We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Core.
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Core Product List and Ranking from 102 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Feb 25, 2026~Mar 24, 2026
This ranking is based on the number of page views on our site.

Core Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Feb 25, 2026~Mar 24, 2026
This ranking is based on the number of page views on our site.

  1. 富士ソフト インダストリービジネス事業部 Kanagawa//software
  2. 昭和丸筒 Osaka//Paper and pulp
  3. 日東商事 Osaka//Trading company/Wholesale
  4. 4 竹内工業 Tokyo//Resin/Plastic
  5. 5 飯島精機 Nagano//Machine elements and parts

Core Product ranking

Last Updated: Aggregation Period:Feb 25, 2026~Mar 24, 2026
This ranking is based on the number of page views on our site.

  1. Dual-structure core for reducing roll tendency and shaft diameter conversion (Lotus Core) 昭和丸筒
  2. Winding core ABS core - ABS CORE - 日東商事
  3. Core joint C core / CD core 日本継手 東京営業部
  4. 4 ROEHR Collapsible Core Mini Core 日本金型産業
  5. 5 Electromagnetic Wave Noise Countermeasure Product: Bead Core 'BCA Series' 竹内工業

Core Product List

241~270 item / All 309 items

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IP core "AndesCore A25"

It also includes modes for low power consumption and power management, as well as a debugging interface!

The "AndesCore A25" is a 32-bit CPU IP core based on the AndeStar V5 architecture, which incorporates RISC-V technology. It achieves high performance per MHz and operates at high frequencies with a low gate count. Additionally, the Andes Custom Extension (ACE) is offered as an option to add custom instructions that lead to performance improvements and optimization of performance/power. 【Specifications (partial)】 ■ AndeStar V5 Instruction Set Architecture (ISA) utilizing RISC-V technology ■ DSP/SIMD ISA suitable for digital signal processing ■ Floating-point extension ■ Andes extension features that enable high performance and high functionality *For more details, please refer to the related links or feel free to contact us.

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IP core "AndesCore D25F"

A flexibly configurable platform to support a wide range of system event scenarios!

The "AndesCore D25F" is a 32-bit CPU IP core based on the AndeStar V5 architecture, which incorporates RISC-V technology. For Linux-based applications, it supports the RISC-V P-extension (draft) DSP/SIMD ISA, which has been significantly contributed to by Andes Technology, as well as single-precision/double-precision floating-point instructions and an MMU. Additionally, options are available for branch prediction for efficient branch instruction execution, instruction and data caches, local memory for low-latency access, and ECC for L1 memory soft error protection. 【Specifications (partial)】 ■ AndeStar V5 Instruction Set Architecture (ISA) utilizing RISC-V technology ■ DSP/SIMD ISA suitable for digital signal processing ■ Floating-point extension ■ Andes extensions that enable high performance and high functionality *For more details, please refer to the related links or feel free to contact us.

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IP core "AndesCore A25MP"

Symmetric multi-processor with up to 4 cores! Supports level-2 cache and cache coherence.

The "AndesCore A25MP" is a 32-bit multi-core CPU IP core based on the AndeStar V5 architecture. It features an MMU for Linux-based applications, branch prediction for efficient branch instruction execution, level-1 instruction and data caches, and local memory for low-latency access. Additionally, it supports up to four cores and a level-2 cache controller with instruction and data prefetch. 【Specifications (partial)】 ■ Symmetric multiprocessor with up to 4 cores ■ Supports level-2 cache and cache coherence ■ AndeStar V5 Instruction Set Architecture (ISA) Compliant with RISC-V ISA IMACFDN, including Andes performance/function extensions ■ Floating-point extension *For more details, please refer to the related links or feel free to contact us.

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IP core "AndesCore N9"

Designers can set specific parameters to adjust the size, power consumption, and performance of the CPU!

