OptioLaser L0200 for Level, Distance and Position Measurement of Solids and Liquids (up to 100m/328ft)

Código: OptioLaser L0200 for Level, Distance and Position Measurement of Solids and Liquids (up to 100m/328ft)

Actualizado: 2025-01-02

Principle of Operation
The OptioLaser L0200 is a non-contact laser sensor used to measure the distance to solid and liquid surfaces, slurries or murky water. Solid surfaces can be anything from a at metal plate on the side of an overhead crane, to the top of material stored in a silo. With an easy to use menu system, the OptioLaser can be configured for either distance or level measurement and the high accuracy, long range and fast update rate make this the ideal sensor for many different applications.

Sultan Acoustic Wave Level Transmitter – Power over Ethernet (PoE) Series

Código: Sultan Acoustic Wave Level Transmitter - Power over Ethernet (PoE) Series

Actualizado: 2024-01-02

Principle of Operation
The Sultan PoE 234 emits a high powered Acoustic Wave transmit pulse which is reflected from the surface of the material being measured. The reflected signal is processed using specially developed software to enhance the correct signal and reject false or spurious echoes.
The transmission of high powered Acoustic Waves ensures minimal losses through the environment where the sensor is located. Due to the high powered emitted pulse, any losses have far less effect than would be experienced by traditional ultrasonic devices. More energy is transmitted hence more energy is returned. Advanced receiver circuitry is designed to identify and monitor low level return signals even when noise levels are high. The measured signal is temperature compensated to provide maximum accuracy to the outputs and display.
The Sultan PoE level transmitter is compataible with the HawkEye 365 Online Inventory and Level Monitoring Portal.
This intelligent, networkable and cloud-reasdy portal has the ability to connect multiple units to a powered switch. Data streamed over any standard network, for local and remote control, management and monitoring. Complete cloud inventory monitoring via HawkEye365, learn more.
Certifications
ATEX, IECEx, CE, CSA

Sultan Non-Contact Acoustic Wave Series

Código: Sultan Non-Contact Acoustic Wave Series

Actualizado: 2024-01-02

Principle of Operation
The transmission of high powered acoustic waves ensures minimal losses through the environment where the sensor is located. Due to the high powered emitted pulse, any losses have far less effect than would be experienced by traditional ultrasonic devices. More energy is transmitted hence more energy is returned. Advanced receiver circuitry is designed to identify and monitor low level return signals even when noise levels are high. The measured signal is temperature compensated to provide maximum accuracy to the outputs and display.
Certifications
ATEX, IECEx, CE, CSA

OptioLaser L100 for Level, Distance and Position Measurement of Solids and Liquids (up to 50m/0164ft)

Código: OptioLaser L100 for Level, Distance and Position Measurement of Solids and Liquids (up to 50m/0164ft)

Actualizado: 2024-01-02

Principle of Operation
The OptioLaser L100 is a non-contact laser sensor used to measure the distance to solid and liquid surfaces, slurries or murky water. Solid surfaces can be anything from a at metal plate on the side of an overhead crane, to the top of material stored in a silo. With an easy to use menu system, the OptioLaser can be configured for either distance or level measurement and the high accuracy, long range and fast update rate make this the ideal sensor for many different applications.

Centurion Guided Radar Level Transmitter

Código: Centurion Guided Radar Level Transmitter

Actualizado: 2024-01-02

Customer Testimonial
“Our family oil and gas exploration and production company has been using Hawk CGR guided wave radar tank level sensors for over six years now, and the devices are highly reliable and accurate.  The setup on the latest version is incredibly simple and fast with the LCD screen and on-device menu navigation buttons—it took less than 10 minutes per device to configure.  The LCD screens with tank level readouts have been extremely helpful as we no longer have to rely on manual tank gauging.  These readouts make it easy for the pumper to monitor tank levels in real time while circulating bottoms off of oil tanks, or otherwise moving fluid from one tank to another.  The low power consumption allows us to run multiple sensors off of solar panels. Technical support has been very responsive and helpful.  We would highly recommend the Hawk CGR tank level sensors to anyone looking for a stable, accurate, and easy-to-use tank level monitoring solution.” -Adam, Midland, TX [Oil & Gas Industry]
Principle of Operation
Guided-wave technology sends the radar pulse down a probe to measure either liquids, solids or a low dielectric to high dielectric Interface level. The pulse hits the surface and / or Interface and is reflected back up the probe to the sensor, where the transit time is translated into a distance using time of fight and time expansion. The amplitude of the reflection depends on the dielectric constant of the product.
Certifications
ATEX Ex II, IECEx, CE, CSA Class 1 Div 1, FM Class 1 Div 1, FM Class II,III Div 1, FM General Purpose, CSA General Purpose

Awards 

CGR PoE AWARDS
• Plant Engineering Product of the Year Award
• Chemical Processing Vaaler Award
• P.I. Innovation Award Honorable Mention

