Parameters of the beamline cameras

Last modified by sndueste on 2022/10/07 10:20

FLASH1 overview: 

https://ttfinfo.desy.de/ExpHallelog/data/2022/25/23.06/2022-06-23T17:23:43.jpg

Position / name

Camera type

looks from left or right (in beam dir)

lens type

iris setting

calibration hor (mm/pix)

calibration vert (mm/pix)

Hor/Vert ratio

calibration image

calibration date

comment

AC 1300 30 gm

left

50 mm and 15 mm rings

motorized

0.0157

0.0225


looking at the +- 5 mm marks

2014

BL0M0

AC 1300 30 gm

right







AC 1300 30 gm

left

50 mm with 2 rings

open






AC 1300 30 gm

left







ace1440-73gm

right

25mm lens and 2 1mm rings.

2

BL3: 0.21 *0.7 ; BL1/2: 0.17 *0.7

the 0.7 is the difference between A311 and the aca 1440 with binning 2

BL3: 0.080 ; BL1/2: 0.070*0.7

0.43 (24 deg)

May 2015 / new camera: June 2022

ace1440-73gm

right

50 mm lens right at the window flangue ( diufficult to acess )

1.4

0.091 *0.7 +-the 0.7 is the difference between A311 and the aca 1440 with binning 20.01

0.041 *0.7 +- 0.005

0.5

March 2014, new camera June 2022

the mirror was moved in 1 mm steps horizontal, the vertical calibration is based on a round alignment laser (here a aspect ratio of 2:1 was found)

ace1440-73gm

left ( thus the focussed beam is closer to the camera)

25mm lens with 2 mm rings

1.4

focussed: 0.174 *0.7

unfocussed: 0.22 *0.7


the 0.7 is the difference between A311 and the aca 1440 with binning 2

focussed: 0.078 *0.7

unfocussed: 0.093 *0.7

0.58 (= 30 deg)

May 2015 , new camera June 2022

ace1440-73gm

left

25mm 2 mm rings


BL2: 0.13 *0.7 

BL1: 0.17 *0.7

the 0.7 is the difference between A311 and the aca 1440 with binning 2

BL2: 0.071 *0.7

BL1: 0.080*0.7

0.58

ace1440-73gm

left (only one beampos monitored)

50 mm lens with 12 mm intermedeate rings

2

0.081 *0.7 (incl 30 deg)

the 0.7 is the difference between A311 and the aca 1440 with binning 2

0.037 *0.7

0.52 (= 27 deg screen)


June 2022

exchanged A311 with new ace1440-73gm

decommissioned 2021










decommissioned 2021









FLASH2










FL2_CE_YAG_DET1
reference settingshttp://hasfweb.desy.de/pub/TWiki/TWikiDocGraphics/external-link.gif

AC 1300 30 gm

left

25mm computar

Motorized






FL2_CE_YAG_DET2
reference settingshttp://hasfweb.desy.de/pub/TWiki/TWikiDocGraphics/external-link.gif

AC 1300 30 gm

left

25mm computar

motorized

0.041 (with binning2)

0.053 (with binning2)


May2014


FL2_CE_YAG_DET3
reference settingshttp://hasfweb.desy.de/pub/TWiki/TWikiDocGraphics/external-link.gif









FL2_CE_YAG_DET4
reference settingshttp://hasfweb.desy.de/pub/TWiki/TWikiDocGraphics/external-link.gif










AC 1300 30 gm

left

16mm computar + 2x 1 mm intermedeate Rings

motorized

0.13 (with binning2)

0.062 (with binning2)

0.56 = 30deg

May2015


AC 1300 30 gm

left

16mm computar + 2x 1 mm intermedeate Rings

motorized

0.10 (with binning2)

0.05 (with binning2)

0.52 = 30deg

May2015


FL2_SCR2

AC 1300 30 gm

left

16mm computar + 2x 1 mm intermedeate Rings

motorized

0.10 (with binning2)

0.05 (with binning2)

0.50 = 30deg

May2015


































































FL24_PINHOLE_A
reference settingshttp://hasfweb.desy.de/pub/TWiki/TWikiDocGraphics/external-link.gif









FL24_PINHOLE_B


















Important calibration Things

Calibration procedure

  • Calibration with marks / holes
    • first the size in pixel of a structure of known size is determined. (be careful images saved as PNG may have a different pixel size as the original image !!)
    • The Vertical calib factor can be determined directly
    • The hor calib factor hat to take into account that the beam on the screen is larger due to the projection. So the calibration factor is larger for the horizontal direction in contrast to the vertical. this gives the angle of the screen in respect to the camera Tan = projection / beam. for the beam one can use the vertical size ( for round objects / beams). This gives the calibration for objects on the screen. However the Beam is projected on the screen and is larrger than the beam itself. and as second step one has to include the projection of the beam onto the screen with the factor Cos(screen angle)
    • for our 30 deg screns this is: calib(for Beamprofiles) = calib(with objects on the screen) / Cos(screen angle) = calib(with objects on the screen) * 1.15
    • for illustration:
    • Clipboard01blcamera.jpg


Distance Focussing mirror to Screen.

For BL2 and 3 the distance of the screen is about 55 cm from middle of the ellipsoid to the screen.


Screen dimensions

Height: 40 mm
Large holes: 2 mm diameter
Small holes: 1 mm diameter

distance of the large holes vertical: 10 mm
distance of the large and the small hole horizontal: 5 mm
distance of the hole groups horizontal: 23 mm


  • Beamline_screens.jpg:
  • Beamline_screens.jpg

There is also an older Version with only 3 holes. there the diameter is also 2 mm and the distance between the holes is 23 mm