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2012年9月11日 星期二

Field-Effect Sensors Eliminate Pump Switch Failure: Residential Applications


Executive Summary

Field-Effect sensing has the unique ability to detect fluids and semi-solid materials without making direct contact. If the material being targeted is conductive in nature, and the barrier wall through which is being is non-conductive, then Field-Effect is the technology of choice. Field-Effect sensing technology is ideally suited for sump, lift station, underground vault, wet well and storm water fluid level management applications.

Since 1997, nearly 200 million Field-Effect sensors have been deployed in industries such as appliance, consumer, automotive, medical and fitness (e.g., liquid level sensing, or in touch activated machine controls). By 2005, Field-Effect sensors had become the de facto standard for fluid level detection in marine and recreational vehicle applications, such as holding tank level monitoring and bilge pump control systems.

Over the years, pump life has been limited to the durability of a single component, the mechanical contact switch. As switch technology progressed from non-integrated to integrated float and switch designs, improved manufacturing processes, advanced coatings, etc, pump durability continued to be governed by the limitations of the mechanical contact switch and associated moving parts.

Recent advancements in solid-state electronic design have enabled a generation of more reliable pump controls. Durability issues surrounding the mechanical contact switches were eliminated with the use of solid-state transistors to manage high current switching. Although this was a considerable improvement in itself, the remaining question was how to reliably detect changes in liquid level without the use of moving floats, or without making direct electrical contact with the fluid?

Non-contact sensing technology was considered to be the answer, and even though there were several technical solutions available in the marketplace (capacitive, ultrasonic, and optical), only capacitive has proven to be a practical and cost effective for residential sump pump applications. The limitation of capacitive is that it's prone to false actuations and pump run-on attributed to the varying mineral content of the water being managed and the associated scum build up on the sensors themselves as the water level fluctuates. In addition, capacitive technology has required complex software algorithms to establish an environmental baseline for switching, which is a challenge in itself. The solution to these obstacles proved to be non-contact, s Field-Effect sensing technology coupled with solid-state switching components.

Engineers and plumbing professionals should consider Field-Effect a "best in class" solution when evaluating fluid level detection technologies. The benefit of a five (5) year warranty with solid state Field-Effect control makes it an economical choice for facilities management professionals. No longer is the pump switch the limiting factor in an organizations scheduled maintenance activities.

Economic Background for Residential Applications

With more than 10% of all residential structures that have full or partial basements reporting leakage from outside the structure through the basement (American Housing Survey for the United States: 2007, U.S. Department of Commerce, September 2008, Table 2-7, p. 62), the proper operation of the sump pump system for homeowners is imperative. The consequences of switch failure for residential sump pumps and their industrial equivalents extend far beyond the cost of repair.

Homeowners have always been faced with the potential cost and inconvenience of restoration of basements, but, in addition, the U.S. Environmental Protection Agency (EPA) has identified mold as an environmental pollutant that diminishes indoor air quality (IAQ). The mitigation of molds caused by indoor moisture has become a public health issue that is now reflected in the home inspection process.

Homeowners and operators of public buildings now face risks in the longer term for reporting and/or filing claims for water damage. Faced with large increases in claims for water damage, the insurance industry has established a database, known as the Comprehensive Loss Underwriting Exchange (CLUE), to facilitate the exchange of information among insurers to drop or deny coverage based on a home's history of claims or damage reports. The proper functioning of pumps and their switches is paramount to maintaining public health and to preserving the value of residential and commercial structures for their owners.

Homeowners, installers, and other industry professionals can also take advantage of the added cost savings opportunity of purchasing a less expensive pump which does not include the switch function as part of the offering. These pumps are typically priced at the low end of the commercial spectrum, even though mechanically, they're the same sump pump being offered in the high-end systems with integrated switch capability. This retail savings can range anywhere from $15.00 to $80.00 depending on the pump model and retail outlet selected.

