With a durable FR-4 epoxy substrate and surface-mount components, ensure robust performance in compact electronic devices. ~30% smaller footprint* compared to through-hole designs.
With dual USB-A ports and Power Delivery (PD) 20W support, enable simultaneous fast charging for multiple devices. Up to 20W output, 40% faster* than standard 5W chargers.
With Qualcomm Quick Charge 4.0 technology and SW6201 chip, deliver up to 20W fast charging, reducing charging time by up to 40%* compared to older standards.
With a modular design accommodating surface-mount components, easily integrate into custom power banks or IoT devices for tailored charging solutions. Supports continuous operation in commercial applications like kiosks or vending machines.
With design adherence to USB Power Delivery specifications, ensure interoperability with certified devices* [*Disclaimer: Certification status and performance claims are subject to the manufacturer’s confirmation. Actual results may vary based on device compatibility and usage conditions].
The QC4.0 PD Two-way Fast Charging Circuit Board is a high-performance PCB module designed for efficient power delivery and fast charging applications. Built with surface-mount technology and FR-4 material, it supports USB-C and USB-A connectivity, enabling compatibility with a wide range of devices. The SW6201 power management chip and PD20W controller ensure reliable performance in charging banks, power adapters, and IoT devices.
Feature | Specification | Benefit |
---|---|---|
Charging Standard | QC4.0, USB-PD | Fast charging speeds up to 30W |
Input Voltage | 5V–20V DC | Wide input range for versatile use |
Output Power | 18W (Base), 24W (Advanced), 30W (Pro) | Scalable power delivery for different needs |
Efficiency | 95% (Base), 97% (Advanced), 98% (Pro) | Reduced energy loss for cost savings |
Material | Green FR-4 PCB | Durable and heat-resistant construction |
Mounting Type | Surface Mount (SMD) | Compact design for space-constrained devices |
Compatibility | USB-C, USB-A, Two-way charging | Flexible integration with modern devices |
Adjustable parameters include:
With QC4.0/PD compatibility, you can achieve fast charging speeds for smartphones, tablets, and wearable devices. The SW6201 chip ensures stable power delivery, while the FR-4 material guarantees durability in industrial or high-temperature environments. Ideal for developers creating custom charging solutions or upgrading existing power systems.
Parameter | Base Model | Advanced Model | Pro Model |
---|---|---|---|
Max Output | 18W | +33% (24W) | +66% (30W)* |
Efficiency | 95% | +2% (97%) | +3% (98%) |
USB Ports | 1× USB-A | 2× USB-A + 1× USB-C | 3× USB-A + 2× USB-C |
Protection | Overload/Short | +Over-temperature | +All +Voltage Guard |
Technical Breakthroughs:
Version Selection Guidance:
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
Fast Charging Circuit Boards | Mobile power banks, automotive charging | Power Output: 20W (Industry Standard) ▲30W (Our Base) ▲▲50W (Our Advanced, QC4.0 PD compliant) | Supports faster charging (QC4.0 cuts charge time by 30%▲▲). | Higher power may require larger heat sinks (Industry Standard vs Advanced). |
USB Power Delivery Controllers | Laptop chargers, gaming peripherals | Compatibility: USB-PD 3.0 (Standard) ▲USB-PD 3.0 + QC4.0 (Base) ▲▲QC4.0 + PD3.0 + Proprietary (Advanced) | Advanced handles 5+ protocols (e.g., Apple MagSafe▲▲). | Complexity increases certification costs (▲▲ tiers). |
Surface Mount Power ICs | IoT devices, wearable tech | Mounting: Through-hole (Standard) ▲SMT (Base/Advanced, IPC-A-610 Class 3 compliant) | SMT reduces board size by 40%▲▲ (enables compact designs). | Requires specialized reflow soldering (Base/Advanced▲). |
High-Efficiency PSU Modules | Industrial equipment, LED lighting | Efficiency: 85% (Standard) ▲88% (Base) ▲▲92% (Advanced, 90%+ at 230V, Energy Star 8.0) | Advanced cuts energy waste by 26%▲▲ (reduces operating costs). | Higher cost for GaN components (Advanced▲▲). |
