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Acting on a basic function of water flow regulation and system performance optimization, a water level indicator measures and manages the levels of water in multiple different systems such as swimming pools, cooling towers, and water pumps/tanks, etc. There are many advantages of water level controllers. First, let’s explore the problem with old water level control designs.
The Problem with Old Water Level Indication & Float Switch Technology
Appearing on the market in the early ’90s, the first electric water controller helped industry professionals track the water levels in boilers, irrigation lakes, cooling towers, wastewater, and water tanks reliably and accurately. However, these units were soon found to be imperfect based on their design. While they did become recognized as the advancement from traditional ‘toilet tank’ float designs, the engineers soon discovered that the long-term use of these water controllers was not likely. Though more accurate, the new controllers did not provide easy verify operations nor did the units lack the intuitive user interface to enable troubleshooting when problems began.
When a problem arose, there was no built-in function to help identify the source of the failure/malfunction. You couldn’t even identify the failing part accurately, so at a considerable expense, the entire unit had to be replaced.
One of the main reasons that the electric water controller showed poor durability would fall on the high 600 volts used in a wet environment. When the environment is wet, electrical parts will fall to failure quite often when using high voltage. Causing inaccurate readings, sensor probes will rust at a fast rate, while high mineral content in the water will likely plate to the probes enforcing failure.
Advantages Of Water Level Indicators & Float Switches
There are many advantages of water level controls, also known also water level indicators, including:
1. Power Saver
Living in an age where we need to be more conscious of the energy that we use, a water level controller is ideal at saving power. Normally, regulating water levels can consume electricity and wastewater. However, with automatic controllers, the electricity usage is limited as well as less water needed to regulate supply.
2. Money Saver
A water level controller helps save money by limiting the waste of water and electricity. These devices accurately regulate how much energy is used to protect against any unnecessary water/electricity usage. Over time, the money saved is quite substantial.
3. Automatic
Another notable advantage with these devices is that they regulate on their own. Eliminating manual operations with a timer switch, the frustrations of manual monitoring water tanks are minimized. Water levels are maintained at the appropriate levels thanks to the automatic operations of these devices.
4. Water Maximization
On average, water pumps are used more during midday. A water level controller can maximize the water usage provided during midday while automatically lessening the water usage at night. This results in an appropriate level of water at all times being maintained, while providing you with the maximum use of your water at the appropriate times.
5. Reliable Electronic Design
Only available with WLC controllers
Addressing the durability problems found in earlier designs, the solid-state electronics in the newer models help to eliminate them. Not only do they help to eliminate the durability issues, but they also create considerable savings of the life span of the unit with an advanced modular design. In order to minimize problem areas of these designs, the only moving parts are the relays. These relays are easily replaced and tested by any skilled operator or electrician while being an inexpensive part.
6. New Control Minimize Fouling & Deterioration
Only available with WLC controllers
Proving to be less costly, over time, than the original float design for the ‘toilet tank’. The solid-state electronics are designed to minimize volt usage (less than 1 volt). This directly minimizes the mineral fouling, plating, rusting, and deterioration of probes, proving to be safer and more efficient. These factors extend the life span of the controllers significantly, which saves money and energy.
7. Easy Installation with LED Monitoring
Only available with WLC controllers
These new solid-state electronics and integrated electronics offer superior performance, hassle-free installation, and lower cost to operate over time when compared to the lifespan of the original design. For continuous monitoring, the integrated firmware and digital dry-contact circuitry easily and quickly connect to the automation systems of a building. Each function of the integrated electronics and relays use LED lights to offer operators the ability to visually scan them in order to verify proper operations.
Disadvantages of Water Level Indicators and Float Switches
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Applications & Uses Of Water Level Indicator
The uses of a water level indicator include the following applications:
Benefits of Water Level Indicators & Water Alarms
There are many benefits of water level indicators and water alarms including:
Learn more about water level indicators.
How to Select Your Advanced Electronic Water Level Control System
Regardless of whether you are a service technician, building maintenance supervisor, or an electrician, there are some key features you need to be aware of while searching for your next electronic water controller:
In order to guarantee installation is hassle-free, superior performance, low-cost operation, longer lifespan of the unit, and user satisfaction. Be sure to follow the guidelines of features listed above when recommending, installing, or specifying an electronic water controller.
Replace Your Water Level Controls with Checkpoint™
Water level controls need to be replaced every 3 years. Our solution to that problem is our “revolutionary water level control” Checkpoint™ product that will never rust, foul or deteriorate due to water quality or harsh environments. Never replace water level controls again with the new all-electronic Checkpoint™ Water Level Controller.
Never Replace Water Level Controls Again with Checkpoint™
Our Checkpoint™ water level controls never rust, foul or deteriorate! Give us a call today or visit our product pages for more information about our water level controllers.
Hydraulic valves are widely used in water, steam, sewage, papermaking, petrochemical industry, solution and slurry two phase mixed flow medium, and dust gas, granular fluid, powder solid medium transport equipment.
Using hydraulic operation, more convenient for management automation, remote control, equipped with hydraulic signal device, can be used for automatic operation and centralized control.
Advantages of hydraulic butterfly valve:
1) Simple structure, compact and small volume;
2) Stable and reliable transmission;
3) A large output torque can be obtained;
4) The output torque can be accurately adjusted through the constant pressure relief valve, including the adjustment of opening and closing torque, and can even be directly reflected by the hydraulic instrument;
5) Convenient speed adjustment;
6) In case of sudden power failure, the accumulator can still be used for one or several power operations.
This is of special significance to automatic emergency cut-off valve and wellhead blowout valve in long – distance pipeline.
Disadvantages of hydraulic valves:
1) The oil temperature is greatly affected by the ambient temperature, and the change of oil temperature causes the change of oil viscosity, which affects the operation;
2) Troublesome piping, easy leakage;
3) It is not suitable for generating various operations on the signal (such as signal amplification, memory, logical judgment and other operations).
Advantages of hydraulic system:
1. Small size and light weight;
2. High stiffness, high precision and fast response;
3. Large driving force, suitable for heavy load direct driving;
4. Wide speed control range and various speed control modes;
5. Self-lubrication, self-cooling and long life;
6. Easy to realize security protection.
Disadvantages of hydraulic system:
1. Poor resistance to working fluid pollution;
2. Sensitive to temperature changes;
3. Hidden danger of leakage;
4. Difficult manufacturing and high cost;
5. It is not suitable for long-distance transmission and requires hydraulic energy.
If you want to learn more, please visit our website Fluid Control Solutions.