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Core Product List and Ranking from 101 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Jan 07, 2026~Feb 03, 2026
This ranking is based on the number of page views on our site.

Core Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jan 07, 2026~Feb 03, 2026
This ranking is based on the number of page views on our site.

  1. タカモリ Nagano//Manufacturing and processing contract
  2. 富士ソフト インダストリービジネス事業部 Kanagawa//software
  3. 昭和丸筒 Osaka//Paper and pulp
  4. 4 日東商事 Osaka//Trading company/Wholesale
  5. 5 日本継手 東京営業部 Tokyo//Manufacturing and processing contract

Core Product ranking

Last Updated: Aggregation Period:Jan 07, 2026~Feb 03, 2026
This ranking is based on the number of page views on our site.

  1. [Metal Pressing and Processing Examples] Automotive Parts ● IATF16949 Certification Obtained タカモリ
  2. Dual-structure core for reducing roll tendency and shaft diameter conversion (Lotus Core) 昭和丸筒
  3. Core joint C core / CD core 日本継手 東京営業部
  4. 4 Winding core PE core - PE CORE - 日東商事
  5. 5 Motor core by vacuum impregnation and lamination. 山本精機 本社、THAI工場

Core Product List

271~285 item / All 288 items

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IP core "AndesCore N8"

Reduce memory usage and lower customers' silicon costs!

The "AndesCore N8" is an IP core that provides a long-term roadmap for customers requiring an upgrade path from 8-bit cores. With the ability to process both 16-bit and 32-bit instructions, it enables a reduction in the ROM size of program data. While being a computing platform comparable to an 8-bit controller, it achieves the performance of an advanced 32-bit processor. 【Specifications】 ■ Excellent overall performance ■ Vector interrupts for low-latency interrupt handling ■ Small footprint with fewer gates and high code density ■ Faster Flash access and power reduction through FlashFetch technology *For more details, please refer to the related links or feel free to contact us.

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AES-CTR Encryption IP Core

Compatible with OpenSSL's AES-256-CTR encryption mode! Multiple independent data streams.

The "AES-CTR Encryption IP Core" is an IP core for AES-CTR (Counter Mode) encryption that allows users to perform encryption/decryption of packets or data streams. It supports AES-CTR encryption levels of 128 or 256 bits and enables data throughput supporting SATA 6Gbps, SAS 12Gbps, PCIe (NVMe) Gen4 x4 lanes, and Ethernet 10Gbps and 25Gbps. Additionally, it is compatible with OpenSSL's AES-256-CTR encryption mode. 【Specifications】 ■ AES encryption key can be selected from 128 or 256 bits ■ Internal Hamming ECC protection/correction for internal memory ■ Multiple independent data streams ■ Key expansion caching to optimize packet performance ■ Packet queuing for optimal throughput ■ Compatible with OpenSSL's AES-256-CTR encryption mode *For more details, please download the PDF or feel free to contact us.

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Quantum-resistant cryptographic IP core

Providing hardware-level security solutions to protect data and hardware!

We would like to introduce the "Post-Quantum Cryptography IP Core" that we handle. Quantum computers are capable of quickly breaking current asymmetric encryption, putting important data and assets at risk. This solution provides a hardware-level security solution that protects data and hardware from quantum computer attacks by using algorithms selected by NIST and CNSA. 【Specifications (Excerpt)】 ■QSE-IP-86: Standalone engine that enables the acceleration of post-quantum cryptography ■QSE-IP-86-DPA: Standalone engine that provides acceleration of post-quantum cryptography and a DPA-resistant cryptographic accelerator ■CryptoManager RT-634: Programmable root of trust that enables the acceleration of post-quantum cryptography ■CryptoManager RT-664: Programmable root of trust equipped with acceleration of post-quantum cryptography, DPA resistance, and FIA-protected cryptographic accelerator *For more details, please refer to the related links or feel free to contact us.

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Softcore "D16550"

Serial transmission is possible in two modes: UART and FIFO! A programmable 16-bit baud rate generator is built-in.

The "D16550" is a soft core universal asynchronous receiver/transmitter (UART) that is functionally the same as the TL16C550A. It supports serial transmission in two modes: UART and FIFO. In FIFO mode, an internal FIFO is activated, storing 16 bytes (with 3 bits of error data per byte in the RCVR FIFO) in both the receive and transmit directions. Additionally, it features a programmable 16-bit baud rate 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 and 16550 UART ■ 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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Quantum-resistant cryptographic IP core for communication

A security solution to protect secret communications from the threats of quantum computers.

