![±3.2V during calibration.](/images/new-backgrounds/15349/15349181x1.webp)
Theory of Operation 4
Detailed Circuit Description
VR105 reduce apparent supply voltage seen by U102. Transistors Q105 and Q106 along with R131/C117 and R132/C118 filter the supply to reduce common mode errors at high frequency.
Capacitor C108 provides ac tuning for the sense amplifier. This capacitor balances most of the parasitic capacitance picked up across the input resistor portion of Z100. Capacitor C109, in parallel, provides fine adjustment of response if needed.
Components L105 and R130 isolate capacitive loads from the output of the sense amplifier to aid in achieving stability. Transistor Q104 is necessary to route the output of the sense amplifier to the 5700A during calibration. The signal routes to the
±15V supply limits. The result is to isolate the multiplexer from the sense amplifier output during normal operation with the JFET switch Q104, which is then also turned on during calibration. This is possible because the output of the sense amplifier is nominally
±3.2V during calibration.
During ac voltage operation, the input of the sense amplifier is either locally driven via K104, or remotely driven via K105 and K109, by the High Voltage Amplifier assembly (A3).
Op amp U103 forms a simple low offset voltage, low input current buffer to isolate the
The buffered
REFERENCE NAME
MCOM
MCOMI
MCOMV
MCOMC
Table
DESTINATION (ASSEMBLY)
High Voltage Sense (A6)
Current (A2)
Reference for high voltage input to calibration circuit, High Voltage Sense (A6) Calibration circuit section of the High Voltage Sense (A6)
The ac calibration circuit is also in the sense amplifier section. This circuit provides an extremely flat ac response for 5725A calibration of the sense amplifier. This flat ac response is made possible by the use of U101, the Fluke rms sensor, and a low- impedance ranging resistor, R103. The value of this resistor is 50 times less than the input resistor within Z100; as a result, the effect of parasitic capacitances is reduced by 2500. A protection circuit made up of CR101, CR102, VR101, and VR102 clamp input voltages.
Op amp U100 is a forward gain block, configured as an integrator with U101. A feedback circuit results, whose output at TP106 is a dc voltage proportional to the rms value of the signal applied to R103 and the input sensing resistor of U101. Resistor R112 provides a simple means of protecting the output half of U101, while CR100 prevents