This analog 2-1 MUX is designed for low speed application.
- SMIC
- 130nm
- G
Analog Front End IP cores integrate the analog signal path that connects sensors, radios, or other real-world inputs to digital processing in modern SoC and ASIC designs.
These IP cores combine conditioning, amplification, filtering, monitoring, and conversion-adjacent functions into a reusable subsystem for mixed-signal SoC integration
This catalog allows you to compare Analog Front End IP cores from leading vendors based on integration level, noise performance, power consumption, and process node compatibility.
Whether you are designing sensor interfaces, medical and industrial systems, wireless receivers, or audio and instrumentation products, you can find the right Analog Front End IP for your application.
This analog 2-1 MUX is designed for low speed application.
This analog 2-1 MUX is designed for low speed application.
The Rambus Multi-Port Front-End Core from Rambus provides a multi-port interface to Rambus Memory Controller Cores.
Low Side Current Sensor with 31x Ampilfer - TSMC 180nm
Low Side Current Sensor with 31x Ampilfer - TSMC 180nm
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.
This analog 2-1 MUX is designed for low speed application.
This analog 2 to 1 MUX is designed for low speed application
Analog Switch, 100 Ohm Typical - HHGrace 110nm
Analog Switch, 100 Ohm Typical - HHGrace 110nm
Analog MUX, Switch Resistance is around 100 Ohm - HHGrace 110nm
Analog MUX, Switch Resistance is around 100 Ohm - HHGrace 110nm