LTC2442IG#PBF
Manufacturer No:
LTC2442IG#PBF
Manufacturer:
Description:
IC ADC 24BIT SIGMA-DELTA 36SSOP
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LTC2442IG#PBF Specifications
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TypeParameter
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Mounting TypeSurface Mount
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Supplier Device Package36-SSOP
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Package / Case36-SSOP (0.209", 5.30mm Width)
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Operating Temperature-40°C ~ 85°C
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Features-
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Voltage - Supply, Digital5V
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Voltage - Supply, Analog5V
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Reference TypeExternal
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ArchitectureSigma-Delta
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Number of A/D Converters1
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Ratio - S/H:ADC-
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ConfigurationMUX-ADC
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Data InterfaceSPI
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Input TypeDifferential, Single Ended
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Number of Inputs2, 4
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Sampling Rate (Per Second)8k
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Number of Bits24
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PackagingTube
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Product StatusActive
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Series-
The LTC2442IG#PBF is a high-precision, low-power, 24-bit analog-to-digital converter (ADC) integrated circuit chip manufactured by Linear Technology (now part of Analog Devices). It offers several advantages and can be used in various application scenarios:1. High Precision: The LTC2442IG#PBF provides 24-bit resolution, allowing for highly accurate conversion of analog signals into digital data. This high precision makes it suitable for applications that require precise measurements, such as industrial process control, scientific instrumentation, and data acquisition systems.2. Low Power Consumption: The chip operates at very low power levels, making it ideal for battery-powered or energy-efficient devices. It consumes only 3.5mW of power during conversion, enabling longer battery life and reducing overall power consumption in portable or low-power applications.3. Wide Input Range: The LTC2442IG#PBF supports a wide input voltage range, from 0V to VREF, where VREF can be set between 2.5V and 5V. This flexibility allows the chip to handle a broad range of input signals, making it suitable for various sensor interfaces, signal conditioning circuits, and measurement applications.4. High Sample Rate: The chip can achieve a sample rate of up to 4.5 samples per second (SPS) in continuous conversion mode. This high sample rate enables real-time monitoring and fast data acquisition in applications that require rapid response times, such as control systems or high-speed data logging.5. Integrated Features: The LTC2442IG#PBF includes integrated features like a built-in oscillator, reference voltage, and temperature sensor. These integrated components simplify the design process, reduce external component count, and enhance overall system performance.Application Scenarios: 1. Precision Measurement: The LTC2442IG#PBF is well-suited for applications that require high-precision measurements, such as temperature sensing, strain gauges, pressure sensors, or load cells. Its 24-bit resolution ensures accurate conversion of analog signals into digital data.2. Data Acquisition Systems: The chip can be used in data acquisition systems that require precise and low-power analog-to-digital conversion. It can be integrated into data loggers, environmental monitoring systems, or scientific instruments to capture and process analog signals.3. Industrial Process Control: The LTC2442IG#PBF can be employed in industrial control systems that require accurate and reliable analog-to-digital conversion. It can be used in process control loops, feedback systems, or monitoring devices to convert analog sensor signals into digital data for control and analysis.4. Portable and Battery-Powered Devices: Due to its low power consumption, the chip is suitable for battery-powered or portable devices. It can be used in handheld instruments, portable medical devices, or wireless sensor networks, where power efficiency is crucial for extended operation.5. Sensor Interfaces: The LTC2442IG#PBF can serve as an interface between various sensors and microcontrollers or digital systems. It can convert the analog output of sensors like temperature sensors, pressure sensors, or strain gauges into digital data for further processing or transmission.Overall, the LTC2442IG#PBF offers high precision, low power consumption, and versatile features, making it a valuable component in applications that require accurate analog-to-digital conversion and low-power operation.
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