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Sensors
detect a physical event then translate to a representative analog signal.
See Also: Measurement, Detectors, Meters, Transducers
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Wind Speed and Wind Direction Sensors
Wind vanes measure wind direction and are often used with anemometers, which measure wind speed. Campbell Scientific offers a variety of anemometer designs: cup, propeller, ultrasonic, sonic, and lidar. Most of our wind sensors are modified slightly from the manufacturers’ stock items so that they may be used with our dataloggers in research, air quality, and general purpose meteorological applications.
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Electrical Current Sensors
Electrical current sensors detect the flow of current along an electrical wire by measuring (or sensing) the magnetic field that is generated by the flow of electrical current. The sensors output signals that are transmitted to dataloggers
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Redox (ORP) Sensors
ORP sensors measure the oxidation-reduction potential—the tendency to gain or lose electrons when a solution comes in contact with a chemical substance. ORP measurements are used to ensure that a solution has been completely reduced or oxidized. ORP sensors are often used in tandem with pH sensors, which measure the hydrogen ion activity in a solution.
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Air Temperature and Relative Humidity Sensors
Air temperature and relative humidity probes typically consist of two separate sensors packaged in the same housing. Often relative humidity is measured with a capacitive RH sensor, while air temperature is measured by a PRT.
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Vibrating Wire Peripherals
Many Campbell Scientific vibrating-wire peripherals enable dataloggers to read vibrating-wire sensors (also known as vibrating-wire or vibrating-strip transducers). These sensors measure strain, load, pressure, and water level, and they output a frequency signal generated by a vibrating filament. Campbell Scientific also offers vibrating-wire dataloggers that read the sensors directly.
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Snow Water Equivalent and Snow Depth Sensors
Campbell Scientific offers two types of sensors for snowpack applications: snow water equivalent (SWE) sensors and snow depth sensors. SWE sensors measure the amount of water contained within a snowpack. Snow depth sensors measure the depth of the snowpack.
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Precipitation Sensors
Campbell Scientific offers several types of sensors to measure precipitation: tipping bucket rain gages, siphoning tipping bucket rain gages, heated rain gages, and snowfall adapters. Users often select their precipitation sensors based on the type of precipitation to be measured (rain or snow), as well as the needed orifice diameter, measurement range, and accuracy level.
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Rotary Position Sensors -AEC- Q200 Compliant
A rotary position sensor translates angular mechanical position to an electrical signal. Rotary position sensors are designed for applications that typically require frequent adjustment. Shaftless designs allow for different engagement mechanisms, such as a customized shaft, a motor control, a human interface adjustment or a mechanical arm position locator. Rotary position sensors can be used in applications where a user needs to control a variable output such as a frequency, speed or volume control. Typical applications include test and measurement equipment, consumer electronics, small engines, robotics, and medical equipment. The Bourns® Model 3382 Series uses resistive technology to sense rotary position.
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Contacting Multiturn
Bourns Contacting Multiturn Positions Sensors are available in busing and servo mount bodies, are often gangable, and also come with non-standard features and specifications. The Bourns 3547, 3548, and 3549 Series are designed for HMI and MMI applications.
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Sensors
Physical Acoustics’ sensors are built to "listen" to high frequency signals. Much like a highly-sensitive “ear,” Acoustic Emission sensors interpret the material’s “voice” into usable AE waveforms. Additionally, AE sensors help understand how materials behave in their natural setting.
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Space Payloads
With our expertise in both space and quantum technology we are exploring space based quantum instruments. CASPA is Teledyne e2v’s satellite platform for developing and demonstrating quantum scientific sensors and precision atomic timing in space.
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Charge Coupled Device (CCD) Standard Image Sensors
Teledyne e2v is the leading supplier of scientific grade Charge Coupled Device (CCD) image sensors for the most challenging low light imaging and spectroscopy applications.
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2D CMOS Image Sensors
Emerald 36M
Superior 36 Megapixel resolution - 6K square resolution - Multi-ROI feature enabling more objects to be captured in a single high resolution shot - Small global shutter pixel for blur-free images.With its high resolution, Emerald 36M improves inspection accuracy, increases throughput through an optimized inspection system path, and covers wider areas for surveillance or aerial mapping.
