MIPI Transmitter CPHY 80Msps~2.5Gsps; DPHY 80Mbps~2.5Gbps ; UMC 28nm HPC process
MIPI Transmitter CPHY 80Msps~2.5Gsps; DPHY 80Mbps~2.5Gbps ; UMC 28nm HPC process
- MIPI D-PHY
- UMC
- 28nm
- HPC
Semiconductor IP cores (Intellectual Property cores) are reusable design blocks used in SoC and ASIC development to accelerate time-to-market and reduce design complexity.
These IP cores span a broad range of technologies, including Analog & Mixed Signal, Compute Acceleration, Graphics & Vision, Interface Connectivity , Memory Interfaces, Security, Wireless, System Peripheral, Embedded Memories, and Foundation Libraries. The catalog covers everything from analog front-ends, data converters, processors, DSPs, AI accelerators, and imaging solutions to high-speed connectivity, memory controllers and PHYs, cryptographic engines, embedded memory macros, standard cell libraries, and wireless communication IP.
This catalog allows you to explore and compare IP cores from leading vendors, based on performance, power, process node compatibility, and application domain.
Whether you are designing for automotive, wireless communication, consumer electronics, or data centers, you can find the right IP solutions for your system requirements.
MIPI Transmitter CPHY 80Msps~2.5Gsps; DPHY 80Mbps~2.5Gbps ; UMC 28nm HPC process
MIPI Transmitter CPHY 80Msps~2.5Gsps; DPHY 80Mbps~2.5Gbps ; UMC 28nm HPC process
MIPI Receiver CPHY 80Msps~2.5Gsps; DPHY 80Mbps~2.5Gbps ; UMC 28nm HPC process_x005F_x000D_
MIPI Receiver CPHY 80Msps~2.5Gsps; DPHY 80Mbps~2.5Gbps ; UMC 28nm HPC process
Power input 1.8v, VBG=0.75V Band-gap, UMC 28nm HPC Logic process
Power input 1.8v, VBG=0.75V Band-gap, UMC 28nm HPC Logic process
Input 1.62V-1.98V, VBG=0.3V BandGap ; UMC 28nm process HPC+ Process
Input 1.62V-1.98V, VBG=0.3V BandGap ; UMC 28nm process HPC+ Process
Input 1.62V-1.98V, VBG=0.3V BandGap ; UMC 28nm process HPC Process
Input 1.62V-1.98V, VBG=0.3V BandGap ; UMC 28nm process HPC Process
Input 1.2V, VBG=0.8V BandGap; UMC 65nm LL/RVT LowK Logic Process_x005F_x000D_ _x005F_x000D_
Input 1.2V, VBG=0.8V BandGap; UMC 65nm LL/RVT LowK Logic Process
Input 2.0V-3.6V, VBG=1.2V Band-gap, UMC 55nm LP/RVT Logic Process
Input 2.0V-3.6V, VBG=1.2V Band-gap, UMC 55nm LP/RVT Logic Process
Input 2.0V-3.6V, VBG=1.2V Band-gap, UMC 55nm eflash LP/RVT Logic Process
Input 2.0V-3.6V, VBG=1.2V Band-gap, UMC 55nm eflash LP/RVT Logic Process
Input 2.5V, VBG=1.23V BandGap; UMC 40nm LP/RVT LowK Logic Process_x005F_x000D_
Input 2.5V, VBG=1.23V BandGap; UMC 40nm LP/RVT LowK Logic Process
Power input 3.3V, VBG=1.204V Band-gap, UMC 55nm eFlash process
Power input 3.3V, VBG=1.204V Band-gap, UMC 55nm eFlash process
FXAFE030HH0L is an Analog Front End IP for image processing applications.
OFDM Analog Front End(AFE) , UMC 55nm LP Low-K Logic Process
OFDM Analog Front End(AFE) , UMC 55nm LP Low-K Logic Process
OFDM Analog Front End(AFE) , UMC 55nm LP Low-K Logic Process
OFDM Analog Front End(AFE) , UMC 55nm LP Low-K Logic Process
OFDM AFE using UMC 55nm eFlash Process
OFDM AFE using UMC 55nm eFlash Process
Analog Front End IP for CMOS image processing applications
FXAFE010HF0A is an Analog Front End IP for CMOS image processing applications.
UMC 40nm high performance mono audio codec with highly integrated analog functionality system
UMC 40nm high performance mono audio codec with integrated analog functionality system
UMC 28nm high performance stereo audio codec with highly integrated analog functionality system
UMC 28nm high performance stereo audio codec with integrated analog functionality system
a 10-bit 1-MSPS 11-to-1 SAR-ADC with 11-channel GPIO integrated based on UMC 55nm eFlash process
a 10-bit 1-MSPS 11-to-1 SAR-ADC with 11-channel GPIO integrated based on UMC 55nm eFlash process
a 12-bit 1MSPS SAR-ADC on UMC 40nm LP, with 10-channel GPIO integrated
a 12-bit 1MSPS SAR-ADC on UMC 40nm LP, with 10-channel GPIO integrated
0.9V/1.8V 9Bits 125MSPS Pipelined ADC; UMC 28nm HPC+, LowK, Logic Process
0.9V/1.8V 9Bits 125MSPS Pipelined ADC; UMC 28nm HPC+, LowK, Logic Process