In the telecommunications industry, the risk of decryption by quantum computers threatens the security of highly confidential data communications. Particularly in areas that require advanced security, such as financial transactions, sharing of confidential information, and communications within government agencies, it is essential to protect communication data from attacks by quantum computers. Quantum-resistant cryptographic IP cores provide a hardware-level security solution that uses algorithms selected by NIST and CNSA to protect data and hardware from quantum computer attacks. 【Use Cases】 - Highly confidential data communications - Communications in financial transactions - Communications within government agencies 【Benefits of Implementation】 - Protection from the risk of decryption by quantum computers - Achievement of advanced security - Maintenance of data confidentiality

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Quantum-resistant cryptographic IP core for the manufacturing supply chain.

Security solutions to protect supply chain data and hardware.

In the manufacturing supply chain, highly confidential information such as product design data, manufacturing process data, and customer information is handled. Since this data is shared throughout the supply chain, measures against the risk of decryption by quantum computers are essential. In the event of a data breach, it could lead to a decline in the company's competitiveness or issues related to damages. Our "Quantum-Resistant Cryptography IP Core" uses algorithms selected by NIST and CNSA to protect data and hardware from quantum computer attacks. 【Use Cases】 - Strengthening the security of data transmission and reception in the supply chain - Security measures in manufacturing equipment control systems - Information protection throughout the entire product lifecycle 【Benefits of Implementation】 - Improved security levels across the entire supply chain - Reduced risk of data breaches - Enhanced reliability of the company

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Quantum-resistant encryption IP core for satellite communications

Security solutions that protect data and hardware.

In the satellite communication industry, the confidentiality of data and the security of communications are the top priorities. The advancement of quantum computers threatens current encryption technologies and increases the risk of data interception and tampering in satellite communications. This product 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】 * Satellite data communication * Communication with space stations * Military satellite communication 【Benefits of Implementation】 * Protection from attacks by quantum computers * Secure transmission and reception of confidential data * Assurance of long-term security

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Quantum-resistant cryptographic IP core for retail payments

Protecting payment data from the threat of quantum computers!

In the retail industry's payment systems, highly confidential data such as customers' credit card information and transaction histories are 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 achieve secure payment processing. 【Use Cases】 * 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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Softcore "D16450"

Internal Bo Generator! Fully programmable serial interface characteristics.

The "D16450" is a soft core universal asynchronous receiver/transmitter (UART) that is functionally the same as the TL16C450. It also includes a programmable 16-bit baud generator, which can divide the timing reference clock input by a divisor ranging from 1 to (2^16-1). Supported devices/OS include Intel FPGA, Lattice FPGA, Xilinx FPGA, and ASIC. 【Specifications (partial)】 ■ Software compatible with 16450 UART ■ Configuration features ■ Isolated configurable BAUD clock line ■ Majority logic ■ Addition or removal of standard asynchronous communication bits (start, stop, parity) to serial data *For more details, please download the PDF (English version) or feel free to contact us.

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Softcore "DUART"

To eliminate the need for precise synchronization between the CPU and serial data, the receiver and transmitter are double-buffered.

"DUART" is a soft core of a Universal Asynchronous Receiver/Transmitter (UART). It enables serial transmission in UART mode and is a very simple and small UART IP core available on the market. Additionally, it features a programmable 16-bit baud rate generator that can divide the timing reference clock input by a divisor ranging from 1 to (2^16-1). 【Specifications (partial)】 ■ Majority logic ■ Addition or removal of standard asynchronous communication bits (start, stop, parity) to serial data ■ Supports UART mode ■ Independently controlled transmission, reception, line status, and data set interrupts *For more details, please download the PDF (English version) or feel free to contact us.

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IP core "D32PRO"

To meet the power consumption and size requirements of embedded devices, we are developing alternatives based on ARM Cortex M0/M0+/M1/M3 as much as possible!

