ALD1102APAL Allicdata Electronics
Allicdata Part #:

1014-1004-ND

Manufacturer Part#:

ALD1102APAL

Price: $ 5.05
Product Category:

Discrete Semiconductor Products

Manufacturer: Advanced Linear Devices Inc.
Short Description: MOSFET 2P-CH 10.6V 8DIP
More Detail: Mosfet Array 2 P-Channel (Dual) Matched Pair 10.6V...
DataSheet: ALD1102APAL datasheetALD1102APAL Datasheet/PDF
Quantity: 3
1 +: $ 4.58640
10 +: $ 4.09374
100 +: $ 3.35664
500 +: $ 2.71804
1000 +: $ 2.29232
Stock 3Can Ship Immediately
$ 5.05
Specifications
Series: --
Packaging: Tube 
Part Status: Active
FET Type: 2 P-Channel (Dual) Matched Pair
FET Feature: Standard
Drain to Source Voltage (Vdss): 10.6V
Current - Continuous Drain (Id) @ 25°C: --
Rds On (Max) @ Id, Vgs: 270 Ohm @ 5V
Vgs(th) (Max) @ Id: 1.2V @ 10µA
Gate Charge (Qg) (Max) @ Vgs: --
Input Capacitance (Ciss) (Max) @ Vds: --
Power - Max: 500mW
Operating Temperature: 0°C ~ 70°C (TJ)
Mounting Type: Through Hole
Package / Case: 8-DIP (0.300", 7.62mm)
Supplier Device Package: 8-PDIP
Description

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ALD1102APAL is a transistor array, which is specifically designed to provide a high speed, high performance logic system in a semiconductor package. It is an integral part of the A/D logic family. The A/D logic family includes the ALD1102APAL array, the ALD1102APAL analog multiplexer, and the ALD1102APAL digital multiplexer. The ALD1102APAL transistor array is a versatile device which can be used in a variety of applications, including analog to digital converters, digital signal processing, and high-speed logic functions. It is capable of working in multiple clocking modes, and can be used to design logic systems with very high speed, low power consumption, short circuit protection, and great flexibility.

The ALD1102APAL transistor array consists of two 8-bit array cells that are mounted in an identical package. Each cell has four inputs and four outputs, for a total of sixteen inputs and sixteen outputs. The inputs and outputs are arranged in eight separate groups of four, and each group is referred to as a quadrant. Each quadrant has its own input, clock and output pins, which allows it to be used as an independent logic circuit. The design of the ALD1102APAL transistor array allows it to be used as the basis of more complex logic systems.

The ALD1102APAL transistor array is used in a wide variety of applications, including digital signal processing, analog-to-digital converters, and digital logic systems. In a digital signal processing application, the ALD1102APAL transistor array will allow for the processing of digital signals at high speed, low power consumption, and short circuit protection. In an analog-to-digital converter application, the ALD1102APAL transistor array can be used to reduce the amount of time needed to convert analog signals to digital signals. The ALD1102APAL transistor array can also be used in digital logic systems for low power control, high performance data transfers, and other control tasks.

The working principle of the ALD1102APAL transistor array is based on the principle of transistor switching. Transistor switching is the process of using an electric current to cause a transistor to change its state. This change in state is used to either turn on or off a digital circuit. The ALD1102APAL transistor array is designed to work in a three state mode. In this mode, the transistor array will only switch on or off a digital circuit when the appropriate voltage is applied to the array\'s inputs. This mode can be used to control, protect, and optimize digital logic systems.

The ALD1102APAL transistor array is an important component of the A/D logic family, and can be used to improve the performance of many digital systems. The array is capable of operating in multiple clocking modes and can be used in a wide variety of applications. The ALD1102APAL transistor array can be used in digital signal processing, analog-to-digital converters, and digital logic systems. The working principle of the ALD1102APAL transistor array is based on the principle of transistor switching and can be used to improve speed, power consumption, and short circuit protection.

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

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