TSH31ID Allicdata Electronics
Allicdata Part #:

497-3068-5-ND

Manufacturer Part#:

TSH31ID

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: STMicroelectronics
Short Description: IC OPAMP GP 280MHZ 8SO
More Detail: General Purpose Amplifier 1 Circuit 8-SO
DataSheet: TSH31ID datasheetTSH31ID Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Voltage - Input Offset: 3mV
Base Part Number: TSH31
Supplier Device Package: 8-SO
Package / Case: 8-SOIC (0.154", 3.90mm Width)
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 125°C
Voltage - Supply, Single/Dual (±): ±3 V ~ 6 V
Current - Output / Channel: 70mA
Current - Supply: 20mA
Series: --
Current - Input Bias: 2pA
Gain Bandwidth Product: 280MHz
Slew Rate: 300 V/µs
Output Type: --
Number of Circuits: 1
Amplifier Type: General Purpose
Part Status: Obsolete
Packaging: Tube 
Description

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Linear amplifiers are important components in many commercial and industrial applications. In addition to amplifying audio and other signals, they can be used to drive motors, control circuits, and measure resistance and current levels. The TSH31ID is a linear amplifier which is capable of providing strong, stable amplification and has excellent performance even when powering low-current devices. The device offers both high- and low-gain options and can be used in both single-ended and differential operations, making it an ideal choice for a variety of applications.

TSH31ID Application Field

The versatility of the TSH31ID makes it applicable for a wide range of applications, such as audio amplifiers, instrumentation amplifiers, and differential amplifiers. It is suitable for use in automotive, power supply, audio, and industrial automation systems, as well as for use in measuring current and voltage levels, and controlling driving motors. The device can also be employed in precision signal processing and in high speed, low-noise systems including fiber optic and RF systems. Its wide range of applications, excellent performance, and small size make the TSH31ID a valuable component for many different projects.

TSH31ID Working Principle

The TSH31ID is a linear amplifier consisting of four identical N-channel MOSFETs with integrated input, output, and gain stages. It is designed for single-ended and differential operations and can be used in combination with components to create amplifiers of varying gain. The device is capable of providing high- and low-gain modes for various applications and the integration of all stages of amplification makes the device compact and allows for large levels of output power. Additionally, the TSH31ID’s output stage is protected against reverse/overload voltages, as well as against short-circuits.

The basic working principle behind the TSH31ID is that the N-channel MOSFETs amplify the input signal by switching between conducting and non-conducting states, a process known as gain switching. When the device is powered, the input stage receives a signal and uses it to switch the output stage to either a conducting or non-conducting state. If the input is a low-gain signal, the output stage will stay in a non-conducting state, allowing current to pass through and amplify the signal. On the other hand, if the input signal is of high gain, the output stage will switch to a conducting state and will prevent current from passing through, thus providing low amplification. This process is repeated for each successive MOSFET until the output from the final stage provides the desired level of amplification.

Conclusion

The TSH31ID linear amplifier offers superior performance, making it suitable for a variety of settings. The device’s compatibility with both single-ended and differential operations, along with its low- and high-gain options, make it a valuable component for many applications. Its small size and ability to provide high output power make it an ideal choice for precision signal processing and other high-speed operations. Finally, the device offers protection against reverse/overload voltages and short-circuits, ensuring reliable performance.

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

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