Allicdata Part #: | 296-13369-2-ND |
Manufacturer Part#: |
TLV2633IDGSR |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Texas Instruments |
Short Description: | IC OPAMP GP 9MHZ RRO 10VSSOP |
More Detail: | General Purpose Amplifier 2 Circuit Rail-to-Rail 1... |
DataSheet: | TLV2633IDGSR Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Voltage - Input Offset: | 250µV |
Base Part Number: | TLV2633 |
Supplier Device Package: | 10-VSSOP |
Package / Case: | 10-TFSOP, 10-MSOP (0.118", 3.00mm Width) |
Mounting Type: | Surface Mount |
Operating Temperature: | -40°C ~ 125°C |
Voltage - Supply, Single/Dual (±): | 2.7 V ~ 5.5 V, ±1.35 V ~ 2.75 V |
Current - Output / Channel: | 28mA |
Current - Supply: | 730µA |
Series: | -- |
Current - Input Bias: | 1pA |
Gain Bandwidth Product: | 9MHz |
Slew Rate: | 10 V/µs |
Output Type: | Rail-to-Rail |
Number of Circuits: | 2 |
Amplifier Type: | General Purpose |
Part Status: | Discontinued at Digi-Key |
Packaging: | Tape & Reel (TR) |
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TLV2633IDGSR amplifiers are mainly used in instrumentation and data logging systems. They are a type of linear amplifier and are often used to amplify low voltage signals to levels that can be read by digital devices. They are also used to provide a level of gain that allows the signal to be measured accurately. In some cases, they can even be used to increase the signal levels so that they can be read by analog-to-digital converters.
Description of Application Field
TLV2633IDGSR amplifiers are designed to amplify low level signals and make them suitable for use in data logging and instrumentation systems. The main application fields for TLV2633IDGSR amplifiers are medical instruments, automotive and industrial instrumentation, process control systems, and audio/video equipment. TLV2633IDGSR amplifiers are used in these applications because of their low noise, high power rating, and wide frequency response.
Working Principle
TLV2633IDGSR amplifiers use a combination of transistors to amplify the incoming signals. The input signal is first routed through the input circuit, where it is amplified by the gain of the device. The amplified signal is then passed through an output circuit where it is buffered and amplified further. This buffered and amplified signal can then be used to drive the load. The gain of the TLV2633IDGSR amplifier can be adjusted by changing the value of the resistors in the input and/or output circuits.
The TLV2633IDGSR amplifiers can also be configured in dual-channel operation, where two inputs are routed through two separate amplification circuits. The two outputs can then be combined in either a push-pull configuration or a parallel configuration. This configuration allows for greater power and improved noise performance. Another feature of the TLV2633IDGSR amplifiers is that they can be configured for single-supply operation, reducing the number of power sources needed.
Limitations
The TLV2633IDGSR amplifiers are limited by their power ratings, the frequency response and the level of noise they produce. Although they are designed to amplify low-level signals, they can be susceptible to overloads, drift, and crosstalk. Therefore, it is important to select the appropriate amplifier for the application.
TLV2633IDGSR amplifiers are also limited in terms of accuracy. This can be due to the fact that the devices are often optimized for low-cost and low power applications, thus sacrificing accuracy for cost savings. This can lead to the need for calibration or trimming to ensure accurate readings.
Conclusion
TLV2633IDGSR amplifiers are a reliable and cost effective solution for low-level signal amplification. They are suitable for a wide range of applications, including medical instruments, automotive and industrial instrumentation, and process control systems. The TLV2633IDGSR amplifiers work on the principle of amplifying low-level signals and can be configured in dual-channel operation or single-supply operation. Although they are reliable and effective, they can be limited by their power ratings, frequency response, and the level of noise they generate. Therefore, it is important to choose the appropriate amplifier for the application.
The specific data is subject to PDF, and the above content is for reference
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