Difference between revisions of "Digital Event Recorder"

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==Introduction==
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The Digital Event Recorder (DER) is a device for recording timing pulses used for synchronizing several devices and is developed by the [[Technical Support Group]]. The device is based on a Raspberry Pi. The software on the raspberry pi is developed by Günter Windau.
 +
 +
The device has isolated inputs that can register trigger pulses from other devices. The incoming pulses are timestamped and can be used afterwards for synchronization of data collected from different devices. The device has an Ethernet connection and can be instructed and read out by your MATLAB program. The MATLAB software for the device is available in the biofysica repository on [[Gitlab]].
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 +
The synchronization is based on Lab Streaming Layer (LSL). This protocol has a built-in timing facility which is designed to achieve sub-millisecond synchronization on a local network.
 +
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==How to use a DER==
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The DER has an Ethernet connection and should be connected to the local network. The DER makes use of Lab Streaming Layer (LSL) and in the biofysica toolbox there is a Matlab interface for LSL.
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Every DER has a name '''lslderXX''', where XX is the number of the device. Every channel has a name '''Digital Events X''' where X is the number of the channel. The DER creates a separate LSL stream for every channel of the device. Each stream is identified by a type and a name. In this case the type of the stream is '''Digital Events @ lslderXX''' and the name of the stream is '''Digital Events X'''.
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The following code tries to find the LSL stream for the device '''lslder04''' and the channel '''Digital Events 1''':
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<pre>
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lslInfo=lsl_resolver('type=''Digital Events @ lslder04'' and name=''Digital Events 1''');
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eventStream = lsl_istream(lslInfo{1});
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</pre>
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For more info on LSL look [[LabStreamingLayer|here]].
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==2 Channel Mobile Event Recorder==
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A compact Mobile Event Recorder for special use with audio signal onset detection is in development by Günter Windau.
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[[File: Mobile_Event_Recorder.jpg|thumb|Mobile event recorder]]
 
[[File: Mobile_Event_Recorder.jpg|thumb|Mobile event recorder]]
 
==4 Channel Mobile Event Recorder==
 
==4 Channel Mobile Event Recorder==
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[[File:Digital_Event_Recorder_8_channels_(2).jpg|thumb|digital event recorder with open case]]
 
[[File:Digital_Event_Recorder_8_channels_(2).jpg|thumb|digital event recorder with open case]]
  
==Description==
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==8 Channel Event Recorder==
The Digital Event Recorder is a device for recording timing pulses used for synchronizing several devices and is developed by the [[Technical Support Group]]. The device is based on a Raspberry Pi. The software on the raspberry pi is developed by Günter Windau.
 
 
 
The device has isolated inputs that can register trigger pulses from other devices. The incoming pulses are timestamped and can be used afterwards for synchronization of data collected from different devices. The device has an Ethernet connection and can be instructed and read out by your MATLAB program. The MATLAB software for the device is available in the biofysica repository on [[Gitlab]].
 
 
 
The synchronization is based on Lab Streaming Layer (LSL). This protocol has a built-in timing facility which is designed to achieve sub-millisecond synchronization on a local network.
 
 
The 8 channel digital event recorder is a 1U 19" rack version of the device.
 
The 8 channel digital event recorder is a 1U 19" rack version of the device.
  
 
*Synchronization of pulses: jitter < 1 ms.
 
*Synchronization of pulses: jitter < 1 ms.
  
There are 5 devices of this type:
+
There are 5 devices of this type in use in the labs:
 
{| class="wikitable"
 
{| class="wikitable"
 
! Name
 
! Name

Latest revision as of 12:14, 8 February 2024

Introduction

The Digital Event Recorder (DER) is a device for recording timing pulses used for synchronizing several devices and is developed by the Technical Support Group. The device is based on a Raspberry Pi. The software on the raspberry pi is developed by Günter Windau.

The device has isolated inputs that can register trigger pulses from other devices. The incoming pulses are timestamped and can be used afterwards for synchronization of data collected from different devices. The device has an Ethernet connection and can be instructed and read out by your MATLAB program. The MATLAB software for the device is available in the biofysica repository on Gitlab.

The synchronization is based on Lab Streaming Layer (LSL). This protocol has a built-in timing facility which is designed to achieve sub-millisecond synchronization on a local network.

How to use a DER

The DER has an Ethernet connection and should be connected to the local network. The DER makes use of Lab Streaming Layer (LSL) and in the biofysica toolbox there is a Matlab interface for LSL.

Every DER has a name lslderXX, where XX is the number of the device. Every channel has a name Digital Events X where X is the number of the channel. The DER creates a separate LSL stream for every channel of the device. Each stream is identified by a type and a name. In this case the type of the stream is Digital Events @ lslderXX and the name of the stream is Digital Events X.

The following code tries to find the LSL stream for the device lslder04 and the channel Digital Events 1:

lslInfo=lsl_resolver('type=''Digital Events @ lslder04'' and name=''Digital Events 1''');
eventStream = lsl_istream(lslInfo{1});

For more info on LSL look here.

2 Channel Mobile Event Recorder

A compact Mobile Event Recorder for special use with audio signal onset detection is in development by Günter Windau.

Mobile event recorder

4 Channel Mobile Event Recorder

The mobile event recorder is a 4 channel event recorder based on a raspberry Pi 4. The functionality is the same as the standard 19" rack event recorder.

There are 2 devices of this type:

  • LSLDER06
  • LSLDER07
8 channel digital event recorder (rack version)
digital event recorder with open case

8 Channel Event Recorder

The 8 channel digital event recorder is a 1U 19" rack version of the device.

  • Synchronization of pulses: jitter < 1 ms.

There are 5 devices of this type in use in the labs:

Name Location
LSLDER01 Vestibular chair
LSLDER02 Auditory Perception Lab
LSLDER03 Auditory Motion Lab
LSLDER04 NIRS-EEG Lab
LSLDER05 Auditory Sphere Lab