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AD9910BSVZ
+NomenclatureIC DDS 1GHZ 14BIT 100TQFP
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FabricantAnalog Equipment GmbH.
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Pièce fabricant #AD9910BSVZ
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Fiche technique AD9910BSVZ DataSheet
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Package TQFP-100
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En stock2722
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Spécifications
| Attribut | Valeur |
| Package | Tray |
| ProductStatus | Active |
| Resolution(Bits) | 14 b |
| Masterfclk | 1 GHz |
| TuningWordWidth(Bits) | 32 b |
| Voltage-Supply | 1.8V, 3.3V |
| OperatingTemperature | -40°C ~ 85°C |
| MountingType | Surface Mount |
| Package/Case | 100-TQFP Exposed Pad |
Présentation
Description
Key features include a programmable modulus, which allows for precise tuning of output frequencies, and a built-in phase accumulator for phase modulation. The AD9910BSVZ supports fast frequency hopping, making it suitable for agile frequency applications such as radar, communication systems, and electronic warfare.
The device is highly configurable via a serial I/O interface, enabling control over frequency, phase, and amplitude modulation parameters. It also includes a system clock multiplier, digital ramp generation, and an auxiliary DAC for additional signal processing flexibility. With its robust feature set, the AD9910BSVZ is ideal for complex waveform generation and precision signal control in advanced electronic systems.
Equivalent
1. AD9854 by Analog Devices - Another DDS with similar features.
2. AD9954 by Analog Devices - Offers DDS capabilities with a similar frequency range.
3. AD9912 by Analog Devices - A higher-performance DDS with advanced features.
4. LTC2000 by Analog Devices (formerly Linear Technology) - A high-speed DAC that can be used in similar applications.
Always verify the required specifications and features when selecting an equivalent.
Features
1. High-Speed: Offers a maximum clock rate of 1 GHz for high-speed applications.
2. Frequency Resolution: Offers a fine frequency tuning resolution with a 32-bit tuning word, allowing precise control over output frequencies.
3. Output Range: Supports output frequencies up to 400 MHz with excellent phase noise characteristics.
4. Modulation Capabilities: Includes amplitude, frequency, and phase modulation, with versatile modulation control.
5. Analog/Digital Control: Equipped with both digital (serial and parallel) and analog control interfaces for flexibility.
6. Integrated RAM: Contains integrated RAM for dynamic waveform generation.
7. Powerful I/O: Provides multiple I/O options, including an SPI port for easy integration.
8. Low Power Consumption: Optimized for efficient power usage in various applications.
9. Phase Noise Performance: Delivers superior phase noise performance, suitable for high-performance applications.
10. Package: Typically offered in a 72-lead LFCSP package, facilitating compact designs.
These features make the AD9910BSVZ suitable for applications such as radar, instrumentation, and communication systems.
Pinout
The AD9910 provides a variety of functionalities including frequency, phase, and amplitude modulation. It is equipped with a serial I/O port for easy configuration and control, and features a programmable reference clock multiplier, profile pins for fast switching between pre-programmed settings, and auxiliary features such as a digital ramp generator for linear frequency sweeps.
This device suits applications requiring high-frequency stability and low phase noise, making it ideal for radar, communications, and signal testing. For detailed pin function descriptions and configuration, refer to the manufacturer's datasheet.
Manufacturer
Application
1. Communication Systems: For generating RF signals in transmitters and receivers.
2. Radar Systems: Used for waveform generation and frequency agility.
3. Test and Measurement Equipment: Provides precise signal generation for testing purposes.
4. Medical Imaging: Supports high-resolution imaging systems.
5. Electronic Warfare: Offers rapid frequency hopping capabilities.
6. Function Generators: Used for producing arbitrary waveforms.
7. Signal Synthesis: In research and development environments for generating complex frequencies.
These applications benefit from its high-speed, frequency agility, and low-phase noise characteristics.