Technical Overview

Field-Effect sensors are digital, solid-state electronic devices that can detect conductive materials or liquids such as water or the human touch. The sensor's cell design uses an integrated circuit (IC) that switches its output state when the conductive target is sensed. A Field-Effect cell is comprised of three main elements, the IC, a unique sensing electrode geometry, and two resistors. Moreover, Field-Effect requires no moving parts, floats, software, or any other mechanism to make its sensing decision.

When 5 VDC is supplied to the sensor, a low power electric field is created. The field emanates directly through any protective dielectric barrier such as plastic or glass that may surround or cover the sensor. When a conductive object or material enters the field, the sensor detects the change and indicates an event has occurred with a corresponding output signal. The input stimulus to the field is typically water in most liquid level sensing applications, as is the case in TouchSensor's? LevelGuard Home Sump Pump Control product line.

The performance advantages of Field-Effect sensors in plumbing applications include:


Solid-state electronic designwith no moving parts or electrical contacts to wear out, bind, or become contaminated by fluids. All electronics are encased in rugged plastic and are completely isolated.
Fail-safe recognition from Underwriters Laboratories(UL File# - E187820)
Six (6) year replacement warrantywith an optional four (4) year extended warranty in fluid sensing applications. Field-Effect fluid detection sensors have been tested to over 1.5 million operational cycles without failure.
Operating temperature range of -40°C to 120°C. Accelerated life testing of Field-Effect sensors (cycling temperature between 0°C and 105°C and relative humidity between 40% and 85%) has confirmed an operational life of more than 20 years without failure.
Immunity to contaminants. The low impedance nature of the Field-Effect sensor design, combined with proprietary electrode geometry, make the Field-Effect sensor highly resistant to the effects of surface contaminants and mineral buildup.

Summary

The importance of reliability in fluid detection systems has increased over time. Under pressure to cost-reduce their products while improving system performance, manufacturers (and their vendors) have cautiously introduced innovations through their channels of distribution. Engineers and plumbing professionals now have the ability to specify a fluid level control system that meets and/or exceeds the performance needs of their system designs and client expectations.




In 2004, TouchSensor impressed the Marine & RV Industry when it introduced the SensaSwitch 20, the world's first and only solid-state electronic submersible bilge pump control using Field Effect fluid sensing technology. In 2005, TouchSensor again broke new ground with the launch of the next generation SensaSwitch Ultra...the world's first and only CE rated, 2-wire, 12 and 24 VDC - 20 Amp Marine bilge pump switch. TouchSensor's success continues today, as several of the world's leading OE bilge pump manufactures have embraced the performance benefits of Field-Effect by directly integrating the technology into their products. LevelGuard is the culmination of the right technology meeting a specific customer need. Change the Spec to Field-Effect!

About TouchSensor? Technologies, a wholly-owned subsidiary of Methode Electronics: TouchSensor engineers and manufactures Field-Effect sensors for appliance, exercise equipment, medical, and automotive markets. Since 1997, TouchSensor has delivered more than 200 million Field-Effect cells for use in the markets it serves. Visit http://www.TouchSensor.com to learn more.

About LevelGuard?:LevelGuard? introduces Field-Effect technology for fluid level detection to the residential, commercial, industrial and municipal plumbing markets. Please visit www.LevelGuardproducts.com/sump to learn more and subscribe to our email newsletter for technical updates.





This post was made using the Auto Blogging Software from WebMagnates.org This line will not appear when posts are made after activating the software to full version.

2012年8月20日 星期一

Residential Humidity And Temperature Sensors


Have you ever imagined that it would be possible for you to keep the humidity and temperature of your house under control independently of how wet or dry it is outside or of how cold or hot the weather is? Believe it or not, this is now possible for many home owners thanks to technological advancements that have made ordinary industrial devices more compact and affordable for domestic use.

