Design & Reuse
5634 IP
1351
10.0
Frac-N PLL - TSMC 28 CLN28HPC+
The programmable Fractional-N divider allows the PLL to lock to an incoming clock source and produce an output clock with a non-integer multiplication...
1352
10.0
Frac-N SSCG PLL - TSMC 6FF
Analog Bits’ low power Fractional-N / SSCG PLL addresses power sensitive designs required for IOT, mobile and other low power applications needing non...
1353
10.0
Frac-N SSCG PLL - TSMC N5
Analog Bits’ low power Fractional-N / SSCG PLL addresses power sensitive designs required for IOT, mobile and other low power applications needing non...
1354
10.0
FracN/SSCG PLL - TSMC CLN4P
Analog Bits’ low power Fractional-N SSCG PLL addresses power sensitive designs required for IOT, mobile and other low power applications needing non-i...
1355
10.0
FracN/SSCG PLL - TSMC CLN5A
Analog Bits’ low power Fractional-N SSCG PLL addresses power sensitive designs required for IOT, mobile and other low power applications needing non-i...
1356
10.0
Fractional-N PLL - TSMC 28 CLN28HPC
The programmable Fractional-N divider allows the PLL to lock to an incoming clock source and produce an output clock with a non-integer multiplication...
1357
10.0
Fractional-N PLL - TSMC CLN16FFC
The programmable Fractional-N divider allows the PLL to lock to an incoming clock source and produce an output clock with a non-integer multiplication...
1358
10.0
ARC EV Processors are fully programmable and configurable IP cores that are optimized for embedded vision applications
Machine vision and deep learning are being embedded in highly integrated SoCs and expanding into high-volume applications such as automotive ADAS, sur...
1359
10.0
ARC Functional Safety Processor Software
Today’s complex automotive applications require robust safety related hardware and software to meet the increasingly stringent automotive safety requi...
1360
10.0
ARC NPX Neural Processing Unit (NPU) IP supports the latest, most complex neural network models and addresses demands for real-time compute with ultra-low power consumption for AI applications
The new Synopsys ARC NPX Neural Processing Unit (NPU) IP family delivers the industry’s highest performance and support for the latest, most complex n...
1361
10.0
ARC VPX DSPs are VLIW/SIMD processors optimized for highly parallel processing with minimal energy and area consumption for a range of embedded workloads
The Synopsys ARC® VPX DSP Family is optimized for the unique power, performance and area (PPA) requirements of embedded workloads such as IoT sensor f...
1362
10.0
Pre-integrated IP blocks with an efficient processor and software in a single subsystem provides a configurable, SoC-ready solution that reduces design and integration effort
As more functionality is integrated into an SoC, it is costly and time consuming to develop and maintain necessary functional blocks that are complex,...
1363
10.0
Process Detector (For DVFS and monitoring process variation), TSMC 16FFC
An embedded process detector circuit which helps Integrated Circuit (IC) developers to address the problem of process variability on low-geometry CMOS...
1364
10.0
Process Detector (For DVFS and monitoring process variation), TSMC N3
An embedded process detector circuit which helps Integrated Circuit (IC) developers to address the problem of process variability on low-geometry CMOS...
1365
10.0
Process Detector (For DVFS and monitoring process variation), TSMC N3EP
An embedded process detector circuit which helps Integrated Circuit (IC) developers to address the problem of process variability on low-geometry CMOS...
1366
10.0
Process Detector (For DVFS and monitoring process variation), TSMC N4P
An embedded process detector circuit which helps Integrated Circuit (IC) developers to address the problem of process variability on low-geometry CMOS...
1367
10.0
Process Detector (For DVFS and monitoring process variation), TSMC N5
An embedded process detector circuit which helps Integrated Circuit (IC) developers to address the problem of process variability on low-geometry CMOS...
1368
10.0
Process Detector (For DVFS and monitoring process variation), TSMC N6
An embedded process detector circuit which helps Integrated Circuit (IC) developers to address the problem of process variability on low-geometry CMOS...
1369
10.0
Process Detector P/N Skew, TSMC N5
An embedded process detector circuit which helps Integrated Circuit (IC) developers to address the problem of process variability on low-geometry CMOS...
1370
10.0
Programmable Low Power V-by-One SERDES - GLOBALFOUNDRIES 65 65G
Analog Bits Programmable SERDES provides a Physical Media Attachment (PMA) Layer capable of signaling at multiple data rates and supports multi-protoc...
1371
10.0
Droop Detector - TSMC CLN2P
Analog Bits’ Droop Detector macro addresses SOC power supply and other voltage droop monitoring needs in a fully integrated easy-to-use macro. The Dro...
1372
10.0
Droop Detector - TSMC CLN3A
Analog Bits’ Droop Detector macro addresses SOC power supply and other voltage droop monitoring needs in a fully integrated easy-to-use macro. The Dro...
1373
10.0
Droop Detector - TSMC CLN3E
Analog Bits’ Droop Detector macro addresses SOC power supply and other voltage droop monitoring needs in a fully integrated easy-to-use macro. The Dro...
1374
10.0
Droop Detector - TSMC CLN3P
Analog Bits’ Droop Detector macro addresses SOC power supply and other voltage droop monitoring needs in a fully integrated easy-to-use macro. The Dro...
1375
10.0
Droop Detector - TSMC CLN4P
Analog Bits’ Droop Detector macro addresses SOC power supply and other voltage droop monitoring needs in a fully integrated easy-to-use macro. The Dro...
