Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/45566
Title: Miniaturized Laser Diode Driver and Microwave Source for Transportable Quantum Sensors
Authors: Li, Zheyi
Kim, SinNyoung
TAVAKOLI DINANI, Reza 
Zhang , Yijing
Eryilmaz, Ilker
Berti, Laurent
NESLADEK, Milos 
Issue Date: 2024
Publisher: IEEE
Source: 2024 IEEE 20Th Asia Pacific Conference on circuits ans systems, Apccas 2024, IEEE, p. 344 -348
Series/Report: IEEE Asia-Pacific Conference on Circuits and Systems
Abstract: The nitrogen-Vacancy (NV) defect center is a promising tool to build magnetic sensors for space applications. This paper presents an ASIC solution of two key blocks in such a sensor: a laser diode driver (LDD) and a microwave (MW) source by a voltage-controlled oscillator (VCO) structure. This application requires that LDD has a wide driving current tuning range and enables a stable LD power insensitive to temperature changes. It also requires that the VCO can generate the MW frequency with three tunable parameters (carrier, modulation and deviation frequency) by a stand-alone design. Designed in a 65-nm technology, the LDD achieves a current tunable from 88.2 mA to 311.3 mA and shows only 0.17 mW deviation at 80 mW working power across a temperature range of 60 degrees C, and the VCO could reach a carrier frequency range of 2.37 GHz to 3.25 GHz with a modulation frequency of up to 5 MHz and a deviation frequency of up to 6 MHz, according to the post-layout simulation. The two blocks now only occupy an area of 0.79 mm(2) and a power consumption of 4.8 mW, which paves the way for a compact, transportable NV magnetic sensor suitable for future space exploration.
Notes: Li, ZY (corresponding author), IMEC, Dept ICLINK, Leuven, Belgium.
Keywords: Quantum magnetic sensor;Nitrogen-Vacancy defect center;laser diode driver;inductance capacitance voltage-controlled oscillator (LC-VCO)
Document URI: http://hdl.handle.net/1942/45566
ISBN: 979-8-3503-7878-8; 979-8-3503-7877-1
DOI: 10.1109/APCCAS62602.2024.10808645
ISI #: 001413634900072
Rights: 2024 IEEE
Category: C1
Type: Proceedings Paper
Appears in Collections:Research publications

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