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EMCCD Image Sensors for Space and Ground-based Astronomy
EM (Electron Multiplication) is a technology that uses on-chip gain in the charge domain to effectively eliminate read noise from an image sensor. This enables advanced ultra-low light applications that require extreme sensitivity at fast frame rates such as adaptive optics and lucky imaging™.The combination of Teledyne e2v’s back-thinning technology and anti-reflection coatings enables industry leading quantum efficiency that can be optimised for applications in the visible, UV or NIR wavelength ranges.
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Charge Coupled Device (CCD) Image Sensors for Space and Ground-Based Astronomy
(CCDs) for Space science, Ground-based Astronomy, and Earth observation applications with an impressive record of successful deliveries to a wide range of customers over 40 years.All Teledyne e2v devices can be supplied partially or fully customised to fit the application and achieve the best possible system performance. CCD image sensor design, manufacture, test and characterisation are carried out in-house enabling control from start to finish. Multi-polysilicon, multi-metal and back-illumination options are available for high resolution, high sensitivity and very low noise.
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2D CMOS Image Sensors
Emerald 67M
Extreme Precision for Enhanced Manufacturing Yield and Long Distance Identification - 67 Megapixels delivers 8k of resolution on each side - Comprehensive ROI features, enable more objects to be captured in a single high resolution shot - High sensitivity with ultra low-noise performance for powerful identification.
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Electron Multiplication (EM) Standard Image Sensors
EM (Electron Multiplication) is a technology that uses on-chip gain in the charge domain to effectively eliminate read noise from an image sensor. This enables advanced ultra-low light applications that require extreme sensitivity at fast frame rates. Examples include life science applications such as single molecule detection, super resolution microscopy and spinning disk confocal microscopy along with physical science applications such as nanotechnology imaging, Bose Einstein condensates and soft X-ray spectroscopy, and astronomy applications such as adaptive optics and lucky imaging. The inclusion of an additional conventional output allows further flexibility for applications such as true 24 hour surveillance.
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Space & Science Imaging
Teledyne e2v has been trusted to design and deliver CCD and CMOS imaging sensors and sub-systems for over 150 space missions by the world's largest space agencies, including NASA, ESA, JAXA, CNSA and most recently for the Russian-led World Space Observatory.We offer space imaging solutions, including space qualified imaging sensors, arrays and sub-systems for space science, ground astronomy and Earth observation; helping solve the mysteries of the Universe and understand climate change on Earth.
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3D CMOS Image Sensors
Flash
High-resolution in a rectangular format, specifically designed for 3D laser triangulation - Very high frame rate and throughput combined with high power efficiency, delivering outstanding sampling resolution and speed with a high Gbps/W ratio - HDR feature embedded on-chip, to measure all kinds of surfaces - Feature-rich sensors, to perfectly meet application challenges.
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2D CMOS Image Sensors
Topaz
The Topaz series of industrial CMOS sensors include 2MP (1920 x 1080) and 1.5MP (1920 x 800) resolution devices. The sensors use state-of-the-art low noise, global-shutter pixel technology to offer powerful solutions and enable compact mobile designs for many applications.
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High-Speed Multipoint Fiber Optic Sensing
HYPERION
Luna’s HYPERION platform delivers reliable and high-performance measurement and monitoring solutions. Utilizing sensors based on Fiber Bragg Grating (FBG) or Fabry-Perot (FP) sensors, Luna’s HYPERION systems have been deployed in hundreds of challenging applications all over the world, delivering reliable, long-term monitoring with dense sensor installations.
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High-Definition Distributed Fiber Optic Sensing
ODiSI
Luna’s ODiSI system provides the world’s highest resolution distributed fiber optic sensing solution for strain and temperature measurement. Using low-profile optical fiber as sensors, the ODiSI system maps strain and temperature fields with sub-millimeter spatial resolution, providing unprecedented detail and data insight.
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SPARKlink Air
PS-2011
Connect two PASPORT sensors to your computer or tablet via bluetooth or through a USB connection.
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SPARK LXi2 Bluetooth Handheld Datalogger
PS-3600B
This is a Bluetooth, handheld science datalogger that lets students connect multiple wired and wireless sensors, collect data, generate live graphs, and perform data analysis.
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AirLink Interface
PS-3200
This economical interface makes PASPORT sensors cross-platform compatible.