Datasheets
AD580MH by:

IC 1-OUTPUT THREE TERM VOLTAGE REFERENCE, 2.5 V, MBCY3, HERMETIC SEALED, METAL CAN, TO-52, 3 PIN, Voltage Reference

Part Details for AD580MH by Analog Devices Inc

Results Overview of AD580MH by Analog Devices Inc

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Applications Education and Research Internet of Things (IoT) Computing and Data Storage Aerospace and Defense Healthcare Telecommunications Automotive

AD580MH Information

AD580MH by Analog Devices Inc is a Voltage Reference.
Voltage References are under the broader part category of Power Circuits.

A power circuit delivers electricity in order to operate a load for an electronic device. Power circuits include transformers, generators and switches. Read more about Power Circuits on our Power Circuits part category page.

Price & Stock for AD580MH

Part # Distributor Description Stock Price Buy
Quest Components IC,VOLT REFERENCE,FIXED,2.5V,BIPOLAR,CAN,4PIN,METAL 7
  • 1 $43.4200
$43.4200 Buy Now
Quest Components IC,VOLT REFERENCE,FIXED,2.5V,BIPOLAR,CAN,4PIN,METAL 2
  • 1 $66.8000
$66.8000 Buy Now
Vyrian Peripheral ICs 347
RFQ

Part Details for AD580MH

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AD580MH Part Data Attributes

AD580MH Analog Devices Inc
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AD580MH Analog Devices Inc IC 1-OUTPUT THREE TERM VOLTAGE REFERENCE, 2.5 V, MBCY3, HERMETIC SEALED, METAL CAN, TO-52, 3 PIN, Voltage Reference
Rohs Code No
Part Life Cycle Code Obsolete
Ihs Manufacturer ANALOG DEVICES INC
Part Package Code TO-52
Package Description , CAN3/4,.1
Pin Count 3
Reach Compliance Code unknown
ECCN Code EAR99
HTS Code 8542.39.00.01
Samacsys Manufacturer Analog Devices
Analog IC - Other Type THREE TERMINAL VOLTAGE REFERENCE
JESD-30 Code O-MBCY-W3
JESD-609 Code e0
Number of Functions 1
Number of Outputs 1
Number of Terminals 3
Operating Temperature-Max 70 °C
Operating Temperature-Min
Output Voltage-Max 2.51 V
Output Voltage-Min 2.49 V
Output Voltage-Nom 2.5 V
Package Body Material METAL
Package Code BCY
Package Equivalence Code CAN3/4,.1
Package Shape ROUND
Package Style CYLINDRICAL
Qualification Status Not Qualified
Supply Current-Max (Isup) 1.5 mA
Supply Voltage-Max (Vsup) 30 V
Supply Voltage-Min (Vsup) 4.5 V
Supply Voltage-Nom (Vsup) 15 V
Surface Mount NO
Technology BIPOLAR
Temp Coef of Voltage-Max 10 ppm/°C
Temperature Grade COMMERCIAL
Terminal Finish TIN LEAD
Terminal Form WIRE
Terminal Position BOTTOM
Trim/Adjustable Output NO
Voltage Tolerance-Max 0.4%

AD580MH Related Parts

AD580MH Frequently Asked Questions (FAQ)

  • The AD580MH is a high-precision voltage reference, and its performance can be affected by the PCB layout and component placement. It is recommended to follow a star-grounding scheme, keep the input and output traces short and separate, and avoid running digital signals near the AD580MH. Additionally, place a 10uF capacitor between the input pin and ground to filter out noise.

  • The AD580MH is specified to operate from -40°C to +125°C. To ensure operation within this range, it is essential to provide adequate heat sinking, especially in high-power applications. The device should be mounted on a thermally conductive material, and the thermal resistance between the device and the heat sink should be minimized. Additionally, the ambient temperature should be monitored to prevent overheating.

  • The recommended input voltage range for the AD580MH is 4.5V to 30V. The output voltage is regulated and remains constant at 2.5V ± 1% over the recommended input voltage range. However, the input voltage should be at least 2V higher than the output voltage to ensure proper regulation.

  • The AD580MH has an internal overvoltage protection circuit that can withstand up to 30V. However, it is still recommended to add external protection circuitry, such as a voltage clamp or a zener diode, to protect the device from voltage transients or spikes. Additionally, a reverse voltage protection diode can be added to prevent damage from reverse voltage conditions.

  • The typical output noise voltage of the AD580MH is 10uV p-p. To reduce the output noise, it is recommended to add a 10uF capacitor between the output pin and ground. This capacitor will filter out high-frequency noise and reduce the output noise voltage. Additionally, the device should be operated in a low-noise environment, and the input voltage should be well-regulated.

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