A dynamically matched voltage amplifier for eliminating resistance process errors
A voltage amplifier and dynamic matching technology, applied in improving amplifiers to improve efficiency, improving amplifiers to reduce the harmful effects of internal resistance, and control of amplification, etc., can solve problems such as the inability to guarantee the stability of device matching, and save trimming. The time and process cost required, the circuit structure is simple, and the gain accuracy is guaranteed.
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[0024] The present invention is further described below in conjunction with accompanying drawing and embodiment:
[0025] Such as figure 2 As shown, two resistors R1 and R2 with equal resistance together with amplifier A form a dynamic feedback circuit, and Vout=(1+R2 / R1)Vin, ideally Vout=2Vin.
[0026] In actual production, R1≠R2 due to process mismatch and random matching errors caused by long-time work.
[0027] Suppose R1=(1+x)R0, R2=(1-x)R0, X is the matching error, then:
[0028] exist figure 1 case,
[0029] Vout=(1+R2 / R1)×Vin
[0030] =[1+(1-x) / (1+x)] × Vin
[0031] =2Vin / (1+x)
[0032] ≈2(1-x)Vin x<<1
[0033] Vout is a first order function of the random error x.
[0034] exist figure 2 the case
[0035] Controlled by a digital circuit, when the phase is 1, Vout1=(1+R2 / R1)×Vin;
[0036] When the phase is 2, Vout1=(1+R1 / R2)×Vin.
[0037] Average gain G=(Vout1+Vout2) / 2Vin
[0038] =[2Vin / (1+x)+ 2Vin / (1-x)] / 2Vin
[0039] =1 / (1+x)+ 1 / (1-x)
[0040] =2 / (1-...
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