Description:
1. The jumper hat of the voltage control adapter module can realize the high potential or pull down output of the output port.
2. The onboard 4 channels 817 are independent, which can realize different voltage control at the same time.
3. This product has effective photoelectric isolation and strong anti interference ability.
4. It can drive high voltage driving applications such as high power transistors and MOS tubes, and also directly drive low power 24V relays.
5. If the voltage control adapter module is a pulse signal, please note that the limit of 817 is 4KHZ or less.
6. If the control signal is greater than 4KHZ, please do not use this module, otherwise it will not work normally.
Specifications:
Item Type: Voltage Control Adapter Module
Material: Copper Clad Laminate
Center Distance of Mounting Hole: Approx.42x32mm/1.7x1.3in.
Package list::
1 x Voltage Control Adapter Module
Note:
The input port is shared with GND;The output ports are independent of each other;It is the output of the optocoupler. After inputting a valid signal in the input port, V and G will be connected.Description:
1. The jumper hat of the voltage control adapter module can realize the high potential or pull down output of the output port.
2. The onboard 4 channels 817 are independent, which can realize different voltage control at the same time.
3. This product has effective photoelectric isolation and strong anti interference ability.
4. It can drive high voltage driving applications such as high power transistors and MOS tubes, and also directly drive low power 24V relays.
5. If the voltage control adapter module is a pulse signal, please note that the limit of 817 is 4KHZ or less.
6. If the control signal is greater than 4KHZ, please do not use this module, otherwise it will not work normally.
Specifications:
Item Type: Voltage Control Adapter Module
Material: Copper Clad Laminate
Center Distance of Mounting Hole: Approx.42x32mm/1.7x1.3in.
Package list::
1 x Voltage Control Adapter Module
Note:
The input port is shared with GND;The output ports are independent of each other;It is the output of the optocoupler. After inputting a valid signal in the input port, V and G will be connected.