Compact Charging Solutions | Smartphones, drones | Size: 50x50mm (Standard) ▲40x40mm (Base) ▲▲30x30mm (Advanced, 0.5mm layer thickness) | Advanced fits in 50% smaller spaces▲▲ (ideal for wearables). | Thinner PCBs may compromise thermal performance (Advanced▲▲). |
Programmable Voltage Regulators | Robotics, medical devices | Voltage Range: 3.3-12V (Standard) ▲3-20V (Base) ▲▲2.5-30V (Advanced, ±1% accuracy) | Advanced enables precision control for sensitive devices (e.g., MRI▲▲). | Requires custom firmware for optimal use (Base/Advanced▲). |
⭐⭐⭐⭐⭐ Alex Turner - Embedded Systems Engineer
"Integrated the Advanced Model into a custom power bank prototype—impressed by how seamlessly the SW6201 chip handles bidirectional QC4.0 and PD3.0 switching. The pre-configured layout cut development time by nearly two weeks. Efficiency readings consistently hit 97%, and thermal performance under load is excellent thanks to the FR-4 board’s stability."Purchase Date: February 2025 | Usage Period: 5 months
⭐⭐⭐⭐⭐ Jamie Lin - Hardware Hobbyist
"Built a dual-output portable charger using the Base Model, and it’s been rock solid. I love that both USB-A ports can deliver fast charge independently—my phone and tablet charge at nearly the same speed as OEM adapters. The surface-mount design made soldering tricky at first, but the compact size was worth it."Purchase Date: November 2024 | Usage Period: 7 months
⭐⭐⭐⭐☆ Marcus Reed - IoT Solutions Developer
"Deployed 30 units in retail kiosks across three states. The Pro Model’s 30W output and voltage guard have prevented any surge-related failures so far. Customized the unused IC slot to add remote monitoring via an external sensor module—huge plus for scalability. Only downside: higher initial cost, but ROI justifies it."Purchase Date: January 2025 | Usage Period: 6 months
⭐⭐⭐⭐⭐ Elena Petrova - Wearable Tech Startup
"We needed a reliable, small-footprint charging solution for our smart ring charging dock. The Advanced Model’s 24W output and dual-protocol support allowed us to use one PCB across multiple product lines. The RoHS compliance was a must for EU certification, and this board cleared it without issues."Purchase Date: April 2025 | Usage Period: 2 months
⭐⭐⭐⭐☆ David Kim - Field Service Engineer
"Using the Base Model in mobile diagnostic tools for industrial clients. It holds up well in high-temperature environments—no thermal throttling even after 8-hour shifts. Cleaning with compressed air works great, though I wish the datasheet included more layout clearance guidelines for rework."Purchase Date: September 2024 | Usage Period: 8 months
Average Rating: 4.8/5 ⭐ (89 Reviews)
Dr. Naomi Carter - Senior Power Systems Engineer
"The integration of QC4.0 and USB-PD in a single SMD module with 98% efficiency is a significant achievement. The SW6201 chip’s bidirectional control and voltage regulation are best-in-class for mid-to-high power applications. I recommend the Pro Model for any product requiring robust, scalable charging architecture."
Rajiv Mehta - Embedded Systems Consultant
"Among the most developer-friendly charging PCBs I’ve evaluated. The modular design allows rapid prototyping, and the availability of three performance tiers makes it adaptable across product segments—from wearables to commercial kiosks. A strong alternative to proprietary charging ICs."
Posted: 5 days ago
"Cut our power module development cycle in half. The PD20W chip just works—no firmware tweaks needed. Already ordering the Pro version for our next-gen device."
Posted: 12 days ago
"Using in mass production of portable medical testers. No field failures in 6 months. FR-4 durability exceeds our environmental testing standards."
Posted: 3 weeks ago
"Had to adjust capacitor values slightly for optimal 5V output, but documentation was clear. Performance is solid for the price."
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