With a silicon-based core and robust metal packaging, the 30N6S2D chip ensures efficient heat dissipation and reliable performance in high-power applications*. This design reduces thermal resistance, extending longevity in demanding electronic systems.
With a compact surface-mount package, this chip enables easy assembly into PCBs, saving space and simplifying manufacturing for compact electronics*. Ideal for applications requiring dense circuit layouts.
With a maximum drain current of 30A and low Rds(on), the 30N6S2D delivers 20% lower power loss compared to traditional MOSFETs*, ensuring efficient operation in power supplies, motor control, and industrial systems.
Designed for high-demand environments, this chip supports stable performance in automotive, renewable energy, and industrial automation systems*, offering reliable power management under extreme conditions.
Certified to meet global electronics standards (e.g., RoHS compliance), ensuring safety and compatibility with modern manufacturing requirements*. Prioritizes eco-friendly materials and robust quality control.
The 30N6S2D HGTG30N6S2D MOSFET chip is a high-performance integrated circuit designed for power electronics applications. With its robust specifications and versatile design, it supports a wide range of scenarios, from industrial control systems to consumer electronics.
Feature | Specification | Benefit |
---|---|---|
Drain-Source Voltage | 60V VDS | Handles high-voltage applications safely |
Continuous Drain Current | 30A (at TA = 25°C) | Supports heavy-load operations |
Rds(on) | 0.045Ω (Typical) | Minimizes power loss for efficiency |
Package Type | TO-220 / TO-247 | Compatible with surface-mount designs |
Material | Silicon (Si) | Ensures thermal stability and durability |
Adjustable parameters such as voltage and current ratings can be tailored to meet specific requirements. For example, the Rds(on) can be optimized for low-power or high-power use cases.
With the 30N6S2D’s rugged design and precise specifications, engineers can build reliable power systems for inverters, motor drives, or renewable energy setups. Its compact footprint also makes it ideal for space-constrained projects.
Parameter | Base Model | Advanced Model | Pro Model |
---|---|---|---|
Max Drain Current | 30A | 45A (+50%) | 60A (+100%) |
Voltage Rating | 60V | 80V (+33%) | 100V (+67%) |
Rds(on) | 0.045Ω | 0.03Ω (-33%) | 0.02Ω (-56%) |
Operating Temp Range | -40°C to +150°C | -40°C to +170°C | -40°C to +200°C |
Technical Breakthroughs:
Version Selection Guide:
With the Pro Model’s triple-certified chemical resistance and ultra-low Rds(on), engineers can design systems that withstand corrosive environments while maintaining peak efficiency. Pairing its TO-247 package with high-capacity capacitors ensures stable power delivery even under load spikes.
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
Power MOSFETs (e.g., 30N6S2D) | Motor control, power supplies, inverters | Industry Standard: Rds(on) = 0.18Ω @ 10V (e.g., IRLML6402) Our Base: Rds(on) = 0.12Ω @ 10V (▲1) Our Advanced: Rds(on) = 0.09Ω @ 10V (▲2) | Lower resistance reduces heat (30N6S2D’s 0.12Ω ▲1 vs standard) High current handling (up to 30A) | Higher cost for advanced versions; requires proper heat sinking for peak loads |
Microcontrollers (e.g., ATMEGA8535) | Embedded systems, IoT, automation | Industry Standard: 8-bit core, 8KB Flash (e.g., PIC16F877A) Our Base: 8-bit core, 8KB Flash (▲0) Our Advanced: 32-bit core, 16KB Flash (▲2) | Versatile for low-power applications ATMEGA8535 supports 64 I/O pins | Limited processing power for complex tasks in advanced versions |
High-Power Transistors (TO-220) | Amplifiers, power regulators | Industry Standard: 100W max power (e.g., TIP31) Our Base: 150W max power (▲1) Our Advanced: 200W max power (▲2) | TO-220 package ensures robust heat dissipation (150W ▲1 vs standard) | Bulky size; lower efficiency at high frequencies compared to MOSFETs |
Bridge Rectifiers | AC/DC power supplies | Industry Standard: 1A/400V (e.g., KBPC52-04) Our Base: 2A/500V (▲1) Our Advanced: 3A/600V (▲2) | Our Base (2A/500V) handles higher voltages than standard (400V) | Higher voltage ratings increase cost; sensitive to reverse breakdown |
Ceramic Capacitors | Decoupling, filtering circuits | Industry Standard: 100nF (e.g., 0805 package) Our Base: 470nF (▲1) Our Advanced: 1µF (▲2) | Compact size (0805 package) Our Advanced (1µF ▲2) improves high-frequency filtering | Lower capacitance per unit volume vs electrolytic capacitors |
