Wednesday 23 December 2015

Contrinex inductive sensors

Robust and highly reliable, Contrinex inductive sensors are the fit-and-forget choice for non-contact detection of metallic targets at distances up to 40 mm. Vacuum-encapsulated electronics and metal housings protect against shock, vibration, dust, dirt and moisture, making inductive sensors ideal for highly demanding conditions. An inductive sensor generates a magnetic field that is attenuated by a metal target. As a sensor nears its target, a sensing circuit detects the degree of attenuation and switches the output accordingly. Patented Condist® oscillator circuitry allows best-in-class operating distances, while all-metal construction – including the sensing face – is possible with revolutionary Condet® technology. Designers everywhere specify Contrinex inductive sensors as industrial limit switches and position switches, as pulse-counting devices, or for distance and speed measurement.
Future Sky Equipment Agency of Contrinex in Dubai  




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proximity sensor

A proximity sensor is a sensor able to detect the presence of nearby objects without any physical contact.
A proximity sensor often emits an electromagnetic field or a beam of electromagnetic radiation ( infrared, for instance), and looks for changes in the field or return signal. The object being sensed is often referred to as the proximity sensor's target. Different proximity sensor targets demand different sensors. For example, a capzcitive or photoelectric sensor might be suitable for a plastic target; an inductive proximity sensor always requires a metal target.
The maximum distance that this sensor can detect is defined "nominal range". Some sensors have adjustments of the nominal range or means to report a graduated detection distance.
Proximity sensors can have a high reliability and long functional life because of the absence of mechanical parts and lack of physical contact between sensor and the sensed object.
Proximity sensors are commonly used on smartphones to detect (and skip) accidental touchscreen taps when held to the ear during a call. They are also used in machine vibration monitoring to measure the variation in distance between a shaft and its support bearing. This is common in large steam turbines , compressors, and motors that use sleeve-type bearings.
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Contrinex

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Datexel manufactures a large range of head mounted temperature transmitters. Field proven and high accuracy are the ingredients in the Datexel range of head mount temperature transmitters. Low cost, fully isolated, PC programmable, direct or inverse output, up scale or down scale burn out are just some of the features available on the Datexel range of head mounted temperature transmitters.
Datexel also manufactures ATEX IS certified head mount temperature transmitters. The ATEX IS certified head mount temperature transmitters also have options for isolation, PC programmable, direct or inverse output, up scale or down scale burn out.
The DAT1010 head mount temperature transmitters convert RTD's (Pt100, Pt1000, Ni100 and Ni1000), Resistance up to 2000 Ohms, Potentiometers up to 2 K Ohms and mV up to 700mV. The DAT1015, DAT1061 and DAT1066 also convert Thermocouples with full linearization. The standard output of these transmitters is 4-20mA and they have a large voltage tolerance of 10 to 32 Vdc. The DAT1061 and DAT1066 provide an isolated output. The DAT1135 head mounted temperature converter has a voltage output. The DAT1010-OEM is a low cost temperature transmitter for RTD that can be fitted into other enclosures.
                                            Future Sky Equipment Agency Of Datexel In Dubai.

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Monday 21 December 2015

Ultrasonic transducers


Ultrasonic transducers are transducers  that convert ultrasound waves to electrical sounds or vice versa. Those that both transmit and receive may also be called ultrasound transceivers; many ultrasound sensors besides being sensors are indeed transceivers because they can both sense and transmit. These devices work on a principle similar to that of transducers used in radar and sonar systems, which evaluate attributes of a target by interpreting the echoes from radio or sound waves, respectively. Active ultrasonic sensors generate high-frequency sound waves and evaluate the echo which is received back by the sensor, measuring the time interval between sending the signal and receiving the echo to determine the distance to an object. Passive ultrasonic sensors are basically microphones that detect ultrasonic noise that is present under certain conditions, convert it to an electrical signal, and report it to a computer.
Future Sky Equipment Provider Sensopart in Dubai .
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Monday 14 December 2015

Color Sensor Sensopart

Colour and contrast differences are important features for the detection and differentiation of objects. Sensors from SensoPart reliably detect coloured objects, printed marks or labels during production processes and quality assurance.

Our colour and contrast sensors are suitable for almost all relevant automation tasks thanks to their precise colour evaluation and high cycle frequency. SensoPart also offers a luminescence sensor for the detection of invisible luminescent colour marks.

Our vision colour sensors of the VISOR® Color series are particularly versatile. They offer very high colour selectivity and can also detect active (self-lighting) colours. The freely programmable Eyesight vision system offers even more comprehensive possibilities.
Sensopart is the most popular Of Color Sensor In Industry .

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SensoPart

What our customers say about us … “Products from SensoPart are very easy to integrate and configure.”

“SensoPart is always a good contact when tasks are tricky.”
“SensoPart has practical people.”
“We always get rapid and competent support from SensoPart.”
“SensoPart understands us and knows what we need.

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Tuesday 8 December 2015

Pressure Transmitter
Trafag pressure transmitters are used for electronically measuring and evaluating pressure. Over the decades, they have proven themselves in a multitude of demanding applications in harsh environments. They are available in many different designs to suit pressure and electrical connections, measuring procedures, electrical output signals and certifications (CE, EX, rail and ship). Superior technology and precise manufacturing ensure that the transmitters work perfectly, especially in areas where high requirements are placed on long-term stability, vibration resistance, electromagnetic compatibility, shock resistance or temperature insensitivity.
Technology
Thin-film-on-steel (welded and O-ring free)or thick-film-on-ceramic pressure sensors are key components of Trafag pressure transmitters. Both sensor technologies as well as the ASIC (application-specific microchip) have been developed and produced in-house. As a result, compact pressure sensors and electronics work in perfect partnership and achieve a unique level of long-term stability and reliability even under the most adverse environmental conditions. Trafag is a technological pioneer when it comes to miniaturising robust pressure transmitters.


