AD7610BCPZ - 16-Bit 250kSPS PulSAR ADC | Analog Devices
MPN: AD7610BCPZ ✓ Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $47.7273 | $47.73 |
| 10 | $34.4697 | $344.70 |
| 100 | $30.4924 | $3,049.24 |
| 500 | $29.1667 | $14,583.35 |
| 1,000 | $27.8409 | $27,840.90 |
Drop-in alternatives for AD7610BCPZ — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
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View Datasheet →AD7610BCPZ Maximum Ratings & Electrical Characteristics
| Resolution | 16 bits |
| Sampling Rate | 250 kSPS |
| Number of Inputs | 1 |
| Input Type | Single-ended |
| Input Range | Unipolar 0V to 5V, Bipolar ±5V, ±10V |
| Architecture | SAR |
| Analog Supply Voltage | 4.75V to 5.25V |
| Digital Supply Voltage | 2.3V to 5.25V |
| Interface | SPI |
| Package | 48-LFCSP-VQ (7x7) |
| Operating Temperature Range | -40°C to +85°C |
| Power Dissipation | 120 mW typical |
| INL (Integral Nonlinearity) | ±1 LSB typical |
| SNR (Signal-to-Noise Ratio) | 91 dB typical |
| RoHS Status | Compliant |
AD7610BCPZ Pin Configuration
| Pin 1 | AVDD — Analog power supply (4.75V to 5.25V) |
| Pin 2 | AVDD — Analog power supply |
| Pin 3 | REF — Reference input |
| Pin 4 | REFGND — Reference ground |
| Pin 5 | IN+ — Positive analog input |
| Pin 6 | IN- — Negative analog input |
| Pin 7 | AGND — Analog ground |
| Pin 8 | AGND — Analog ground |
| Pin 9 | DVDD — Digital power supply (2.3V to 5.25V) |
| Pin 10 | DGND — Digital ground |
| Pin 11 | SCLK — Serial clock input |
| Pin 12 | SDIN — Serial data input |
| Pin 13 | SDOUT — Serial data output |
| Pin 14 | CS — Chip select (active low) |
| Pin 15 | BUSY — Busy output |
| Pin 16 | RESET — Reset input |
| Pin 17 | PD — Power-down input |
| Pin 18 | RANGE — Input range select |
| Pin 19 | MODE — Operating mode select |
| Pin 20 | EP — Exposed pad (ground) |
Safe Operating Area (SOA) & Thermal Characteristics
No official SOA curve available for this component. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.
Typical Applications
AD7610BCPZ is suitable for 6 applications: Industrial Process Control, Data Acquisition Systems, Medical Instrumentation, Test and Measurement Equipment, Vibration Analysis, Power Quality Monitoring.
Industrial Process Control
The AD7610BCPZ is ideal for industrial process control systems that require high-resolution, accurate measurement of analog signals from sensors such as temperature, pressure, and flow. Its 16-bit resolution and programmable input range (0-5V, ±5V, ±10V) allow direct interface with a variety of transducers without external scaling. The 250 kSPS sampling rate enables real-time monitoring and control loops. The device's SPI interface simplifies integration with microcontrollers and PLCs. Its industrial temperature range (-40°C to +85°C) ensures reliable operation in harsh factory environments. The low power dissipation (120 mW) is beneficial for systems with multiple channels. The AD7610's high SNR (91 dB) ensures accurate signal reproduction, critical for closed-loop control. The LFCSP package's small footprint saves PCB space, and the exposed pad aids thermal management. Overall, the AD7610BCPZ provides the precision and robustness required for demanding industrial applications.
Recommended
Data Acquisition Systems
In data acquisition systems, the AD7610BCPZ serves as the core digitizer, converting analog signals from various sources into digital data for processing and storage. Its 16-bit resolution and 250 kSPS throughput allow capturing fast-changing signals with high fidelity. The programmable input range (unipolar/bipolar) provides flexibility to match different signal amplitudes, reducing the need for external gain stages. The SPI interface enables easy connection to DSPs and FPGAs, facilitating high-speed data transfer. The device's low noise and high linearity ensure accurate representation of the input signal, which is crucial for scientific and industrial measurements. The compact LFCSP package allows for dense channel density in multi-channel systems. The AD7610's power efficiency (120 mW) is advantageous for portable or battery-operated data loggers. Its wide operating temperature range makes it suitable for field deployment. Overall, the AD7610BCPZ delivers the performance and versatility needed for modern data acquisition systems.
Recommended
Medical Instrumentation
The AD7610BCPZ is well-suited for medical instrumentation such as patient monitors, diagnostic equipment, and imaging systems. Its 16-bit resolution provides the precision needed for accurate measurement of physiological signals like ECG, EEG, and blood pressure. The programmable input range allows direct connection to various sensors with different output levels. The high SNR (91 dB) ensures that weak biological signals are captured without excessive noise. The device's low power consumption is critical for battery-powered portable medical devices. The SPI interface simplifies integration with medical-grade microcontrollers. The industrial temperature range ensures reliable operation in clinical environments. The compact LFCSP package is ideal for space-constrained medical devices. The AD7610's high sampling rate (250 kSPS) supports real-time monitoring applications. Its robust design and long-term availability make it a trusted choice for medical electronics. Overall, the AD7610BCPZ meets the stringent requirements of medical instrumentation.
