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1.1 Schematics
7
1.1.2
Slow servo
Figure 1.6 shows the slow feedback configuration of the
FSC
. A va-
riable gain stage is controlled with the front-panel
SLOW GAIN
knob.
The action of the controller is either a single- or double-integrator
depending on whether
DIP2
is enabled. The slow integrator time
constant is controlled from the front-panel
SLOW INT
knob, which is
labelled in terms of the associated corner frequency.
Double integrator [2]
Slow error
SLOW SERVO
Gain
SLOW GAIN
0v
∫
#1
∫
#2
SLOW OUT
+
LF sweep
LF
SLOW
Integrators
SLOW INT
SLOW INT
Figure 1.6:
Schematic of slow feedback
I
/
I
2
servo. Hexagons are monitored
signals available via the front-panel selector switches.
The purpose of the slow servo is to compensate for long-term drifts
and acoustic perturbations that are undesirable for the fast servo to
respond to. For example, if the fast servo is modulating the laser
current, then such drifts and perturbations can induce mode-hops,
after which the laser cannot be brought back to the lock-point by
the servo. Using a double-integrator ensures that the slow servo
has the dominant response at low frequency.
Summary of Contents for FSC100
Page 1: ...Fast servo controller FSC100 Version 0 1 2 Rev 2 4 hardware ...
Page 4: ...ii Contents ...
Page 14: ...10 Chapter 1 Introduction ...
Page 22: ...18 Chapter 2 Connections and controls ...
Page 36: ...32 Appendix B 115 230 V conversion ...
Page 39: ......