microsonic 센서는 다양한 동작 모드 및 장치 구성으로 자동화를 생각할 수 있는 모든 곳에 사용 가능 합니다.
Distance control to the creel or fence
Distance control to the creel or fence
Feeding robots are used in agriculture to automatically feed animals. They deliver the required amount of feed to the animals and push the feed up if necessary.
Sensors with a switched output, e.g., from the mic+ sensor family can be used, depending on the size of the box or container. The mic+25/D/TC, mic+35/D/TC or mic+130/D/TC can be selected for scanning small boxes.
With larger containers you are recommended to use a mic+340/D/TC or mic+600/D/TC. If the box or container is to be scanned by several sensors, it is recommended to synchronise them with each other.
Furthermore, the pms ultrasonic sensor in hygienic design is recommended in the food industry, the pharmaceutical industry or the beverage industry.
Path edge control
Path edge control
The ultrasonic edge sensors bks are designed as fork sensors and function as a one-way barrier. They are used for path control and emit an analogue signal of 0–10 V or 4–20 mA which is proportional to the orientation of the path edge.
Double sheet control
Double sheet control
identifies two or more sheets of material on top of each other. The dbk+4 product range is ideal for use where paper is in use, such as sheet fed printing presses, printers, copiers or collating machines. For thicker materials, plastic sheets and coarse corrugated cardboard, the dbk+5 ultrasonic double-sheet detection is used.
The diameter of a roll or coil of material can be detected by an ultrasonic sensor with analogue output and the drive adjusted or brake applied accordingly. For small diameters this is a typical application for a mic+35/IU/TC and for diameters up to 2.5 m a mic+130/IU/TC.
Installation for a foil extruder
Installation for a foil extruder
The mic+ ultrasonic sensors with analogue output 0 – 10 V and 4 – 20 mA are ideally suited for controlling the diameter on a foil extruder.
Ultrasonic through-beam barriers are highly suited for reliable presence control and counting of objects at high speed. The through-beam barrier consist of a transmitter and a receiver. The transmitter emits acoustic pulses on a cyclical basis which are captured by the receiver. If an object interrupts the pulses between the transmitter and the receiver, the switching output of the receiver is set.
The robust ultrasonic barrier ews is available as a cuboid miniature housing and a cylindrical M18 housing.
The esf-1 label sensor reliably detects high-transparency, reflective materials as well as metallised labels and labels of any colour. The measurement cycle time automatically self-adjusts to the sound power required.
Can be implemented with all ultrasonic sensors with switching output. If the material does not lie flat, it is advisable to operate the sensor as a two-way or reflective barrier. This operating mode also works reliably when the sonic beam is deflected away by the waves in the material. All ultrasonic proximity switches with the microsonic Teach-in support the operating mode reflective barrier.
Detection of filling levels from just a few millimetres up to 8 m can be made. Ultrasonic sensors with one or two switched outputs for minimum/maximum control, or with 0-10 V and 4-20 mA analogue output are available. Even in small containers with a diameter of less than 5 mm can be measured with thezws ultrasonic sensor + SoundPipe.
Detecting obstacles
Detecting obstacles
Ultrasonic sensors of the mic+ family enable the contactless protection of automated guided vehicles in the driving direction. When using several sensors these can be synchronised with each other to avoid influencing each other. With a pre-alarm range and a stopping range, the vehicle can be halted smoothly before an obstacle without the impact bumper triggering the braking mechanism.
For height control of the field sprayer boom, several wms ultrasonic sensors or mic ultrasonic sensors continuously measure the distance to the crop. The control system of the field sprayer uses the measured distance values to compensate for unevenness in the soil and different plant heights. This allows crop protection agents or fertilisers to be distributed evenly over the field.
The all-metal housing of the two sensor families is specially designed for outdoor applications on agricultural machines.
