Taiwan Semiconductor Corporation SFS1001GH
- Part No.:
- SFS1001GH
- Manufacturer:
- Taiwan Semiconductor Corporation
- Category:
- Diode Arrays
- Package:
- TO-263-3, D2PAK (2 Leads + Tab), TO-263AB
- Datasheet:
-
SFS1001GH.pdf
- Description:
- DIODE ARRAY GP 50V 10A TO263AB
- Quantity:
- Payment:

- Shipping:

Inventory:3,498
Please send an inquiry. Send us your inquiry, and we will respond immediately.
Product details
Overview
SFS1001GH from Taiwan Semiconductor is a 10A, 50V super fast recovery surface-mount rectifier in TO-263AB (D2PAK) package, featuring 35ns reverse recovery time, 0.975V max forward voltage at 5A/25°C, and AEC-Q101 qualification for automotive-grade reliability-used in DC-DC converters and freewheeling paths.
For engineers reviewing the SFS1001GH datasheet, SFS1001GH pinout, SFS1001GH application, or SFS1001GH equivalent, key selection criteria include its 50V VRRM, dual-die configuration, 125A IFSM, JESD201 Class 2 whisker resistance, and moisture sensitivity level 1 compliance-critical for high-reliability automotive and industrial power designs.
Technical Context
The SFS1001GH implements a super fast recovery silicon PN junction with optimized carrier lifetime control to achieve 35ns trr while maintaining low conduction loss. Its dual-die construction enables symmetrical thermal distribution and supports parallel operation in high-current rectification circuits.
Designed for automated SMT assembly, it features matte tin-plated leads compliant with J-STD-002, UL 94V-0 molding compound, and operates across -55°C to +150°C junction temperature range-meeting stringent requirements for under-hood automotive environments.
Key Specifications
| Parameter | Value and Actual Design Meaning |
|---|---|
| VRRM | 50 V - Maximum repetitive reverse voltage; defines safe blocking capability in 50V-rated DC-DC or snubber circuits. |
| IF | 10 A - Continuous forward current rating; supports sustained 10A conduction without derating at TC ≤ 100°C. |
| IFSM | 125 A - Non-repetitive surge current (8.3ms half-sine); handles inrush and transient overloads in automotive power rails. |
| trr | 35 ns - Reverse recovery time; enables high-frequency switching (>100 kHz) with minimal switching loss in synchronous rectifier auxiliary paths. |
| VF | 0.975 V max @ 5A, 25°C - Low forward drop reduces conduction loss and thermal stress in compact power modules. |
| RθJC | 2 °C/W - Junction-to-case thermal resistance; allows direct heatsinking via D2PAK exposed tab for efficient thermal management. |
Pinout & Package
TO-263AB (D2PAK) package with exposed metal tab (cathode-connected), 3-terminal configuration: Anode, Cathode, and Thermal Tab (Cathode). Molding compound meets UL 94V-0; terminals are matte tin-plated per J-STD-002.
| Pin/Terminal | Circuit Role | Design Meaning |
|---|---|---|
| Anode | Input current terminal | Accepts forward-biased input; connects to switched node or inductive source in freewheeling applications. |
| Cathode | Output current terminal | Delivers rectified output; electrically tied to exposed thermal tab for low-inductance cathode return path. |
| Thermal Tab | Thermal & electrical interface | Exposed copper pad soldered to PCB ground plane; provides primary heat dissipation path and cathode connection. |
Key Features
| Feature | Design Value |
|---|---|
| AEC-Q101 qualified | Validated for automotive use per stress test conditions including HTOL, TC, UHAST-enables deployment in engine control and lighting modules. |
| 35 ns reverse recovery time | Enables >100 kHz switching frequency with low diode turn-off loss in flyback and buck-derived topologies. |
| Dual-die construction | Improves current sharing and thermal symmetry; supports higher effective current density than single-die equivalents. |
| Moisture sensitivity level 1 | Eliminates bake requirement prior to reflow; compatible with standard SMT assembly lines without special handling. |
Applications
| DC-DC Converter | Automotive Lighting |
|---|---|
Use Scenario: Secondary-side rectification in isolated 12V–48V automotive DC-DC converters powering ADAS sensors. IC Role / Device Role / Timing Role: Super fast rectifier replacing Schottky diodes where 50V blocking and lower leakage are required. Use Value: 35ns trr minimizes switching loss during high-frequency PWM operation, improving efficiency by up to 1.2% vs. standard FRDs. | Use Scenario: LED driver output stage in headlamp modules requiring robust reverse voltage protection and thermal stability. IC Role / Device Role / Timing Role: Freewheeling diode across inductive LED current regulators during PWM dimming transitions. Use Value: 125A IFSM withstands lamp cold-start surges; AEC-Q101 qualification ensures reliability over 15-year vehicle lifecycle. |
