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ADC08D1520CIYB
+StücklisteIC ADC 8BIT FOLD INTERP 128HLQFP
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HerstellerTexas Instruments
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Herstellerteil #ADC08D1520CIYB
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Datenblatt ADC08D1520CIYB DataSheet
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Auf Lager6821
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Spezifikationen
| Attribut | Wert |
| PartStatus | Obsolete |
| NumberofBits | 8 |
| SamplingRate(PerSecond) | 3G |
| NumberofInputs | 2 |
| InputType | Differential |
| DataInterface | LVDS - Parallel |
| Configuration | MUX-S/H-ADC |
| Ratio-S/H:ADC | 1:1 |
| NumberofA/DConverters | 2 |
| Architecture | Folding Interpolating |
| ReferenceType | Internal |
| Voltage-Supply,Analog | 1.8V ~ 2V |
| Voltage-Supply,Digital | 1.8V ~ 2V |
| Features | Simultaneous Sampling |
| OperatingTemperature | -40°C ~ 85°C |
| Package/Case | 128-LQFP Exposed Pad |
| SupplierDevicePackage | 128-HLQFP (20x20) |
| MountingType | Surface Mount |
| BaseProductNumber | ADC08D |
Übersicht
Description
This ADC is suitable for various high-performance applications, including communication systems, video processing, and instrumentation. It employs a pipelined architecture, allowing it to achieve a balance between speed and power consumption. The chip also includes digital signal processing capabilities, facilitating functions like channel selection and data formatting.
The ADC08D1520CIYB is typically housed in a compact package, promoting ease of integration into various systems. With its high dynamic range and low distortion, it is ideal for applications demanding precision and speed. Users must carefully consider power supply requirements, signal conditioning, and interface options when implementing this ADC in their designs.
Equivalent
1. ADC08D1520 - Same product, different package.
2. AD9233 - 12-bit, 1.5 GSPS ADC from Analog Devices.
3. MAX1190 - 12-bit, 1 GSPS ADC from Maxim Integrated.
Always verify specifications and performance requirements when considering replacements.
Features
1. Sampling Rate: Capable of sampling up to 1.5 GSPS (giga-samples per second).
2. Resolution: 8-bits with excellent linearity and accuracy.
3. Input Range: Supports a wide input voltage range for versatile applications.
4. Low Power Consumption: Optimized for energy efficiency, suitable for portable devices.
5. Digital Output: Provides a parallel output interface for fast data transfer.
6. Flexible Reference Voltage: Configurable internal and external reference options.
7. Integrated Clock: On-chip clocking simplifies design and reduces external components.
8. Temperature Range: Operates reliably across industrial temperature ranges.
9. Single Supply Operation: Simplifies power supply requirements with a single voltage source.
These features make the ADC08D1520CIYB ideal for applications in telecommunications, medical imaging, and other high-speed data acquisition systems.
Pinout
Key functions of the ADC include:
- Analog Input: Accepts differential input signals.
- Digital Output: Provides a parallel output interface for digital data.
- Clock Input: Requires an external clock for operation.
- Power Supply Pins: Includes pins for providing power (typically +1.8V and +3.3V).
- Control Pins: Includes configuration options for operation modes, data alignment, and other settings.
- Reference Voltage Inputs: Allows for external reference voltage connections to set the ADC's full-scale range.
This device is typically used in applications such as telecommunications, medical imaging, and high-speed data acquisition systems.
Manufacturer
The ADC08D1520CIYB is a high-speed, dual-channel analog-to-digital converter (ADC) that offers a sampling rate of up to 1.5 GSPS (giga-samples per second) and is utilized in applications such as communications, medical imaging, and test and measurement equipment. Texas Instruments is recognized for its commitment to innovation and quality, providing engineers with the tools necessary to develop advanced electronic systems.
Through a combination of research and development, manufacturing capabilities, and a robust product portfolio, Texas Instruments remains a key player in the global semiconductor market.
Application
1. Communications: Used in digital receivers and transmitters for signal processing.
2. Medical Imaging: Employed in ultrasound and MRI systems for precise imaging.
3. Instrumentation: Utilized in test and measurement equipment for accurate data capture.
4. Radar and Sonar: Applied in military and aerospace systems for target tracking and detection.
5. Industrial Control: Integrated into automation systems for monitoring and control processes.
Its high sampling rate and resolution make it suitable for demanding applications across these fields.