Laboratory of Electronics and Bioengineering, ETSI de Telecomunicación, Universidad de Valladolid, Campus Miguel Delibes, Paseo Belén, 15. Valladolid 47011, Spain.
Sensors (Basel). 2013 Sep 27;13(10):13123-42. doi: 10.3390/s131013123.
DC-offset and DC-suppression are key parameters in bioelectric amplifiers. However, specific DC analyses are not often explained. Several factors influence the DC-budget: the programmable gain, the programmable cut-off frequencies for high pass filtering and, the low cut-off values and the capacitor blocking issues involved. A new intermediate stage is proposed to address the DC problem entirely. Two implementations were tested. The stage is composed of a programmable gain amplifier (PGA) with DC-rejection and low output offset. Cut-off frequencies are selectable and values from 0.016 to 31.83 Hz were tested, and the capacitor deblocking is embedded in the design. Hence, this PGA delivers most of the required gain with constant low output offset, notwithstanding the gain or cut-off frequency selected.
直流偏移和直流抑制是生物电放大器的关键参数。然而,具体的直流分析并不经常解释。几个因素影响直流预算:可编程增益、高通滤波的可编程截止频率、低截止值和涉及的电容器阻塞问题。提出了一种新的中间级来完全解决直流问题。测试了两种实现方式。该级由具有直流抑制和低输出失调的可编程增益放大器(PGA)组成。可选择截止频率,测试值为 0.016 至 31.83 Hz,并且设计中嵌入了电容器去耦。因此,无论选择的增益或截止频率如何,这种 PGA 都能提供大部分所需的增益,并且具有恒定的低输出失调。