Low Power Comparator on TSMC 40nm
This Comparator is low power supply voltage operation and low current consumption on T40ULP ESF3.
- TSMC
- 40nm
- ULP
- Available on request
Analog and Mixed-Signal IP cores are essential building blocks in modern SoC and ASIC designs, enabling seamless interaction between analog signals and digital processing.
These IP cores are widely used for data conversion (ADC, DAC), clock generation (PLL, oscillators), power management, and sensors & monitors such PVT monitors.
This catalog allows you to compare analog and mixed-signal IP cores from leading vendors by performance, power consumption, process node compatibility, and application domain.
Whether you are designing for wireless communication, automotive systems, consumer electronics, or industrial IoT, you can find the most suitable IP solutions for your requirements.
Low Power Comparator on TSMC 40nm
This Comparator is low power supply voltage operation and low current consumption on T40ULP ESF3.
High-Speed Comparator on TSMC 40nm
This Comparator is high speed, wide supply voltage range operation on T40ULP ESF3.
Voltage Detector (3ch) on TSMC 40nm
This Voltage Detector is to check power supply level operating at lower power supply voltage and low current consumption on T40ULP ESF3.
Temperature Sensor (with analog output buffer) on TSMC 40nm
The Renesas Temperature Sensor IP including Analog Buffer outputs an analog voltage which corresponds to the detected temperature of LSI on TSMC 40nm
Temperature Sensor IP with Analog Output Buffer (TSMC T28HPC+)
Sensor IP is fabricated using TSMC's T28HPC+ (High-Performance Compact Plus) process technology.
Temperature Sensor (with analog output buffer) on TSMC 22nm
The Renesas Temperature Sensor IP including Analog Buffer outputs an analog voltage which corresponds to the detected temperature of LSI on TSMC 22nm
Temperature Sensor with ADC on TSMC 28nm
The Renesas Temperature Sensor IP including ADC outputs a digital code which corresponds to the detected temperature of LSI.
12-bit, 2Msps, SAR Analog-to-Digital Converter IP (0.9V)
12-bit, 2Msps, successive approximation register (SAR) analog-to-digital converter (A/D) that is fabricated using TSMC's T22ULP
8MHz to 24MHz Crystal Oscillator IP
Crystal (Xtal) Oscillator IP for 8MHz to 24MHz clock generation using TSMC's T22ULP
Crystal (Xtal) oscillator IP for 32kHz clock generation using TSMC's T22ULP
1.056GHz Analog PLL for Spread Spectrum Clock Generator IP
1.056GHz analog phase-locked loop (PLL) IP for a spread spectrum clock generator (SSCG) using TSMC's 40nm Low Power (LP) process technology
1.25GHz Analog PLL for Frequency Multiplying IP
1.25GHz Analog PLL for Frequency Multiplying IP on TSMC 40nm LP
1.68GHz Analog PLL for Skew Adjust IP
1.68GHz Analog PLL for Skew Adjust IP on TSMC 28nm HPM/HPC
1.8GHz Analog PLL for Spread Spectrum Clock Generator IP
1.8GHz Analog PLL for Spread Spectrum Clock Generator IP on TSMC 28nm HPM/HPC
1.4GHz Analog PLL for Skew Adjust IP
1.4GHz Analog PLL for Skew Adjust IP on TSMC's 28nm HPC+
4GHz Analog PLL for Frequency Multiplying IP
Analog-PLL For Frequency Multiplying on TSMC 28nm HPC+
3GHz All-Digital PLL for Spread Spectrum Clock Generator IP
3GHz all-digital analog phase-locked loop (PLL) IP for a spread spectrum clock generator (SSCG) using TSMC's T22ULP
4.1GHz Analog PLL for Frequency Multiplying IP
4.1GHz Analog PLL for Frequency Multiplying IP on TSMC 16nm FF+
6.2GHz Analog PLL for Spread Spectrum Clock Generator IP
6.2GHz analog phase-locked loop (PLL) IP with a spread spectrum clock generator (SSCG) using TSMC's N3E (N3 Enhanced)
2-Channel, 8-Bit, R-String Digital-to-Analog Converter IP (2µA)
Dual-channel, 8-bit, digital-to-analog converter (D/A) IP that is fabricated using TSMC's T40ULP+ESF3