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Intellectual Property (IP) Digital Signal Processing / AI Artificial Intelligence Error Correction Filters /Transforms Floating Point Modulation Video and Image Processing Interfaces Audio / Video Communication Compute Express Link (CXL) Ethernet High Speed Networking / Security PCI Express (IP) Serial Memory Controllers DMA Flash SDRAM SRAM Soft Embedded Processors RISC V Transceivers & Basic Functions Clocks, PLLs and Resets Simulation, Debug and Verification Transceivers
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4G LTE/LTE-A CTC

Creonic’s LTE/LTE-A IP core is an advanced, customer proven implementation of the standardized 3GPP turbo code.

50G Ethernet FPGA IP

The 50G Ethernet FPGA IP core implements the 25G & 50G Ethernet Specification, Draft 1.4 from the 25 Gigabit Ethernet Consortium and the IEEE 802.3by 25Gb Ethernet draft. The IP core provides standard media access control (MAC), physical coding sublayer (PCS), and PMA functions. The PHY comprises the PCS and PMA.

5G LDPC-V FPGA IP

Low-density parity-check (LDPC) IP helps transmit and receive messages over noisy channels. This IP implements LDPC codes compliant with the 3rd generation partnership project 5G specification.

802.11ax

The 802.11ax (Wi-Fi 6) IP Core is a next-gen wireless solution built for high-throughput, low-latency, and dense networks. Fully compliant with IEEE 802.11ax, it features OFDMA, MU-MIMO, 1024-QAM, and Target Wake Time.

Adjustable Clock

Full standalone hardware only solution of an adjustable Counter Clock

AES - Advanced Encryption Standard Engine

The AES encryption IP core implements hardware Rijndael encoding and decoding in compliance with the NIST Advanced Encryption Standard. It processes 128-bit blocks, and is programmable for 128-, 192-, and 256-bit key lengths. Two architectural versions are available to suit system requirements. The Standard version (AES-S) is more compact, using a 32-bit datapath and requiring 44/52/60 clock cycles for each data block (128/192/256-bit cipher key, respectively). The Fast version (AES-F) achieves higher throughput, using a 128-bit datapath and requiring 11/13/15 clock cycles for each data block. Various cipher modes can be supported (CBC, CFB, CTR, ECB, LRW, and OFB). The core works with a pre-expanded key, or with optional key expansion logic. The AES core is a fully synchronous design and has been evaluated in a variety of technologies. It is available optimized for ASICs or FPGAs, with complete deliverables.

AES-GCM: Authenticated Encrypt/Decrypt Engine

The AES-GCM IP core implements NIST Advanced Encryption Standard (AES) in Galois Counter Mode (GCM). GCM is an authenticate-and-encrypt block cipher mode where a Galois Field (GF) multiplier/accumulator is utilized to generate an authentication tag while CTR (Counter) mode is used to encrypt. The core processes 128-bit blocks and is programmable for 128-, 192-, and 256-bit keys. Four architectural versions are available to suit system requirements. The Standard version (AES-GCM-S), more compact using a 32-bit datapath, requires 44/52/60 clocks for each data block (128/192/256-bit key, respectively). The Fast version (AES-GCM-F) achieves higher throughput using a 128-bit datapath and requires 11/13/15 clocks for each data block depending on key size. For high-throughput applications there are two additional versions. The High Throughput AES-GCM-X can process 128 bits/cycle and the Higher Throughput AES-GCM-X2 can process 256 bits/cycle respectively independent of the key size.

AES-XTS: Storage Encrypt/Decrypt Engine

The AES-XTS encryption IP core implements hardware encryption/decryption for sector-based storage data. It uses the AES block cipher, in compliance with the NIST Advanced Encryption Standard, as a subroutine. The core processes 128 bits per cycle, and is programmable for 128- and 256-bit key lengths. Two architectural versions are available to suit system size and throughput requirements. The High Throughput XTS-X is more compact and can process 128 bits/cycle independent of the key size. The Higher Throughput XTS-X2 can process 256 bits/cycle independent of the key size. Both versions have a 128-bit data path. XTS (XEX-based Tweaked Codebook Mode with Ciphertext Stealing) is a mode of AES that has been specifically designed to encrypt fixed-size data where a possible threat has access to the stored data.

AI Acceleration Infrastructure   

Custom AI NIC, SmartNIC, and high-throughput data-plane design services on Agilex 7 and Agilex 9 for AI cluster and database acceleration.