12meter filter bank
apr23
filters
Filter#
|
Filter name
|
CFR
MHz
|
FreqRange
|
1
|
straight thru
|
8000
|
no filter
|
2
|
VBFZ-3590 (bandpass)
|
3590
|
2940 - 4240 MHz |
3
|
13CX11-3125-X700S11 (bandpass)
|
3125
|
2775 - 3475 MHz
|
4
|
ZVBP-3260 (bandpass)
|
3260
|
3180 -3340 MHz
|
5
|
11HS-X4.6G/14GS11 (hipass)
|
9300
|
4600 - 20,000
|
6
|
9C11-8600-X1GS11 (bandpass)
|
8625
|
8037 - 9213 MHz |
before FB
|
10L0-X14GS11 (lowpass)
|
7000
|
DC to 14,000
|
-
|
6LMX-X4800S11 (lowpass)
|
2400
|
DC - 4800 MHz (not in)
|
Software
- python program:
- /share/megs/phil/svn/aosoft/p12m/wbrcvr/fb/fbprog.sc
- online tcl function:
- /share/megs/phil/svn/aosoft/p12m/tcl/gen/fb.proc
- gpio
python code link
Felix measured the s-parameters for the filters
in the filter bank on 28mar23 (the old xband filters were not
measured since they are still being used:
There are a set of plots for each set of filters.
The plots contain:
- Each page has the 4 sparameters
- Each color is a different filter. For some sets we have 3
filters. For others there are only 2
- the filter names come from the .s2p filenames.
- For the set with 3 filters they are numbers 1,2,3
- for the sets with 2 filters they are labeled polX,polY.
- Page 1: Measured s-parameters (wideband)
- Page 2: blowup of s-parameters
- The vertical scale is limited to -20 to +2 db
Filter
|
freq range
GHz
|
bandWidth
MHz
|
Plots
|
Notes
|
15 GHz Low pass
|
0-15
|
15,000
|
.ps
.pdf
|
Insertion loss
0 to .4db at 12Ghz
|
5 GHz Low pass
|
0-5
|
5,000
|
.ps
.pdf
|
|
4.5 GHz Hi pass
|
4.5 ->20
|
15,500
|
.ps
.pdf
|
|
3.125 GHz band pass
|
2.750 - 3.496
|
746
|
.ps
.pdf
|
|
3.260 GHz bandpass
|
3.173 - 3.347
|
174
|
.ps
.pdf |
|
3.590 GHz bandpass
|
2.624 - 4.734
|
2100
|
.ps
.pdf
|
|
8.625 Ghz bandpass
|
8.037 - 9.213
|
1176
|
.ps
.pdf
|
filters from old xband system
|
Notes:
- The freq ranges is the 3db points from the center of the
filter
- the 15GHz lowpass will probably be placed in series with the
switchable filters.
- Don't have the xband filters measured yet..
- The xband filters were measured on 1may23
processing: x101/230403/fbfilts2p.pro.
x101/230501/xbfilter_s2p.pro
230414: s-parameters for filter box.
On 14apr23 felix measured the s-parameters for
the filter bank box. He did a separate measurement for each of the
5 (current) filters.
- Port 1 was the filterbank input.
- Port 2 was the filterbank output.
The first set of plots show the s-parameter results for filter
selections 1-5(.ps) (.pdf)
- Each page has the parameters for a single filter selected in
the switch bank
- There are 4 frames on each page
- top: S21 - box gain
- 2nd: S11- reflection from input to box
- 3rd: S12 - gain looking into the box output
- bottom: S12 - reflection when looking into box output.
- The device was scanned 2 to 13.5 GHz
- Black is polX, Red is PolY
- the filter # is the one used to access the filter in the
online datataking.
- Page 1: filter 1 - straight thru path selected
- a cable connects the input to the output switch
- Page 2: filter 2 -2940 to 4240 bandpass filter selected
- Page 3: filter 3 - 2775 to 3475 bandpass filter selected
- This filter has a 5 ghz lowpass filter after it (to remove
out of band feed through)
- Page 4: filter 4 - 3180 to 3340 MHz bandpass filter selected
- this has a 5 GHz low pass filter after it.
- Page 5: 4800 to 1400 MHz hi pass filter selected
- Page 6: The S11 reflections from the straight thru connection.
- Top: S11 measured
- 2nd: acf of S11 showing that the ringing is 1.8
nanoseconds.
- bottom: acf of S11 plotted vs distance
- the x axis is in inches.
- I assumed the velocity is .7*c
- 7.5 inches separates the 2 surfaces causing the reflection
- This ringing was see in all 5 of the filters.
Summary
- The s-parameters for the filter box was were measured.
- A separate measurement was done for each of the 5 installed
filters/cable
- The gain through the box varied from 9db (4-14GHz hipass at
13.4 GHz) to 15 db (straight thru cable at 2 GHz)
- The gains measured thru the box are a few db higher than the
values computed using the single components.
- This might be the 0-14GHz hipass filter in front of the
switch. The schematic shows 2db insertion loss while the
s-parameters for the filter by itself were closer to 0 db.
- When computing the contributions of Tsys for the box, we still
need to use the individual components since we don't have a
separate noise figure measurement for the box at each filter
position.
processing: x101/230414/filterbox_s2p.pro,x101/230501/xbfilter_s2p.pro
12meter_home
home_~phil