Mobile QR Code QR CODE

References

1 
J.-S. Lee et al., “An LCD-VCOM-noise resilient mutual-capacitive touch-sensor IC chip with a low-voltage driving signal,” IEEE Sensors Journal, vol. 15, no. 8, pp. 4595-4602, Aug. 2015.DOI
2 
J. Park et al., “A mutual capacitance touch readout IC with 64% reduced-power adiabatic driving over heavily coupled touch screen,” IEEE Journal of Solid-State Circuits, vol. 54, no. 6, pp. 1694-1704, Jun. 2019.DOI
3 
J.-C. Lee et al., “An asynchronous single-ended touch sensing method for Y-OCTA using adaptive TX duty control method,” SID Symposium Digest of Technical Papers, vol. 54, no. 1, pp. 441-444, Jun. 2023.DOI
4 
S.-H. Choi et al., “Implementation of full-panel circuit models for interference estimation between touch and display operation in on-cell touch AMOLED,” SID Symposium Digest of Technical Papers, vol. 53, no. 1, pp. 24-27, Jun. 2022.DOI
5 
H. W. Cho et al., “The mechanism and solution of horizontal line defects by mutual interference of flexible OLED and touch sensor,” SID Symposium Digest of Technical Papers, vol. 51, no. 1, pp. 489-492, Sep. 2020.DOI
6 
J. Lee, H. Kim, J. Ham, and S. Ko, “Robust touch screen readout system to display noise using multireference differential sensing scheme for flexible AMOLED display,” MDPI Sensors, vol. 13, no. 6, pp. 1-22, Jun. 2022.DOI
7 
O.-K. Kwon et al., “Capacitive touch systems with styli for touch sensors: A review,” IEEE Sensors Journal, vol. 18, no. 12, pp. 4832-4846, Apr. 2018.DOI
8 
H. Nam et al., “Review of capacitive touchscreen technologies: Overview, research trends, and machine learning approaches,” MDPI Sensors, vol. 21, no. 14, pp. 1-26, Jul. 2021.DOI
9 
Y.-H. Hwang et al., “An always-on 0.53-to-13.4 mW power-scalable touchscreen controller for ultrathin touchscreen displays with current-mode filter and incremental hybrid ΔΣ ADC,” in Proc. IEEE ESSCIRC, Sep. 2019, pp. 313-316.DOI
10 
J.-E. Park et al., “A noise-immunity-enhanced analog front-end for 36×64 touch-screen controllers with 20-Vpp noise tolerance at 100 kHz,” IEEE Journal of Solid-State Circuits, vol. 54, no. 6, pp. 1694-1704, Jun. 2019.URL
11 
S. Seong et al., “A fully differential direct sampling touch screen readout with a touch vector calibration for ultrathin organic light-emitting diode display,” IEEE Transactions on Industrial Electronics, Early Access.DOI
12 
H. Jang et al., “A 51dB-SNR 120Hz-scan-rate 32×18 segmented-VCOM LCD in-cell touch-display-driver IC with 96-channel compact shunt-sensing self-capacitance analog front-end,” in Proc. IEEE ISSCC, Feb. 2020, pp. 432-434.DOI
13 
J.-S. An et al., “A highly noise-immune capacitive touch sensing system using an adaptive chopper stabilization method,” IEEE Sensors Journal, vol. 17, no. 3, pp. 803-811, Feb. 2017.DOI
14 
S.-H. Park et al., “A 0.26-nJ/node, 400-kHz Tx driving, filtered fully differential readout IC with parasitic RC time delay reduction technique for 65-in 169×97 capacitive-type touch screen panel,” IEEE Journal of Solid-State Circuits, vol. 52, no. 2, pp. 528-542, Feb. 2017.DOI
15 
K.-D. Kim et al., “A fully-differential capacitive touch controller with input common-mode feedback for symmetric display noise cancellation,” in Proc. IEEE SOVC, Jun. 2014, pp.1-2.DOI
16 
M. Miyamoto et al., “A 143×81 mutual-capacitive touch-sensing analog front-end with parallel drive and differential sensing architecture,” IEEE Journal of Solid-State Circuits, vol. 50, no. 1, pp. 335-343, Jan. 2015.URL
17 
“iPhone 15,” Apple, https://www.apple.com/in/iphone-15/specs/ (Accessed Jun 24, 2024)URL
18 
“Galaxy S24 Ultra,” Samsung, https://www.samsung.com/sec/smartphones/galaxy-s24-ultra/specs/ (Accessed Jun 24, 2024)URL
19 
“Video timings calculator,” https://tomverbeure.github.io/video_timings_calculator (Accessed Jun 24, 2024)URL