Allicdata Part #: | OPA660AP-ND |
Manufacturer Part#: |
OPA660AP |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Texas Instruments |
Short Description: | IC OPAMP TRANSCOND 850MHZ 8DIP |
More Detail: | Transconductance Amplifier 1 Circuit 8-PDIP |
DataSheet: | OPA660AP Datasheet/PDF |
Quantity: | 1000 |
Voltage - Input Offset: | 10mV |
Base Part Number: | OPA660 |
Supplier Device Package: | 8-PDIP |
Package / Case: | 8-DIP (0.300", 7.62mm) |
Mounting Type: | Through Hole |
Operating Temperature: | -25°C ~ 85°C |
Voltage - Supply, Single/Dual (±): | ±4.5 V ~ 5.5 V |
Current - Output / Channel: | 15mA |
Current - Supply: | 26mA |
Series: | -- |
Current - Input Bias: | 2.1µA |
-3db Bandwidth: | 850MHz |
Slew Rate: | 3000 V/µs |
Output Type: | -- |
Number of Circuits: | 1 |
Amplifier Type: | Transconductance |
Part Status: | Obsolete |
Packaging: | Tube |
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OPA660AP is a low-noise, high-speed operational amplifier. It is used in many applications ranging from precision instrumentation electronics to high-end audio systems. OPA660AP offers high slew rate, low noise, and voltage/current feedback with low offset errors and low-power supply voltage performance.
The working principle of the OPA660AP is based on the basic operational amplifier statements. An operational amplifier (op-amp) is a device that performs mathematical operations on analog signals. The OPA660AP contains two main parts, a differential stage and an output stage. The differential stage allows two input signals to be combined in order to form an output signal. The output stage is used to amplify the output signal.
The differential input stage of the OPA660AP amplifies the difference between two input signals. This differential input stage is achieved through the use of two input transistors. The purpose of these transistors is to create a voltage gain for the differential input signal. The output stage of the OPA660AP consists of an output transistor with a capacitor-load circuit attached to it. This configuration is then followed by a post-amplifier. The post-amplifier is used to amplify the output from the transistor and in turn, provide the desired output voltage.
The OPA660AP is ideal for applications that require precision linearity, low-noise performance, and wide-range frequency responses. The OPA660AP is used in a variety of instrumentation, laboratory equipment and high-end audio systems. It is used in applications such as application-specific integrated circuits (ASICs), analog-to-digital converters (ADC) and power amplifiers. Additionally, OPA660AP is often used in medical instruments, audio/video mixers, professional audio amplifiers, audiophile DACs, automotive systems, and communication systems.
The OPA660AP has several features that make it an attractive choice for many applications. It has a low-noise design that results in an improved signal-to-noise ratio. Additionally, OPA660AP is designed to provide high-speed operation and low power consumption. It is also designed to provide exceptionally fast settling time. The OPA660AP is also designed with an integrated temperature compensation circuitry which enables it to maintain low offset voltage even under extreme temperature conditions.
The OPA660AP is manufactured using advanced CMOS process and is available in a variety of surface-mount packages. It is also available in die forms for applications that require a smaller form factor. All OPA660AP devices are specified to work over a wide range of operating temperature ranges and are available in two grades, the high-performance grade and the standard performance grade. This wide range of availability makes it ideal for many applications.
In general, OPA660AP is a great choice for many applications that require precise linearity, low noise, and wide frequency response. It is used in many professional audio and automotive systems as well as communication systems, laboratory equipment, and medical instruments. Its low-power consumption and fast settling time make it an attractive choice for many applications. Additionally, its integrated temperature compensation makes it ideal for use in extreme temperature conditions.
The specific data is subject to PDF, and the above content is for reference
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