--Oz--'s blog View Details
Posted by --Oz-- | Apr 30, 2020 @ 12:46 AM | 6,371 Views
I been a PC gamer since the early 80's, yep, a clone of the IBM XT, never bought a prebuilt PC till 5 years ago (for my mom). In the last decade I built a couple i5, i7 and have enjoyed them.

Then I came across this video, 8core cpu for $53 and comparing it to the i9-9900K ($500 cpu) with a very nice 5700 video card, it opened my eyes at used server cpu's. You really need to see the results comparing a old used server xeon to a new cpu.
8 Core CPU for $53....!? Will it BOTTLENECK a RX 5700 XT...!? (16 min 9 sec)


I learned a few things,
1. Used Xeon server cpus are low cost, high preformance,
2. chinese mfg have developed motherboards for server cpu with pc atx form factor
3. video games are mostly limited by the video card (relativity)

That video led me to Aliexpress.com, been there with about 40 purchases for DIY electronics items, but being new to xeon server cpu's I was lost compared to desktop cpu's. I did some searching and found Passmark cpu benchmarking and this russian website (google translates it very well), the guy that runs it is good, he loves bang for buck and tells you how it is. Seems quite a few YT reviewer use his info.

Check out the russian website, across the top is the sockets, look at the better sockets, the 2011 and 2011-3,
https://xeon-e5450.ru/
the xeon build part is good comparing different builds/price
https://xeon-e5450.ru/faq-po-sborkam-na-xeon/

Here is the Passmark website, I started using them from last December,...Continue Reading
Posted by --Oz-- | May 21, 2019 @ 12:05 AM | 3,506 Views
Look at the picture, this picture is amazing once you figure out what happened. The "T" in the top left of the picture is the scope trigger point, ball at rest (0 rpm) 25ms later, the ball is at 3.2 million rpm!
Name: 0rpm to 3.2Mrpm in 25ms - 250W.jpg
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I always set the vertical cursors to my current record (in microseconds), so I can see when I beat my personal best.
I usually prepare 10~15 balls for testing that day, one day, I got to this one ball, I guess things were just right (ball/container/angle/settings). What happened was amazing and unbelievable, with about ~250W (18V ~13A). First hall sensor trigger, it gave a ~0.25 second burst, I could hear the power supply give a quick 60Hz hum, sucking some juice, then the scope displayed high 2 million rpms! The major keys it was legit was no vibrations and the ball was still spinning down from momentum. I have been running the scope at 10us/div (since going for 2+ mil), but I decided to get the big picture, zoomed out the scope to 100ms/div and set single trigger and tried again, moved the hall sensor into position and it happened again, a burst of around ~250ms then hall stops triggering the coil. I zoom the scope into the end of the coil drive signal, this time just over 3 million in a quarter second! I stopped to think about it, no Ford transmission vib's, just pure signing spinning ball. Blown away I called a friend to witness what happened, I did it 4 more times, the most impressive time was in the picture, it shows 0 rpm to 3.2 million rpm...Continue Reading
Posted by --Oz-- | Apr 23, 2019 @ 12:50 AM | 3,544 Views
I bought a couple of these for $27 shipped on ebay, turns out they were different than the three I already have working (DPS-800GB). Different connector, so I needed to figure out how to turn them on.

As can be seen in the pictures, the 5th pad on top and bottom need to be shorted to ground and the supply turn on. The big pad closest to the edge is ground on top and bottom, of course next to it is 12V.

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INFO on how to turn on the DPS-1200FB-1 PSU
To turn on, simply connect pins 36 and 33 with a resistor of 500Ω or less, even a short is fine.

Today I played with my pair of DPS-1200FB-1 PSU. So I tried a 1K resistor, it would not turn on, then a 750Ω (the two most common resistances I found people using in my search last night), same, nothing out the main output. Then I grabbed my resistor decade box and connected up with a ammeter.

Open 3.1v 0mA
1k 0.58v 0.5mA
800 0.54v 0.57mA
600 0.34v 0.57mA
500 0.29v 0.59mA
200 0.12v 0.62mA
100 0.06v 0.63mA
0 0.001v 0.65mA

My two power supplies turn on at 500Ω or lower, indicating it needs under 0.3v to trigger the turn on. As can be seen there is very low power and a wire works fine.

When the main output is off, the 12V standby (SB) and the 5V output(s) on the bottom of the connector are on.
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Posted by --Oz-- | Mar 15, 2019 @ 11:15 AM | 6,693 Views
EDIT: 5-21-2019 3,808,800 RPM, 63,480 RPS, 1338mph, 2153kph, 24.3M G's
I have not put the 3.8Mrpm video together yet.

3,348,000 RPM, 55,800 rev per sec, 1176mph, 1893kph, 18 8 Million G's By --Oz-- 5-17-2019b (2 min 43 sec)


2,088,600rpm, 733mph, 7.3 million G's (2 min 38 sec)
...Continue Reading
Posted by --Oz-- | Feb 13, 2019 @ 10:40 PM | 7,502 Views
I bought the M9-R on sale for $34 a pair 6 months ago, I just couldn't pass them up. Even though I did self modded hall gimbals in Jul 2016 and still work perfect, around 20K flights on them.

I wanted to use the short throw on the thro and modify the other gimbal back to normal 60 degree throw, also they will match color. After collecting dust for 6 months, in a couple of minutes looking at it, bingo, simply add four 1.5mm washers under the red ALU plate (see picture), now it has the stock ~60 degree travel like the stock gimbal has.

I took some OTX raw data and photos to compare travel degrees of all four axis. Looks like the raw travel numbers are within reason of the other axis (AIL and YAW) movements (+/-~100). These numbers have a lot to do with how close the sensor is to the magnet (closer gives larger range).

I took some pictures to compare my 1.5mm washer mod to see how close it is to 60 degrees. Roughly its ~1.5 degrees less than the other two axis (AIL & YAW). Of course there is some error in my measurements. I am pretty happy with a first try with 1.5mm thick washer guess.

I did the heat shrink tubing over the thro drag bar and a dab of rc car diff grease, this thro gimbal now feel as smooth as anything I have felt. So far pretty happy with them.