Touchstone Semiconductor TS9001-1IJ5T
- TS9001-1IJ5T
- Touchstone Semiconductor
- IC COMPARATOR W/REF SC70-5
- Linear - Comparators
- TS9001-1IJ5T Datasheet
- 6-VSSOP (5 Lead), SC-88A, SOT-353
- Tape & Reel (TR)
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Lead free / RoHS Compliant - 1679
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What is TS9001-1IJ5T
Touchstone Semiconductor Part Number TS9001-1IJ5T(Linear - Comparators), developed and manufactured by Touchstone Semiconductor, distributed globally by Jinftry. We distribute various electronic components from world-renowned brands and provide one-stop services, making us a trusted global electronic component distributor.
TS9001-1IJ5T is one of the part numbers distributed by Jinftry, and you can learn about its specifications/configurations, package/case, Datasheet, and other information here. Electronic components are affected by supply and demand, and prices fluctuate frequently. If you have a demand, please do not hesitate to send us an RFQ or email us immediately [email protected] Please inquire about the real-time unit price, Data Code, Lead time, payment terms, and any other information you would like to know. We will do our best to provide you with a quotation and reply as soon as possible.
TS9001-1IJ5T Specifications
- Part NumberTS9001-1IJ5T
- CategoryLinear - Comparators
- ManufacturerTouchstone Semiconductor
- DescriptionIC COMPARATOR W/REF SC70-5
- PackageTape & Reel (TR)
- Series-
- TypeGeneral Purpose
- Operating Temperature-40°C ~ 85°C
- Mounting TypeSurface Mount
- Package / Case6-VSSOP (5 Lead), SC-88A, SOT-353
- Supplier Device PackageSC-70-5
- Output TypePush-Pull
- Voltage - Supply, Single/Dual (±)1.6V ~ 5.5V
- Number of Elements1
- Voltage - Input Offset (Max)5mV @ 5V
- Current - Input Bias (Max)0.001µA @ 5V
- Current - Quiescent (Max)1.3µA
- Propagation Delay (Max)50µs
- CMRR, PSRR (Typ)60dB PSRR
- Current - Output (Typ)50mA
- Hysteresis4mV
Application of TS9001-1IJ5T
TS9001-1IJ5T Datasheet
TS9001-1IJ5T Datasheet , Tape & Reel (TR),General Purpose,-40°C ~ 85°C,Surface Mount,6-VSSOP (5 Lead), SC-88A, SOT-353,SC-70-5,Push-Pull,1.6V ~ 5.5V,1,5mV @ 5V,0.001µA @ 5V,1.3µA,50µs,60dB PSRR,50mA,4mV
TS9001-1IJ5T Classification
Linear - Comparators
FAQ about Linear - Comparators
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1. What is a comparator IC?
A comparator IC is an integrated circuit device that is mainly used to compare the magnitude relationship of two voltage signals and generate a corresponding output signal. Comparator ICs are widely used in electronic circuits. They have high input impedance and low output impedance, and can quickly connect to other electronic devices and transmit signals.
Working Principle
A comparator IC determines the state of the output signal by comparing the magnitude of two input voltage signals. Usually, a comparator IC has two input pins: one is a non-inverting input pin (+IN) and the other is an inverting input pin (-IN). When the voltage of the +IN pin is higher than the voltage of the -IN pin, the output pin will output a high-level signal; otherwise, it will output a low-level signal. -
2. What is a logic level comparator?
A logic level comparator is an electronic device that compares the magnitude of two voltage signals and outputs a corresponding high or low level according to the comparison result. Comparators are usually used in applications such as digitization of analog signals, voltage comparison and triggering.
Working Principle
A comparator is usually composed of a differential amplifier with two input terminals (positive input terminal and negative input terminal) and an output terminal. When the voltage at the positive input is higher than that at the negative input, the output voltage is high; when the voltage at the negative input is higher than that at the positive input, the output voltage is low. When the voltages at the two inputs are equal, the output voltage depends on the characteristics of the comparator. There may be a certain offset voltage, or the output is in an uncertain state. -
3. What is an inverting non-inverting comparator?
Inverters and non-inverters are two common circuit elements in electronics, and they play an important role in circuit design and signal processing.
Inverter
An inverter is a circuit element that can output the input signal in reverse. In electronics, inverters are often used in circuit designs such as signal amplification, filtering, and logic gates. Its working principle is as follows:
Working principle: Inverters usually use transistors or op amps as core components. Taking the transistor inverting amplifier circuit as an example, when the input signal is a positive voltage, the transistor is in the on state and the output signal is a low level; when the input signal is a negative voltage, the transistor is in the off state and the output signal is a high level.
Features: The output signal phase of the inverter is 180 degrees different from the input signal phase, the gain is stable, and it is often used for signal amplification and phase reversal.
Is the comparator linear or nonlinear?
Comparators are nonlinear.
A comparator is a nonlinear device, usually composed of an operational amplifier (op amp), and is mainly used in nonlinear state applications. The main function of a comparator is to compare the size of two input signals and output a high or low level signal based on the comparison result. Since the gain of the comparator is very large, after the input signal passes through the comparator, the output has only two states: high level and low level. This characteristic makes the comparator play an important role in circuit design and application.
Definition and difference between linearity and nonlinearity
Linear device: The output maintains a linear relationship with the input, that is, the output is a function of the input, and the slope remains unchanged. For example, the operational amplifier works in the linear region with negative feedback.
Nonlinear device: The output does not maintain a linear relationship with the input, and the output is a nonlinear function of the input. The comparator works in the nonlinear region without negative feedback or positive feedback, and the output has only two states: high level and low level.
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