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FPI Sensors International is the premier manufacturer of custom and standard liquid level sensors and float switches. With 20 years of experience, we are dedicated to efficiency, quality, integrity and building long-lasting customer relationships.
FPI Sensors,
1301 Corporate Center Drive, Suite 140,
Eagan,MN,55121,USA,
Phone: 1-800-852-9984,
Fax: (651) 681-1888,
Contact Person: Gary Maas,
Contact Email: info@fpisensors.com,
Website: www.fpisensors.com,
You Tube URL: www.youtube.com/watch?v=cDDYCgedhb4,
Main Keywords:
liquid level sensor,float switch,water level sensor,liquid flow switch,float level sensor
Conexões Instrumentais: Quarto Sensorial Convida
Teatro de Arena
15, 16 e 17 de março de 2013
por Luiza Girardello
Surfside Beach, Lakewood campground, Murrell’s Inlet, SBB, Harley Davidson, Knight’s Cycles, Shane K Smith, Raptor 332 TS, Valentine’s Day Dogs, Taco. Boltiton, Toy Hauler Tie Down Bar, Wicked Tuna, Shakedown Cruise, Sensor spots, Jellyfish, sand, beach, Pelican, Seagul
The Boltiton Bar did great despite some South Carolina Potholes. My bike came lose once due to faulty straps. The Boltiton bar didn’t budge! We made our Shakedown Cruise with our Raptor 332 TS Toy Hauler for our Anniversary 20170220.
This is our Shakedown Cruise with our Raptor 332 TS. It is brand new and we are finding plenty wrong with the Toy Hauler! We also are finding plenty right! This is our Valentine's anniversary and won't let the problems ruin our vacation. 20170213.
Sensor City: Focus on Healthcare
This event focused on the role of sensor technologies within the healthcare industry andwas held in the brand new £237m Alder Hey Children's Hospital, Liverpool.
The aim of the day was to bring together a variety of businesses, academic and clinical staff from across the sector to discuss, network and share their knowledge surrounding the development and deployment of sensor systems.
Photos by Rhian Askins
www.lansoinstruments.com/products/ys-30-silicon-piezoresi...
Best for measuring pressure of corrosive fluids (liquids & gas) in industrial processes. Various Signals for Different Industrial Standards
Drawing of YS-30 Silicon Piezoresistive Pressure Transmitter
YS-30 Silicon Piezoresistive Pressure Transmitter
Application of YS-30 Silicon Piezoresistive Pressure Transmitter
Oil and Gas
Petrochemical Industry
Electrical Equipment
Mechanical Processing
Food and Beverage
Biopharmaceutical Industry
Feature of YS-30 Silicon Piezoresistive Pressure Transmitter
Small scale
High precision
Standard signal output
IP65
process connection can be customized
Technical Data of YS-30 Silicon Piezoresistive Pressure Transmitter
Certification:CPA (China), CRN (Canada)
Accuracy:0.25% & 0.5%
Overpressure:150% x Full Scale Range
Wetted Material:Stainless Steel
Case Material:Stainless Steel
Power Source:11-30V
Signal Output:4-20mA
Power Load:≤600Ω
Response Time:<1ms
Process Connection:M20 x 1.5, G½, ½NPT and Others
Electrical Connection:Angular Connector Form A EN175301-803, PG9 or PG11
Working Temperature:-20℃ to 60℃
Standard Measuring Range
MPa0~0.10~0.160~0.250~0.40~0.60~1
0~1.60~2.50~40~60~100~16
0~25
bar0~10~1.60~2.50~40~60~10
0~160~250~400~600~1000~160
0~250
psi0~150~300~600~1000~1600~200
0~3000~6000~8000~10000~15000~2000
0~30000~40000~5000
* Range could also be converted to units including millibar (mbar), kg/cm2 and kPa.
Options of YS-30 Silicon Piezoresistive Pressure Transmitter
Process Connection Dimensions Customizable
Here's an interesting shot. A close-up on a flower stamen positively crawling in Greenfly (Aphid)
Shot with a Samsung GX-1L and Kiron 105mm Macro.
Handheld at 1/100th sec @ f5.6
Conexões Instrumentais: Quarto Sensorial Convida
Teatro de Arena
15, 16 e 17 de março de 2013
por Luiza Girardello
The Global Humidity Sensor Market size is expected to reach $1.6 billion by 2025, rising at a market growth of 8.2% CAGR during the forecast period.
A humidity sensor or hygrometer can sense, measure, and record the air temperature and moisture present in the atmosphere. Humidity sensors are built of two metal plates and a non-conductive polymer film which is placed between the plates. The non-conductive polymer film absorbs air moisture and changes the current voltage between the two plates. Such voltage adjustments are converted into accurate digital readings. Humidity sensors are categorized into relative humidity sensors and absolute humidity (A.H) sensors. The most common types of units used to measure humidity are parts per million (PPM), dew or frost point (DF/PT), and relative humidity. These sensors are used in a range of applications such as HVAC systems, textiles, food processing, medical, weather stations, and automotive industries.
Humidity sensors can, with high accuracy, sense the levels of moisture in the air in real time. The utilization of these sensors is escalating in moisture-sensitive industries like food & beverages, healthcare, and textiles. This is a critical factor which can contribute towards the exponential growth of the market. Apart from this, government regulations in developed economies like North America and Europe have mandated the deployment of these sensors in industries like printing, food processing, and textile. For instance, the Food Safety and Standards Authority of India (FSSAI) have made the adoption of these sensors mandatory in the food & beverage industry. The reason being, higher levels of moisture can lead to contamination and harm the food quality. Another prominent factor that can stimulate market growth is the high demand for contactless sensors. This demand is associated with the potentially hazardous environments like places exposed to radiations.
Full Report: www.kbvresearch.com/humidity-sensor-market/
Traditional Smoke detectors detect when smoke or fire occurs. The functionality of a Smart Home Smoke detector would be similar to detecting when smoke or fire is detected, but they make an extra effort of sending a notification to the mobile as a warning. This helps the homeowner to rescue the house from burning.
JB Weld should hold it, but I want to make sure I get a tight seal. Kapton covers the sensor orifices to prevent epoxy contamination.
The original design used batteries and a manually operated switch to illuminate the LEDs. Occasionally the batteries were too discharged to drive the LED strings well, so the design was changed to run off a 12V mains supply.
In order to not run all the time through the day the above circuit was made to replace the switch.
R6 is a light dependent resistor and its resistance value varies with illumination. In daylight it has a low resistance, and in darkness it is high resistance.
The pot allowed some trimming for when dawn/dusk are detected. Once the daylight gets below a certain level the voltage on the base of Q2 has risen enough to turn the transistor on - which then turns on Q1. Q1 supplies 12V power to the LED board.
To prevent some oscillation of on/off states around dusk and dawn R4 provides a small amount of positive feedback to generate some hysteresis.