2018
DOI: 10.1007/s13369-018-3601-8
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A LP, Very High-CMRR, Wide-Bandwidth FDCCII-Based CMIA Adapted to Both Current and Voltage Inputs

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Cited by 7 publications
(4 citation statements)
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“…The performance summary of the CMIA over temperature range of − 25 °C to 75 °C at ± 1.2 V supply voltage is shown in Table 4. A minimum CMRR of ~ 170 dB is achieved for both current and voltage signals at − 25 °C which is quite comparable to that of the recently reported CMIA designs [14,19,27]. Despite the CMRR magnitude, the voltage/current CMRR 3 dB-BW is less vulnerable to the temperature changes as it remains above 10 kHz/9.5 kHz over the entire temperature range.…”
Section: Process Voltage and Temperature Variations' Influencesupporting
confidence: 73%
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“…The performance summary of the CMIA over temperature range of − 25 °C to 75 °C at ± 1.2 V supply voltage is shown in Table 4. A minimum CMRR of ~ 170 dB is achieved for both current and voltage signals at − 25 °C which is quite comparable to that of the recently reported CMIA designs [14,19,27]. Despite the CMRR magnitude, the voltage/current CMRR 3 dB-BW is less vulnerable to the temperature changes as it remains above 10 kHz/9.5 kHz over the entire temperature range.…”
Section: Process Voltage and Temperature Variations' Influencesupporting
confidence: 73%
“…The current subtracting stage consists of three improved Wilson current mirrors (M 39 -M 56 ) with cascade active loads (M 57 -M 64 ) [27] as it is shown in Fig. 3.…”
Section: Current-mode Instrumentation Amplifier Circuitmentioning
confidence: 99%
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“…The CMIA does not need resistor matching [7]. The details of available IA are included in the reference section, where the following points are observed: ❼ [2], [8], [12], [15], [17], [19] have proposed voltage mode IA, [2], [13], [14], [19], [20], [21] have proposed CMIA, [2], [16], [19] proposed TAM IA, and [2], [9], [19] have proposed TIM-IA.…”
Section: Introductionmentioning
confidence: 99%