MB515_R1_00001 >
MB515_R1_00001
Panjit International Inc.
DIODE SCHOTTKY 150V 5A SMC
18921 Pcs New Original In Stock
Diode 150 V 5A Surface Mount SMC (DO-214AB)
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MB515_R1_00001 Panjit International Inc.
5.0 / 5.0 - (111 Ratings)

MB515_R1_00001

Product Overview

12964822

DiGi Electronics Part Number

MB515_R1_00001-DG
MB515_R1_00001

Description

DIODE SCHOTTKY 150V 5A SMC

Inventory

18921 Pcs New Original In Stock
Diode 150 V 5A Surface Mount SMC (DO-214AB)
Quantity
Minimum 1

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In Stock (All prices are in USD)
  • QTY Target Price Total Price
  • 5 0.1599 0.7995
  • 50 0.1260 6.3000
  • 150 0.1116 16.7400
  • 800 0.0935 74.8000
  • 2400 0.0855 205.2000
  • 4800 0.0807 387.3600
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MB515_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) 150 V

Current - Average Rectified (Io) 5A

Voltage - Forward (Vf) (Max) @ If 900 mV @ 5 A

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

Current - Reverse Leakage @ Vr 50 µA @ 150 V

Capacitance @ Vr, F -

Mounting Type Surface Mount

Package / Case DO-214AB, SMC

Supplier Device Package SMC (DO-214AB)

Operating Temperature - Junction -65°C ~ 175°C

Base Product Number MB515

Datasheet & Documents

HTML Datasheet

MB515_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-MB515_R1_00001DKR
3757-MB515_R1_00001TR
Standard Package
800

Alternative Parts

View Details
PART NUMBER
MANUFACTURER
QUANTITY AVAILABLE
DiGi PART NUMBER
UNIT PRICE
SUBSTITUTE TYPE
SK515C
Taiwan Semiconductor Corporation
12149
SK515C-DG
0.0807
Similar
SK5150L-TP
Micro Commercial Co
39315
SK5150L-TP-DG
0.0807
Similar
ES3C
Taiwan Semiconductor Corporation
10289
ES3C-DG
0.0071
Similar

Reviews

5.0/5.0-(Show up to 5 Ratings)
푸***밭
Dec 02, 2025
5.0
저렴한 가격에 신속한 A/S, 두 마리 토끼를 잡았어요. 매우 만족합니다.
조***책길
Dec 02, 2025
5.0
항상 기대 이상으로 신속하고 친절하게 대응해주는 곳입니다.
Entd***eDich
Dec 02, 2025
5.0
Sehr empfehlenswert: Produkte hochwertig, Versand stets pünktlich.
Gia***eap
Dec 02, 2025
5.0
Their shipping process is smooth, with tracking updates provided promptly, so I always know when to expect my package.
Gen***Flow
Dec 02, 2025
5.0
The clarity in their pricing structure gives me confidence and reduces post-purchase worries.
Sun***aze
Dec 02, 2025
5.0
I appreciate the knowledgeable staff who made my experience smooth and enjoyable.
Tranq***Trail
Dec 02, 2025
5.0
DiGi Electronics offers superb value, and their website is a pleasure to use.
Shim***Trail
Dec 02, 2025
5.0
I appreciate their proactive communication and thorough support.
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Frequently Asked Questions (FAQ)

What are the key design-in risks when using the MB515_R1_00001 in high-temperature environments near its 175°C junction limit?

When designing in the MB515_R1_00001 for high-temperature applications, engineers must account for increased reverse leakage current, which can rise exponentially near the 175°C maximum junction temperature. At elevated temperatures, even small thermal runaways can degrade reliability — especially in crowded PCB layouts with limited heatsinking. To mitigate risk, ensure adequate copper thermal relief, derate the average rectified current above 100°C, and verify actual operating Vr stays well below 150V to prevent leakage-induced power dissipation. Monitoring real-world thermal performance under full load is critical for long-term stability with the MB515_R1_00001.

How does the MB515_R1_00001 compare to ES3C in a drop-in replacement scenario for 5A SMC Schottky rectifiers?

The MB515_R1_00001 and ES3C are functionally similar 150V, 5A Schottky diodes in the SMC (DO-214AB) package, but differences in forward voltage and leakage characteristics require caution during replacement. The MB515_R1_00001 specifies a max Vf of 900 mV at 5A, potentially offering lower conduction losses than some ES3C variants. However, its 50 µA leakage at 150V is higher than certain ES3C versions — a critical concern in low-power or standby modes. Always verify thermal performance and leakage in-circuit when substituting the MB515_R1_00001 for ES3C, especially in efficiency-sensitive designs.

What layout considerations are critical when integrating the MB515_R1_00001 in a surface-mount power rectification circuit?

For reliable integration of the MB515_R1_00001 in SMC package, provide sufficient PCB copper area for thermal dissipation. Use thermal reliefs and at least 1 oz copper with vias to inner ground planes to manage 5A-level power dissipation. Avoid placing the MB515_R1_00001 near other heat sources due to its high junction temperature capability but sensitivity to cumulative thermal stress. Ensure symmetric pad layout to prevent tombstoning during reflow, and follow MSL1 handling best practices even though the device is moisture-resistant. Poor layout can undermine the MB515_R1_00001’s robustness despite its high 175°C rating.

Can the MB515_R1_00001 reliably replace through-hole diodes like 1N5822 in SMC-mounted designs, and what trade-offs should be considered?

The MB515_R1_00001 can serve as a surface-mount alternative to through-hole Schottky diodes like the 1N5822, offering equivalent 150V rating and 5A capability in a compact SMC package. However, the trade-off lies in thermal management: the MB515_R1_00001 lacks the thermal mass and standoff cooling of a leaded device. In high-power or high-ambient environments, the MB515_R1_00001 may require more aggressive PCB heatsinking to match 1N5822 performance. Evaluate pulse current handling and sustained power dissipation carefully — while electrically comparable, the MB515_R1_00001 demands better PCB thermal design to avoid premature aging.

What reliability risks should be evaluated when using the MB515_R1_00001 in fast-switching DC-DC converters operating above 100kHz?

Although the MB515_R1_00001 is categorized under 'Fast Recovery =< 500ns' diodes, it is a Schottky with no PN junction recovery, making it well-suited for high-frequency operation. However, its 50 µA leakage at 150V can contribute to losses in high-duty-cycle or high-temperature switching applications. In converters above 100kHz, ensure peak repetitive reverse voltage stays below 120V (80% of 150V) to minimize leakage-induced heating. Also verify that ringing from layout inductance doesn’t create voltage spikes exceeding the MB515_R1_00001’s 150V limit during turn-off. Despite its robust specs, exceeding voltage or thermal margins can compromise long-term reliability of the MB515_R1_00001 in fast-switching designs.

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