Senator S80L FMCW 80GHz Radar for Liquids

Código: Senator S80L FMCW 80GHz Radar for Liquids

Actualizado: 2024-01-02

Principle of Operation
Frequency Modulated Continuous Wave (FMCW) technology features a continuous signal transmission, providing immediate measurement updates with zero delays. Unlike pulse radar, where the transmitter sends a pulse and then stop and waits for a reflection - FMCW radar emits a continuous signal. It determines the distance to the target by measuring the frequency difference between the emitted and the reflected signals. This frequency change is also called the \"Doppler Shift\" of the returned signal.
Certifications
ATEX, IECEx, CE, cQPSus, NEPSI

Senator S80P FMCW 80GHz Radar for Powders and Fines

Código: Senator S80P FMCW 80GHz Radar for Powders and Fines

Actualizado: 2024-01-02

Principle of Operation
Frequency Modulated Continuous Wave (FMCW) technology features a continuous signal transmission, providing immediate measurement updates with zero delays. Unlike pulse radar, where the transmitter sends a pulse and then stop and waits for a reflection - FMCW radar emits a continuous signal. It determines the distance to the target by measuring the frequency difference between the emitted and the reflected signals. This frequency change is also called the \"Doppler Shift\" of the returned signal.
Certifications
ATEX, IECEx, CE, cQPSus, NEPSI

Senator S80H FMCW 80GHz Radar for Liquids with Hygienic Requirements

Código: Senator S80H FMCW 80GHz Radar for Liquids with Hygienic Requirements

Actualizado: 2024-01-02

Principle of Operation
Frequency Modulated Continuous Wave (FMCW) technology features a continuous signal transmission, providing immediate measurement updates with zero delays. Unlike pulse radar, where the transmitter sends a pulse and then stop and waits for a reflection - FMCW radar emits a continuous signal. It determines the distance to the target by measuring the frequency difference between the emitted and the reflected signals. This frequency change is also called the \"Doppler Shift\" of the returned signal.
Certifications
ATEX, IECEx, CE, cQPSus, NEPSI

Senator S24L FMCW 24GHz Radar for Liquids

Código: Senator S24L FMCW 24GHz Radar for Liquids

Actualizado: 2024-01-02

Principle of Operation
Frequency Modulated Continuous Wave (FMCW) technology features a continuous signal transmission, providing immediate measurement updates with zero delays. Unlike pulse radar, where the transmitter sends a pulse and then stop and waits for a reflection - FMCW radar emits a continuous signal. It determines the distance to the target by measuring the frequency difference between the emitted and the reflected signals. This frequency change is also called the \"Doppler Shift\" of the returned signal.
Certifications
ATEX, IECEx, CE, cQPSus, NEPSI

Senator S24W FMCW 24GHz Radar for Liquids (Water and Wastewater Industry)

Código: Senator S24W FMCW 24GHz Radar for Liquids (Water and Wastewater Industry)

Actualizado: 2024-01-02

Principle of Operation
Frequency Modulated Continuous Wave (FMCW) technology features a continuous signal transmission, providing immediate measurement updates with zero delays. Unlike pulse radar, where the transmitter sends a pulse and then stop and waits for a reflection - FMCW radar emits a continuous signal. It determines the distance to the target by measuring the frequency difference between the emitted and the reflected signals. This frequency change is also called the \"Doppler Shift\" of the returned signal.
Certifications
CE, NAMUR

Senator S24S FMCW 24GHz Radar for Solids

Código: Senator S24S FMCW 24GHz Radar for Solids

Actualizado: 2024-01-02

Principle of Operation
Frequency Modulated Continuous Wave (FMCW) technology features a continuous signal transmission, providing immediate measurement updates with zero delays. Unlike pulse radar, where the transmitter sends a pulse and then stop and waits for a reflection - FMCW radar emits a continuous signal. It determines the distance to the target by measuring the frequency difference between the emitted and the reflected signals. This frequency change is also called the \"Doppler Shift\" of the returned signal.
Certifications
ATEX, IECEx, CE, cQPSus, NEPSI

Senator S24C FMCW 24GHz Radar for Corrosive Liquids

Código: Senator S24C FMCW 24GHz Radar for Corrosive Liquids

Actualizado: 2024-01-02

Principle of Operation
Frequency Modulated Continuous Wave (FMCW) technology features a continuous signal transmission, providing immediate measurement updates with zero delays. Unlike pulse radar, where the transmitter sends a pulse and then stop and waits for a reflection - FMCW radar emits a continuous signal. It determines the distance to the target by measuring the frequency difference between the emitted and the reflected signals. This frequency change is also called the \"Doppler Shift\" of the returned signal.
Certifications
ATEX, IECEx, CE, cQPSus, NEPSI