In an overload condition, the voltage burden can reach many volts, depending on the input value.
根据输入的不同,在过载的条件下,输入端压降可能达到若干伏。
Since the voltage burden of the electrometer ammeter or picoammeter is less than 1mV, the diodes won't conduct.
由于静电计、安培计或皮安计的输入端压降小于1mV,这两个二极管不会导通。
This reduction is caused by the internal resistance (RM), which creates an additional voltage drop called the voltage burden (VB).
这种电流的降低是由安培计的内阻(RM)引起的,此内阻产生了一个附加的电压降,称为输入端压降(VB)。
The low voltage burden (V1) and corresponding fast rise time are achieved by the high gain op amp, which forces V1 to be nearly zero.
电路的低输入端压降以及相应的快速上升时间是由高增益运算放大器实现的。此运算放大器迫使V1接近于0。
The voltage across RL1 is the picoammeter voltage burden, normally less than one millivolt, so the resulting current will be quite small.
RL1上的电压为皮安计的输入端压降,通常小于1mV,所以产生的电流是相当小的。
When compared with an electrometer, a picoammeter has a similar low voltage burden, similar or faster speed, less sensitivity, and a lower price.
与静电计相比,皮安表具有类似的低输入端压降,相同或稍快的测量速率,较低的电流灵敏度和低廉的价格。
It is worth pointing that the unreasonable compensation capacities and the harsh constraints of nodes 'voltage may increase the calculation burden and affect the solution quality.
值得指出的是,不适当的节点补偿容量范围以及苛刻机械的电压约束会增加计算负担并进而影响解的质量。
It is worth pointing that the unreasonable compensation capacities and the harsh constraints of nodes 'voltage may increase the calculation burden and affect the solution quality.
值得指出的是,不适当的节点补偿容量范围以及苛刻机械的电压约束会增加计算负担并进而影响解的质量。
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