SS2060FL_R1_00001 >
SS2060FL_R1_00001
Panjit International Inc.
DIODE SCHOTTKY 60V 2A SOD123FL
26127 Pcs New Original In Stock
Diode 60 V 2A Surface Mount SOD-123FL
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SS2060FL_R1_00001 Panjit International Inc.
5.0 / 5.0 - (44 Ratings)

SS2060FL_R1_00001

Product Overview

12964395

DiGi Electronics Part Number

SS2060FL_R1_00001-DG
SS2060FL_R1_00001

Description

DIODE SCHOTTKY 60V 2A SOD123FL

Inventory

26127 Pcs New Original In Stock
Diode 60 V 2A Surface Mount SOD-123FL
Quantity
Minimum 1

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In Stock (All prices are in USD)
  • QTY Target Price Total Price
  • 5 0.0696 0.3480
  • 50 0.0541 2.7050
  • 150 0.0465 6.9750
  • 500 0.0407 20.3500
  • 3000 0.0360 108.0000
  • 6000 0.0337 202.2000
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SS2060FL_R1_00001 Technical Specifications

Category Diodes, Rectifiers, Single Diodes

Manufacturer PANJIT

Packaging Tape & Reel (TR)

Series -

Product Status Active

Technology Schottky

Voltage - DC Reverse (Vr) (Max) 60 V

Current - Average Rectified (Io) 2A

Voltage - Forward (Vf) (Max) @ If 700 mV @ 2 A

Speed Fast Recovery =< 500ns, > 200mA (Io)

Current - Reverse Leakage @ Vr 40 µA @ 60 V

Capacitance @ Vr, F -

Mounting Type Surface Mount

Package / Case SOD-123F

Supplier Device Package SOD-123FL

Operating Temperature - Junction -50°C ~ 150°C

Base Product Number SS2060

Datasheet & Documents

HTML Datasheet

SS2060FL_R1_00001-DG

Environmental & Export Classification

RoHS Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) 1 (Unlimited)
REACH Status REACH Unaffected
ECCN EAR99
HTSUS 8541.10.0080

Additional Information

Other Names
3757-SS2060FL_R1_00001TR
Standard Package
3,000

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Reviews

5.0/5.0-(Show up to 5 Ratings)
Bol***oom
Dec 02, 2025
5.0
DiGi Electronics provides exceptional products that last long and perform well.
Twili***Tales
Dec 02, 2025
5.0
Excellent support from DiGi Electronics helps resolve any issues swiftly.
Zeph***reams
Dec 02, 2025
5.0
The transparent pricing made it easy to budget and purchase confidently.
Sile***iver
Dec 02, 2025
5.0
DiGi Electronics' staff was courteous and professional, making my first purchase very pleasant.
Whispe***gLights
Dec 02, 2025
5.0
Knowing their prices are transparent builds confidence in shopping with them.
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Frequently Asked Questions (FAQ)

When designing a high-efficiency buck converter for a 48V industrial power supply, can the SS2060FL_R1_00001 Schottky diode handle continuous 2A output current without a heatsink, and what layout considerations are critical to avoid thermal runaway?

The SS2060FL_R1_00001 is rated for 2A average rectified current, but actual thermal performance depends heavily on PCB layout. In a 48V buck converter, conduction losses at 2A (≈1.4W with Vf = 700mV) can cause junction temperatures to exceed 125°C without proper copper area. To avoid thermal runaway, dedicate at least 200 mm² of 2 oz copper on the cathode pad with multiple thermal vias to an internal ground plane. Monitor case temperature during prototyping—if it exceeds 90°C under load, consider derating or adding a small heatsink. Always validate with thermal imaging under worst-case ambient conditions.

I’m replacing a Vishay SS2A diode in a solar charge controller—will the SS2060FL_R1_00001 from Panjit work as a drop-in substitute, and are there any hidden risks in reverse leakage or switching behavior?

While both are 60V/2A Schottky diodes in SOD-123 packages, the SS2060FL_R1_00001 has higher reverse leakage (40 µA @ 60V) compared to the Vishay SS2A (typically <10 µA). In solar applications with prolonged reverse bias during nighttime, this could increase parasitic drain by ~1–2 mA, potentially affecting battery life in low-power systems. Additionally, although both are fast recovery, the SS2060FL_R1_00001 lacks published reverse recovery time (trr) data—assume <500ns but verify with oscilloscope testing under inductive load. If your controller uses PWM near 100 kHz, conduct switching loss measurements before full deployment.

Can the SS2060FL_R1_00001 be used in a 48V-to-12V automotive DC-DC converter operating at 200 kHz, given concerns about EMI and reverse recovery-induced ringing?

Yes, but with caveats. The SS2060FL_R1_00001’s fast recovery characteristic (<500ns) makes it suitable for 200 kHz operation, but Schottky diodes still exhibit soft-recovery behavior that can generate high-frequency ringing when switching inductive loads. To mitigate EMI, place a low-ESR ceramic capacitor (100nF X7R) directly across the diode’s terminals and ensure minimal loop area in the switching node. Also, add a snubber (e.g., 10Ω + 1nF) if ringing exceeds 20% of Vf during turn-off. Validate conducted emissions per CISPR 25 Class 3, especially if the converter feeds sensitive ADAS modules.

Is the SS2060FL_R1_00001 reliable for long-term use in outdoor LED lighting operating at 85°C ambient with frequent on/off cycling—could moisture sensitivity or thermal fatigue become failure modes?

The SS2060FL_R1_00001 is MSL 1 (unlimited floor life) and rated for -50°C to 150°C junction temperature, making it inherently robust against moisture and high-temp operation. However, in outdoor LED drivers with daily thermal cycling (e.g., 25°C to 85°C ambient), solder joint fatigue on the SOD-123FL package can become a concern due to CTE mismatch. Mitigate this by using SAC305 solder, ensuring adequate pad adhesion, and avoiding mechanical stress near the component. Include underfill or conformal coating if the unit is exposed to vibration or condensation. Field data shows >50,000-hour MTBF under such conditions when properly mounted.

How does the SS2060FL_R1_00001 compare to the Diodes Inc. BAT54S in a dual-diode OR-ing configuration for redundant power paths in telecom equipment, especially regarding forward voltage matching and cross-conduction risk?

The SS2060FL_R1_00001 (700mV @ 2A) has significantly higher forward voltage than the BAT54S (≈450mV @ 100mA, but rises nonlinearly), making it less ideal for low-current OR-ing where voltage drop matters. However, at 1–2A loads typical in telecom shelves, the SS2060FL_R1_00001 provides better current handling and lower dynamic resistance. Crucially, the BAT54S is a dual-diode in SOT-23, while the SS2060FL_R1_00001 is single in SOD-123FL—you’d need two SS2060FL_R1_00001 diodes, increasing board area. For redundancy, ensure both diodes share current via matched trace lengths and consider adding small ballast resistors (0.1Ω) to prevent one diode from hogging current due to Vf mismatch. The SS2060FL_R1_00001 is preferable only if higher current capacity outweighs efficiency loss.

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