Difference between revisions of "User Manual - NIM Gate and Delay Generator"

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This manual was written as part of a student lab exercise in the KJM-FYS 5920 course at the University of Oslo in the autumn 2010.  
 
This manual was written as part of a student lab exercise in the KJM-FYS 5920 course at the University of Oslo in the autumn 2010.  
  
Quick links: [[KJM-FYS 5920 Lab Exercise 4 - Student Written Equipment User Manuals|KJM-FYS 5920 Lab Exercise 4]] | [[KJM-FYS 5920 @ UiO - Autumn 2010|KJM-FYS 5920 Course]] Main author (student):  
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Quick links: [[KJM-FYS 5920 Lab Exercise 4 - Student Written Equipment User Manuals|KJM-FYS 5920 Lab Exercise 4]] | [[KJM-FYS 5920 @ UiO - Autumn 2010|KJM-FYS 5920 Course]]
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Main author (student): Alexander
  
 
Co-author (student):  
 
Co-author (student):  
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==== User Manual for NIM Gate and Delay Generator  ====
 
==== User Manual for NIM Gate and Delay Generator  ====
  
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[[Image:Lab4GandDgen.png|right]]
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The Gate and Delay Generator is a device that generates variable logic pulses when incoming pulses triggers it. The output pulses can in turn be used as, for example, a gate for linear pulses from a spectroscopy amplifier (SA) entering an ADC/MCA.<br>
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A typical G&amp;D generator similar to the one used for the laboratory exercise is displayed to the right.<br>
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==== Instructions for use as gating signal<br>  ====
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In order to use the G&amp;D generator as a gate device for linear pulses from a SA, proceed as follows:<br>
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*Connect the output from a single channel analyser to the input on the Gate and Delay (G&amp;D) generator.<br>
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*View the output pulses from the spectroscopy amplifier (SA) and the G&amp;D generator on a suitable oscilloscope.<br>
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*Using the dial for delay on the G&amp;D generator, adjust the logical output pulse so that the duration is equal to (or just a bit larger than) the positive component of the SA pulse.<br>
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*Using the dial (or front-panel screwdriver control) for amplitude on the G&amp;D generator, make the logical pulse larger in amplitude than the SA pulse.<br>
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*Connect the output port on the G&amp;D generator to the ADC Gate port on the MCA.<br>
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<br>
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[[Image:Lab4gatedelaysko.PNG|center]]
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<br>
  
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In the above figure, the pink signal is the final, adjusted output pulse from the G&amp;D generator, and the yellow signal is the linear pulse from the Spectroscopy amplifier. If the logical G&amp;D generator pulse is to be used as a gate, the linear pulse from the SA would need to be delayed so the logical pulse can encompass the linear pulse.<br>
  
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[[Category:User_manual]]
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[[Category:User_manual]] [[Category:Nuclear_Instrument_Modules_(NIM)]]

Latest revision as of 08:31, 22 November 2010

This manual was written as part of a student lab exercise in the KJM-FYS 5920 course at the University of Oslo in the autumn 2010.

Quick links: KJM-FYS 5920 Lab Exercise 4 | KJM-FYS 5920 Course

Main author (student): Alexander

Co-author (student):

Lab supervisor: Hilde-Therese Nyhus (PhD-student)

Responsible teacher: Prof. Jon Petter Omtvedt

User Manual for NIM Gate and Delay Generator

Lab4GandDgen.png

The Gate and Delay Generator is a device that generates variable logic pulses when incoming pulses triggers it. The output pulses can in turn be used as, for example, a gate for linear pulses from a spectroscopy amplifier (SA) entering an ADC/MCA.

A typical G&D generator similar to the one used for the laboratory exercise is displayed to the right.

Instructions for use as gating signal

In order to use the G&D generator as a gate device for linear pulses from a SA, proceed as follows:

  • Connect the output from a single channel analyser to the input on the Gate and Delay (G&D) generator.
  • View the output pulses from the spectroscopy amplifier (SA) and the G&D generator on a suitable oscilloscope.
  • Using the dial for delay on the G&D generator, adjust the logical output pulse so that the duration is equal to (or just a bit larger than) the positive component of the SA pulse.
  • Using the dial (or front-panel screwdriver control) for amplitude on the G&D generator, make the logical pulse larger in amplitude than the SA pulse.
  • Connect the output port on the G&D generator to the ADC Gate port on the MCA.


Lab4gatedelaysko.PNG


In the above figure, the pink signal is the final, adjusted output pulse from the G&D generator, and the yellow signal is the linear pulse from the Spectroscopy amplifier. If the logical G&D generator pulse is to be used as a gate, the linear pulse from the SA would need to be delayed so the logical pulse can encompass the linear pulse.