Material =
- Accuracy: 1 ±% FS
- Device Category: Sensor
- Media: Gas, Other
- Pressure Reading: Gauge
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Supplier: Brooks Instrument
Description: variety of gases, change gas types frequently or need to re-range while preserving gas measurement and control accuracy. It enables a new level of process flexibility combined with unprecedented flow measurement and control performance. Features Programmable multi
- Mass Flow Rate: 8.26E-6 to 0.1376 lbs/min
- Electrical Output: Analog Current, Analog Voltage
- Features: Controller Functions
- Interface Options: Serial / Digital, Network / Fieldbus
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The electro-optical level sensor is used to monitor the level of liquids. The model LLS.ELS1150 is an enhanced electro-optical level switch from IMS sensors. This series utilize IMS advanced photoelectric sensor ASICs to achieve a fast, stable, cost-effective sensor with no (read more)
Browse Liquid Level Switches Datasheets for Intellisense Microelectronics Ltd. -
The LLS.DTM12 series optical liquid level switch is a low cost single point level sensor designed for semitransparent, clear, and low viscosity liquids. The sensor is available in Trogamid or Polysulfone. The Polysulfone version with high chemical resistance is suitable for most acids and bases (read more)
Browse Level Sensors Datasheets for Intellisense Microelectronics Ltd. -
IMS use its high performance optical sensor ASIC to make compact and low cost optical liquid level sensor. Performance: • High performance ASIC based compact sensor • Build in 100ms power on delay eliminate false trigger when power up • Self (read more)
Browse Level Sensors Datasheets for Intellisense Microelectronics Ltd. -
1. High Accuracy and Sensitivity Photoelectric liquid level sensors detect changes in light intensity or refraction caused by the presence or absence of liquid. This optical method ensures exceptional accuracy, even for minute changes in liquid levels. By leveraging (read more)
Browse Liquid Level Sensors Datasheets for Intellisense Microelectronics Ltd. -
This optical liquid level sensor is known for its high precision and durability, making it ideal for liquid level monitoring in extreme environments. Designed for the demands of the chemical, petroleum, and food industries, it features a compact design and easy installation. This sensor helps (read more)
Browse Liquid Level Sensors Datasheets for Intellisense Microelectronics Ltd. -
With an impressive measuring distance of up to 6 mm from the container, the EBE level sensor enables continuous and non-contact level measurement. This technology avoids direct contact with the medium, which makes complex structures on the tanks unnecessary and prevents contamination of the (read more)
Browse Level Sensors Datasheets for EBE Elektro-Bau-Elemente GmbH -
The electro-optical level sensor is used to monitor the level of liquids. The model LLS.ELS1/2NPT is an enhanced electro-optical level switch from IMS sensors. This series utilize IMS advanced photoelectric sensor ASICs to achieve a fast, stable, cost-effective sensor with no (read more)
Browse Liquid Level Switches Datasheets for Intellisense Microelectronics Ltd. -
the detection of liquids. Mini Capacitance Probe: Point Level for Liquids The MCP-100 compact sensor is useful for measuring the (read more)
Browse Liquid Level Sensors Datasheets for BinMaster, Inc. -
Tronics is the only provider of both closed-loop MEMS Accelerometers and Gyros, taking MEMS inertial sensors to an unrivalled level of performance. Closed-loop electronics, also called force-feedback, brings several key advantages to inertial sensors, including superior (read more)
Browse Datasheets for Tronics Microsystems -
, impact, far superior to float-type or reed switch level sensors in harsh environments. Versatile measurement range 0 to 100mm, 0 to 3000mm, and various outputs including 4-20mA, 0-5V, MODBUS and more. (read more)
Browse Level Sensors Datasheets for Holykell Technology Company Limited
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MSilica Nanoparticles Treated by Cold Atmospheric-Pressure Plasmas Improve the Dielectric Performance of Organic-Inorganic Nanocomposites
. The liquid-phase PDMS was made by mixing PDMS. monomers and a curing agent in a 10:1 ratio (Sylgard 184,. Dow Corning, Midland, MI, USA). Bubbles in the liquid. PDMS were removed by exposing the mixture to a. vacuum for 1 h. PDMS liquid was poured onto the silicon. master, cured for 45 min at 1001C
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A liquid level sensor based on fiber optic array and magnetic coupling
[10] Zhao Jiang-hai, et al., “White-Light Interferometric Fiber Optic Liquid Level Sensor Based on MEMS Fabry-Perot Cavity,” Photonics and Optoelectronic (SOPO), 2010 Symposium on, 1-4(2010).
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Optimization of the Liquid Height Measurement in the Fuel Reservoirs Utilizing Silicon
Based Pressure Sensors and Considering Their Thermal Characteristics
The Use of MEMS Pressure Sensor in Measuring the Liquid Levels in Reservoirs: .
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Method for Creating Low Cost 3D MEMS Chemical Sensors by Using Through Wafer VIAS and Wafer Bonding
Earlier work on wafer level packaging of MEMS scale chemical sensors was primarily focused on the mechanical retention of liquid chemicals, and did not consider a 3D electrical architecture [1].
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Integrated Circuits for Analog Signal Processing
Detecting physical variation through capacitance sensing is one of the most common approach in a wide variety of physical measurement systems, such as liquid - level gauges, pressure meters, rotor displacement in integrated accelerometers, and MEMS -based sensors , etc. MEMS has favored the…
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Capacitive Sensor Signal Conditioner - Nasa Tech Briefs :: NASA Tech Briefs
MEMS sensing elements, such as pressure sensors for hydraulic control systems, humidity sensors, and liquid level gauges also benefit from these features.
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A Low-noise CMOS Readout Circuit for Capacitive Micro-sensors
Capacitive MEMS sensors are used to measure many physical variables like position, accelerometer, angular speed, and liquid level to detect the environmental changes [1-5].
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ZMDI 14-Bit Capacitive Sensor Conditioning IC Raises Bar on Accuracy, Linearity, and Temperature for Pressure Sensors
The device is particularly suited for MEMS -based sensor elements, such as pressure sensors for hydraulic control systems, humidity sensors, and liquid level gauges.
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A Novel Interface Circuit for Capacitive Sensors Using Correlated Double Sampling Demodulation Technique
In the last decade, the fast development CMOS- MEMS micro sensor systems that can measure many physical variables like position, accelerometer, angular speed, and liquid level to detect the environmental changes.
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Liquid packaging for MEMS sensors and RF devices
In the case of a MEMS current sensor , packaging in a liquid environment reduces the change in sense beam resistance for a given current level and increases the total current handling capability by 50% (fig. 7).
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Study on Leveling Control for a Paddy Laser Leveler
Leveling Control Using a Gyro and an Accelerometer Seeing that the liquid inclination sensor was a bottleneck in improving the system’s sluggishness, a MEMS acceleration sensor was used to be substituted for the liquid type sensor.
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