Product Description
AD620ARZ Integrated Circuits can operate on 4.6 to 36 voltage supply with operating temperature range of -40 to +85 degrees Celsius. They are widely utilized in various electronic devices, instruments, & machines that are intended to be used in industries and commercial & residential sectors. These ICs also find application in ECG machine of medical industry and ensures superior performance. AD620ARZ Integrated Circuits offered by us are lead-free & RoHS compliant in nature and are available at reasonable rates.
Features:
- Fixed by surface mounting technology on PCB
- Excellent quality
- Completely reliable
Technical Specification
| Amplifier Type | Instrumentation |
| Mounting Type | Surface,Mount |
| Voltage Supply Single Dual | 4.6 V ~ 36 V,+-2.3 V ~ 18 V |
| Voltage Input Offset | 30uV |
| Three db Bandwidth | 1MHz |
| Supplier Device Package | 8-SOIC |
| Slew Rate | 1.2,V/us |
| Part Status | Active |
| Packaging | Tube |
| Package Case | 8-SOIC (0.154",3.90mm Width) |
| Operating Temperature | -40,deg,C,~,85 |
| Number of Circuits | 1 |
| Current Supply | 900uA |
| Current Output Channel | 18mA |
| Current Input Bias | 500pA |
| Base Part Number | AD620 |
Precision Amplification and Versatile Gain ControlThe AD620ARZ provides engineers with an easily adjustable gain from 1 to 1000, controlled via a single external resistor. Its low offset voltage and high input impedance ensure that even weak signals from sensors and transducers are amplified accurately. The devices outstanding common mode rejection enhances measurement integrity, especially in noisy or industrial environments.
Compact Surface Mount Design for Modern ApplicationsPackaged in an SOIC-8 format, the AD620ARZ meets industry standards for size and ease of integration with automated assembly lines. Its robust operating temperature range from -40C to +85C, along with low power consumption (1.3 mA typ.), makes it a reliable solution for portable, battery-operated medical and industrial devices.
FAQs of AD620ARZ Integrated Circuits:
Q: How is the AD620ARZ integrated circuit used in medical instrumentation?
A: The AD620ARZ is often utilized in medical devices such as ECG and EEG systems, where precise amplification of small sensor signals is critical. Its low noise, high input impedance, and excellent common mode rejection ensure accurate and reliable biopotential measurements.
Q: What are the key benefits of using the AD620ARZ in industrial process control applications?
A: The AD620ARZ offers high linearity (0.003% FSR), wide gain adjustment, and strong noise rejection, making it ideal for amplifying signals from transducers and sensors in industrial settings. Its rail-to-rail output and low power consumption further contribute to stable and efficient performance.
Q: When should I select the AD620ARZ over other instrumentation amplifiers?
A: Choose the AD620ARZ when you require outstanding accuracy with low input offset voltage, high common mode rejection, flexible gain range, and minimal power usage. It is particularly advantageous in applications where precision signal conditioning is paramount.
Q: Where can I purchase the AD620ARZ in India?
A: The AD620ARZ is available through authorized distributors, importers, manufacturers, suppliers, traders, and wholesalers across India. Most major electronic component suppliers that stock analog ICs will offer the AD620ARZ, and it can also be sourced via specialized online platforms.
Q: What is the process for implementing the AD620ARZ in a surface-mount design?
A: Simply mount the SOIC-8 package onto your PCB using standard surface mount technology (SMT) techniques. The device is compatible with lead-free soldering processes and is halogen-free, supporting RoHS-compliant manufacturing.
Q: How does the AD620ARZ ensure low power consumption in portable devices?
A: With a typical supply current of only 1.3 mA and a maximum power dissipation of 650 mW, the AD620ARZ is ideal for battery-operated equipment. Its efficient design helps prolong battery life without compromising signal integrity or performance.