High-performance readout electronics for next-generation detectors. We design custom ASICs, ultra-low-noise front-ends, and complete data acquisition platforms for frontier science and industry.
PulSensing bridges the gap between scientific breakthrough and industrial-grade instrumentation. We engineer custom chip architectures and integrated readout platforms for teams operating under the most demanding measurement constraints.
Combining timing precision with multi-channel low-power architectures, our systems maximize signal fidelity while minimizing power dissipation and physical footprint across complex multi-channel detectors.
From the first photon to the final byte — a single, low-power signal path engineered for precision.
Converts incident photons or radiation into charge pulses.
Amplifies fast charge signals with sub-nanosecond response and ultra-low noise.
Filters and shapes pulses to optimize SNR and prevent baseline pile-up.
Digitizes energy and time markers with multi-channel low-power architecture.
Streams zero-suppressed high-speed data to downstream DAQ and FPGA systems.
Scalable readout solutions engineered for demanding detection environments.
High-resolution readout electronics for medical imaging systems, lowering costs and enabling early diagnosis of diseases such as cancer.
Radiation-tolerant readout electronics for satellite missions and telescopes observing the farthest cosmos.
Low-power, high temporal-resolution electronics for high-precision detectors in frontier experiments.
High energy-resolution readout electronics for environmental monitoring, security, and material characterization.
PulSensing is built on more than two decades of experience from a team spun out of the Institute of Cosmos Sciences at the University of Barcelona (ICCUB)—experts in ultra-fast, low-power ASICs for demanding applications including space missions and advanced medical imaging.
Our engineers cover the entire development chain, from detector development and CMOS/ASIC design to system integration and high-speed data processing (FPGA/VHDL), ensuring exceptional reliability and performance in every hardware platform we deliver.
Whether you require full-custom ASIC architecture, front-end modules, or complete DAQ integration, our engineering team is ready to assist.