Product Description
AD627ARZ Integrated Circuits are widely utilized in medical instruments, transducer interfacing, thermocouple amplifiers, and portable battery-powered devices. They are highly appreciated for having wide power supply range of 2.2 V to 18 V. These ICs are easy to use and ensures complete reliability. They are known for having ability to provide CMMR over frequency so as to minimize error chances. AD627ARZ Integrated Circuits assures higher performance with low power consumption.
Features:
- Has rail to rail output swing
- Highly accurate DC performance
- Perfect for industrial applications
Technical Specification
| Amplifier Type | Instrumentation |
| Mounting Type | Surface Mount |
| Voltage Supply Single Dual | 2.2 V ~ 36 V, +-1.1 V ~ 18 V |
| Voltage Input Offset | 50uV |
| Three db Bandwidth | 80kHz |
| Supplier Device Package | 8-SOIC |
| Slew Rate | 0.06 V/us |
| Part Status | Active |
| Packaging | Cut Tape (CT) |
| Package Case | 8-SOIC (0.154", 3.90mm Width) |
| Output Type | Rail-to-Rail |
| Operating Temperature | -40 deg C ~ 85 deg C |
| Number of Circuits | 1 |
| Current Supply | 60uA |
| Current Output Channel | 25mA |
| Current Input Bias | 2nA |
| Base Part Number | AD627 |
Precision Instrumentation AmplificationThe AD627ARZ delivers accurate signal amplification due to its excellent input offset voltage and high common mode rejection ratio, ensuring clean amplification even with low-level differential signals. Its ability to set gain between 1 and 1000 through an external resistor offers enhanced flexibility for customized signal conditioning needs.
Versatile Power and Low Energy ConsumptionDesigned for versatility, the AD627ARZ operates across a broad supply voltage range and consumes minimal poweronly about 700 A. This makes it suitable for battery-powered or energy-sensitive applications, while its maximum power dissipation of 650 mW ensures reliability in demanding situations.
Compact and Reliable Surface Mount SolutionWith its small SOIC-8 package measuring approximately 4.90 x 3.91 mm and a weight of just 0.08 grams, the AD627ARZ is ideal for high-density circuitry and modern compact devices. Its robust temperature range and RoHS compliance ensure long-term durability and environmental friendliness.
FAQs of AD627ARZ Integrated Circuits:
Q: How can I set the gain for the AD627ARZ instrumentation amplifier?
A: The gain on the AD627ARZ is configured by connecting an external resistor between the RG pins according to the formula provided in the datasheet, allowing you to set amplification from 1 up to 1000 as required for your application.
Q: What are the benefits of using the AD627ARZ in medical instrumentation and data acquisition systems?
A: The AD627ARZ offers high precision, low input offset voltage, high common mode rejection, and low power consumption, making it highly reliable for sensitive signal detection in medical equipment and accurate data collection in acquisition systems.
Q: When should I use the AD627ARZ in my signal conditioning circuit?
A: You should use the AD627ARZ when precise amplification of low-level differential signals is needed, such as in sensor interfacing, medical, and industrial instrumentation applications, especially where space and power efficiency are crucial.
Q: Where is the AD627ARZ commonly available in India?
A: The AD627ARZ can be sourced from authorized distributors, importers, manufacturers, suppliers, traders, and wholesalers throughout India, both online and through electronic components markets.
Q: What is the operating temperature range and supply voltage for the AD627ARZ?
A: The AD627ARZ operates reliably between -40C and +85C and accepts supply voltages from 2 V to 18 V or single supplies from 4 V to 36 V, making it suitable for a wide range of environmental and system requirements.
Q: How does the AD627ARZ ensure signal integrity in noisy environments?
A: Its high common mode rejection ratio (minimum 86 dB at G=10) allows the AD627ARZ to effectively suppress common mode noise, ensuring accurate amplification of true differential signals in challenging environments.