The "AndesCore N9" is an IP core designed for applications that require interrupt response capabilities, such as wireless networking, sensors, microcontrollers, and automotive electronics. The low-power N9 family processor has a small gate count, low interrupt latency, and low-cost debugging. The processor family provides excellent performance and outstanding interrupt handling response while addressing the challenges of low dynamic and static power constraints. 【Specifications】 ■ High-performance V3 ISA based on a compact CPU architecture ■ Excellent overall performance ■ Efficient pipeline optimized for local memory access ■ High configurability including AXI bus support *For more details, please refer to the related links or feel free to contact us.

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IP core "AndesCore N13"

With an 8-stage pipeline and a clock frequency exceeding 1GHz, the core delivers excellent performance of 2.05 DMIPS/MHz!

The "AndesCore N13" is a high-performance CPU core designed for compute-intensive applications running on operating systems or bare metal. It is designed to meet the stringent requirements of application processors for consumer electronics such as HDTVs, home media servers, and set-top boxes, as well as the SoCs for switches and routers that deliver content to these devices. Equipped with a memory management unit, L1/L2 cache, local memory, DMA, FPU, vector interrupts, and branch prediction, it can easily run complex operating systems like Linux. 【Specifications】 ■ Optimized pipeline for best performance at 1GHz or higher ■ Dynamic branch prediction accelerates loop execution ■ ULM (Unified Local Memory) for parallel access ■ 64-bit AXI bus for high bandwidth and low latency ■ MMU and MPU for Linux and RTOS ■ Supports FPU coprocessor and L2 cache *For more details, please refer to the related links or feel free to contact us.

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IP core "AndesCore N10"

You can bridge the internet connection of ZigBee, Bluetooth, or WiFi sensor devices!

The "AndesCore N10" is an IP core suitable for applications ranging from consumer media players and smart glasses to touch panels, motor control, and power management. It features a 5-stage pipeline and operates at clock frequencies exceeding 800MHz, providing sufficient performance for automotive electronics and industrial control. Additionally, it comes with I/D cache or local memory options, allowing the core to run more efficiently in network or communication applications. 【Specifications】 ■ Cache for high-speed code and data access ■ Local memory for code and data access ■ IEEE754 compliant FPU coprocessor ■ Memory Protection Unit (MPU) for secure RTOS ■ Memory Management Unit (MMU) for Linux *For more details, please refer to the related links or feel free to contact us.

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IP core "AndesCore E8"

FlashFetch improves performance while saving power!

The "AndesCore E8" is a power-efficient and compact embedded controller enabled by the unique Andes Custom Extension (ACE). With its proprietary ACE environment, designers can specify architectural elements suitable for IoT applications. Using Andes' Custom-Optimized Instruction Development Tools (COPILOT), designers can create custom instructions that differentiate their products and designs from competing products based on standard instruction set processors. 【Specifications】 ■ Class-leading performance per MHz ■ Andes Custom Extension (ACE) significantly improves performance efficiency ■ Small footprint with fewer gates and high code density ■ Faster flash access and reduced power consumption through FlashFetch technology *For more details, please refer to the related links or feel free to contact us.

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SAS Target IP Core for FPGA and ASIC

Supports SAS 3.0Gbps, 6.0Gbps, and 12.0Gbps! Equipped with automatic credit control function.

The "IP Core SAS Target for FPGA and ASIC" complies with the SAS 3.0 standard and supports a maximum transfer rate of 12Gbps (1200MB/s) for Serial-SCSI (SAS) target (device). It consists of four blocks (Phy layer, LINK layer, PORT layer, TRN layer) and interfaces with processors, SerDes, and memory. It is designed to connect to SAS-compliant host applications to transmit and receive OOB signals, primitives, and SAS frames. 【Specifications (Excerpt)】 ■ Compliant with SAS 3.0 standard ■ Supports SAS 3.0Gbps, 6.0Gbps, and 12.0Gbps ■ Register access to link layer/transport layer ■ Supports SerDes, PIPE, and SAPIS interfaces ■ Supports OOB sequence and speed negotiation sequence *For more details, please download the PDF or feel free to contact us.