| Snubber Network | Freewheeling Application |
Use Scenario: RCD snubber clamp across MOSFETs in high-side switch circuits for EV battery management systems. IC Role / Device Role / Timing Role: Fast-recovery clamp diode absorbing inductive kickback energy during MOSFET turn-off. Use Value: 0.975V VF limits clamping voltage overshoot; 35ns trr prevents reverse conduction during critical dead-time intervals. | Use Scenario: Inductor freewheeling path in 48V mild-hybrid starter-generator control units. IC Role / Device Role / Timing Role: Primary conduction path during MOSFET off-state, sustaining continuous 10A load current. Use Value: Dual-die layout and 2°C/W RθJC enable stable 10A operation at TC = 100°C without forced air cooling. |
Equivalent & Alternatives
The following parts are listed as comparable options for similar super fast rectifier applications.
| Alternative Part | Technical Difference | Application Difference | Selection Advice |
|---|---|---|---|
| Vishay VS-10EWH05-M3 | Same 50V VRRM, 10A IF, but 50ns trr; TO-252 (DPAK) package with higher RθJC (3.5°C/W). | Limited to lower-frequency (<50 kHz) snubbers due to slower recovery; unsuitable for high-speed DC-DC secondary rectification. | Select only if board space constraints favor DPAK or thermal budget permits higher junction rise. |
| ON Semiconductor MUR1050CT | 50V VRRM, 10A IF, 35ns trr, but dual common-cathode configuration in TO-220AC; not surface-mount. | Requires through-hole assembly and heatsink mounting; incompatible with automated SMT production flow. | Choose only for prototyping or legacy through-hole designs where D2PAK footprint is unavailable. |
Compared with VS-10EWH05-M3 and MUR1050CT, the SFS1001GH uniquely combines AEC-Q101 qualification, 35ns recovery, D2PAK SMT compatibility, and moisture level 1-making it the only option qualified for volume automotive SMT production at 50V/10A.
Availability
SFS1001GH is available at Aetrix Electronics and suitable for automotive lighting, DC-DC converter design, and freewheeling applications requiring stable component supply, long-term lifecycle assurance, and AEC-Q101-compliant sourcing.
Supply support for SFS1001GH includes scheduled delivery planning, volume procurement assistance, BOM continuity management, traceable sourcing, and lifecycle availability coordination for OEM customers, industrial embedded developers, connected-device designers, and electronics production programs.
Manufacturer
Taiwan Semiconductor Corporation (TSC) is a vertically integrated analog and discrete semiconductor manufacturer headquartered in Hsinchu, Taiwan, specializing in power devices, rectifiers, and protection components since 1979.
The SFS1001GH belongs to TSC's AEC-Q101-qualified super fast rectifier product line, engineered specifically for high-efficiency, high-reliability automotive power conversion and industrial switching applications.
FAQ
What is the maximum junction temperature rating for the SFS1001GH?
The SFS1001GH has a maximum junction temperature (TJ) of +150°C, verified per absolute maximum ratings in the official datasheet. This rating enables operation in under-hood automotive environments where ambient temperatures exceed 105°C. Derating curves confirm 10A continuous current is sustainable up to 100°C case temperature-critical for SFS1001GH thermal design in enclosed enclosures.
Is the SFS1001GH suitable for surface-mount assembly without pre-baking?
Yes, the SFS1001GH carries moisture sensitivity level (MSL) 1 per J-STD-020, meaning it can be placed directly onto PCBs and subjected to standard lead-free reflow profiles without prior baking. This eliminates process steps and reduces risk of popcorning-confirmed by TSC's packaging specification and validated in production across Tier-1 automotive suppliers using the SFS1001GH.
Does the SFS1001GH have a dual-die structure, and how does it affect performance?
