GPBN Allicdata Electronics
Allicdata Part #:

GPBN-ND

Manufacturer Part#:

GPBN

Price: $ 218.08
Product Category:

Relays

Manufacturer: TE Connectivity Potter & Brumfield Relays
Short Description: RELAY
More Detail: Relay Coil
DataSheet: GPBN datasheetGPBN Datasheet/PDF
Quantity: 1000
5 +: $ 198.25200
Stock 1000Can Ship Immediately
$ 218.08
Specifications
Series: *
Part Status: Active
Description

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General-purpose bridge network (GPBN) is a switching electronic device popularly used in many applications ranging from aerospace, consumer electronics, automotive, to industrial applications. The device can provide the desired level of protection from overload and safe operation in higher temperature environments. GPBN is a family of small, low cost, and modular devices that are designed to handle low power applications. GPBNs are designed to be compact and require little space to operate. GPBNs are typically found in the voltage range of 5V to 50V. The device is able to dissipate a relatively small amount of heat when in operation.

These features make GPBNs a suitable choice for low power switches and relays that are used in toys, small electronic appliances, open-air coolers, etc. The low power switches and relays that are commonly used in electronic appliances work by converting electrical energy into mechanical energy. GPBNs can be used to transfer the electrical energy from the power source to the device being operated. The device can be operated with the help of the various components in the GPBN such as switches, resistors, transistors, and diodes.

GPBNs are available in a variety of sizes and configurations depending on the specific application. The most common configurations of GPBNs are single power bridge, double power bridge, full bridge, and half bridge. In the single power bridge configuration, a single switch controls the signal flow. In the double power bridge configuration, two switches are used to control the signal flow. The full bridge configuration is used for higher power applications, and the half bridge configuration is used for lower power applications. A GPBN is also available in two versions, one for low power applications and one for high power applications.

The working principle of a GPBN is based on the principle of ohmic heating. Ohmic heating is a common method of heating an electrical wire or component by passing a current through the component. GPBNs operate on the principle of ohmic heating because of the presence of an N-channel and a P-channel type of transistors. The two transistors allow electrical current to pass through the bridge and hence produce ohmic heating. The heat produced by the bridge is then used to control the switch or relay in the circuit.

GPBNs can also be used in power relays and over 2 amp applications. A power relay is a type of switch that is used to control the amount of power supplied to a load, usually a motor or lighting. The power relays work on the principle of time delay, so the current is supplied to the load in a certain amount of time. Over 2 amp applications refer to the applications which require higher currents than normal and this current can range from 5 amps to several hundred amps. GPBNs are suitable for such applications as they can dissipate more heat and provide better protection from overload.

GPBNs are also used in transducers, which are electrical devices that convert one form of energy into another. Examples of transducers include thermocouples, heaters, pressure sensors and strain gages. GPBNs are used as 6 port transducers in transducer applications, where they are used to convert the power into the desired form of energy or vice versa. GPBNs are also used in the fields of instrumentation and automotive control systems, where they are used to control the switching of electrical current between two points.

GPBNs are an extremely versatile device, suitable for a wide range of applications, from low power switches and relays to high power over 2 amp applications. Their small size and low cost make them ideal for many applications. In addition, their ability to dissipate heat and provide overload protection makes them a desirable choice for various applications. Whether it\'s a low power switch or a high power relay, GPBNs are capable of providing the desired level of performance.

The specific data is subject to PDF, and the above content is for reference

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