Over the last years, more and more home owners are using humidity and temperature sensors to keep the moisture and temperature levels of their properties at comfortable and healthy levels. These devices, which are widely used in industrial facilities to ensure that the manufacturing process occurs seamlessly and according to quality standards, are becoming more and more common for residential use.

At first, humidity sensors, usually referred to as hygrometers or moisture analyzers, were used in family groups in which a member suffered from allergies or some kind of pulmonary disease that made him or her especially sensitive to allergens or changes in the humidity conditions present in a room. Thus, with a moisture sensor it was easy to establish a safe level of humidity and make immediate amendments to it every time it was necessary.

Little by little these devices became more popular as home owners assessed their advantages. By installing one in their basement, it was easier for them to detect leaking pipes that would cause a disaster if left unattended or discovered months later. These humidity analyzers are extremely sensitive instruments and, fortunately, they are easy to calibrate and operate. As they are precise instruments, the information they provide can be trusted thus ensuring that the comfort and quality of your home is ensured.

Temperature sensors are also very popular as they help family groups make a better use of their heaters and air conditioning devices and, as a consequence, save money on electricity. Temperature sensors can be connected to the heaters or air conditioners so that whenever this thermometer detects that the temperature is lower or higher than expected, the heating or cooling instruments are turned on until the previously set up temperature is reached.

Home owners can place temperature sensors in each room of their house as they can be set up individually. Just as humidity sensors, they provide accurate and trustworthy information that helps every member of the family to be in a room as comfortable as they want it.

What are you waiting for? Buy one of these devices, or both of them, for your house and enjoy the home of the future.




Eduard Jim Writing about Humidity Sensors





This post was made using the Auto Blogging Software from WebMagnates.org This line will not appear when posts are made after activating the software to full version.

2012年6月20日 星期三

Four Sensaphone Monitoring Systems for Residential Use


Sensaphone's residential alarm solutions are designed for monitoring remote locations such as second homes, cottages or ski chalets. The owner or user programs the Sensaphone to monitor for specific conditions and if the conditions change outside of the user specified thresholds the Sensaphone will instantaneously alert the user or owner to the problem. There are several systems available from Sensaphone for this capable of alerting you by phone, pager, or email.

Sensaphone Alarms for Residential Use

Sensaphone 400

The Sensaphone 400 is the most popular of the residential Sensaphone systems. Out of the box the alarm dialer will monitor for power outages, listen for loud sounds such as a smoke alarm and comes with a temperature sensor connected to the Zone 1 terminals. There are an additional three input zones which you can use to monitor for water leaks or floods, humidity, even door switches or motion sensors for security. This alarm dialer will call four phone numbers when an alarm condition is detected.

Sensaphone 800

The Sensaphone 800 appears identical to the 400 and operates the same way. With all of the same out of the box features as the Sensaphone 400 the 800 has 8 different input zones and will call up to eight different phone numbers when an alarm condition is detected.

Sensaphone 1400

The Sensaphone 1400 is the "tough older brother" to the Sensaphone 400. Just like the 400 this Sensaphone has four input zones and will dial up to four different phone numbers when an alarm condition is detected. The two big advantages the 1400 has over the 400 model is that it comes in a lockable NEMA4X enclosure helping to protect the unit both from tampering as well as dust, humidity even corrosion in harsh environments. The second advantage is that the unit comes complete with a built in rechargeable battery backup.

Sensaphone 1800

If the Sensaphone 1400 is the older brother to the 400 than the 1800 is the same to the 800. With eight input zones and eight "alarm notifications" to choose from it is identical to 800. It also comes in a robust NEMA4X casing and has a built in rechargeable battery. One key feature it has which helps to set it above the rest is the ability to send text messages along with the voice phone calls.

Sensaphone has many alarm dialers to choose from, the above four are the most common for residential use. There are many other alarm dialers to choose from for monitoring everything else from greenhouses to server rooms to industrial pump stations.




Nathan McBride

http://www.absoluteautomation.com

Absolute Automation Inc.