1376
10.0
tRoot Fx Hardware Secure Modules: Programmable Root of Trust
Synopsys tRoot™ Hardware Secure Modules (HSMs) with Root of Trust enable connected devices to securely and uniquely identify and authenticate themselv...
1377
10.0
tRoot Vx Hardware Secure Modules
Synopsys IP tRoot™ Hardware Secure Modules (HSMs) with Root of Trust enable connected devices to securely and uniquely identify and authenticate thems...
1378
10.0
Crossbars Interconnect
An interconnect component connects initiators and targets in a system. A single initiator system simply requires a decoder and multiplexor, which are ...
1379
10.0
True Random Number Generator for NIST SP 800-90c
The security strength of many systems and applications is dependent on the quality of random number generators. Many cryptographic operations require ...
1380
10.0
True Random Number Generators
The security strength of many systems and applications is dependent on the quality of random number generators. Many cryptographic operations require ...
1381
10.0
Crystal Oscillator - TSMC 6FF
High end consumer and professional applications require crystals with a minimum number of external components. These applications typically operate un...
1382
10.0
Crystal Oscillator - TSMC N5
High end consumer and professional applications require crystals with a minimum number of external components. These applications typically operate un...
1383
10.0
Crystal Oscillator Pad - TSMC 7FF
High end consumer and professional applications require crystals with a minimum number of external components. These applications typically operate un...
1384
10.0
Crystal-less Oscillator - TSMC 12FFC
Analog Bits Crystal-less low power oscillator addresses a variety of applications that include low power consumer and professional applications that r...
1385
10.0
Crystal-less Oscillator - TSMC CLN16FFC
Analog Bits Crystal-less low power oscillator addresses a variety of applications that include low power consumer and professional applications that r...
1386
10.0
USB 1.1 Digital Controller IP
The Synopsys USB 1.1 Controllers support Full and Low Speed based on USB specification from the USB Implementer Forum. The Synopsys USB 1.1 IP offerin...
1387
10.0
USB 2.0 Digital Controller IP
The Synopsys USB 2.0 Controllers support Hi-Speed (480 Mbps), Full Speed (12 Mbps), and Low Speed (1.5 Mbps) operation based on USB specification from...
1388
10.0
USB 2.0 femtoPHY in GF (22nm) for Automotive Grade 1
The Synopsys IP USB 2.0 femtoPHY provides designers with a complete physical (PHY) layer IP solution for low-power mobile and consumer applications su...
1389
10.0
USB 2.0 femtoPHY in GF (28nm, 22nm, 12nm)
The Synopsys IP USB 2.0 femtoPHY provides designers with a complete physical (PHY) layer IP solution for low-power mobile and consumer applications su...
1390
10.0
USB 2.0 femtoPHY in Samsung (14nm, 11nm, 8nm, 7nm, 5nm, SF4X, SF4A)
The Synopsys IP USB 2.0 femtoPHY provides designers with a complete physical (PHY) layer IP solution for low-power mobile and consumer applications su...
1391
10.0
USB 2.0 femtoPHY in SMIC (40nm, 28nm)
The Synopsys IP USB 2.0 femtoPHY provides designers with a complete physical (PHY) layer IP solution for low-power mobile and consumer applications su...
1392
10.0
USB 2.0 femtoPHY in TSMC (16nm, N7) for Automotive
The Synopsys IP USB 2.0 femtoPHY provides designers with a complete physical (PHY) layer IP solution for low-power mobile and consumer applications su...
1393
10.0
USB 2.0 femtoPHY in TSMC (40nm, 28nm, 22nm, 16nm, 12nm, 10nm, N7, N6, N6C, N5, N3P)
The Synopsys IP USB 2.0 femtoPHY provides designers with a complete physical (PHY) layer IP solution for low-power mobile and consumer applications su...
1394
10.0
USB 2.0 femtoPHY in UMC (28nm, 22nm)
The Synopsys IP USB 2.0 femtoPHY provides designers with a complete physical (PHY) layer IP solution for low-power mobile and consumer applications su...
1395
10.0
USB 2.0 nanoPHY in GF (55nm)
The Synopsys USB 2.0 nanoPHY provides designers with a complete Physical Layer (PHY) IP solution, designed for low-power mobile and consumer applicati...
1396
10.0
USB 2.0 nanoPHY in TSMC (65nm, 55nm, 40nm)
The Synopsys USB 2.0 nanoPHY provides designers with a complete Physical Layer (PHY) IP solution, designed for low-power mobile and consumer applicati...
1397
10.0
USB 2.0 nanoPHY in UMC (65nm)
The Synopsys USB 2.0 nanoPHY provides designers with a complete Physical Layer (PHY) IP solution, designed for low-power mobile and consumer applicati...
1398
10.0
USB 2.0 picoPHY in GF (40nm, 28nm)
The Synopsys USB 2.0 picoPHY provides designers with a complete physical (PHY) layer IP solution, designed for low power mobile and consumer applicati...
1399
10.0
USB 2.0 picoPHY in TSMC (40nm, 28nm)
The Synopsys USB 2.0 picoPHY provides designers with a complete physical (PHY) layer IP solution, designed for low power mobile and consumer applicati...
1400
10.0
USB 2.0 picoPHY in UMC (40nm, 28nm)
The Synopsys USB 2.0 picoPHY provides designers with a complete physical (PHY) layer IP solution, designed for low power mobile and consumer applicati...