| Allicdata Part #: | TLC27L1CS-13DITR-ND |
| Manufacturer Part#: |
TLC27L1CS-13 |
| Price: | $ 0.25 |
| Product Category: | Integrated Circuits (ICs) |
| Manufacturer: | Diodes Incorporated |
| Short Description: | IC OPAMP GENERAL PURPOSE 8-SO |
| More Detail: | CMOS Amplifier 1 Circuit 8-SO |
| DataSheet: | TLC27L1CS-13 Datasheet/PDF |
| Quantity: | 2500 |
| 2500 +: | $ 0.22932 |
| Current - Input Bias: | 0.7pA |
| Supplier Device Package: | 8-SO |
| Package / Case: | 8-SOIC (0.154", 3.90mm Width) |
| Mounting Type: | Surface Mount |
| Operating Temperature: | 0°C ~ 70°C |
| Voltage - Supply, Single/Dual (±): | 3 V ~ 16 V |
| Current - Output / Channel: | 30mA |
| Current - Supply: | 14µA |
| Voltage - Input Offset: | 10mV |
| Series: | -- |
| Gain Bandwidth Product: | 110MHz |
| Slew Rate: | 0.04 V/µs |
| Output Type: | -- |
| Number of Circuits: | 1 |
| Amplifier Type: | CMOS |
| Part Status: | Active |
| Packaging: | Tape & Reel (TR) |
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The TLC27L1CS-13 is an operational amplifier (op-amp) designed for use in instrumentation and other linear applications. As linear amplifiers, instrumentation OP Amps and Buffers, this amplifier serves a variety of purposes. Unlike some of its predecessors, this model features an extremely low input bias current and matched components for accuracy.
The TLC27L1CS-13 is a dual-channel amplifier featuring two independent amplifier sections. It utilizes a two-stage topology which offers flexibility and precision. This includes an open-loop error detector, a differential input and a current output stage. Each of these stages provides excellent accuracy and stability.
This amplifier works by taking an input signal and amplifying it to the desired level. The input signal is amplified by the differential input stage, which consists of two matched pairs of transistors. This stage amplifies the input signal and converts it to the required output voltage. The current output stage then boosts the gain, converting it to the required output current.
The TLC27L1CS-13 also has an ultra-low input bias current. This current is necessary to prevent any errors caused by stray capacitance. This capacitor can accumulate energy and cause noise in the circuit. By ensuring an ultra-low input bias current, the TLC27L1CS-13 is able to prevent noise from affecting the accuracy of the amplifier.
The TLC27L1CS-13 is also excellent for applications requiring low-noise amplification. This is due to its high common-mode rejection ratio (CMRR). The CMRR is a measure of how much noise is being rejected by the amplifier. A high CMRR indicates that the amplifier is rejecting most of the noisy signals being applied, ensuring a low-noise output.
The TLC27L1CS-13 is also designed to provide accuracy and precision. It incorporates several design features to ensure its performance. For example, the input signal is matched to the reference voltage and the output signal is limited to a specific range in tolerance -- typically 1.5% over temperature. Additionally, the attenuator design makes it possible to adjust the gain as needed in order to maintain precision.
The TLC27L1CS-13 is ideally suited for use in a variety of instrumentation and linear applications, such as test and measurement systems, data acquisition, control systems, and audio applications. Its wide input voltage range and low input bias current makes it a great choice for low-noise and low-power systems. Additionally, its wide common-mode range and precision attenuator make it an excellent choice for precision and accuracy.
In conclusion, the TLC27L1CS-13 is a dual-channel amplifier designed for use in linear and instrumentation applications. It features an ultra-low input bias current and high CMRR to ensure low-noise operation. Additionally, it incorporates several design features to improve its accuracy and precision. Finally, its wide input voltage range and limited output tolerance from its attenuator design make it an ideal choice for a variety of applications.
The specific data is subject to PDF, and the above content is for reference
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TLC27L1CS-13 Datasheet/PDF