With optical attenuation + x3 amplifier on laser PZT channel + feedback tuning
Temporary recipie for ~ 92kW power in the FP-cavity:
(in the previous scheme, without x3 laser PZT amp, a good lock was achieved for a PDH signal power noise ~ 70 mV rms)
- Alplhanov amplifier ratio : 34%
- Axis 18 position : +0016956 steps
- PID A (for laser/FPC lock) :
input : input a
P = 0.04
I = 0.0005
D = 0.48
Sign : positive
Sampling : fast
filter : off
criterion : input d
upper th. : 10V
lower th. : 0.03V
speed : 100V/s
relock mode : none
off mode : reset
range : 50%
offset : 5V
- PID B (for RF/FPC lock) :
input : input b
P = 1
I = 0.00005
D = 1
Sign : positive
Sampling : mid
filter : off
criterion : input c
upper th. : +0.4V
lower th. : -0.45V
speed : 1V/s
relock mode : none
off mode : reset
range : 50%
offset : 5V
| Ronic Chiche wrote: |
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For ~ 92kW power in the FP-cavity:
- Alplhanov amplifier ratio : 33%
- Axis 18 position : +0003768 steps
- PID A (for laser/FPC lock) :
input : input a
P = 0.1
I = 0.0015
D = 1.5
Sign : positive
Sampling : fast
filter : off
criterion : input d
upper th. : 10V
lower th. : 0.05V
speed : 100V/s
relock mode : none
off mode : hold
range : 50%
offset : 5V
- PID B (for RF/FPC lock) :
input : input b
P = 5
I = 0.0001
D = 1
Sign : negative
Sampling : mid
filter : off
criterion : input c
upper th. : 0.45V
lower th. : -0.45V
speed : 1V/s
relock mode : none
off mode : hold
range : 20%
offset : 5V
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