Keeping you and your valuables ABSOLUTELY safe.





This post was made using the Auto Blogging Software from WebMagnates.org This line will not appear when posts are made after activating the software to full version.

2012年5月25日 星期五

Residential Humidity And Temperature Sensors


Have you ever imagined that it would be possible for you to keep the humidity and temperature of your house under control independently of how wet or dry it is outside or of how cold or hot the weather is? Believe it or not, this is now possible for many home owners thanks to technological advancements that have made ordinary industrial devices more compact and affordable for domestic use.

Over the last years, more and more home owners are using humidity and temperature sensors to keep the moisture and temperature levels of their properties at comfortable and healthy levels. These devices, which are widely used in industrial facilities to ensure that the manufacturing process occurs seamlessly and according to quality standards, are becoming more and more common for residential use.

At first, humidity sensors, usually referred to as hygrometers or moisture analyzers, were used in family groups in which a member suffered from allergies or some kind of pulmonary disease that made him or her especially sensitive to allergens or changes in the humidity conditions present in a room. Thus, with a moisture sensor it was easy to establish a safe level of humidity and make immediate amendments to it every time it was necessary.

Little by little these devices became more popular as home owners assessed their advantages. By installing one in their basement, it was easier for them to detect leaking pipes that would cause a disaster if left unattended or discovered months later. These humidity analyzers are extremely sensitive instruments and, fortunately, they are easy to calibrate and operate. As they are precise instruments, the information they provide can be trusted thus ensuring that the comfort and quality of your home is ensured.

Temperature sensors are also very popular as they help family groups make a better use of their heaters and air conditioning devices and, as a consequence, save money on electricity. Temperature sensors can be connected to the heaters or air conditioners so that whenever this thermometer detects that the temperature is lower or higher than expected, the heating or cooling instruments are turned on until the previously set up temperature is reached.

Home owners can place temperature sensors in each room of their house as they can be set up individually. Just as humidity sensors, they provide accurate and trustworthy information that helps every member of the family to be in a room as comfortable as they want it.

What are you waiting for? Buy one of these devices, or both of them, for your house and enjoy the home of the future.




Eduard Jim Writing about Humidity Sensors





This post was made using the Auto Blogging Software from WebMagnates.org This line will not appear when posts are made after activating the software to full version.

2011年12月8日 星期四

Field-Effect Sensors Eliminate Pump Switch Failure: Residential Applications


Executive Summary

Field-Effect sensing has the unique ability to detect fluids and semi-solid materials without making direct contact. If the material being targeted is conductive in nature, and the barrier wall through which is being is non-conductive, then Field-Effect is the technology of choice. Field-Effect sensing technology is ideally suited for sump, lift station, underground vault, wet well and storm water fluid level management applications.

Since 1997, nearly 200 million Field-Effect sensors have been deployed in industries such as appliance, consumer, automotive, medical and fitness (e.g., liquid level sensing, or in touch activated machine controls). By 2005, Field-Effect sensors had become the de facto standard for fluid level detection in marine and recreational vehicle applications, such as holding tank level monitoring and bilge pump control systems.

Over the years, pump life has been limited to the durability of a single component, the mechanical contact switch. As switch technology progressed from non-integrated to integrated float and switch designs, improved manufacturing processes, advanced coatings, etc, pump durability continued to be governed by the limitations of the mechanical contact switch and associated moving parts.

Recent advancements in solid-state electronic design have enabled a generation of more reliable pump controls. Durability issues surrounding the mechanical contact switches were eliminated with the use of solid-state transistors to manage high current switching. Although this was a considerable improvement in itself, the remaining question was how to reliably detect changes in liquid level without the use of moving floats, or without making direct electrical contact with the fluid?

