Allicdata Part #: | 497-7684-5-ND |
Manufacturer Part#: |
TS952IN |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | STMicroelectronics |
Short Description: | IC OPAMP GP 3MHZ RRO 8DIP |
More Detail: | General Purpose Amplifier 2 Circuit Rail-to-Rail 8... |
DataSheet: | TS952IN Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Voltage - Input Offset: | 6mV |
Base Part Number: | TS952 |
Supplier Device Package: | 8-DIP |
Package / Case: | 8-DIP (0.300", 7.62mm) |
Mounting Type: | Through Hole |
Operating Temperature: | -40°C ~ 125°C |
Voltage - Supply, Single/Dual (±): | 2.7 V ~ 12 V |
Current - Output / Channel: | 10mA |
Current - Supply: | 950µA |
Series: | -- |
Current - Input Bias: | 35nA |
Gain Bandwidth Product: | 3MHz |
Slew Rate: | 1 V/µs |
Output Type: | Rail-to-Rail |
Number of Circuits: | 2 |
Amplifier Type: | General Purpose |
Part Status: | Obsolete |
Packaging: | Tube |
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Linear amplifiers are essential components in instrumentation, used to increase the power of signals for various purposes. One such amplifier is the TS952IN, a differential input digital controlled gain amplifying circuit. This device is part of Texas Instruments’ FlexBus⁺ system, designed for use in a variety of medical equipment, such as digital medical imaging systems and radiological imaging displays. It is highly versatile, capable of amplifying multiple signals at the same time. The following sections explain the application field, working principles, and features of the TS952IN.
Application Field
The TS952IN is a low-power, low-noise amplifier, designed to be used in a variety of medical equipment. It is particularly useful in imaging systems, where multiple signals need to be amplified at the same time. This can include such modalities as ultrasound, X-ray, computed tomography (CT), or magnetic resonance imaging (MRI). The amplifier can process both analog and digital signals, making it an ideal choice for modern medical devices. It is also capable of handling high-resolution images, including those of the human body. The highly versatile TS952IN is an essential component of medical imaging systems.
Working Principle
The TS952IN is based on differential input digital controlled gain amplifying technology. It uses a high-speed switched capacitor system to change the gain of an incoming signal, providing accurate, consistent amplification across a wide range of input levels. By changing the capacitance values, the gain is controlled digitally, allowing for precise adjustments and amplification of a signal. The amplifier uses an inverting topology, ensuring a maximum signal-to-noise ratio. The differential inputs also provide excellent common-mode rejection, reducing the effect of unwanted signals. The symmetrical signal outputs allow for easy connection to downstream devices.
Features and Benefits
The TS952IN differential input digital controlled gain amplifying circuit has a number of features and benefits for medical equipment design. It is small and lightweight, with a total size of only 8.5mm x 8.5mm. This makes it easy to install, even in tight spaces. The amplifier also has a low-power operation, with a maximum power consumption of 70mW and low quiescent current. This helps reduce the overall power usage of a medical device, allowing it to operate more efficiently. The amplifier also has a high common-mode rejection, with a rejection of better than 70dB. This ensures a high signal-to-noise ratio, which is essential for accurate imaging. Finally, the TS952IN has a wide range of gain settings, making it easy to tailor to the specific needs of an imaging system.
The TS952IN differential input digital controlled gain amplifying circuit is an essential component for imaging systems. It has a variety of features and benefits, such as its low power consumption and wide range of gain settings. This makes it ideal for medical equipment design, providing accurate, reliable amplification for a variety of signals. In short, the TS952IN is an essential component for any modern medical imaging system.
The specific data is subject to PDF, and the above content is for reference
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