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CryptoManager RT-6xx

Secure applications can be assigned unique roots and keys, allowing for the establishment of independent permissions and access levels!

This product is a fully programmable hardware security core compliant with FIPS 140-3, designed from the ground up to provide quantum-resistant security for data centers and other applications requiring advanced security. Device and system architects are facing increasingly diverse security threats, including the risks posed by quantum computers. The need for hardware-based Root of Trust security implementations remains constant across various applications. This product offers extensive protection against both hardware and software attacks through advanced side-channel attack countermeasures, tamper resistance technologies, and security techniques. 【Features】 ■ Supports various security certifications up to Level 3 ■ Provides a future-proof hardware security solution ■ Enables the development of secure and reliable applications ■ Allows for the configuration of independent authorities and access levels *For more details, please refer to the related links or feel free to contact us.

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Quantum-resistant cryptographic IP core for financial institutions

Protecting financial transactions from the threat of quantum computers.

In the financial industry, advanced security measures are essential to protect customers' assets and confidential information. Particularly with the advent of quantum computers, the risk of traditional encryption technologies being compromised has increased. To safeguard transactions from this threat, the implementation of post-quantum cryptography is urgent. Our "Post-Quantum Cryptography IP Core" provides a hardware-level security solution that uses algorithms selected by NIST and CNSA to protect data and hardware from quantum computer attacks. 【Use Cases】 * Online banking * Credit card payments * Securities trading * Data communication between financial institutions 【Benefits of Implementation】 * Enhanced safety of customer data * Increased reliability of financial transactions * Compliance with regulations * Assurance of business continuity

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[For Government] Quantum-resistant Cryptographic IP Core

Security solutions that protect data and hardware.

In government agencies, advanced security measures are essential to protect national secrets and important information assets of the citizens. The development of quantum computers poses a threat to traditional encryption technologies, increasing the risk of information leakage. Therefore, solutions that can protect data from attacks by quantum computers and ensure security are in demand. 【Use Cases】 * Protection of confidential data in government agencies * Strengthening the security of critical infrastructure * Ensuring the confidentiality of communications 【Benefits of Implementation】 * Reduction of risks associated with decryption by quantum computers * Prevention of national losses due to information leakage * Establishment of a secure information communication environment

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Quantum-resistant cryptographic IP core for healthcare

Hardware-level security that protects the safety of medical data.

In the healthcare industry, protecting patients' confidential information and medical data is the top priority. The advancement of quantum computers threatens traditional encryption technologies, increasing the risk of unauthorized access and data breaches for these critical data. To protect patient privacy and maintain the reliability of healthcare institutions, the implementation of quantum-resistant encryption technology is essential. 【Use Cases】 * Electronic medical record systems * Telemedicine platforms * Data management in research institutions * Communication of medical devices 【Benefits of Implementation】 * Protection of data from attacks by quantum computers * Maintenance of patient data confidentiality * Strengthening the security of medical information systems * Compliance with regulations

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Quantum-resistant cryptographic IP core for smart grids

Security solutions to protect the data and hardware of smart grids.

In the smart grid industry, ensuring the stability and security of power supply is essential. Particularly, with the advancement of quantum computers, the risk of traditional encryption methods being compromised is increasing. This raises the possibility of unauthorized access to control data of power systems and customer information, which could have serious implications for the entire social infrastructure. Our "Post-Quantum Cryptography IP Core" utilizes algorithms selected by NIST and CNSA to protect data and hardware from quantum computer attacks, thereby supporting the secure operation of smart grids. 【Use Cases】 * Smart meters * Power control systems * Data communication in transmission networks 【Benefits of Implementation】 * Protection from attacks by quantum computers * Improved reliability of power systems * Maintenance of confidentiality for critical data

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Military-grade quantum-resistant cryptographic IP core

Security solutions that protect data and hardware.

