Understanding Output Timings Tab : Différence entre versions

[version en cours de rédaction][version en cours de rédaction]
Ligne 6 : Ligne 6 :
 
|Tags=TB0329, Output, Timings, Efficiency
 
|Tags=TB0329, Output, Timings, Efficiency
 
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<translate>= Output Timings Tab =
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<translate>=Output Timings Tab=
  
  
Ligne 23 : Ligne 23 :
 
<br />{{#annotatedImageLight:Fichier:Output Timings Tab .png|0=1094px|hash=|jsondata=|mediaClass=Image|type=frameless|align=center|src=https://stuga.dokit.app/images/c/c2/Output_Timings_Tab_.png|href=./Fichier:Output Timings Tab .png|resource=./Fichier:Output Timings Tab .png|caption=|size=1094px}}<br />
 
<br />{{#annotatedImageLight:Fichier:Output Timings Tab .png|0=1094px|hash=|jsondata=|mediaClass=Image|type=frameless|align=center|src=https://stuga.dokit.app/images/c/c2/Output_Timings_Tab_.png|href=./Fichier:Output Timings Tab .png|resource=./Fichier:Output Timings Tab .png|caption=|size=1094px}}<br />
  
# Date is selected on the calendar, which updates the data
+
#Date is selected on the calendar, which updates the data
# Top Middle chart shows the overall efficiency – ideally the running % should be as high as possible
+
#Top Middle chart shows the overall efficiency – ideally the running % should be as high as possible
# Top Right chart shows how the running time is broken down into Machining, loading and Waiting for transfer table (or saw outfeed table full – if sensor is fitted). A more efficient operator will keep the loading time lower and have no saw wait time, because the machine is kept loaded and unloaded and running continuously
+
#Top Right chart shows how the running time is broken down into Machining, loading and Waiting for transfer table (or saw outfeed table full – if sensor is fitted). A more efficient operator will keep the loading time lower and have no saw wait time, because the machine is kept loaded and unloaded and running continuously
# Running Time data shows
+
#Running Time data shows
## Time Switched On – hours that the machine was powered up and winMulti running
+
##Time Switched On – hours that the machine was powered up and winMulti running
## Time Running – Total of all seconds that machine classed as running
+
##Time Running – Total of all seconds that machine classed as running
## Time Idle – Time Switched on minus Time Running.
+
##Time Idle – Time Switched on minus Time Running.
# Pieces Cut data shows
+
#Pieces Cut data shows
## Total pieces cut on date
+
##Total pieces cut on date
## Avg Time (Running) – This shows how long each piece takes on average if the idle time is discounted. This is the achievable output rate if the machine was run at 100% efficiency
+
##Avg Time (Running) – This shows how long each piece takes on average if the idle time is discounted. This is the achievable output rate if the machine was run at 100% efficiency
## Avg Time (Overall) – This shows how long each piece takes including all the idle time
+
##Avg Time (Overall) – This shows how long each piece takes including all the idle time
# The Graph shows the efficiency over the course of a 6am to 6pm shift  
+
#The Graph shows the efficiency over the course of a 6am to 6pm shift  
## The graph is displayed in 15 minute chunks, the dark green shows the level of efficiency during that period
+
##The graph is displayed in 15 minute chunks, the dark green shows the level of efficiency during that period
### All dark green = 100% efficiency
+
###All dark green = 100% efficiency
### All Light green shows completely idle
+
###All Light green shows completely idle
### Light green area stops and starts on machine off / on time
+
###Light green area stops and starts on machine off / on time
## The blue line displays the pieces output per minute at that time, scale on left hand side.
+
##The blue line displays the pieces output per minute at that time, scale on left hand side.
  
== Factors Creating Inefficiency ==
+
= Version 6 Software =
 +
Version 6 software has more features{{#annotatedImageLight:Fichier:Understanding Output Timings Tab 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* Keep the consumables rotated
+
'''Slot Analysis'''
** Saw blade sharpening regime
+
<br />
** Cutter change routine
+
==Factors Creating Inefficiency==
** Stock labels always available
+
 