The "D32PRO" is an IP core for a 32-bit microcontroller based on the Harvard architecture. It supports dual and multi-core systems, making it suitable for embedded systems that require higher computational performance and system complexity by improving code density. It comes with various peripheral interfaces such as USB, SPI, LCD, HDLC, UART, Ethernet MAC, CAN, LIN, and RTC, allowing for easy system construction. 【Specifications (partial)】 ■ 32-bit Harvard architecture ■ Maximum performance of 1.52/2.67 DMIPS/MHz and 2.59 CoreMarks/MHz ■ Minimum ASIC gate area of 10.6k/6.8k ■ 15 32-bit general-purpose registers ■ ASIC silicon-proven architecture *For more details, please download the PDF (English version) or feel free to contact us.

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IP core "DQ80251"

Completely automated test bench and a complete test set included!

The DQ80251 is an IP core for a 16-bit/32-bit embedded microcontroller that is 100% binary compatible with the 16-bit 80C251 and the 8-bit 80C51 microcontrollers. It features a built-in DoCD-JTAG on-chip debugger and supports debugging software from Keil DK251 and DoCD. The Dhrystone 2.1 benchmark program runs at 75 times the speed of the original 80C51 and 6 times the speed of the original 80C251 under the same frequency conditions. Furthermore, due to its high instruction efficiency, the size of the code compiled for SOURCE mode is approximately half that of the equivalent standard 8051 code. 【Specifications (partial)】 ■ 100% binary compatible with 80C251 ■ Implements BINARY and SOURCE modes ■ Most instructions execute in 1 clock cycle ■ Quad pipeline architecture allows operation at the same frequency, 75 times faster than the original 80C51 and 6 times faster than the 80C251 *For more details, please download the PDF (English version) or feel free to contact us.

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IP core "DQ8051CPU"

You can easily verify the package at each stage of the SoC design flow!

The "DQ8051CPU" is an IP core for a single-chip 8-bit embedded microcontroller designed to operate with both high-speed (on-chip) and low-speed (off-chip) memory. It is 100% binary compatible with the 8051 8-bit microcontroller and is specifically designed with a focus on performance-to-power consumption ratio, featuring an advanced Power Management Unit (PMU). Additionally, it includes a built-in DoCD-JTAG on-chip debugger and supports the Keil μVision development platform as well as standalone DoCD debugging software. 【Specifications (partial)】 ■ 100% compatibility with 8051 ■ Capable of executing 28.40 times faster than the original 80C51 at the same frequency due to a quad-pipeline architecture ■ Up to 26.721 VAX MIPS at 100MHz ■ 24 times faster multiplication ■ 12 times faster division *For more details, please download the PDF (English version) or feel free to contact us.

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5G network slicing and cloud packet core

Publication of a 5-year 5G slicing market forecast in seven industries including agriculture, logistics, transportation, healthcare, and finance.

"5G Network Slicing and Cloud Packet Core" is a market research report by ABI Research. This report provides the current and future market size of the 5G slicing market across seven industries: aggregate, logistics, transportation, media & entertainment, utilities, healthcare, and finance. It also includes current market trends in 5G slicing, future changes, revenue distribution of 5G slicing in network connectivity, management and operations, and value-added services. 【Research Highlights (Excerpt)】 ■ Realistic 5-year forecasts for 5G slicing across seven industries ■ Key highlights and investment initiatives necessary for the extensive commercial rollout of 5G slicing ■ 5G slicing market tracker ■ Cloud core network market tracker For more details on the report: https://www.dri.co.jp/auto/report/abi/230731-5g-network-slicing-and.html

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Proposal for FWP Core Based on FWP Core/Strength Calculation by Tenryu Composite

We are using optical film base materials and functional films, printing films, metal foils, food packaging films, and special paper as roll cores!

【Introduction to FWP Core】 It is mainly used as a roll core for optical film base materials, functional films, printing films, metal foils, food packaging films, and specialty papers. It started over 40 years ago and has become the main product of FWP pipes to this day. The roll core is optimally designed based on unique calculations derived from composite measurements. 【Strength Calculation Method】 ■ Safety Factor for Winding  ┗ Calculate whether the FWP core can withstand the external pressure generated by the winding tension. ■ Radial Displacement  ┗ Calculate the amount of inner diameter displacement of the FWP core due to the external pressure from the winding tension. ■ Maximum Axial Deflection  ┗ Calculate the deflection amount at the center of the FWP core due to the weight of the film. ■ Calculate the strength of the FWP core on the support base. *For more details, please refer to the PDF document or feel free to contact us.

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