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ADS8332IRGER
+Lista de MateriaisIC ADC 16BIT SAR 24VQFN
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FabricanteTexas Instruments
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Peça do Fabricante #ADS8332IRGER
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Pacote VQFN-24
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Em Estoque3414
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Especificações
| Atributo | Valor |
| Package / Case | Tape & Reel (TR),Bulk |
| Part Status | Active |
| Number of Bits | 16 |
| Sampling Rate(Per Second) | 500k |
| Number of Inputs | 8 |
| Input Type | Pseudo-Differential, Single Ended |
| Data Interface | SPI |
| Configuration | MUX-S/H-ADC |
| Ratio - S / H: ADC | 1:1 |
| Number of A/D Converters | 1 |
| Architecture | SAR |
| Reference Type | External |
| Voltage - Supply, Analog | 2.7V ~ 3.6V, 5V |
| Voltage - Supply, Digital | 1.65V ~ 5.5V |
| Operating Temperature | -40°C ~ 85°C |
| Supplier Device Package | 24-VQFN (4x4) |
Visão Geral
Description
Operating at a low power consumption level, the ADS8332IRGER is ideal for battery-powered and portable applications. It integrates an internal reference and reference buffer, simplifying design and reducing the need for external components. The device comes in a compact VQFN (Very Thin Quad Flat No-lead) package, which supports efficient thermal management and space-saving on PCBs.
Key features of the ADS8332IRGER include low total harmonic distortion (THD), high signal-to-noise ratio (SNR), and a flexible serial interface for easy integration with microcontrollers or DSPs.
Equivalent
1. AD7606 - From Analog Devices, a 16-bit, 8-channel ADC with similar sampling rates.
2. MAX11131 - From Maxim Integrated, a 16-bit, multichannel ADC.
3. MCP3208 - From Microchip, an 8-channel, 12-bit ADC, though slightly lower in resolution, could be considered for less demanding applications.
Note: Specifications and compatibility should be verified to ensure suitability for specific applications.
Features
1. Resolution and Speed: Offers 16-bit resolution with a maximum sampling rate of 500 kSPS, suitable for high-speed data acquisition.
2. Input Channels: Features 8 single-ended or 4 differential analog input channels, providing flexibility in signal measurement.
3. Input Range: Supports a wide analog input range from 0 to 5V or ±2.5V, accommodating various signal types.
4. SPI Interface: Utilizes a standard SPI-compatible interface for easy integration with microcontrollers and digital signal processors.
5. Low Power Consumption: Designed for low power operation, making it suitable for battery-powered and portable applications.
6. Internal Reference: Includes a 4.096V internal reference, simplifying design and reducing external component count.
7. Package and Operating Temperature: Available in a compact 24-pin VQFN package, with an operating temperature range from -40°C to +85°C.
These features make the ADS8332IRGER ideal for precision data acquisition, industrial control, medical instrumentation, and other applications requiring high accuracy and fast conversion rates.
Pinout
1. Analog inputs (IN0-IN5) for six channels.
2. Reference voltage pins (REFT, REFB) which set the reference levels for the ADC.
3. Power supply pins (AVDD, DVDD) for analog and digital supplies respectively.
4. Ground pins (AGND, DGND) for analog and digital grounds respectively.
5. Control pins such as CS (Chip Select), SCLK (Serial Clock), and SDI (Serial Data In) for SPI communication.
6. Data output pins like SDO (Serial Data Out) for sending conversion results.
7. Other pins for additional control functions like CONVST (Convert Start) and RESET (Reset).
These pins facilitate the operation of the ADS8332IRGER, enabling it to perform high-speed, high-resolution analog-to-digital conversions for multi-channel applications. For detailed pin function and configuration, consulting the device datasheet is recommended.
Manufacturer
Application
1. Industrial Automation: Used for precise data acquisition and control systems.
2. Medical Equipment: Integrated into medical imaging devices and diagnostic tools requiring accurate signal conversion.
3. Test and Measurement: Essential for oscilloscopes, spectrum analyzers, and other precision measuring instruments.
4. Communications: Employed in signal processing for telecommunication systems.
5. Aerospace and Defense: Utilized in radar and navigation systems needing high resolution and reliability.
These applications benefit from the ADC’s high resolution, fast sampling rate, and low power consumption.