
Allicdata Part #: | 461-NWO2-NWO-ND |
Manufacturer Part#: |
461-NWO2-NWO |
Price: | $ 7.60 |
Product Category: | Optoelectronics |
Manufacturer: | Visual Communications Company - VCC |
Short Description: | PMI .250" LED 2V TAB DIFF ORG |
More Detail: | Panel Indicator |
DataSheet: | ![]() |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
10 +: | $ 6.90165 |
Series: | * |
Part Status: | Active |
Lead Free Status / RoHS Status: | -- |
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NWO2 is a type of panel indicator, also known as a pilot light, that finds applications in many industries. The device is designed to indicate the mode of operation or presence of a particular function in a circuit, such as indicating the presence of on/off status in an electrical circuit, or indicating the presence of certain temperatures, etc. NWO2 is an industry standard indication device that is widely used for a variety of applications.
NWO2 works based on a few simple principles. It is a two stage or two red light visual indicator, meaning that it has two sets of LED’s that can be turned on or off to indicate a particular state. When the LED’s are both off, the apparatus is in a “restricted” state. This means that it is operable and functioning, however, the circuit must be rewired or deactivated in order to allow the device to activate. When one LED is turned on, the apparatus is now in a “Ready” state, meaning that it is in a proper position for the purpose it was designed to serve. The second LED is the “active/off” indication and is not normally turned on unless a fault or other alarm condition is present. This LED is always off when the device is in the ready state.
NWO2 utilizes two power inputs in order to perform its functions. The first power input is the main power input, which supplies the bulk of the power for the device to the LED’s, microcontroller, and other components. The second power input is the “control power” input. This control power input is connected to a voltage-sensing circuit that allows the device to determine the status of the main power input. Based on the voltage level of the control power input, the device will either turn on or remain off. If the voltage of the main power input is low, the device will turn off. If the voltage of the main power input is high, the device will turn on.
The device is also equipped with a microcontroller, which is responsible for controlling the LED status. The microcontroller is programmed with a specific set of instructions that define the behavior of the device when the main power input is high or low. For example, if the main power input is high, then the microcontroller will cause the device to turn on. If the main power input is low, then the microcontroller will cause the device to remain off. The microcontroller also controls the behavior of the LED’s based on the status of the control power input. Depending on the voltage level of the control power input, the microcontroller will either turn on one LED or the other.
The design of the NWO2 is quite ingenious and allows for easy integration into existing or new control circuits. The device offers excellent visibility and consistent performance regardless of voltage level. The device is also very reliable and has a long service life. In addition, the device is easy to install, as all the necessary components are included with the device. A wide range of mounting options are available, making it possible to easily mount the device in virtually any type of panel.
In conclusion, the NWO2 pilot light is a popular panel indicator that is commonly used in many different industries. The device is designed to indicate the action or presence of a particular function in a circuit, such as indicating the presence of on/off status in an electrical circuit, or indicating the presence of certain temperatures, etc. NWO2 works based on a few simple principles and utilizes two power inputs to control its LED status. The device is also equipped with a microcontroller, which is responsible for controlling the LED status. The design of the NWO2 is quite ingenious and allows for easy integration into existing or new control circuits, and is both reliable and long-lived.
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