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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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100 Gbit/s IEEE 802.3bj RS Encoder/ Decoder

The Creonic IP cores are the ideal solution for throughputs beyond 10 Gbit/s for FPGA devices and throughputs of up to 100 Gbit/s on state-of-the-art ASIC technologies.

10G Ethernet MAC IP

The 10G Ethernet MAC (Media Access Control) IP Core is a high-performance, configurable solution designed to facilitate seamless and reliable data communication over 10 Gigabit Ethernet networks

10GEDEK (10Gbits/s Ethernet Data Exchange Kit) IP Core

10G Ethernet processor-less stack

10M/100M/1G/10G/25G High capacity Ethernet TSN Switch

The 10M/100M/1G/10G/25G/100G Ethernet Switching IP is an advanced Ethernet Switch IP with an extensive set of QoS features, statistics and Time Sensitive Networking (TSN) capabilities.

1G Deep Buffering Memory Ethernet Switch

make it even shorter12:18 PMClaude responded: Comcores' 1G Deep Buffering Ethernet Switch IP offers external RAM buffering, fine-grained traffic prioritization, and per-port/queue egress shaping, with supp…Comcores' 1G Deep Buffering Ethernet Switch IP offers external RAM buffering, fine-grained traffic prioritization, and per-port/queue egress shaping, with support for MAC learning, VLAN 802.1Q, multicast, and IEEE 1588 transparency

4G LTE/LTE-A CTC

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

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.