Non-contact sensing technology was considered to be the answer, and even though there were several technical solutions available in the marketplace (capacitive, ultrasonic, and optical), only capacitive has proven to be a practical and cost effective for residential sump pump applications. The limitation of capacitive is that it's prone to false actuations and pump run-on attributed to the varying mineral content of the water being managed and the associated scum build up on the sensors themselves as the water level fluctuates. In addition, capacitive technology has required complex software algorithms to establish an environmental baseline for switching, which is a challenge in itself. The solution to these obstacles proved to be non-contact, s Field-Effect sensing technology coupled with solid-state switching components.

Engineers and plumbing professionals should consider Field-Effect a "best in class" solution when evaluating fluid level detection technologies. The benefit of a five (5) year warranty with solid state Field-Effect control makes it an economical choice for facilities management professionals. No longer is the pump switch the limiting factor in an organizations scheduled maintenance activities.

Economic Background for Residential Applications

With more than 10% of all residential structures that have full or partial basements reporting leakage from outside the structure through the basement (American Housing Survey for the United States: 2007, U.S. Department of Commerce, September 2008, Table 2-7, p. 62), the proper operation of the sump pump system for homeowners is imperative. The consequences of switch failure for residential sump pumps and their industrial equivalents extend far beyond the cost of repair.

Homeowners have always been faced with the potential cost and inconvenience of restoration of basements, but, in addition, the U.S. Environmental Protection Agency (EPA) has identified mold as an environmental pollutant that diminishes indoor air quality (IAQ). The mitigation of molds caused by indoor moisture has become a public health issue that is now reflected in the home inspection process.

Homeowners and operators of public buildings now face risks in the longer term for reporting and/or filing claims for water damage. Faced with large increases in claims for water damage, the insurance industry has established a database, known as the Comprehensive Loss Underwriting Exchange (CLUE), to facilitate the exchange of information among insurers to drop or deny coverage based on a home's history of claims or damage reports. The proper functioning of pumps and their switches is paramount to maintaining public health and to preserving the value of residential and commercial structures for their owners.

Homeowners, installers, and other industry professionals can also take advantage of the added cost savings opportunity of purchasing a less expensive pump which does not include the switch function as part of the offering. These pumps are typically priced at the low end of the commercial spectrum, even though mechanically, they're the same sump pump being offered in the high-end systems with integrated switch capability. This retail savings can range anywhere from $15.00 to $80.00 depending on the pump model and retail outlet selected.

Technical Overview

Field-Effect sensors are digital, solid-state electronic devices that can detect conductive materials or liquids such as water or the human touch. The sensor's cell design uses an integrated circuit (IC) that switches its output state when the conductive target is sensed. A Field-Effect cell is comprised of three main elements, the IC, a unique sensing electrode geometry, and two resistors. Moreover, Field-Effect requires no moving parts, floats, software, or any other mechanism to make its sensing decision.

When 5 VDC is supplied to the sensor, a low power electric field is created. The field emanates directly through any protective dielectric barrier such as plastic or glass that may surround or cover the sensor. When a conductive object or material enters the field, the sensor detects the change and indicates an event has occurred with a corresponding output signal. The input stimulus to the field is typically water in most liquid level sensing applications, as is the case in TouchSensor's? LevelGuard Home Sump Pump Control product line.

The performance advantages of Field-Effect sensors in plumbing applications include:


Solid-state electronic designwith no moving parts or electrical contacts to wear out, bind, or become contaminated by fluids. All electronics are encased in rugged plastic and are completely isolated.
Fail-safe recognition from Underwriters Laboratories(UL File# - E187820)
Six (6) year replacement warrantywith an optional four (4) year extended warranty in fluid sensing applications. Field-Effect fluid detection sensors have been tested to over 1.5 million operational cycles without failure.
Operating temperature range of -40°C to 120°C. Accelerated life testing of Field-Effect sensors (cycling temperature between 0°C and 105°C and relative humidity between 40% and 85%) has confirmed an operational life of more than 20 years without failure.
Immunity to contaminants. The low impedance nature of the Field-Effect sensor design, combined with proprietary electrode geometry, make the Field-Effect sensor highly resistant to the effects of surface contaminants and mineral buildup.