Thin- film - on -steel - technology
  • Very good long term stability
  • Resistant at high media temperatures
  • Completely welded stainless steel sensor system without O-rings
  • Resistant to very high over pressures and ideal for nominal pressures up to 3000 bar


Thick - film - on - ceramic - technology

  • Resistant to aggressive media
  • Ideal for low pressure ranges and absolute measurement
  • Economical
 
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Different type of Pressure sensor
In Different Bars
By Hogller - Trafag - Atek Brands 
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SensoPart wins Automation Award
The SME manufacturer of sensors and intelligent camera systems for factory automation SensoPart Industriesensorik wins the Automation Award from Konradin Verlag in the category „Standard Components & Sensors“. The visitors of the International Trade Fair sps ipc drives 2014 in Nuremberg ranked the vision sensor VISOR® first.
Before, a jury consisting of the congress comitee of sps ipc drives, VDMA, ZVEI and the editorial department of the trade magazin „elektro AUTOMATION“ had nominated the socalled „BLOB“ function of SensoPart’s VISOR® vision sensor together with four other products for the Automation Award. During sps ipc drives 2014 in Nuremberg, the nominated products were presented to the professional audience who then voted for their favourite.
ision Sensors are industry-oriented intelligent cameras, which evaluate objects, e.g. in respect of their presence, shape or colour and are used, among others, in production lines. The innovative „BLOB“ (Binary Large Object) function of VISOR® allows to differentiate whether parts – e.g. on a conveyor belt – are face up or face down. With this feature, VISOR® is currently unique on the market.
According to Konradin Verlag, the Automation Award is the most important prize in the automation sector. It is awarded to new and innovative products in the categories „Process Control & System Solutions“ and „Standard Components & Sensors“. In December 2014, SensoPart received the prize and the certificate at the awards ceremony in Leinfelden-Echterdingen.

Monday 7 December 2015

pressure - sensing technology

There are two basic categories of analog pressure sensors,
Force collector types These types of electronic pressure sensors generally use a force collector (such a diaphragm, piston, bourdon tube, or bellows) to measure strain (or deflection) due to applied force (pressure) over an area.
  • Piezoresistive strain gauge
Uses the  piezoresistive effect of bonded or formed strain gauges to detect strain due to applied pressure, resistance increasing as pressure deforms the material. Common technology types are Silicon (Monocrystalline), Polysilicon Thin Film, Bonded Metal Foil, Thick Film, and Sputtered Thin Film. Generally, the strain gauges are connected to form a wheatstone bridge circuit to maximize the output of the sensor and to reduce sensitivity to errors. This is the most commonly employed sensing technology for general purpose pressure measurement.
  • Capacitive
Uses a diaphragm and pressure cavity to create a variable capacitor to detect strain due to applied pressure, capacitance decreasing as pressure deforms the diaphragm. Common technologies use metal, ceramic, and silicon diaphragms.
  • Electromagnetic
Measures the displacement of a diaphragm by means of changes ininductance (reluctance), LVDT,  Hall Effect, or by eddy current principle.
  • Piezoelectric
Uses the  piezoelectric effect in certain materials such as quartz to measure the strain upon the sensing mechanism due to pressure. This technology is commonly employed for the measurement of highly dynamic pressures.
  • Optical
Techniques include the use of the physical change of an optical fiber to detect strain due to applied pressure. A common example of this type utilizes Fiber Bragg Gratings. This technology is employed in challenging applications where the measurement may be highly remote, under high temperature, or may benefit from technologies inherently immune to electromagnetic interference. Another analogous technique utilizes an elastic film constructed in layers that can change reflected wavelengths according to the applied pressure (strain).
  • Potentiometric
Uses the motion of a wiper along a resistive mechanism to detect the strain caused by applied pressure.
Other types
These types of electronic pressure sensors use other properties (such as density) to infer pressure of a gas, or liquid.
  • Resonant
Uses the changes in  resonant frequency in a sensing mechanism to measure stress, or changes in gas density, caused by applied pressure. This technology may be used in conjunction with a force collector, such as those in the category above. Alternatively, resonant technology may be employed by exposing the resonating element itself to the media, whereby the resonant frequency is dependent upon the density of the media. Sensors have been made out of vibrating wire, vibrating cylinders, quartz, and silicon MEMS. Generally, this technology is considered to provide very stable readings over time.
  • Thermal
Uses the changes in  thermal conductivity of a gas due to density changes to measure pressure. A common example of this type is the Pirani guage.
  • Ionization
Measures the flow of charged gas particles (ions) which varies due to density changes to measure pressure. Common examples are the Hot and Cold Cathode gauges.
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Saturday 28 November 2015

Hogller Company


Hogller company

Since Hogller started its business 2004, it has been growing steadily special company Pressure Sensors. Hogller has renown for a leading company of Italy in the field,be faithful in the mission to provide superior Pressure Sensors.

Hogller Brand

Hogller is an Italian brand catering for industrial Automation solutions specializing in Pressure Transmitters and dedicated to serve its customer in a holistic way and making sure that all aspect of services and support are thoroughly covered so that customer get the best value for good quality with competitive prices.

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Laser & ultrasonic sensor

SensoPart concentrates on the development, production and marketing of photoelectronic sensors and image-processing vision sensors for factory automation. Our products are used in numerous applications and sectors from automotive and machine construction, through the electronics and solar industries, to the food and pharmaceutical industries
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color Sensor: http://fse-automation.com/…/produ…/sensors/color-sensor.html
laser sensor:http://fse-automation.com/…/produ…/sensors/laser-sensor.html

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Ultarasunic & Laser Sensor