With the QFN (Quad Flat No-leads) package, you can achieve superior heat dissipation and compact integration in high-density PCB designs*. This surface-mount technology ensures reliable performance even in space-constrained electronic systems.
With optimized inductance and low resistance characteristics, you can support stable operation in high-frequency applications such as power supplies and signal filtering systems*. The AFS10 chipset outperforms traditional leaded IC packages in signal integrity and efficiency.
With a customizable inductance range and standardized QFN form factor, you can adapt this chipset to meet specific requirements for power management, RF circuits, or IoT devices*. The AFS10 series offers flexibility for both industrial and consumer electronics.
With a 20% smaller footprint than traditional QFP packages*, you can reduce board space usage while maintaining robust performance. Ideal for wearable tech, smartphones, and other portable electronics demanding high component density.
With RoHS and REACH certifications*, you can ensure compliance with eco-friendly manufacturing regulations for global markets. The chipset meets strict quality standards for commercial and industrial applications.
The PengYing IC AFT27S010NT1 chipset is a high-performance integrated circuit designed for surface-mount applications. Built in a compact QFN (Quad Flat No-leads) package, it combines space efficiency with robust electrical performance, making it ideal for modern electronics requiring minimal footprint and optimal functionality.
Feature | Specification | Benefit |
---|---|---|
Package Type | QFN (AFS10) | Enables dense PCB layouts with minimal space. |
Material | Ferrite core (high-frequency optimized) | Ensures low-loss operation in high-frequency circuits. |
Inductance Range | 1.0 µH ±10% | Precision tuning for power supply and filtering applications. |
Operating Frequency | Up to 500 MHz | Supports advanced RF and high-speed digital systems. |
Certification | RoHS compliant | Meets global environmental and safety standards. |
Adjustable inductance values (via core customization) and material selection allow tailored performance for specific applications. The "DK711D" code enables quick identification of batch-specific parameters for precise engineering needs.
Ideal for power management circuits, noise filtering in high-speed digital systems, and compact IoT devices. With its AFS10 QFN package, engineers can maximize board space while achieving reliable electrical performance.
Parameter | Base Model | Advanced Model | Pro Model |
---|---|---|---|
Inductance Stability | ±10% tolerance | ±5% tolerance* | ±3% tolerance** |
Max Current | 1.2 A | 1.8 A (+50%) | 2.5 A (+108%)* |
Operating Frequency | 200 MHz | 400 MHz (+100%) | 500 MHz (industry-leading) |
Thermal Resistance | 60°C/W | 45°C/W (-25%) | 30°C/W (-50%) |
Version Selection Guidance:
With the Pro Model’s 2.5 A current rating, you can handle high-power switching without thermal throttling. The Advanced Model’s 400 MHz frequency support ensures compatibility with emerging 5G infrastructure. Choose the Base Model to balance cost and performance in entry-level devices.
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
Surface-Mount Design | High-density PCBs, compact devices | Industry: IPC-A-610 Class 2 (0.5mm pitch) ▲ Our Base: Class 3 (0.4mm pitch ▲10%) ▲ Our Advanced: 0.35mm pitch (▲14%) | Enables ultra-compact layouts; meets premium assembly standards | Requires precise SMT equipment; higher cost for Advanced-tier precision |
Inductance Value | Power Supply Filters | Industry: 30 μH (AEC-Q200) ▲ Our Base: 47 μH (▲56%) ▲ Our Advanced: 70 μH (▲93%) | Enhanced current filtering; supports higher power densities | Base may underperform in high-current apps; Advanced requires custom design |
DC Resistance (DCR) | High-Current Circuits | Industry: 20 mΩ (IEC 60728) ▲ Our Base: 15 mΩ (▲25% lower) ▲ Our Advanced: 10 mΩ (▲50% lower) | Minimal power loss; improves thermal efficiency | Base may lag in cost-sensitive applications; Advanced adds bulk |
Saturation Current | Motor Drivers, PWM Circuits | Industry: 2.5 A (ISO 17772) ▲ Our Base: 3.2 A (▲28%) ▲ Our Advanced: 4.5 A (▲80%) | Handles peak loads without saturation; robust for dynamic systems | Base may struggle in extreme loads; Advanced increases size |
Operating Temperature | Industrial/Aviation Systems | Industry: -40°C to +125°C (MIL-STD-883) ▲ Our Base: -55°C to +150°C (▲30% range) ▲ Our Advanced: -65°C to +180°C (▲60%) | Rugged reliability in harsh environments; extends lifespan | Higher cost for thermal materials; Advanced may require cooling |
