ADC08B200CIVS/NOPB
Manufacturer No:
ADC08B200CIVS/NOPB
Manufacturer:
Description:
IC ADC 8BIT 48TQFP
Datasheet:
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In Stock : 2753
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ADC08B200CIVS/NOPB Specifications
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TypeParameter
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Mounting TypeSurface Mount
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Supplier Device Package48-TQFP (7x7)
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Package / Case48-TQFP
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Operating Temperature-40°C ~ 105°C
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Features-
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Voltage - Supply, Digital2.7V ~ 3.6V
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Voltage - Supply, Analog3V ~ 3.6V
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Reference TypeExternal
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Architecture-
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Number of A/D Converters1
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Ratio - S/H:ADC-
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ConfigurationADC
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Data InterfaceParallel
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Input TypeSingle Ended
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Number of Inputs1
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Sampling Rate (Per Second)200M
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Number of Bits8
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PackagingTray
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PackagingBulk
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Product StatusActive
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Series-
The ADC08B200CIVS/NOPB is a high-speed analog-to-digital converter (ADC) integrated circuit chip manufactured by Texas Instruments. It offers several advantages and can be used in various application scenarios. Here are some of its key advantages and application areas:Advantages: 1. High-speed conversion: The ADC08B200CIVS/NOPB can perform analog-to-digital conversion at a very high speed, up to 8 GSPS (giga-samples per second). This makes it suitable for applications that require fast and accurate data acquisition.2. Wide bandwidth: The chip has a wide input bandwidth, up to 4 GHz, which allows it to capture a broad range of analog signals accurately.3. High resolution: It provides a high resolution of 8 bits, enabling precise digitization of analog signals.4. Low power consumption: The ADC08B200CIVS/NOPB is designed to operate with low power consumption, making it suitable for power-constrained applications.5. Integrated features: The chip includes various integrated features like a programmable gain amplifier (PGA), a voltage reference, and a digital down-converter (DDC), which simplifies the overall system design.Application Scenarios: 1. Communications: The high-speed and wide bandwidth capabilities of the ADC08B200CIVS/NOPB make it suitable for applications in wireless communication systems, software-defined radios (SDR), and radar systems.2. Test and measurement: The chip can be used in high-speed data acquisition systems, oscilloscopes, and spectrum analyzers, where accurate and fast digitization of analog signals is required.3. Medical imaging: The ADC's high resolution and wide bandwidth make it suitable for medical imaging applications like ultrasound, magnetic resonance imaging (MRI), and computed tomography (CT) scanners.4. Defense and aerospace: The ADC's high-speed conversion and wide bandwidth capabilities are valuable in defense and aerospace applications, such as radar systems, electronic warfare, and satellite communication systems.5. Scientific research: The chip can be used in various scientific research applications, including high-energy physics experiments, astronomy, and spectroscopy, where high-speed and accurate data acquisition is crucial.It's important to note that the specific application scenarios may vary depending on the system requirements and the overall design.
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