TLV3501AIDBVTG4 Allicdata Electronics
Allicdata Part #:

TLV3501AIDBVTG4-ND

Manufacturer Part#:

TLV3501AIDBVTG4

Price: $ 1.48
Product Category:

Integrated Circuits (ICs)

Manufacturer: Texas Instruments
Short Description: IC COMP 4.5NS R-R HS SOT23-6
More Detail: Comparator General Purpose CMOS, Push-Pull, Rail-t...
DataSheet: TLV3501AIDBVTG4 datasheetTLV3501AIDBVTG4 Datasheet/PDF
Quantity: 1000
250 +: $ 1.34034
Stock 1000Can Ship Immediately
$ 1.48
Specifications
Current - Output (Typ): --
Base Part Number: TLV3501
Supplier Device Package: SOT-23-6
Mounting Type: Surface Mount
Package / Case: SOT-23-6
Operating Temperature: -40°C ~ 125°C
Hysteresis: 6mV
Propagation Delay (Max): 10ns
CMRR, PSRR (Typ): 70dB CMRR, 100dB PSRR
Current - Quiescent (Max): 5mA
Series: --
Current - Input Bias (Max): 10pA @ 5.5V
Voltage - Input Offset (Max): 6.5mV @ 5.5V
Voltage - Supply, Single/Dual (±): 2.7 V ~ 5.5 V, ±1.35 V ~ 2.75 V
Output Type: CMOS, Push-Pull, Rail-to-Rail, TTL
Number of Elements: 1
Type: General Purpose
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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TLV3501AI DBVTG4 is a type of linear-comparator, which is a semiconductor device used to compare two input voltages and deliver an output signal of logical state. It is known as an integrated circuit (IC) due to its internal circuitry being composed of transistors, resistors, and other components. The output of the TLV3501AI DBVTG4 can be either low or high, depending on the comparison between the two inputs. It has two main functions: it can amplify the difference in voltage between two input signals and it can detect whether a voltage is greater or lesser than a reference voltage.

The TLV3501AI DBVTG4 has a wide range of applications. It is often used in precision purchasing circuits, voltage monitoring systems, overvoltage protection circuits, and digital logic systems. It can also be used to detect logic level transients, compare digital signals, and detect unidirectional voltage changes. Additionally, TLV3501AI DBVTG4 is also used in automotive start/stop circuits and overcurrent detection circuits as well as audio frequency (AF) signal transitions.

The working principle of TLV3501AI DBVTG4 is based on the concept of comparing two voltages to determine whether the output signal should be high or low. The TLV3501AI DBVTG4 receives both the reference voltage and the comparison voltage (VREFP and VCS) on its two inputs. When the difference between the two voltages is less than the hysteresis voltage (Vhyst) of the circuit, the comparator output signal remains in its current state. When the difference between the two voltage levels exceeds the hysteresis value, the comparator will switch states – high to low or low to high – based on which voltage is larger.

The hysteresis voltage of the TLV3501AI DBVTG4 is typically quite low – around 10mV to 20mV. This ensures that the output signal is stable and avoids any undesired oscillations or false triggering. The hysteresis voltage of the TLV3501AI DBVTG4 can be adjusted using an external resistor, if necessary.

The TLV3501AI DBVTG4 is a reliable and efficient device for applications requiring precision purchase circuitry, overvoltage protection, or digital logic systems. It is highly accurate, with a typical accuracy of 99.9% under steady state conditions. It is also fast and stable, with a response time of 99.75 ns, and it is capable of operating at temperatures up to 125˚C. The TLV3501AI DBVTG4 is also low-power and quiet, with a quiescent current of just 6 µA during standby.

In conclusion, TLV3501AI DBVTG4 is a linear-comparator semiconductor device that can be used in a wide range of applications. Its two main functions are to amplify the difference in voltage between two input signals and to detect whether a voltage is greater or lesser than a reference voltage. The device is highly accurate and fast, while also being low-power and quiet. Its hysteresis voltage can be adjusted using an external resistor, and the device can operate at temperatures up to 125˚C. This makes the TLV3501AI DBVTG4 an excellent choice for precision purchase circuits, voltage monitoring systems, overvoltage protection circuits, and other applications requiring numeric comparison.

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

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