ELKOMIX135 QUICK MASTER Compact Concrete Batching Plant which is equipped with 4500/3000 l. ELKON twin shaft mixer can reach 120 m vibrated concrete production capacity in an hour by producing 3 m3 concrete in every batch. The concrete plant which has quite high production capacity can also be commissioned quickly and unexpensively due to its folding and modular designed structure.
ELKON engineers aspired to combine the advantages of mobile concrete batching plants along with the easy transportation advantage to overseas by standard containers when designing Quick Master Compact Concrete Batching Plant series. As a consequence, it was achieved to reduce the shipping costs 3-4 times depending on the destination.
Elkomix-135 Quick Master compact concrete batching plant, which is pre-installed and pre-wired in ELKON factories before shipment, can be installed & started up very quickly in the job sites and be ready for concrete production within only 2 days.
Both skip bucket and transfer conveyor option is available for transferring aggregate in Elkomix-135 Quick Master compact concrete batching plant and the plant can be installed on a flat surface for both option.
After realizing I should have used quick master (I have the inspection data sheet) I started over by: entering the reference position counts for all joints from the IDS, setting $REF_DONE to TRUE, $MASTER_DONE to FALSE, moved to the scribe marks, then used quick master and calibrate.
My problem now is that when I jog all the joints to their 0 position, joint 4 is off by about 6.5mm.
Did my use of zero position master affect the reference or encoder counts in any way? Have I effectively rendered the $MASTER_COUNT on the IDS useless?
I realize this is an old post but I am trying to remaster but can't find what I need to in order to jog the robot to the witness marks. I have a SRVO-83 which I have seen before and required remastering. I have a used robot and downloaded my program into it and I am certain it destroyed the old mastering.
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I guess you mean a SRVO-038 alarm. What exactly did you do? Did you restore an AoA backup? Did the error first occur after you have loaded your program? Are there any other alarms? Which controller type and software version are you using?
A SRVO-038 alarm does not necessarily mean that a mastering is required. First I would suggest to jog the robot to the zero position. Then verify the witness marks. If everything is okay you could reset the pulsecoder alarm and power cycle the controller. After that, set the system variable $DMR_GRP[1].$MASTER_DONE to TRUE and calibrate the robot.
You don't need to master the robot when you have a pulse mismatch. Pulse mismatch means the last known position is different. Basically the controller and the robot don't match. This can happen if someone shut the robot off in mid cycle or you loaded a backup sysmast file. Simply reset the PCA set the master done to true. Verify zero by jogging it to zero on the TP
Hello, I have a similar problem with robot calibration. Now, when the torch is rotated in the Tool mode along the rotation axes, the TCP point is shifted by 2-3 mm, although it should be stationary. That I should use Quick Master or Zero Position Master. I know that Zero Position Master has already been done before me. Does it make sense to set all joints by labels and execute SET QUICK MASTER REF?
You could perform a quick test before thinking about mastering the robot. Jog the robot in a straight line in X or Y direction relative to world or to a user frame which is already taught (if there is one). If the TCP deviates from the straight X or Y path then mastering could help. Check the position of the TCP also visual and not only by the position data.
I got 3 alarms for a brand new robot , BLAL , payload configuration not complete and Ref Pos for Quick Mastering Not set. But these alarms were not there last week .
and No programs or parameters changed ever since then. Not sure how it happened all of a sudden. and a blinking alarm sign is also present. Do you guys know what might have happened ?
I tried resetting the RES_PCA 2 times and restart but it didn't work.
We don't have any batteries now, but I ordered it tho. I have the birth certificate of the robot. In case if the battery is dead and if the power went down , I can enter the DMR group numbers manually right ?
The payload configuration notification is normal for a brand new robot. And regarding the Quick Master reference position. You can set a Ref Pos under MENU > SYSTEM > Master/Cal > SET QUICK MASTER REF.
Set a Quick Master reference position (for example all axes at 0) and in case mastering is lost you can simply perform a Quick Mastering. There is no need to manually enter the master counts after a BZAL alarm.
Before we begin, let's take a listen to the difference mastering with Ozone can make for your track. Listening on good-quality headphones will give you the best audio experience when listening to subtle differences in mastering.
Calibrate your playback monitoring to a fixed gain level for mastering. This is more crucial for a multipurpose studio environment, because it trains your ears to develop an internalized compass for both loudness and tonal balance that effectively translates to the outside world.
Master Assistant uses AI to analyze your mix and give you suggestions based on the content and genre of the track. If you are a beginner with regards to mastering, it will provide you with a good starting point from which to work. If you are an experienced mastering engineer, it can be a second set of ears as well as a way to streamline your work.
You have the option of tweaking the Master Assistant parameters on the Assistant screen, or you can go into each module that it is pulling processing from to get a more surgical view and editing capabilities.
As you listen, engage the Gain Match button. It allows you A/B settings with the levels matched so you can bypass the mastering by toggling the Bypass button and hear more clearly what the signal chain is doing.
EQ and dynamics processing are essential tools used to sculpt the overall sonic balance, shape the tonal characteristics, and control the dynamic range of a master, ensuring it sounds polished and cohesive.
You can control if the processing is applied to the stereo mix equally, either the mid or the side, or if the signal is analyzed so the transients are isolated to be processed differently than the more sustained parts of the track.
The transient/sustain feature is new in Ozone 11. These three features (along with separate left/right processing) are available in multiple modules in Ozone, so you can tailor each module to its own needs.
Assistive Vocal Balance is one of the new features in Ozone 11. When your mix is analyzed, if the Assistant thinks the vocal balance is a bit off, it will engage the Vocal Balance slider. This allows you to enhance the vocals in the mix with minimally affecting the rest of the mix. If the vocals are deemed balanced during the analysis process, this slider will be dark.
Now would be a good time to explore other possible techniques such as excitation or reverb. You might even look into automation to further refine your mastering settings for specific portions of the music. As you try out other modules, make sure that the Maximizer remains at the end of your Ozone signal chain.
A new feature in Ozone 11 is Stem Focus, which allows you to isolate a particular stem of music in the mix and apply any Ozone module to that area of the mix, pushing the AI technology involved in the Master Assistant to the limit (pun intended!)
A new feature in Ozone 11 is the Upward Compression option in the Maximizer. It allows you to add in upward, parallel compression to the mix before the IRC Maximizer. It brings up the quiet sections of the mix without reducing gain of the loud sections.
The Codec Preview in Ozone is a nice way to double check how your masters will sound when converted to different audio codecs, such as AAC and MP3 at varying bit rates. You can also solo artifacts that might occur through conversion.
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