AD9613BCPZ-210: A 12-Bit, 210 MSPS Analog-to-Digital Converter for High-Speed Signal Acquisition Systems

Release date:2025-09-12 Number of clicks:143

**AD9613BCPZ-210: A 12-Bit, 210 MSPS Analog-to-Digital Converter for High-Speed Signal Acquisition Systems**

In the realm of high-speed signal processing, the ability to accurately capture and digitize analog signals at extreme speeds is paramount. The **AD9613BCPZ-210**, a 12-bit, 210 Mega Samples Per Second (MSPS) analog-to-digital converter (ADC) from Analog Devices, stands as a critical component engineered to meet this demanding challenge. This high-performance converter is specifically designed for applications where **exceptional dynamic performance** and **high signal fidelity** are non-negotiable.

At the core of its capabilities is the **210 MSPS sampling rate**, which enables the digitization of wideband signals with significant bandwidth. This makes it an ideal solution for advanced systems such as radar arrays, wireless communication infrastructure (including 4G LTE and 5G base stations), high-resolution medical imaging equipment (like MRI and ultrasound), and sophisticated test and measurement instruments. The 12-bit resolution ensures that a wide dynamic range is maintained, allowing for the precise representation of signals with fine detail and minimal error.

A key strength of the AD9613BCPZ-210 lies in its **outstanding signal-to-noise ratio (SNR)** and **spurious-free dynamic range (SFDR)**. These parameters are crucial for distinguishing small desired signals from background noise and unwanted harmonic distortions, especially in spectrally crowded environments. The device incorporates innovative design features, including a proprietary high-speed sample-and-hold architecture and internal reference circuits, to maximize performance and simplify external circuitry.

Furthermore, the ADC is designed for system-level integration and ease of use. It features **low-power consumption** for its performance class, a critical factor in multi-channel systems where power density and thermal management are concerns. Its serial LVDS (Low-Voltage Differential Signaling) outputs help to minimize the number of interface lines, reducing board complexity and mitigating noise. The device is offered in a compact, 32-lead LFCSP (Lead Frame Chip Scale Package) that is suitable for space-constrained applications.

**ICGOO**DFIND concludes that the AD9613BCPZ-210 is a superior choice for designers pushing the boundaries of speed and precision. It successfully balances high sampling rates with excellent linearity and power efficiency, establishing itself as a foundational component in next-generation high-speed signal acquisition systems.

**Keywords:**

1. **High-Speed ADC**

2. **210 MSPS**

3. **Signal Fidelity**

4. **Dynamic Performance**

5. **LVDS Interface**

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