Customization | Specialized Systems | Industry: Fixed values ▲ Our Base: Adjustable 10-50 μH (▲200% range) ▲ Our Advanced: 10-100 μH (▲400% range) | Tailored performance for niche applications; reduces inventory complexity | Custom orders incur longer lead times; Advanced requires engineering collaboration |
⭐⭐⭐⭐⭐ David Lin - Senior Electronics Engineer, Telecom Infrastructure
"The AFT27S010NT1 chipset in the Pro Model has been a game-changer for our 5G baseband units. We needed a surface-mount inductor that could handle high-frequency noise filtering up to 500 MHz without thermal throttling—this delivered. The 30°C/W thermal resistance is impressive; even under continuous load, temperatures remain stable. Integration into our high-density PCBs was seamless thanks to the 0.35mm pitch QFN package."Purchase Date: February 2025 | Usage Period: 5 months
⭐⭐⭐⭐⭐ Elena Perez - IoT Hobbyist & Maker Community Member
"I used the Base Model AFS10 in my custom smart thermostat design, and I’m blown away by how much performance fits in such a tiny package. The 1.0 µH inductance works perfectly in the power regulation stage, and the RoHS compliance gave me peace of mind for home use. Soldering it with a fine-tip iron was doable—even for a hobbyist like me."Purchase Date: November 2024 | Usage Period: 8 months
⭐⭐⭐⭐☆ Marcus Wong - Automation Systems Technician, Manufacturing Plant
"We integrated the Advanced Model into our motor driver boards for conveyor control systems. The ±5% inductance tolerance reduced signal drift significantly compared to our previous solution. Saturation current holds strong at 4.5 A during startup surges. Only downside? The tight pitch requires precision stencils, so rework is time-consuming. But reliability has improved across 12 production lines."Purchase Date: April 2024 | Usage Period: 7 months
⭐⭐⭐⭐⭐ Dr. Anika Patel - Embedded Systems Lead, EV Startup
"For automotive-grade power filtering in our battery management system (BMS), we tested three vendors before settling on the AFS10 Pro Model. Its -65°C to +180°C operating range exceeds AEC-Q100 requirements, and the ferrite core minimizes EMI in high-speed CAN bus circuits. The DK711D batch coding also helps us track performance across test batches—excellent for traceability."Purchase Date: January 2025 | Usage Period: 6 months
⭐⭐⭐⭐☆ James Carter - Co-Founder, Edge Networking Hardware Startup
"We chose the Base Model for our compact PoE switches targeting SMBs. It’s cost-effective and performs reliably at 200 MHz, but we had to derate slightly when pushing beyond 220 MHz. For future designs, we’ll move to the Advanced Model for headroom. Still, for the price, the 47 µH inductance and 15 mΩ DCR are solid improvements over off-the-shelf alternatives."Purchase Date: May 2024 | Usage Period: 4 months
Average Rating: 4.7/5 ⭐ (89 Reviews)
Dr. Rajiv Mehta - Senior Power IC Design Consultant
"The AFS10 series stands out in the crowded inductor market due to its balanced optimization of size, frequency, and thermal performance. In particular, the Pro Model’s 500 MHz capability and 2.5 A saturation current make it one of the few surface-mount solutions suitable for next-gen radar and mmWave systems. I recommend it for any engineer designing for high-reliability, space-constrained environments."
Lena Fischer - High-Speed PCB Design Specialist
"After reviewing over 200 RF board layouts, I can say the AFS10 QFN footprint is among the cleanest I’ve seen for high-frequency filtering. The 0.4mm pitch (Class 3 IPC) allows ultra-dense routing without sacrificing solder joint integrity. For designers working on IoT edge nodes or compact gateways, this component simplifies EMI compliance and saves valuable mm² on the board."
Posted: 2 days ago
"Used the Base Model in our fitness tracker’s PMIC stage. Tiny size, no heating issues after 3 weeks of stress testing. Exactly what we needed for miniaturization."
Posted: 1 week ago
"Validated signal integrity up to 480 MHz—no degradation. The ferrite core really delivers on low-loss performance. Will be ordering the Pro Model for field trials."
Posted: 3 weeks ago
"Parts arrived on time and performed well. Suggestion: include a quick-reference guide for decoding batch codes like DK711D. Took extra time to confirm specs with support."
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