TBD62384AFWG,EHZ Allicdata Electronics
Allicdata Part #:

TBD62384AFWGEHZ-ND

Manufacturer Part#:

TBD62384AFWG,EHZ

Price: $ 0.95
Product Category:

Integrated Circuits (ICs)

Manufacturer: Toshiba Semiconductor and Storage
Short Description: TRANSISTOR ARRAY INTERFACE DRIVE
More Detail: N/A
DataSheet: TBD62384AFWG,EHZ datasheetTBD62384AFWG,EHZ Datasheet/PDF
Quantity: 2000
1 +: $ 0.86310
10 +: $ 0.76482
25 +: $ 0.69098
100 +: $ 0.60449
250 +: $ 0.53049
500 +: $ 0.46881
1000 +: $ 0.37011
3000 +: $ 0.34544
5000 +: $ 0.32899
Stock 2000Can Ship Immediately
$ 0.95
Specifications
Series: *
Packaging: Tube 
Part Status: Active
Package / Case: 18-SOIC (0.295", 7.50mm Width)
Supplier Device Package: 18-SOP
Description

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TBD62384AFWG,EHZ belongs to PMIC - Power Distribution Switches, Load Drivers. Its application field is for notebook digital systems, LCD displays, power management, PC and peripheral devices, such as laptop computers, digital mobile phones, and digital cameras. Load Drivers are basically used to drive the load, such as a high-current motor or light-emitting diode. The principles of working for TBD62384AFWG,EHZ can be distiguished according to its different application fields.

In Notebook digital systems, TBD62384AFWG,EHZ consists of an output selection switch, which is a low-voltage, low-current circuit, and a power amplifier, which is a high-current, high-voltage circuit. The output selection switch is used to select the output sources, such as battery or AC adapter, and the power amplifier is used to drive the load. The power amplifier consists of two transistors: a current source transistor that sets the current limit of the output, and a Darlington transistor that provides high voltage- and current-gain stages. The advantage of using a Darlington transistor is that it has a low output impedance, which helps reduce power loss.

In LCD displays, TBD62384AFWG,EHZ consists of high voltage switches, which are used to control the amplitude of the voltage applied to the liquid crystal display, and boost circuits, which are used to increase the current. The high voltage switches are usually controlled by the display controller, which sends the switching signal. The boost circuit allows the voltage to be increased so that more current is supplied to the display. The amount of current supplied to the display is typically determined by the transistor size, frequency and number of cycles of the boost circuit.

In power management, TBD62384AFWG,EHZ consists of voltage regulators, which are used to maintain the desired voltage level in a system, and current limiters, which are used to limit the current. Voltage regulators are used to maintain a constant voltage output in the system. The current limiters are used to limit the amount of current passing through a circuit to prevent damage from overloading. The current limiters are typically adjustable and are used to set the maximum current that can flow through the circuit.

In PC and peripheral devices, TBD62384AFWG,EHZ consists of pulse width modulation switches, which are used to switch the voltage levels, and immunity circuits, which are used to increase the noise immunity of the system. Pulse width modulation switches are controlled by an external circuit, such as a microcontroller, and are used to lower or increase the voltage levels of the system. Immunity circuits are used to prevent noise from external sources from affecting the internal circuits of the system.

TBD62384AFWG,EHZ has a wide range of application fields and its working principles depend on the application field. In notebook digital systems, it consists of an output switch and a power amplifier; in LCD displays, it consists of high voltage switches and boost circuits; in power management, it consists of voltage regulators and current limiters; in PC and peripheral devices, it consists of pulse width modulation switches and immunity circuits. The flexibility of TBD62384AFWG,EHZ makes it an ideal solution for many power management issues.

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

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