In the military field, the protection of confidential information and secure communication are essential. The advancement of quantum computers poses a threat to traditional encryption technologies, making the introduction of quantum-resistant cryptographic techniques an urgent necessity to prevent data leaks and unauthorized access. This product provides a hardware-level security solution that uses algorithms selected by NIST and CNSA to protect data and hardware from attacks by quantum computers. 【Use Cases】 - Encryption of highly confidential communications - Protection of important data - Strengthening the security of military systems 【Benefits of Implementation】 - Reduction of risks associated with decryption by quantum computers - Maintenance of data confidentiality - Improvement of system security levels

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Quantum-resistant cryptographic IP core for IoT devices

Hardware-level solutions to enhance the security of IoT devices.

In the field of IoT device authentication, secure identification of devices and protection of data are essential. With the advancement of quantum computers, traditional encryption methods are under threat, increasing the security risks for IoT devices. This product uses algorithms selected by NIST and CNSA to protect devices and data from quantum computer attacks. 【Use Cases】 - Authentication of IoT devices - Secure data communication - Protection of firmware 【Benefits of Implementation】 - Prevention of device impersonation - Maintenance of data confidentiality - Assurance of long-term security

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[For Educational Institutions] Quantum-Resistant Cryptography IP Core

Hardware-level security solutions to enhance the safety of online exams.

In online examinations at educational institutions, the confidentiality of exam data and the protection of candidates' privacy are essential. With the advancement of quantum computers, the risk of traditional encryption methods being compromised is increasing, making it urgent to implement measures to prevent unauthorized access to and tampering with exam results. Our quantum-resistant cryptographic IP core adopts algorithms selected by NIST and CNSA, protecting exam data and hardware from attacks by quantum computers. 【Use Cases】 - Online exam platforms - Encryption and decryption of exam data - Measures against unauthorized access 【Benefits of Implementation】 - Secure protection of exam data - Deterrence of cheating - Establishment of a reliable exam environment

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[For EC sites] Quantum-resistant encryption IP core

Protecting e-commerce transactions from the threats of quantum computers!

In e-commerce sites, highly confidential information such as customers' credit card information and transaction data is handled. With the advent of quantum computers, the risk of traditional encryption methods being compromised has increased, raising the danger of information leaks and unauthorized use. To achieve secure transactions, the introduction of quantum-resistant cryptography is essential. 【Usage Scenarios】 * Online payment systems * Mobile payment apps 【Benefits of Implementation】 * Ensuring the safety of payment data * Increasing customer trust * Reducing the risk of damage from unauthorized access

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Quantum-resistant cryptographic IP core for credit cards

Protecting credit card information from the threat of quantum computers!

In the credit card industry, highly confidential data such as customer credit card information and transaction history is handled. With the advent of quantum computers, the risk of traditional encryption methods being compromised has increased, raising the danger of payment data leaks and fraudulent use. Therefore, the introduction of quantum-resistant cryptographic technology is essential to ensure secure payment processing. 【Use Cases】 * Online payment systems * POS systems * Mobile payment apps 【Benefits of Implementation】 * Ensuring the safety of payment data * Enhancing customer trust * Reducing the risk of damage from unauthorized access

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Quantum-resistant cryptographic IP core for banks

Protecting remittance data from the threat of quantum computers!

In the banking industry, ensuring the security of remittance data is the most important issue. With the advent of quantum computers, the risk of traditional encryption methods being compromised has increased, heightening the danger of remittance data leakage and misuse. Tampering with remittance data can lead to a loss of trust from customers and potentially cause significant damage. Our quantum-resistant cryptographic IP core enables secure remittance processing, protecting your assets and trust from these risks. 【Use Cases】 * Online remittance systems * ATM networks * Mobile banking apps 【Benefits of Implementation】 * Ensures the security of remittance data * Enhances customer trust * Reduces the risk of damage from unauthorized access

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Quantum-resistant cryptographic IP core for cryptocurrency exchanges

Protecting cryptocurrency assets from the threat of quantum computers!

