TLV3012AIDBVRG4 Allicdata Electronics
Allicdata Part #:

TLV3012AIDBVRG4-ND

Manufacturer Part#:

TLV3012AIDBVRG4

Price: $ 0.74
Product Category:

Integrated Circuits (ICs)

Manufacturer: Texas Instruments
Short Description: IC COMPARATOR 1.8V W/REF SOT23-6
More Detail: Comparator with Voltage Reference Push-Pull SOT-23...
DataSheet: TLV3012AIDBVRG4 datasheetTLV3012AIDBVRG4 Datasheet/PDF
Quantity: 1000
3000 +: $ 0.66594
Stock 1000Can Ship Immediately
$ 0.74
Specifications
Current - Output (Typ): --
Base Part Number: TLV3012
Supplier Device Package: SOT-23-6
Mounting Type: Surface Mount
Package / Case: SOT-23-6
Operating Temperature: -40°C ~ 85°C
Hysteresis: --
Propagation Delay (Max): 13.5µs
CMRR, PSRR (Typ): 74dB CMRR, 80dB PSRR
Current - Quiescent (Max): 5µA
Series: --
Current - Input Bias (Max): 10pA @ 5.5V
Voltage - Input Offset (Max): 12mV @ 5.5V
Voltage - Supply, Single/Dual (±): 1.8 V ~ 5.5 V
Output Type: Push-Pull
Number of Elements: 1
Type: with Voltage Reference
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Linear comparators, such as the TLV3012AIDBVRG4, are basic electronic components used in circuit design and application. They are widely used in power management, battery management and industrial monitoring systems, among others.

This TLV3012 device consists of two independent high-speed comparators, with open-drain outputs, and an adjustable threshold level comparator. Its input voltage can range from 0V up to 28V, and its band gap reference voltage can be adjusted using a resistor. The output state is an open drain, and its output current can reach up to 2mA.

The TLV3012 comparator has two input types: the positive input and the negative input. The positive input is the signal source that is compared against the reference voltage. The negative input is referred to as the ground, and it is the voltage that is compared to the positive input. The ground is a reference point from which all signals are compared, and it should be connected to a stable power source. The output of the comparator is either a "low" or a "high" voltage, depending on whether the positive input is greater than or less than the negative input.

The TLV3012AIDBVRG4 comparator is mainly used in circuit applications where it can sense the presence of a signal, such as a voltage or a current, and then switch its output based on the signal detected. One important application is in the power supply design, where the comparator can be used to detect the presence of an incoming voltage and then switch the output of a regulator circuit. The TLV3012AIDBVRG4 is also used for industrial monitoring where it can detect the presence of a signal and then alert the user or a system.

The TLV3012AIDBVRG4 is also used in battery management systems as a sensor and controller. In this application, the comparator can detect a change in the battery level and increase or decrease the voltage output accordingly. This helps to maintain the battery levels at an optimum level and extend its useful life. The comparator can also be used in other industrial systems to analyse incoming signals and determine the necessary corrective action.

The working principle of the TLV3012AIDBVRG4 comparator is very simple. It compares the two input levels and if the positive input voltage is higher than the negative, it sets the output voltage to a logic high state. If the negative voltage is higher than the positive, it will set the output to a logic low state. This device is usually constructed with a differential amplifier, which performs the functions of comparison and output driving.

In conclusion, the TLV3012AIDBVRG4 linear comparator is a highly versatile component with multiple applications in power management, battery management, industrial monitoring, and many other fields. Its simple working principle, high input voltage range and adjustable band gap reference voltage make it an ideal choice for a variety of applications. This device makes it easy to detect and monitor incoming signals, maintain the battery levels and protect circuits from overload and short-circuit conditions.

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

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