2021
DOI: 10.1109/ojcas.2021.3123206
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Analog and Mixed Signal Circuit Design Techniques in Flexible Unipolar a-IGZO TFT Technology: Challenges and Recent Trends

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Cited by 15 publications
(8 citation statements)
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“…Additionally, the four main features that are necessary for improved wound healing are presented in Figure 5 . These traditional bandages are ideal as a base for biosensors for medical, clinical and diagnostics applications for multiple reasons; these range from surface compatibility and adherence to the skin for mechanical biosensors and flexible electronics to the thermal management, high absorbency and gas exchange for electrochemical biosensors [ 73 , 74 ]. Table 1 summarizes the advantages and disadvantages of the aforementioned six bandage types, and shows that the desired characteristics of the ideal bandage are present in one or a combination of the following types of bandages.…”
Section: Bandage Designmentioning
confidence: 99%
“…Additionally, the four main features that are necessary for improved wound healing are presented in Figure 5 . These traditional bandages are ideal as a base for biosensors for medical, clinical and diagnostics applications for multiple reasons; these range from surface compatibility and adherence to the skin for mechanical biosensors and flexible electronics to the thermal management, high absorbency and gas exchange for electrochemical biosensors [ 73 , 74 ]. Table 1 summarizes the advantages and disadvantages of the aforementioned six bandage types, and shows that the desired characteristics of the ideal bandage are present in one or a combination of the following types of bandages.…”
Section: Bandage Designmentioning
confidence: 99%
“…This idea was first reported in [12] for a circa 1970s Silicon nMOS only design. However, the stability of the network has not been analyzed but mentioned in [1]. The Pseudo-PMOS load from [2], that analyzed here differs in the implementation of the positivefeedback network and is shown to be inherently stable.…”
Section: Positive-feedbackmentioning
confidence: 99%
“…Amplifier design in amorphous Indium Galium Zinc Oxide (a-IGZO) semiconductor technology presents with its unique set of challenges [1]. While, for example, the performance of an operational transconductance amplifier (OTA), measured by the gain-bandwidth product, is limited by the maximum transconduction g m that the a-IGZO TFT can provide onto a given load capacitance; it is however not the main limiting challenge in amplifier design [2], [1]. The main challenge is achieving high open-loop gain in the opamp is to meet the design specifications when used in practice under negative feedback.…”
Section: Introductionmentioning
confidence: 99%
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