Summary

The importance of reliability in fluid detection systems has increased over time. Under pressure to cost-reduce their products while improving system performance, manufacturers (and their vendors) have cautiously introduced innovations through their channels of distribution. Engineers and plumbing professionals now have the ability to specify a fluid level control system that meets and/or exceeds the performance needs of their system designs and client expectations.




In 2004, TouchSensor impressed the Marine & RV Industry when it introduced the SensaSwitch 20, the world's first and only solid-state electronic submersible bilge pump control using Field Effect fluid sensing technology. In 2005, TouchSensor again broke new ground with the launch of the next generation SensaSwitch Ultra...the world's first and only CE rated, 2-wire, 12 and 24 VDC - 20 Amp Marine bilge pump switch. TouchSensor's success continues today, as several of the world's leading OE bilge pump manufactures have embraced the performance benefits of Field-Effect by directly integrating the technology into their products. LevelGuard is the culmination of the right technology meeting a specific customer need. Change the Spec to Field-Effect!

About TouchSensor? Technologies, a wholly-owned subsidiary of Methode Electronics: TouchSensor engineers and manufactures Field-Effect sensors for appliance, exercise equipment, medical, and automotive markets. Since 1997, TouchSensor has delivered more than 200 million Field-Effect cells for use in the markets it serves. Visit http://www.TouchSensor.com to learn more.

About LevelGuard?:LevelGuard? introduces Field-Effect technology for fluid level detection to the residential, commercial, industrial and municipal plumbing markets. Please visit www.LevelGuardproducts.com/sump to learn more and subscribe to our email newsletter for technical updates.





This post was made using the Auto Blogging Software from WebMagnates.org This line will not appear when posts are made after activating the software to full version.

2011年11月25日 星期五

Residential Humidity And Temperature Sensors


Have you ever imagined that it would be possible for you to keep the humidity and temperature of your house under control independently of how wet or dry it is outside or of how cold or hot the weather is? Believe it or not, this is now possible for many home owners thanks to technological advancements that have made ordinary industrial devices more compact and affordable for domestic use.

Over the last years, more and more home owners are using humidity and temperature sensors to keep the moisture and temperature levels of their properties at comfortable and healthy levels. These devices, which are widely used in industrial facilities to ensure that the manufacturing process occurs seamlessly and according to quality standards, are becoming more and more common for residential use.

At first, humidity sensors, usually referred to as hygrometers or moisture analyzers, were used in family groups in which a member suffered from allergies or some kind of pulmonary disease that made him or her especially sensitive to allergens or changes in the humidity conditions present in a room. Thus, with a moisture sensor it was easy to establish a safe level of humidity and make immediate amendments to it every time it was necessary.

Little by little these devices became more popular as home owners assessed their advantages. By installing one in their basement, it was easier for them to detect leaking pipes that would cause a disaster if left unattended or discovered months later. These humidity analyzers are extremely sensitive instruments and, fortunately, they are easy to calibrate and operate. As they are precise instruments, the information they provide can be trusted thus ensuring that the comfort and quality of your home is ensured.

Temperature sensors are also very popular as they help family groups make a better use of their heaters and air conditioning devices and, as a consequence, save money on electricity. Temperature sensors can be connected to the heaters or air conditioners so that whenever this thermometer detects that the temperature is lower or higher than expected, the heating or cooling instruments are turned on until the previously set up temperature is reached.

Home owners can place temperature sensors in each room of their house as they can be set up individually. Just as humidity sensors, they provide accurate and trustworthy information that helps every member of the family to be in a room as comfortable as they want it.

What are you waiting for? Buy one of these devices, or both of them, for your house and enjoy the home of the future.




Eduard Jim Writing about Humidity Sensors





This post was made using the Auto Blogging Software from WebMagnates.org This line will not appear when posts are made after activating the software to full version.