Low-Power ICs (e.g., ATTINY26L-8PI) | Wearables, battery-operated devices | Industry Standard: 1MHz clock, 2KB Flash (e.g., PIC10F200) Our Base: 8MHz clock, 2KB Flash (▲1) Our Advanced: 16MHz clock, 4KB Flash (▲2) | ATTINY26L-8PI consumes 0.1µA sleep current (ideal for battery use) | Limited memory for complex applications in base versions |
⭐⭐⭐⭐⭐ James Peterson - Industrial Control Systems Engineer
"I’ve been using the 30N6S2D HGTG30N6S2D MOSFET in our motor drive units for the past 7 months, and it’s performed flawlessly. The low Rds(on) of 0.045Ω has significantly reduced heat buildup compared to previous MOSFETs we used, eliminating the need for oversized heatsinks. Its 60V rating and 30A current capacity are perfect for our medium-power industrial controllers. Integration with the ATMEGA8535-based boards was seamless—no signal interference or switching delays."Purchase Date: May 2024 | Usage Period: 8 months
⭐⭐⭐⭐⭐ Lena Tran - Solar Inverter Technician
"We integrated the Advanced Model (80V, 45A) into our solar micro-inverters last March, and it's been a game-changer. The higher voltage tolerance handles voltage spikes during cloud transients without issue. I especially appreciate the TO-247 package—it dissipates heat like a champ even in rooftop enclosures under direct sun. We’ve seen a measurable 18% drop in power loss across our test units. RoHS compliance also made certification paperwork much smoother."Purchase Date: March 2025 | Usage Period: 3 months
⭐⭐⭐⭐☆ David Kim - IoT Product Developer
"Used the Base Model in a smart HVAC control board for a home automation client. Compact surface-mount design saved critical PCB space, and the compatibility with ATTINY26L-8PI made firmware integration straightforward. It’s been running 24/7 for five months with zero failures. Only reason I’m not giving five stars is that the datasheet could include more layout guidelines for thermal vias—but otherwise, solid performer for embedded power switching."Purchase Date: September 2024 | Usage Period: 6 months
⭐⭐⭐⭐⭐ Maria Lopez - Plant Maintenance Lead
"After repeated failures with generic MOSFETs in our conveyor motor controllers, we switched to the Pro Model (100V, 60A, Rds(on) 0.02Ω). That was six months ago—zero replacements since. The +200°C operating temperature range is no exaggeration; we’ve monitored junction temps during summer peaks and they stay within safe margins. The chemical-resistant packaging also holds up well in our high-humidity, mildly corrosive environment. Worth every penny for mission-critical systems."Purchase Date: February 2025 | Usage Period: 4 months
⭐⭐⭐⭐☆ Alex Turner - Electronics Enthusiast
"Bought the Base Model for a custom DC-DC converter project. Was impressed by how easy it was to solder onto my prototype board despite the TO-220 footprint. The low on-resistance really shows in efficiency tests—I’m getting 94% conversion efficiency at 20A. Not quite lab-grade equipment, but for a hobbyist? More than enough. Would love to see a breakout board option for breadboard testing though."Purchase Date: November 2024 | Usage Period: 5 months
Average Rating: 4.8/5 ⭐ (89 Reviews)
Dr. Rajiv Mehta - Senior Power Electronics Consultant
"The 30N6S2D series stands out in the mid-power MOSFET segment due to its optimized balance of Rds(on), voltage headroom, and thermal performance. In my recent benchmarking study, the Pro Model demonstrated 50% lower thermal rise under 40A pulsed loads compared to industry-standard alternatives. I recommend it for engineers designing next-gen industrial drives and renewable energy inverters where efficiency and reliability are non-negotiable."
Elena Park - IoT Hardware Architect
"For embedded systems requiring robust power switching without sacrificing PCB real estate, the surface-mount compatibility and microcontroller synergy of the 30N6S2D make it a top-tier choice. I’ve specified it in three new designs for smart building controls. Its low leakage and stable gate threshold reduce firmware complexity around soft-start and fault detection—rare in MOSFETs at this price point."
Posted: 2 days ago
"Running 30N6S2D Pro Models in high-vibration packaging machines. No drift, no failures. The durability claims are real. A+ component."
Posted: 1 week ago
"Used in 12 off-grid solar setups. Consistent performance across all units. The 80V headroom gives peace of mind during grid reconnect surges."
Posted: 3 weeks ago
"Easy to work with, clear pinout, and holds up well in bench testing. Datasheet could use more application circuits, but overall excellent for learning."
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