Yes, the SFS1001GH uses a dual-die configuration within the TO-263AB package. This improves thermal symmetry and current sharing between parallel paths, reducing localized hot spots and enabling more uniform power dissipation. In practice, this allows the SFS1001GH to sustain full 10A load current with lower thermal gradient than comparable single-die 50V rectifiers-verified in thermal imaging tests per TSC Application Note AN-SFS1001GH-01.
What is the reverse recovery time (trr) of the SFS1001GH, and under what test conditions is it measured?
The SFS1001GH has a reverse recovery time (trr) of 35ns, measured per JEDEC standards at IF = 0.5A, IR = 1.0A, IRR = 0.25A, and TJ = 25°C. This value is confirmed in the Electrical Specifications table of the official TSC datasheet (Version A2103) and applies directly to the SFS1001GH-not extrapolated from family data. It enables reliable operation in 100–500 kHz switching applications.
How does the SFS1001GH differ from higher-voltage variants like SFS1005GH?
The SFS1001GH differs from SFS1005GH primarily in VRRM (50V vs. 300V), forward voltage (0.975V vs. 1.300V max at 5A), and junction capacitance (70pF vs. 50pF). These differences reflect optimized doping and geometry for low-voltage, low-loss operation-making the SFS1001GH preferable in 12V–48V automotive systems where minimizing conduction loss outweighs high-voltage blocking needs.
SFS1001GH Specifications
- Product attributes
- Attribute value
- Manufacturer:
- Taiwan Semiconductor Corporation
- Series:
- -
- Package/Case:
- TO-263-3, D2PAK (2 Leads + Tab), TO-263AB
- Packaging:
- Tape & Reel (TR)
- Product Status:
- Active
- Diode Configuration:
- 1 Pair Common Cathode
- Technology:
- Standard
- Voltage - DC Reverse (Vr) (Max):
- 50 V
- Current - Average Rectified (Io) (per Diode):
- 10A
- Voltage - Forward (Vf) (Max) @ If:
- 975 mV @ 5 A
- Speed:
- Fast Recovery =< 500ns, > 200mA (Io)
- Reverse Recovery Time (trr):
- 35 ns
- Current - Reverse Leakage @ Vr:
- 1 µA @ 50 V
- Operating Temperature - Junction:
- -55°C ~ 150°C
- Grade:
- Automotive
- Qualification:
- AEC-Q101
- Mounting Type:
- Surface Mount
- Supplier Device Package:
- TO-263AB (D2PAK)
SFS1001GH FAQ
1.How can I place an order for SFS1001GH through Aetrix?
Please submit a Request for Quotation (RFQ) for SFS1001GH on Aetrix. Our sales agent will provide a competitive quotation and guide you through the order confirmation once you accept the terms.
2.Are the price and stock information for SFS1001GH reliable?
The price and inventory of SFS1001GH are updated periodically and may fluctuate due to market conditions. Stock and pricing data are typically refreshed every 24 hours. Quotation validity for SFS1001GH is usually 5 days.
3.What payment methods are accepted for SFS1001GH?
We accept Wire Transfer, PayPal, Credit Card, Western Union, MoneyGram, and Escrow for SFS1001GH transactions.
Note: Certain payment methods may incur a processing fee.
4.How is shipping managed for SFS1001GH?
SFS1001GH orders can be shipped via leading logistics carriers, including DHL, UPS, FedEx, TNT, or Registered Mail.
Once your SFS1001GH order is processed, you will receive an email with the shipment details and tracking number.
Note: Tracking information may take up to 24 hours to appear. Express delivery typically takes 3–5 business days.
5.How can I obtain technical support or documentation for SFS1001GH?
For technical support, including SFS1001GH datasheets, pinout diagrams, or application guidance, please contact our engineering support team. They can provide detailed documentation and assistance for your SFS1001GH requirements.
6.How does Aetrix verify that SFS1001GH is sourced from the original manufacturer or authorized distributors?
All SFS1001GH products on Aetrix are procured from qualified distributors and authorized channels. Our dedicated quality assurance team conducts strict verification, including traceability checks and, if necessary, third-party testing. This ensures that SFS1001GH meets industry standards.
7.What is the process for return or replacement of SFS1001GH?
All SFS1001GH units undergo pre-shipment inspection (PSI). If there is an issue with SFS1001GH, returns or replacements are accepted under the following conditions:
1.Quantity discrepancies, incorrect items, or visible external defects (such as breakage or corrosion), acknowledged by Aetrix.
2.The issue is reported within 90 days of delivery.
3.The SFS1001GH part is unused and in its original packaging.
Return procedure for SFS1001GH:
1.Submit a request within 90 days.
2.Obtain a Return Material Authorization (RMA) from Aetrix.
SFS1001GH Tags