In cryptocurrency exchanges, the most important challenge is to manage customer assets securely. With the advent of quantum computers, the risk of traditional encryption methods being compromised has increased, raising the danger of unauthorized asset outflows. To achieve secure asset management, the introduction of quantum-resistant cryptographic technology is essential. 【Usage Scenarios】 * Cryptocurrency wallets * Trading platforms * Cold wallets 【Effects of Implementation】 * Ensuring the safety of customer assets * Enhancing the reliability of the exchange * Reducing the risk of asset loss due to unauthorized access

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Quantum-resistant cryptographic IP core for electronic money

Protecting payment data from the threat of quantum computers!

In the electronic money industry, the most important challenge is to securely protect customers' payment information. With the advancement of quantum computers, the risk of traditional encryption methods being compromised has increased, leading to potential damages from fraudulent use and a loss of trust from customers. To achieve secure payment processing, the introduction of quantum-resistant cryptography technology is essential. 【Usage Scenarios】 * Online payment systems * POS systems * Mobile payment apps 【Benefits of Implementation】 * Ensuring the security of payment data * Enhancing reliability from customers * Reducing the risk of damage from unauthorized access

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Quantum-resistant cryptographic IP core for vending machines

Protecting payment data from the threat of quantum computers!

In the vending machine industry, ensuring the security of payment data in remote management systems is crucial. In particular, it is necessary to prevent information leaks due to unauthorized access from remote locations and the tampering of payment data. With the advent of quantum computers, the risk of traditional encryption methods being compromised has increased, making the adoption of quantum-resistant cryptographic technology essential for achieving secure payment processing. 【Usage Scenarios】 * Online payment systems * POS systems * Mobile payment apps 【Benefits of Implementation】 * Ensures the safety of payment data * Increases customer trust * Reduces the risk of damage from unauthorized access

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Quantum-resistant cryptographic IP core for ticket sales

Preventing ticket forgery from the threat of quantum computers!

In the ticket sales industry, fraudulent use of counterfeit tickets has become a significant issue. With the advent of quantum computers, the risk of traditional encryption technologies being compromised has increased, threatening the security of tickets. Therefore, the introduction of quantum-resistant cryptographic technology is essential to achieve secure ticket issuance and management. 【Use Cases】 * Electronic ticket systems * Entrance gate systems * Ticket sales platforms 【Benefits of Implementation】 * Prevention of ticket counterfeiting * Increased trust from customers * Reduction of loss risk due to fraudulent use

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Quantum-resistant cryptographic IP core for point systems

Protecting point systems from the threat of quantum computers!

In a points system, highly confidential data such as customers' personal information and points history is handled. With the advent of quantum computers, the risk of traditional encryption methods being broken is increasing, raising the danger of data leaks and unauthorized use. Therefore, the introduction of quantum-resistant cryptographic technology is essential to achieve secure data protection. 【Usage Scenarios】 * Online points systems * POS systems * Mobile points apps 【Benefits of Implementation】 * Ensures data security * Increases customer trust * Reduces the risk of damage from unauthorized access

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Quantum-resistant cryptographic IP core for supply chains

Protecting supply chain data from the threat of quantum computers!

In the supply chain industry, robust security is required to prevent data tampering and leakage in product tracking assurance. In particular, highly confidential data such as product movement history and quality information are exposed to risks of unauthorized access and decryption by quantum computers. By implementing quantum-resistant cryptography, the safety of data across the entire supply chain can be ensured, achieving reliable tracking assurance. 【Use Cases】 * Product tracking systems * Supply chain management systems * Quality management systems 【Benefits of Implementation】 * Prevention of data tampering * Improved traceability * Increased reliability from customers

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Quantum-resistant cryptographic IP core for medical information systems

Protecting patient information from the threats of quantum computers!