Height and distance detection of rows of trees or trellises
Height and distance detection of rows of trees or trellises
The wms ultrasonic sensors or mic ultrasonic sensors measure the lateral distance to vines or trellises. With the measured distance values, the control system automatically adjusts the line of the harvesting platform.
The continuous height detection of the rows of trees or trellises allows the spraying areas to be identified. Thus, spraying areas can be added or removed automatically via the control system. This minimises the use of crop protection agents and ensures even distribution.
Very flat objects on a conveyor belt can often be detected via an "indirect" reliable measurements: An ultrasonic sensor with switching output measures the edge of the object in an incline compared to the conveyor transport direction. The edge of the object forms a triple reflector with the conveyor belt and reflects the sound waves back to the sensor.
초음파센서는 루프 위를 검색하여 아날로그 출력으로 제어하며, 루프의 깊이에 따라 재료공급을 조정합니다. 루프 소재가 옆으로 흔들리는 경향이 있는 경우 위에서 검색할 때 음파는 매우 쉽게 편향됩니다. 이 같은 경우 그림과 같이 아래에서 루프를 검출하는 방법으로 추천 드립니다.
Splice detection
Splice detection
The esp-4 splice sensor reliably detects splices and also labels. It is available both in M18 housings, as well as in M12 with external receiving transducer.
during the winding/unwinding of wires. Depending on the size of the drum, a mic+130/D/TC with 1,300 mm operating range or a mic+35/D/TC with 350 mm operating range can be used. If the position of the wire on the drum should be recorded, there are ultrasonic sensors with analogue output available.
mic+130/D/TC for a measuring distance until 1,300 mm,
mic+35/D/TC for a measuring distance until 350 mm.
Stacking height control
Stacking height control
Whether wooden boards, panes of glass, sheets of paper or coloured plastic panels, ultrasonic sensors are ideal for detecting the height accuracy to millimetre precision.
Monitoring of trays
Monitoring of trays
초음파 센서는 초음파가 물체에 흡수되거나 모서리 검출 또는 초음파 감지가 먼 경우가 있기 때문에 항상 양방향이나 반사판을 사용하여 설치되어야 합니다. 이 상황에서 추가적인 반사판은 검출할 물체의 뒤편에 설치됩니다. 초음파 센서의 스위치 출력은 창mode(모드, 방식)에서 물체감지를 하고 반사되는 초음파 신호로 검출합니다. The lpc+ in the M18 threaded housing is ideal for this purpose.
It is easy to set up a two-way or reflective barrier using an ultrasonic sensor operating in window mode. To do this, a permanent reflector is positioned behind the objects to be scanned. When an object obscures the reflector, a switching signal is generated.
Sonic reflector
Sonic reflector
The sonic beam can be redirected via a reverberant, smooth reflecting surface. There are 90° sonic reflectors available as accessories for this. These can be used to advantage in certain confined installations.
Ultrasonic sensors, such as the pms sensor in Hygienic Design, continuously measure the level in the vibratory feeder. If the sensor detects a level that is too low, the feed rate is increased. Conversely, if the sensor detects a level that is too high, the control system reduces the product feed to ensure a consistent process.
The mic+ 초음파센서 와 pico+ 초음파 센서 는 상자안의 제품이 정상으로 채워졌는지 비워졌는지 또는 컨베이어 벨트 위의 플라스틱 병의 레벨검사같은 특별한 어플리케이션을 위해 개발되었습니다. 비슷한 두 가지 센서를 동기화 하여 설계를 간소화할 수 있습니다. The pms ultrasonic sensor in hygienic design is suitable for this process as well.
Volumen flow
Volumen flow
ultrasonic sensors can be used for continuously detecting the filling
level of objects on a conveyor belt. When the sensor detects minimum
filling level, the feed rate will be increased. On the contrary, when
the sensor detects a maximum filling level, the control unit will reduce
the feed rate in order to provide a smooth filling level process. The pms ultrasonic sensor in hygienic design is suitable for this process.