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1N5820 Alternative and Replacement Guide

Source:YINT Electronics Time:2026-09-09 Views:9
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1N5820 Alternative and Replacement Guide

For engineers and buyers evaluating a 1N5820 alternative, YINT SS32 is the primary 20 V, 3 A Schottky candidate to review. This guide separates the electrical, application and package decisions needed for a sample request.

What the 1N5820 is

The 1N5820 is a 20 V 3 A Schottky rectifier optimized for low-voltage, high-current paths. Its low voltage rating helps achieve a low forward drop, but it also makes the part sensitive to switching overshoot and wiring transients.

The reference device is a Schottky barrier rectifier using Schottky in DO-201AD axial lead. A useful replacement comparison covers reverse voltage, forward current, surge capability, forward loss, leakage, recovery behavior, temperature and package at the relevant test conditions.

1N5820 key specifications

ParameterReference valueWhy it matters
Repetitive peak reverse voltage20 VMust exceed the worst reverse waveform with design margin
Average forward current3.0 ADepends on lead or PCB temperature and waveform
Nonrepetitive surge current80 ARelevant to startup inrush and fault pulses
Forward voltage0.475 V maximum at 3.0 ASets conduction loss at a stated current and temperature
Reverse leakage2.0 mA at 25 C and 20 mA at 100 CAffects standby current and high temperature behavior
Junction temperature range-65 C to 125 CDefines the temperature boundary for qualification
Reference packageDO-201AD axial leadControls footprint, thermal path and assembly

The table summarizes the reference family and the YINT candidate. Confirm the complete manufacturer order code and current datasheet for the source in your BOM; YINT can help review the comparison for your application.

1N5820 and YINT candidate comparison

The reference 1N5820 is listed at 20 V and 3.0 A in DO-201AD axial lead. YINT SS32 is listed at 20 V and 3.0 A in SMA or SMB surface mount. Use the table to compare the remaining surge, forward-voltage, leakage and temperature limits at the stated test conditions.

Comparison item1N5820YINT SS32Engineering result
TechnologySchottkySchottkyFunctional class aligned
Reverse voltage20 V20 VCheck measured waveform and margin
Average current3.0 A3.0 ACheck thermal test conditions
Surge current80 A80 ADo not ignore a lower candidate rating
Forward voltage0.475 V maximum at 3.0 A0.55 V maximum at 3.0 ACompare at the same current and temperature
PackageDO-201AD axial leadSMA or SMB surface mountPCB or assembly change required

Choosing the right 1N5820 replacement

Reverse voltage margin

Measure the maximum reverse voltage at the diode terminals under steady state, startup, shutdown, minimum load, maximum input and credible fault conditions. Use a probe connection that does not create its own ringing. Select a repetitive reverse rating above the measured peak with the margin required by the product standard and reliability target.

Forward current and thermal design

Average current alone does not establish thermal compatibility. Rectifier current is often pulsed, and package ratings assume a defined lead or case temperature. Calculate conduction loss from the current waveform, then verify junction temperature using the replacement package thermal path and the actual copper area.

At 2.5 A and 0.55 V, a simple conduction estimate is 1.38 W while the diode is on. Multiply by conduction duty cycle, then validate with measured case temperature.

Surge current and startup stress

Compare the surge waveform, pulse duration, initial junction temperature and repetition rate with the candidate data. A single half-sine IFSM number is not a repetitive-current rating. Capacitor charging, motor stall and hot-plug events may need separate transient analysis.

Switching behavior

Schottky rectifiers have negligible minority-carrier storage, but they still have junction capacitance and reverse leakage. In a high-frequency converter, compare turn-off current, capacitance-related loss and switch-node ringing on the completed board.

Package options and design support

The proposed YINT package is SMA or SMB surface mount, while the reference part uses DO-201AD axial lead. For a new PCB, review pad dimensions, polarity, creepage and thermal copper around the YINT package. For an existing layout, send the board drawing to YINT so the team can check the available package route.

1N5820 replacement options from YINT

Recommended YINT alternative

This route fits low-voltage, high-current converter outputs and battery paths when the reverse peak stays within the 20 V class. Copper area and airflow determine how much of the 3 A capability the board can use.

Package options for your design

Specify at the inquiry stage whether the design can use SMA or SMB surface mount or must retain the DO-201AD axial lead layout. This lets YINT identify the correct order code and prepare a relevant sample.

Why choose YINT for 1N5820 replacement

YINT can support the 1N5820 replacement project with a focused parameter comparison, the YINT SS32 datasheet, package guidance and sample coordination. Share the original order code and application requirements to receive a recommendation based on the actual circuit instead of a generic part-number cross-reference.

YINT support for your 1N5820 replacement project

  1. Submit the complete 1N5820 order code and a short description of the application.
  2. YINT reviews the electrical class and shortlists the relevant SS32 order code.
  3. The customer and YINT confirm the package, polarity and mounting requirements.
  4. YINT coordinates the datasheet, quotation and sample quantity for the selected candidate.
  5. The customer evaluates the sample in the target circuit, with YINT available for technical questions.
  6. Sales confirms the production quantity, target date and commercial terms for the approved order code.

Information for a fast YINT replacement recommendation

  • Original manufacturer, complete 1N5820 order code, datasheet or a clear part photo.
  • Circuit function, schematic details, input and output conditions, and switching frequency.
  • Required reverse voltage, forward current, surge waveform, recovery behavior, leakage and thermal limits.
  • Existing package and footprint, polarity, solder process, and whether a PCB update is planned. The YINT SS32 candidate uses SMA or SMB surface mount.
  • Operating-temperature range, environmental or qualification standard, sample quantity and project timing.

FAQ

1. Which YINT part is recommended as a 1N5820 alternative

Start with YINT SS32. Its headline class is 20 V and 3.0 A; the final order code depends on the package and operating conditions.

2. What is the reverse voltage of 1N5820

The reference repetitive reverse-voltage rating is 20 V. The circuit waveform must remain below that rating with the required design margin.

3. What current can 1N5820 carry

The published average forward-current rating is 3.0 A, but the permitted current depends on the waveform, mounting condition and temperature.

4. Which package options are available for the replacement

The proposed YINT SS32 uses SMA or SMB surface mount; the reference 1N5820 uses DO-201AD axial lead. Send a footprint drawing if package compatibility is a priority.

5. How can I request a confirmed YINT replacement recommendation

Send YINT the complete 1N5820 order code, original datasheet or part photo, circuit conditions, package requirement and target quantity. The team can then recommend an exact order code and coordinate samples for customer evaluation.

6. Is a higher voltage device in the same family always acceptable

Not automatically. It may have a different forward drop, leakage or dynamic behavior. Check efficiency, temperature and switching waveforms before approving the change.

Selection summary

Use YINT SS32 as the first cross-reference candidate for 1N5820, then choose the package and exact order code from the circuit's voltage, current, surge, thermal and switching requirements.

To begin, send YINT the complete 1N5820 order code, the required package, the main operating conditions, sample quantity and target date. The team can return a focused datasheet and sample response.