Customization:
With high-permeability ferrite composite, you can ensure efficient energy transfer in transformers and chokes, outperforming standard iron cores in power efficiency*. The dark gray, corrosion-resistant material provides long-term durability in harsh industrial environments.
With its symmetrical bow design, you can achieve precise alignment in mechanical assemblies, reducing installation errors by up to 30%* compared to irregularly shaped cores. The flat, rectangular sections enable seamless integration into custom mechanical setups.
With ±1% tolerance precision, you can guarantee consistent performance across high-precision industrial applications, delivering 50% tighter dimensional accuracy than standard cores*. This ensures reliable operation in sensitive machinery and electronics.
Engineered for industrial machinery and automotive systems, you can maintain structural integrity under continuous operation, ideal for 24/7 commercial use*. The robust design supports heavy-duty applications like power transformers and electromagnetic shielding.
With industrial-grade ferrite material, you can meet stringent quality standards for magnetic components*, ensuring compliance with safety and performance requirements. The precision machining aligns with advanced manufacturing protocols for critical equipment.
The PQ2725 Ferrite Core Power Core is a precision-engineered component designed for transformer and choking coil applications in industrial systems. Crafted from high-grade ferrite magnet material, it combines robust durability with tight tolerance (±1%) to ensure optimal electromagnetic performance. Its symmetrical, bow-like design and corrosion-resistant surface treatment make it ideal for high-stress mechanical and electrical environments.
Feature | Specification | Benefit |
---|---|---|
Material | Ferrite magnet composite | High permeability and thermal stability |
Tolerance | ±1% | Precision alignment in sensitive circuits |
Design | Symmetrical bow shape | Enhanced structural integrity and versatility |
Surface Finish | Matte, corrosion-resistant | Prolonged lifespan in harsh environments |
Application | Industrial transformers, chokes | Efficient energy transfer and EMI suppression |
Adjustable parameters include:
With the PQ2725’s robust ferrite core, engineers can design compact, high-efficiency power systems for industries ranging from automotive electronics to industrial automation. Its symmetrical design allows seamless integration into existing assemblies while maintaining critical electromagnetic performance.
Parameter | Base Model | Advanced Model | Pro Model |
---|---|---|---|
Frequency Range | 10–50 kHz | 10–80 kHz (+60%) | 10–120 kHz (+140%)* |
Power Handling | 500 W | 800 W (+60%) | 1200 W (+140%) |
Thermal Resistance | 15°C/W | 10°C/W (-33%) | 5°C/W (-67%) |
Technical Breakthroughs:
Version Selection Guide:
With the Pro Model’s 120 kHz rating, you can design compact inverters for solar panels that outperform traditional solutions by 20% in power density. Pair its low thermal resistance with high-frequency tolerance to achieve reliable operation in -40°C to 120°C environments.
⭐⭐⭐⭐⭐ James Carter - Industrial Automation Systems
"We integrated the Pro Model PQ2725 Ferrite Core into our new line of high-frequency industrial transformers, and the performance has been outstanding. The ±1% tolerance ensures perfect alignment in our PCB assemblies, and the thermal resistance is noticeably better than our previous iron cores. After 7 months of continuous operation in harsh factory conditions, there’s no sign of degradation."Purchase Date: February 2024 | Usage Period: 8 months
⭐⭐⭐⭐⭐ Lena Park - Automotive R&D Division
"The Advanced Model PQ2725 has become our go-to core for EV inverter designs. Its 80 kHz frequency range and compact symmetrical shape fit perfectly within our tight chassis layouts. We’ve seen a measurable 18% reduction in energy loss compared to last-gen components. The matte finish also resists corrosion even in high-humidity test environments."Purchase Date: October 2024 | Usage Period: 5 months
⭐⭐⭐⭐☆ David Reynolds - Avionics Integration Team
"Used the Pro Model in a prototype power supply unit for satellite ground systems. The 120 kHz capability allowed us to downsize the entire inverter module by 30%. Installation was smooth thanks to the precision edges and consistent dimensions. Only reason I’m not giving 5 stars is that lead time for custom orders could be faster during peak season."Purchase Date: June 2025 | Usage Period: 3 months
⭐⭐⭐⭐⭐ Maria Gonzalez - Contract Electronics Manufacturer
"We’ve deployed the Base Model PQ2725 across multiple client projects involving industrial chokes and power supplies. What stands out is the consistency—batch after batch delivers the same magnetic performance. The ±1% tolerance reduces QA failures by nearly 40%. For cost-sensitive but reliable builds, this is the ideal choice."Purchase Date: January 2025 | Usage Period: 6 months
⭐⭐⭐⭐⭐ Amir Khalid - Solar Inverter Startup
"After testing three different ferrite cores, the PQ2725 Pro Model delivered exactly what we needed: high-frequency operation, low heat buildup, and rugged durability. We're using it in our next-gen solar microinverters, and the 5°C/W thermal resistance has allowed us to eliminate additional cooling systems. That’s a huge win for size and cost."Purchase Date: April 2025 | Usage Period: 2 months
Average Rating: 4.9/5 ⭐ (89 Reviews)
Dr. Evelyn Reed - Senior Power Electronics Engineer
"The PQ2725 series sets a new benchmark for mid-to-high frequency magnetic components. Its combination of ±1% dimensional accuracy, superior thermal resistance, and material stability makes it ideal for next-generation power systems. I particularly recommend the Pro Model for renewable energy and aerospace applications where reliability under thermal stress is non-negotiable."
Markus Weber - EMC Testing Specialist
"In my lab, we’ve tested over 20 ferrite core types for EMI suppression in industrial drives. The PQ2725 stands out due to its low eddy current loss and consistent permeability across frequency bands. It significantly reduces conducted noise in choking coil applications—making it a top choice for compliance with IEC 61000 standards."
Posted: 2 days ago
"Switched to the Advanced Model for our 7.4 kW onboard chargers. The 800 W power handling and compact size allowed us to reduce footprint by 25%. Signal integrity is clean, and no thermal throttling observed even at peak loads."
Posted: 1 week ago
"We’ve reordered the Base Model four times now—always consistent quality. Packaging is secure, and documentation includes full compliance info (RoHS, ISO). Great support team for technical queries."
Posted: 3 weeks ago
"Used a custom-tuned PQ2725 for a high-precision imaging power supply. Performance is flawless, but custom lead time was 3 weeks instead of the estimated 2. Still worth it for the precision."
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