In medical information systems, patient information is highly confidential data, and its leakage can not only violate patient privacy but also significantly undermine the trust in medical institutions. With the advent of quantum computers, the risk of traditional encryption methods being compromised has increased, raising the danger of patient information leakage and misuse. Therefore, the introduction of quantum-resistant cryptographic technology is essential to achieve secure patient information protection. 【Use Cases】 * Electronic medical record systems * Online consultation systems * Patient portal websites 【Benefits of Implementation】 * Ensures the safety of patient information * Enhances the reliability of medical institutions * Reduces the risk of information leakage due to unauthorized access

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Softcore "D16950"

Serial transmission is possible in two modes: UART and FIFO! Built-in 16-bit baud generator.

The D16950 is a soft core universal asynchronous receiver/transmitter (UART) that is functionally the same as the OX16C950. It supports serial transmission in two modes: UART and FIFO. In FIFO mode, an internal FIFO is activated, storing 128 bytes (up to 512) in both the receive and transmit directions (with 3 bits of error data per byte in the RCVR FIFO). Additionally, it features a programmable 16-bit baud generator that can divide the timing reference clock input by a divisor ranging from 1 to (2^16-1). 【Specifications (partial)】 ■ Software compatible with 16450, 16550, 16650, 16750, and 16950 UARTs ■ Configuration features ■ Isolated configurable BAUD clock line ■ Majority logic ■ Supports RS232 and RS485 *For more details, please download the PDF (English version) or feel free to contact us.

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Softcore "D16750"

Built-in 16-bit Bode generator! It is possible to divide the timing reference clock input by a divisor between 1 and (2^16-1).

The "D16750" is a soft core universal asynchronous receiver/transmitter (UART) that is functionally the same as the TL16C750. It supports serial transmission in two modes: UART and FIFO. In FIFO mode, the transmitter and receiver are buffered with 64 (up to 512) bytes of FIFO each, reducing the number of interrupts to the CPU. In UART mode, the receiver and transmitter are double-buffered to eliminate the need for precise synchronization between the CPU and serial data. 【Specifications (partial)】 ■ Software compatible with 16450, 16550, and 16750 UARTs ■ Configuration features ■ Isolated configurable BAUD clock line ■ Majority logic ■ Supports RS232 and RS485 *For more details, please download the PDF (English version) or feel free to contact us.

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Automotive Dabo Riveted Laminated Core

Mass production of automotive motors using ultra-high-speed presses.

In the automotive industry, the miniaturization and high performance of motors are progressing, while high reliability is also required. Particularly for motors used in harsh environments, the strength and precision of the core are crucial factors that influence product performance. Dabo-kashime laminated cores provide a stable supply of high-quality cores through high-speed pressing technology, contributing to the performance enhancement of automotive motors. 【Application Scenarios】 - Core manufacturing for automotive motors - Core manufacturing for hybrid and electric vehicle motors - Core manufacturing for various drive motors 【Benefits of Implementation】 - Stable supply of high-quality cores - Improvement in motor performance - Cost reduction

  • スクリーンショット 2024-11-28 130812.png
  • Processing Contract
  • Core

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Electromagnetic Iron Core EI Core 'SA-4L'

Introducing the electromagnetic iron core (EI core) with a product width of 133.2mm! We also support mold design and manufacturing, with in-house integrated production. This is a high-quality product made using only Japanese materials.

The 'SA-4L' that we handle is an EI core with a product width of 133.2mm. All materials used are domestically sourced! We promise high-quality products as cores for transformers and voltage converters. 【Available Materials】 - G/0.35A (with 35Z155A) - S-14/0.35 (35H360) - S-14/0.5 (50H400) - SS/0.5A (with 50H600A) *Please inquire about stock availability. We also handle various sizes of EI cores and strip cores. Please feel free to contact us when you need assistance. 【Highlights】 ■ We also support mold design and manufacturing, ensuring in-house integrated production. ■ Using Japanese-made materials (Nippon Steel materials, JFE Steel materials). ■ Annealing treatment is also handled by us. *For more details, please refer to the PDF materials or feel free to contact us.

  • Contract manufacturing
  • Processing Contract
  • Core

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