Standard Cell (Generic) Library IP, 10-track, LVT, UMC 90nm SP process
UMC 90nm Low-K SP-LVT Standard Core Cell Library.
- UMC
- 90nm
- SP
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.
Standard Cell (Generic) Library IP, 10-track, LVT, UMC 90nm SP process
UMC 90nm Low-K SP-LVT Standard Core Cell Library.
Standard Cell (MiniLib) Library IP, 7 tracks, UMC 0.18um LL process
UMC 0.18um Logic low leakage process standard Cell Library (mini Library ).
Standard Cell (Generic) Library IP, 9 tracks, UMC 0.13um CIS process
UMC 0.13um CMOS Image Sensor process standard Core Cell Library.
D/A Converter IP, 10 bits, 75MHz, UMC 65nm LL process
3-channel digital-to-Analog converter (Digital-to-Analog converter) with 10-Bit resolution for video application.
D/A Converter IP, 10 bits, 165Msps, UMC 90nm LL process
10-Bit 165MSPS current steering 3-ch Digital-to-Analog converter, UMC 90nm LL Logic(HVT) Low-K process.
PLL (Frequency Synthesizer) IP, Input: 20MHz - 36MHz, Output: 500MHz - 1GHz, UMC 90nm SP process
Input 20M-36MHz, output 500M-1000MHz, frequency synthesizable PLL, UMC 90nm SP/RVT Logic Low-K process.
USB 1.1.OTG PHY IP, OTG, UMC 0.25um Logic process
USB 1.1 On-The-Go transceiver (ECN spec), UMC 0.25um Logic process.
D/A Converter IP, 16 bits, 96Ksps, UMC 0.25um Logic process
16-Bit 96KSPS voltage output stereo-line Digital-to-Analog converter, UMC 0.25um Logic process.
DC-DC IP, Input: 3.3V, Output: 5V/50mA, UMC 0.25um Logic process
Pulse width modulation, boosting voltage from 3.3V to 5V, 50mA driving capability, Ivcca=150uA @ Idrive=0.
SATA II PHY IP, Gen-2, 1 - port, UMC 0.18um G2 process
1.5G/3.0Gbps 1 port Serial ATA PHY and ESATA, UMC 0.18um GII Logic process.
Audio ADDA IP, 6 bits, 4MHz, UMC 0.18um G2 process
2-channel 4MHz 6-Bit ADC & 8-Bit DAC, UMC 0.18um GII Logic process.
A/D Converter IP, 10 bits, 10Msps, UMC 0.18um G2 process
10-Bit 10MSPS Differential Analog-to-Digital converter, UMC 0.18um GII Logic process.
LVDS Transmitter IP, Tx IO, UMC 55nm SP process
0.18um TX PAD, UMC 0.18um Logic RVT-FSG process.
LVDS Rx IO IP, UMC 90nm SP process
0.18UM RX (PAD), UMC 0.18um GII Logic process.
Voltage Detector IP, 4 Levels, UMC 0.18um G2 process
4-level voltage detector for MP3, UMC 0.18um GII Logic process.
Power on Reset IP, Vrr: 1.2V, Vfr: 1.1V, UMC 0.18um LL process
Vrr=1.2V, Vfr=1.1V, corner type, Power on Reset, UMC 0.18um LL process.
Band Gap IP, Input: 1.2V - 4V, VBG=0.615V, UMC 0.18um LL process
0.18um, LL, bandgap, VBG=0.615 at VCCAH=1.2V~4V, UMC 0.18um LL Logic process.
PLL (Frequency Synthesizer) IP, Input: 5MHz - 200MHz, Output: 10MHz - 200MHz, UMC 0.18um G2 process
Input 5M-200MHz, output 10M-200MHz, frequency synthesizable low voltage PLL, UMC 0.18um GII Logic process.
PLL (Frequency Synthesizer) IP, Input: 10MHz - 200MHz, Output: 20MHz - 300MHz, UMC 0.18um G2 process
Input 10M-200MHz, output 20M-300MHz, frequency synthesizable PLL, UMC 0.18um GII Logic process.
PLL (Frequency Synthesizer) IP, Input: 20MHz - 200MHz, Output: 20MHz - 300MHz, UMC 0.18um G2 process
Input 20M-200MHz, output 20M-300MHz, frequency synthesizable PLL, UMC 0.18um GII Logic proces.