Controller SDVC34-XLR with AUTOMATIC ADJUSTMENT
Controller designed to control automated electromagnetically driven vibratory feeder systems. Controller SDVC34-XLR has automatic parameter control with vibration sensor.
- Product available on request
Thanks to the innovative use of a vibration sensor, the controller SDVC34-XLR takes real-time measurements and then selects the optimum feeder vibration frequency. The operator's task is only to set the feeding speed. The change in vibration amplitude is very precise and within 1V accuracy. Thanks to this solution, the vibrating feeder is not sensitive to changes in filling due to product loss during operation, and feeds the product at a fixed speed.
This controller is used in applications where a stable product feed rate is required and in applications without an automatic feeder to supplement the product feed in the vibrating bowl.
Set composition: controller, cable with mains plug, cable to connect the vibration base, vibration sensor, user manual.
Features
- Automatic control of constant feed speed: Automatic real-time output voltage regulation to ensure a constant preset feed speed regardless of changes in the weight of the workpieces.
- Automatic frequency control: Automatic adjustment of the output frequency in real time to ensure that the feeder always operates at the resonant frequency.
- Automatic search for resonance frequency: The controller searches for the resonant frequency of the feeder and other related parameters automatically.
- Counter: The controller will slow down or stop when the set detail value is reached. (available on SDVC34MRJ)
- Rs485 communication: All controller parameters can be adjusted via R485.
- Automatic recognition of the switching sensor type: The controller can recognise and adapt to PNP and NPN type switching sensors
- Output synchronisation: Synchronise the output waveform of the slave controller with that of the master controller at the same frequency and phase to avoid rumble effects.
- Overvoltage protection: If the input voltage is too high, the controller's power supply will be automatically switched off to protect the controller from damage.
- Digital overheating protection: If the controller's internal temperature becomes too high, the controller will switch off the output to protect the controller from damage.
- Overcurrent protection: If the output current exceeds the rated value, the controller will stop operation to protect itself and the load.
- Automatic short-circuit protection: If the output of the controller is short-circuited, the controller will switch off its output to protect itself and the load, but the fuse inside will not be blown. So, if there is no short circuit on the output side, the controller will operate again when the power is switched on.

Specification
| Parameter | Unit | Scope | Comments |
|---|---|---|---|
| Supply voltage | V | 85-250 | |
| Output voltage | V | 0-260 | |
| Output voltage adjustment scale | V | 1 | |
| Voltage regulation response time | s | 0,0025-0,04 | |
| Output current | A | 0-6 | SDVC34-XL |
| Output power | VA | 0-1320 | SDVC34-XL |
| Output frequency | Hz | 25-400 | |
| Adjustment pitch of the output frequency | Hz | 0,1 | |
| Baseline | sinus | ||
| On/off delay | s | 0-20 | |
| Adjustment pitch for on/off delay. | s | 0,1 | |
| Soft start time | s | 0-10 | |
| Digital communication | ModBUS485 | ||
| Analogue control signal | V/mA | 1-5/4-20 | |
| DC output voltage | V | 22-26 | The 24V DC power supply allows for the connection of external controls |
| DC output current | mA | 0-200 | The 24V DC power supply allows for the connection of external controls |
| Standby power consumption | W | 1,5-3 | |
| Overheating protection activation temperature | °C | 60-65 | |
| Ambient temperature during operation | °C | 0-40 | |
| Ambient humidity during operation | % | 10-85 | No condensation |
| Weight | 1,93 kg |
|---|---|
| Dimensions | 19 × 147,8 × 9,45 cm |
| Model | SDVC34-XLR |














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