LTC2323IUFD-12#PBF
Manufacturer No:
LTC2323IUFD-12#PBF
Manufacturer:
Description:
IC ADC 12BIT SAR 28QFN
Datasheet:
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In Stock : 367
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LTC2323IUFD-12#PBF Specifications
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TypeParameter
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Mounting TypeSurface Mount
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Supplier Device Package28-QFN (4x5)
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Package / Case28-WFQFN Exposed Pad
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Operating Temperature-40°C ~ 85°C
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FeaturesSimultaneous Sampling
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Voltage - Supply, Digital1.71V ~ 2.63V
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Voltage - Supply, Analog3.13V ~ 3.47V, 5V
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Reference TypeExternal, Internal
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ArchitectureSAR
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Number of A/D Converters2
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Ratio - S/H:ADC1:1
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ConfigurationS/H-ADC
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Data InterfaceLVDS - Serial, Serial
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Input TypeDifferential, Pseudo-Differential
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Number of Inputs2
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Sampling Rate (Per Second)5M
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Number of Bits12
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PackagingTube
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Product StatusActive
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Series-
The LTC2323IUFD-12#PBF is a high-performance, 12-bit, 2-channel, simultaneous sampling analog-to-digital converter (ADC) integrated circuit chip. It offers several advantages and can be used in various application scenarios:1. High Performance: The LTC2323IUFD-12#PBF provides excellent performance with a high sampling rate of up to 105Msps (Mega samples per second) and a low noise level. It offers a high signal-to-noise ratio (SNR) and spurious-free dynamic range (SFDR), making it suitable for demanding applications that require accurate and precise analog-to-digital conversion.2. Simultaneous Sampling: This ADC chip features simultaneous sampling, which means it can sample both channels at the same time. This is particularly useful in applications where precise timing and synchronization between multiple channels are required, such as multi-channel data acquisition systems, medical imaging, and communication systems.3. Wide Input Range: The LTC2323IUFD-12#PBF has a wide input voltage range, allowing it to handle a variety of input signals. It can accept differential or single-ended input signals, making it versatile for different application requirements.4. Low Power Consumption: This ADC chip is designed to operate with low power consumption, making it suitable for battery-powered or energy-efficient devices. It offers power-down modes and adjustable power scaling options to optimize power consumption based on the application's needs.5. Flexible Interface: The LTC2323IUFD-12#PBF supports various digital interfaces, including serial peripheral interface (SPI) and serial LVDS (low-voltage differential signaling). This flexibility enables easy integration with microcontrollers, digital signal processors (DSPs), and other digital devices.Application Scenarios:1. Data Acquisition Systems: The LTC2323IUFD-12#PBF can be used in multi-channel data acquisition systems where simultaneous sampling and high accuracy are required. It can convert analog signals from sensors, transducers, or other sources into digital data for further processing or analysis.2. Communications: In communication systems, this ADC chip can be used for high-speed signal sampling and processing. It can be employed in applications such as software-defined radios, wireless base stations, and radar systems.3. Medical Imaging: The simultaneous sampling capability of the LTC2323IUFD-12#PBF makes it suitable for medical imaging applications like ultrasound, where multiple channels need to be sampled simultaneously to capture accurate and synchronized data.4. Test and Measurement Equipment: This ADC chip can be utilized in various test and measurement instruments, including oscilloscopes, spectrum analyzers, and signal generators. Its high performance and simultaneous sampling enable precise measurements and analysis of analog signals.5. Industrial Control Systems: The LTC2323IUFD-12#PBF can be integrated into industrial control systems for monitoring and controlling analog signals. It can convert analog sensor data into digital format for real-time processing and decision-making in applications like process control, automation, and robotics.Overall, the LTC2323IUFD-12#PBF ADC chip offers high performance, simultaneous sampling, and flexibility, making it suitable for a wide range of applications that require accurate and fast analog-to-digital conversion.
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