The advanced electronic components of the MH7190 heavy hammer level gauge are controlled by intelligent motors. Each measurement cycle is initiated by lowering the hammer/cable assembly into the container. The amount of descent/elevation of the steel cable is equal to the empty space distance from the starting point of measurement to the surface of the material below the W55 installation point. The distance is measured using Hall effect detection technology and microcontroller timer circuit, with a measurement resolution within 0.045. Magnetic technology is also used when detecting contact with the material surface. After the measurement data is refreshed, the motor runs in reverse and the measuring hammer/steel cable returns to its initial position. This achieves the purpose of medium visualization and process automation. The distance is measured and verified during the ascent process.
Heavy hammer level gaugeApplication
Heavy hammer level gauge measures solid materials in powder, particle, and block form
MH7190 heavy hammer level gauge for coal plants, power plants, and steel mills
Heavy hammer level gaugeCharacteristics
L has absorbed the advantages of similar products both domestically and internationally
The structure and transmission mode of l *
Overcoming the common problems of many other forms of heavy hammer level gauges in the past
L can be remotely detected by computer remote control
Automatic and manual input in parallel
Reliable operation, easy detection, low maintenance, and wide application range
Heavy hammer level gaugeProduct Description
The MH7190 heavy hammer level gauge (primary gauge) is installed at the top of the silo, and the detection process of the level gauge sensor is controlled by the signal sent by the control display instrument (secondary gauge). The primary meter sensor consists of a reversible motor, lead screw, gear shaft, winding drum, sensitive lever, etc. When the sensor receives a detection command, the motor rotates forward to drive the gear shaft and winding drum to rotate, causing the steel wire rope to lower and driving the heavy hammer to descend from the top of the warehouse. When the heavy hammer descends to the material surface and is lifted by the material surface, it loses weight. The steel wire rope relaxes, and the sensitive lever action makes the micro switch contact. The control display instrument immediately sends a motor reverse command when it receives this signal. The heavy hammer rises and returns until the winding drum touches the top switch, the motor stops, and the heavy hammer returns to its original position at the top of the warehouse, completing a detection process. During this process, the control display instrument calculates the distance between the heavy hammer and the material surface by detecting the number of revolutions of the winding drum, displays it digitally on the panel, and outputs a 4-20mA current on the rear panel terminal (without the need for an additional DC24V).
The advanced electronic components of the heavy hammer level gauge are controlled by intelligent motors. Each measurement cycle is initiated by lowering the hammer/cable assembly into the container. The amount of descent/elevation of the steel cable is equal to the empty space distance from the starting point of measurement to the surface of the material below the W55 installation point. The distance is measured using Hall effect detection technology and microcontroller timer circuit, with a measurement resolution within 0.045 '. Magnetic technology was also used to detect contact with the material surface. After refreshing the measurement data, the motor runs in reverse and the measuring hammer/steel cable returns to its initial position. To achieve the goal of medium visualization and process automation. Measure and verify the distance during the ascent process.
The main functions of the heavy hammer level gauge include:
1. Each set of equipment is equipped with multiple measurement output standards.
2. Auxiliary container level control material high-level and low-level alarm output.
3. Using intelligent self verification technology, an alarm is triggered through a fault signal when problems such as cable breakage, buried hammer, and probe locking occur during the measurement cycle.
4. Adopting the third-generation intelligent heavy hammer level gauge technology.
5. Automatic mode, manual mode, and other modes are optional.
6. The intelligent measurement control system always pulls the heavy hammer/steel cable back to its original position in an orderly programming manner. To improve measurement reliability, the return process can even be delayed.
7. The measurement distance is 30 meters (customized for distances exceeding 30 meters).
8. Using a universal 100-240VAC power supply.
9. Using magnetic Hall effect technology and microcontrollers to achieve high resolution and reliability of measurement data.
10. Built in LCD display screen and buttons, easy parameter setting.
11. The replaceable wiping block and cleaning brush keep the steel cable clean.