Recommended
Test and Measurement Equipment
The AD7610BCPZ is a key component in test and measurement equipment such as digital multimeters, data loggers, and spectrum analyzers. Its 16-bit resolution and 250 kSPS sampling rate enable accurate and fast measurements of voltage, current, and resistance. The programmable input range allows the instrument to handle a wide variety of signal levels without external attenuation. The high linearity and low noise ensure measurement accuracy, which is essential for calibration and diagnostic tools. The SPI interface facilitates communication with the instrument's processor for data display and analysis. The device's wide operating temperature range allows use in benchtop and field instruments. The compact LFCSP package helps reduce the size of portable test equipment. The AD7610's low power dissipation is beneficial for battery-operated instruments. Its robust performance and reliability make it a preferred choice for test and measurement applications. Overall, the AD7610BCPZ provides the precision and speed required for professional test equipment.
Recommended
Vibration Analysis
The AD7610BCPZ is used in vibration analysis systems to digitize signals from accelerometers and other vibration sensors. Its 16-bit resolution and 250 kSPS sampling rate allow capturing high-frequency vibration waveforms with high fidelity. The programmable input range accommodates different sensor sensitivities, from low-level micro-vibrations to high-amplitude shocks. The high SNR (91 dB) ensures that small vibration signals are not masked by noise, enabling early detection of mechanical faults. The SPI interface allows efficient data transfer to a host processor for FFT analysis and condition monitoring. The device's industrial temperature range makes it suitable for on-site monitoring in factories and plants. The compact LFCSP package is ideal for embedding in portable vibration analyzers. The low power consumption is beneficial for battery-powered wireless sensor nodes. The AD7610's high linearity ensures accurate amplitude and phase measurement, critical for modal analysis. Overall, the AD7610BCPZ is an excellent choice for vibration monitoring applications.
Recommended
Power Quality Monitoring
The AD7610BCPZ is employed in power quality monitoring equipment to measure voltage and current waveforms on electrical grids. Its 16-bit resolution and 250 kSPS sampling rate enable accurate capture of harmonics and transients. The programmable input range allows direct connection to voltage and current transducers with different output levels. The high SNR (91 dB) ensures precise measurement of small signal variations, essential for detecting power quality issues. The SPI interface facilitates communication with a host processor for real-time analysis and logging. The device's wide operating temperature range allows deployment in outdoor substations and industrial facilities. The compact LFCSP package is suitable for space-constrained power monitors. The low power dissipation is beneficial for energy-efficient designs. The AD7610's high linearity ensures accurate measurement of harmonic distortion. Overall, the AD7610BCPZ provides the performance needed for reliable power quality monitoring.
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Recommended Products Summary
Engineering reference data for AD7610BCPZ — comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | AD7610BCPZ-RL | AD7610BSTZ | AD7606BSTZ |
|---|---|---|---|---|
| Package | 48-LFCSP-VQ (7x7) | 48-LFCSP-VQ (7x7) | 48-LQFP | 48-LQFP |
| Brand | Analog Devices | Analog Devices | Analog Devices | Analog Devices |
| Resolution | 16 bits | 16 bits | 16 bits | 16 bits |
| Sampling Rate | 250 kSPS | 250 kSPS | 250 kSPS | 200 kSPS |
| Number of Channels | 1 | 1 | 1 | 8 |
| Input Range | Unipolar 0-5V, Bipolar ±5V, ±10V | Unipolar 0-5V, Bipolar ±5V, ±10V | Unipolar 0-5V, Bipolar ±5V, ±10V | Bipolar ±5V, ±10V |
| Interface | SPI | SPI | SPI | Parallel/Serial |
| Power Dissipation | 120 mW | 120 mW | 120 mW | 100 mW |
Key Differentiators
- Programmable input range (vs AD7606BSTZ)
- Higher sampling rate (vs AD7606BSTZ)
- Single-channel simplicity (vs AD7606BSTZ)
Design Notes
Provide a clean analog supply (AVDD) with low noise and ripple. Use a low-dropout regulator (LDO) to generate 5V from a higher rail, and place 10uF and 0.1uF decoupling capacitors close to the AVDD pins. The digital supply (DVDD) can be derived from the same 5V or a separate 3.3V rail, but ensure proper decoupling with 0.1uF capacitors. The reference input (REF) should be driven by a low-impedance source, such as a precision reference like the ADR421, and bypassed with a 10uF capacitor to REFGND.
For optimal performance, use a 4-layer PCB with dedicated ground and power planes. Place the ADC close to the signal source to minimize trace length and reduce noise pickup. Route analog and digital signals separately, and avoid crossing them. The exposed pad (EP) should be soldered to the ground plane to provide a low thermal resistance path and improve heat dissipation. Use a solid ground plane under the ADC and connect AGND and DGND at a single point to avoid ground loops.
Do not exceed the absolute maximum ratings for AVDD and DVDD. Ensure the input signal is within the selected input range to avoid damage. The REF pin must not be left floating; always connect a reference voltage. The SPI interface should be operated at the correct voltage levels; if the host microcontroller uses 3.3V logic, ensure DVDD is set to 3.3V or use level shifters. Avoid using long wires for SCLK and SDOUT to prevent signal integrity issues. Also, ensure the BUSY signal is monitored to know when the conversion is complete.
Compliance Information
RoHS compliant per Analog Devices product page. Not AEC-Q100 qualified. Other compliance data not specified in provided sources.