AD8601ARTZ-REEL7 The AD8601ARTZ-REEL7 is a precision CMOS operational amplifier with rail-to-rail output, low offset voltage of 80 µV, and ultra-low input bias current of 0.2 pA.
Mfr Part #:

AD8601ARTZ-REEL7

Available from 2 distributors
Mfr Name: ADI Electronics
ADI Electronics
The AD8601ARTZ-REEL7 is a precision CMOS operational amplifier with rail-to-rail output, low offset voltage of 80 µV, and ultra-low input bias current of 0.2 pA.
Total Stock: 1,856 pcs
$ Price Range: $0.99

AD8601ARTZ-REEL7 Available from 2 distributors

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Distributor Stock Pricing MOQ PKG Lead Time Date Code On Order Quantity On Order Delivery
Non-Authorised Inventory information
1,429 pcs
1429 pcs On Request 1 On Request On Request On Request On Request On Request
Non-Authorised Inventory information
427 pcs
427 pcs On Request 1 On Request On Request 1538+ On Request On Request

AD8601ARTZ-REEL7 Specifications Quick View

Most important parameters for selection – full specs in datasheet.
Category
Manufacturer Name
Output Current
Settling Time
Slew Rate
Tape & Reel

AD8601ARTZ-REEL7 Description

Short technical summary and product information.

The AD8601ARTZ-REEL7 is a single precision CMOS operational amplifier from ADI Electronics. It offers a minimum offset voltage of 80 µV (typical 500 µV) and an ultra-low input bias current of 0.2 pA (typical 60 pA), making it suitable for high-impedance sensor interfaces. The amplifier provides a gain bandwidth product of 8.2 MHz and a slew rate of 5.2 V/µs, enabling moderate-speed signal processing.

 

With a supply current of only 680 µA per amplifier (typical 1 mA), the AD8601ARTZ-REEL7 is optimized for low-power applications. The output can swing within 20 mV of the negative rail and within 2.92 V of the positive rail (with 1 mA load), providing near rail-to-rail output capability. Input common-mode voltage range extends from 0 V to 3 V. The device also features low voltage noise density of 33 nV/√Hz at 1 kHz and low current noise density of 0.05 pA/√Hz.

 

The part is supplied in tape and reel packaging. Key electrical characteristics include a common-mode rejection ratio of 68 dB minimum, power supply rejection ratio of 67 dB minimum, and a large signal voltage gain of 30 V/mV minimum. The offset voltage drift is typically 2 µV/°C.

AD8601ARTZ-REEL7 Quick Information

Product Type: Operational Amplifier
Canonical Name: AD8601ARTZ-REEL7 Operational Amplifier

AD8601ARTZ-REEL7 Compliance

RoHS Status: RoHS Compliant
Moisture Sensitivity Level (MSL): 1 Unlimited
REACH Status: REACH Unaffected
Lead Free: Yes

AD8601ARTZ-REEL7 Estimated Pricing

Qty Low High
1+ $0.99 $0.99

Estimated market price range - modelled values for guidance only, not live distributor offers.

AD8601ARTZ-REEL7 Features

  • Ultra-low input bias current of 0.2 pA.
  • Rail-to-rail output voltage swing.
  • Gain bandwidth product of 8.2 MHz.
  • Low offset voltage drift of 2 µV/°C.
  • Supply current of 680 µA per amplifier.

AD8601ARTZ-REEL7 Applications

  • Ideal for precision sensor signal conditioning.
  • Used in battery-powered instrumentation.
  • Suitable for active filter circuits.
  • Photodiode amplifier applications.

AD8601ARTZ-REEL7 FAQs

7 frequently asked questions generated from this part’s specifications.
What is the offset voltage of the AD8601ARTZ-REEL7?

The minimum offset voltage is 80 µV at 25°C with VCM from 0 V to 1.3 V. Typical offset voltage is 500 µV.

What is the input bias current?

The minimum input bias current is 0.2 pA at 25°C. Typical value is 60 pA, maximum 200 pA.

What is the gain bandwidth product?

The typical gain bandwidth product is 8.2 MHz at 25°C.

What is the supply current per amplifier?

The minimum supply current is 680 µA per amplifier at 25°C. Typical value is 1000 µA.

What is the slew rate?

The typical slew rate is 5.2 V/µs at 25°C with RL = 2 kΩ.

What is the output voltage swing?

With 1 mA load, output high is minimum 2.92 V (typical 2.95 V) and output low is minimum 20 mV (typical 35 mV) at 25°C.

What is the voltage noise density?

Typical voltage noise density is 33 nV/√Hz at 1 kHz and 18 nV/√Hz at 10 kHz.

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