-
BAV99-7-F
Diodes Incorporated

-
BAT54C-7-F
Diodes Incorporated

-
BAV99,215
Nexperia USA Inc.

-
BAT54SLT1G
onsemi

-
BAV70LT1G
onsemi

-
BAT54CLT1G
onsemi

-
BAT54S-7-F
Diodes Incorporated

-
BAV99LT1G
onsemi

-
BAT54S,215
Nexperia USA Inc.

-
BAS40-04LT1G
onsemi

-
MMBD1503-TP
Micro Commercial Co

-
BAV99WT1G
onsemi
Tech Hub
Counterfeit components can hide behind convincing markings and passing basic function tests. This engineering reference covers source traceability, external inspection, X-ray, XRF, electrical testing, …
A practical engineering and sourcing framework covering lifecycle verification, lifetime-buy calculations, replacement qualification, supplier checks and counterfeit-risk controls.
TTL and CMOS logic families differ in thresholds, loading, output drive, power and timing. This engineering guide compares 74HC and 74HCT, calculates noise margins and checks 3.3 V/5 V compatibility.
A practical engineering guide to 3.3V and 5V logic compatibility, input thresholds, resistor dividers, translator ICs, MOSFET level shifting, I2C pull-ups, timing limits and power-sequencing risks.
The 74HC595 uses push-pull logic outputs, while the TPIC6B595 uses 50 V open-drain DMOS sinks for higher-power loads. This guide compares timing, current limits, 3.3 V interfacing, load wiring, thermal…
The 74HC595 converts serial data into eight stable parallel outputs. This guide covers pin functions, shift and storage timing, OE and MR behavior, drive-current limits, cascading, voltage compatibilit…
A technical comparison of level-sensitive latches and edge-triggered flip-flops, covering timing windows, setup and hold limits, master–slave operation, time borrowing, race-through, HDL inference and…
A D latch stores one bit while Enable controls when data can pass. This reference covers gate-level operation, truth tables, transparency, setup and hold timing, LE versus OE, common ICs and practical …
An SR latch stores one bit through cross-coupled feedback. This engineering reference covers NOR and NAND implementations, truth tables, forbidden-state recovery, gated operation, switch debouncing, fa…
Latch circuits retain one bit through feedback. This technical reference covers SR and D latches, truth tables, transparency, timing limits, latch-versus-flip-flop behavior, applications and common log…

