12 bit 20KSPS SAR ADC with optional temperature sensor
The ShortLink 12 bit Successive Approximation (SAR) ADC 'SL180_12bSARADC_1' is a mixed-signal ADC IP.
- 12 Bit
Explore data converter IP cores for mixed-signal SoC, ASIC, and FPGA designs. This category includes a broad range of ADC IP, DAC IP, and Audio Codec IP cores used to bridge the analog and digital domains in embedded, industrial, automotive, consumer, and communications applications.
Data converter intellectual property is essential when a chip needs to sense, digitize, generate, or reconstruct real-world signals. These semiconductor IP blocks are commonly used in sensor interfaces, audio systems, control loops, wireless transceivers, instrumentation, edge AI devices, and power-sensitive embedded platforms.
Browse this category to compare analog and mixed-signal IP by architecture, resolution, sampling rate, power consumption, interface support, process compatibility, and application fit. Whether you need precision conversion, high-speed signal acquisition, or integrated audio conversion, this directory helps you identify the right data converter IP core for your next design.
12 bit 20KSPS SAR ADC with optional temperature sensor
The ShortLink 12 bit Successive Approximation (SAR) ADC 'SL180_12bSARADC_1' is a mixed-signal ADC IP.
IP
Loop Filter, Tunable BW, Embedded 5bit ADC/DAC, Loop BW=200kHz - STMicroelectronics 65nm
Loop Filter, Tunable BW, Embedded 5bit ADC/DAC, Loop BW=200kHz - STMicroelectronics 65nm
Resistive DAC, 5b - STMicroelectronics 65nm
Resistive DAC, 5b - STMicroelectronics 65nm
Capacitive DACs, 17bit (1d+8b+8b) - XFAB 180nm
Capacitive DACs, 17bit (1d+8b+8b) - XFAB 180nm
Capacitive DACs, 16bit (1d+7b+8b) - XFAB 180nm
Capacitive DACs, 16bit (1d+7b+8b) - XFAB 180nm
SAR ADC with RDAC, 5b - STMicroelectronics 65nm
SAR ADC with RDAC, 5b - STMicroelectronics 65nm
Analog-to-Digital Converter, 17bit SAR - XFAB 180nm
Analog-to-Digital Converter, 17bit SAR - XFAB 180nm
This IP is a successive–approximation-register (SAR) type analog-to-digital converter (ADC), which consists of a 16-channel input…
12 bit 1MSPS R-2R DAC; UMC 55nm eFlash process
12 bit 1MSPS R-2R DAC; UMC 55nm eFlash process
12bits 1MHz Voltage output R-2R D/A Converter; UMC 55nm SP-RVT process
12bits 1MHz Voltage output R-2R D/A Converter; UMC 55nm SP-RVT process
10bits 1MHz R-2R D/A Converter with rail to rail voltage output ; UMC 55nm ULP process
10bits 1MHz R-2R D/A Converter with rail to rail voltage output ; UMC 55nm ULP process
10bits 1MHz R-2R D/A Converter with rail to rail voltage output ; UMC 55nm eFlash (SST) process
10bits 1MHz R-2R D/A Converter with rail to rail voltage output ; UMC 55nm eFlash (SST) process
10bit 250MSPS Current-steering Video D/A Converter; UMC 0.11um HS/FSG Logic Process
10bit 250MSPS Current-steering Video D/A Converter; UMC 0.11um HS/FSG Logic Process
10bit 150MSPS 3-ch Video DAC,UMC 28nm HPC process
10bit 150MSPS 3-ch Video DAC,UMC 28nm HPC process
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