
Allicdata Part #: | V7-3E10E8-ND |
Manufacturer Part#: |
V7-3E10E8 |
Price: | $ 0.00 |
Product Category: | Switches |
Manufacturer: | Honeywell Sensing and Productivity Solutions |
Short Description: | V7 MINI BASIC SW SINGLE POLE |
More Detail: | N/A |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | V7 |
Part Status: | Obsolete |
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Snap action, limit switches are designed for a wide range of applications that require an instantaneous or short-term switching action from a single switch. These switches can include both mechanical and electronic components and can be used for a variety of processes such as voice recognition, controlling motors, relaying data and triggering alarms.
The V7-3E10E8 limit switch is typically used in applications that require a fast, yet accurate switch action. The V7-3E10E8 is a low-power, single-pole switch with a maximum voltage rating of 105 volts. It is designed for a specific application, with a range of features designed to ensure a reliable and consistent switching action.
The V7-3E10E8’s design is based upon a snap-action design, which consists of three main sections. The first part is the external body of the switch known as the actuator. This is the part that is manipulated to activate the switch. The second part is the sensing element, which contains electrical contacts and pressure sensitive components. The third part is the contact. This is the part that actually comes in contact with the contacts of the sensing element.
The V7-3E10E8 is designed so that as the actuator is manipulated, the sensing element is pushed against the contact at a particular angle. This angle is determined during the manufacturing process, based upon the application. As the contact is pushed into the sensing element, a current passes through the contacts, activating the switch. This results in the flow of current being disrupted, thus cutting power to the device.
The working principle of the V7-3E10E8 limit switch is based upon a snap-action design, which uses the transfer of mechanical energy to create electrical energy. When the actuator is pressed or manipulated, the contact is pushed into the sensing element at an angle. This angle is determined by the manufacturer, based on the application for which the switch is intended. As the contact passes over the sensing element, the contact’s pressure and motion is translated into an electrical signal.
The V7-3E10E8 limit switch can be used in a variety of applications, including those requiring fast and accurate switching action. Its snap-action design ensures a reliable and consistent switching action, while allowing for maximum flexibility within the design. This makes it ideal for applications such as voice recognition, controlling motors, relaying data and triggering alarms.
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