* Keep the machine fed –  
+
*Keep the consumables rotated
** Ensure machine is kept fully loaded
+
**Saw blade sharpening regime
** Use another operator to fetch and unwrap profile
+
**Cutter change routine
** Move profile closer to machine
+
**Stock labels always available
** Keep profiles organised and easy to load
+
*Keep the machine fed –  
** Keep offcuts organised and easy to find
+
**Ensure machine is kept fully loaded
** Use the “Next Batch” feature to overlap batches to ensure no delay from one batch to next
+
**Use another operator to fetch and unwrap profile
* Don’t let the transfer table fill up (flowline only)
+
**Move profile closer to machine
** If the saw is paused, and transfer table full, whole machine will stop
+
**Keep profiles organised and easy to load
** Keep running the saw all the time
+
**Keep offcuts organised and easy to find
** Ensure empty profile trolleys are readily available
+
**Use the “Next Batch” feature to overlap batches to ensure no delay from one batch to next
* Man the machine during breaks
+
*Don’t let the transfer table fill up (flowline only)
** Break times are obvious to see in the graph
+
**If the saw is paused, and transfer table full, whole machine will stop
** It is common that many minutes are also lost either side of a break period
+
**Keep running the saw all the time
* Use the remakes facility with care
+
**Ensure empty profile trolleys are readily available
** Running one or two quick remakes is very inefficient
+
*Man the machine during breaks
* Batch like windows (colour and system) together to reduce offcut creation
+
**Break times are obvious to see in the graph
** Creating offcuts is inefficient
+
**It is common that many minutes are also lost either side of a break period
** Using offcuts is inefficient
+
*Use the remakes facility with care
** Finding and fetching many different colours is inefficient
+
**Running one or two quick remakes is very inefficient
* Consider switching off the profile prompt
+
*Batch like windows (colour and system) together to reduce offcut creation
** Profile prompt is switched on by default, as it is useful for new operators
+
**Creating offcuts is inefficient
** It creates a delay every time the profile or colour is changed over
+
**Using offcuts is inefficient
* Ensure machine is serviced regularly by Stuga Engineers
+
**Finding and fetching many different colours is inefficient
** Cycle time is very much dependent on cylinder speed settings
+
*Consider switching off the profile prompt
** Lubrication is very important
+
**Profile prompt is switched on by default, as it is useful for new operators
** Worn or faulty parts affect performance</translate>
+
**It creates a delay every time the profile or colour is changed over
 +
*Ensure machine is serviced regularly by Stuga Engineers
 +
**Cycle time is very much dependent on cylinder speed settings
 +
**Lubrication is very important
 +
**Worn or faulty parts affect performance</translate>
 
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|Language=en
 
|Language=en

Version du 23 novembre 2020 à 15:14

Auteur avatarGareth Green | Dernière modification 23/11/2020 par Gareth Green en cours de rédaction

The winMulti software contains a system to monitor machine performance and a screen to view the details. It is accessed by tapping the service button, then selecting “Output Timings”.

Output Timings Tab

Every minute that the machine is powered on, it logs how many seconds it is either

•             Machining

•             Loading

•             Waiting for the transfer table

Any seconds “left over” are classed as idle, ie the machine is doing nothing.


In practical terms this is because the machine is stopped for break time, stopped for an alarm, or waiting for the operator to fetch profile. It could simply be that there was not enough work to do, and the operator completed the work in the time allotted.


Output Timings Tab .png


  1. Date is selected on the calendar, which updates the data
  2. Top Middle chart shows the overall efficiency – ideally the running % should be as high as possible
  3. Top Right chart shows how the running time is broken down into Machining, loading and Waiting for transfer table (or saw outfeed table full – if sensor is fitted). A more efficient operator will keep the loading time lower and have no saw wait time, because the machine is kept loaded and unloaded and running continuously
  4. Running Time data shows
    1. Time Switched On – hours that the machine was powered up and winMulti running
    2. Time Running – Total of all seconds that machine classed as running
    3. Time Idle – Time Switched on minus Time Running.
  5. Pieces Cut data shows
    1. Total pieces cut on date
    2. Avg Time (Running) – This shows how long each piece takes on average if the idle time is discounted. This is the achievable output rate if the machine was run at 100% efficiency
    3. Avg Time (Overall) – This shows how long each piece takes including all the idle time
  6. The Graph shows the efficiency over the course of a 6am to 6pm shift
    1. The graph is displayed in 15 minute chunks, the dark green shows the level of efficiency during that period
      1. All dark green = 100% efficiency
      2. All Light green shows completely idle
      3. Light green area stops and starts on machine off / on time
    2. The blue line displays the pieces output per minute at that time, scale on left hand side.

Version 6 Software

Version 6 software has more features

Understanding Output Timings Tab v6.png

Pieces Cut

Slot Analysis

Factors Creating Inefficiency

  • Keep the consumables rotated
    • Saw blade sharpening regime
    • Cutter change routine
    • Stock labels always available
  • Keep the machine fed –
    • Ensure machine is kept fully loaded
    • Use another operator to fetch and unwrap profile
    • Move profile closer to machine
    • Keep profiles organised and easy to load
    • Keep offcuts organised and easy to find
    • Use the “Next Batch” feature to overlap batches to ensure no delay from one batch to next
  • Don’t let the transfer table fill up (flowline only)
    • If the saw is paused, and transfer table full, whole machine will stop
    • Keep running the saw all the time
    • Ensure empty profile trolleys are readily available
  • Man the machine during breaks
    • Break times are obvious to see in the graph
    • It is common that many minutes are also lost either side of a break period
  • Use the remakes facility with care
    • Running one or two quick remakes is very inefficient
  • Batch like windows (colour and system) together to reduce offcut creation
    • Creating offcuts is inefficient
    • Using offcuts is inefficient
    • Finding and fetching many different colours is inefficient
  • Consider switching off the profile prompt
    • Profile prompt is switched on by default, as it is useful for new operators
    • It creates a delay every time the profile or colour is changed over
  • Ensure machine is serviced regularly by Stuga Engineers
    • Cycle time is very much dependent on cylinder speed settings
    • Lubrication is very important
    • Worn or faulty parts affect performance

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