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Quality assessment of system for automated multi-node environmental water parameter monitoring.

, , , , and . MIPRO, page 163-167. IEEE, (2019)

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One solution for CMOS precision rectifier., , , and . EWDTS, page 1-4. IEEE Computer Society, (2017)Body effect influence on 0.18µm CMOS ring oscillator performance for IR-UWB pulse generator applications., , , and . MECO, page 170-173. IEEE, (2012)Inverter-based low-noise amplifier topologies for ultra-wideband applications., , , and . MECO, page 192-195. IEEE, (2013)A tunable bandwidth 6th-order active low-pass filter in 0.18 um CMOS technology., and . DDECS, page 1-2. IEEE, (2020)Ultra-low power low-complexity 3-7.5 GHz IR-UWB transmitter with spectrum tunability., , , , , and . IET Circuits Devices Syst., 14 (4): 521-527 (2020)A low power 3.1-7.5 GHz tunable pulse generator for impulse radio UWB., , , and . SISY, page 425-428. IEEE, (2012)A tunable OOK IR-UWB pulse generator in 0.18 µm technology., , , and . MECO, page 188-191. IEEE, (2013)Quality assessment of system for automated multi-node environmental water parameter monitoring., , , , and . MIPRO, page 163-167. IEEE, (2019)A temperature compensated MOSFET-C band-pass filter in 0.35 um CMOS technology., , , and . DDECS, page 1-5. IEEE, (2020)Comparison of Feedback Influence on Ring Oscillator Performance for IR-UWB Pulse Generator in 0.13 μm and 0.18 μm CMOS Technologies., , , , and . DoCEIS, volume 394 of IFIP Advances in Information and Communication Technology, page 603-610. Springer, (2013)