Showing posts with label engine indicator. Show all posts
Showing posts with label engine indicator. Show all posts

Sunday, June 19, 2016

EGT Indicator

Hello! I got a engine EGT indicator from a former 737-300.
This unit is very simple and uses thermocouples as sensors.

The unit...

Brand: Smith Industries
PN: WL202EED4


The electronics analysis...

This is what I got after analyse the boards inside:


Some testing...

Normal operation:


During BITE test:







N2 % RPM Indicator

This time I'm analyzing a N2 RPM indicator from a former 737-300.
This unit is working in a similar way than the N1 indicator that was reviewed in a previous post.

The Unit...

Brand: Smith Industries
PN: WL202EED4


The pinout...

After analyzing the important boards inside, I could take this notes:


Pretty simple to wire it, right?

Test of the unit...

In normal operation should look like this:


During the BITE test:


Applying pulses with a frequency range between 90 Hz and 2.78 KHz, produces this result:

N1 % RPM Indicator

This is another engine instrument which indicates the low pressure compressor speed in percentage of the nominal speed.

The Unit...

Brand: Smith Industries
PN: WL101EED3 


Some insights...

Top picture:


From right:



From bottom:


From left:


Face:


Some mechanics:


How this works...

This instrument needs only a DC power supply between 24V and 28V, and it expects pulse signal where the frequency of this signal will be proportional to the engine rotating speed.
This unit, I guess, works with a magnetic pick up sensor.

A magnetic pickup is essentially a coil wound around a permanently magnetized probe.  When discrete ferromagnetic objects (such as gear teeth, turbine rotor blades, slotted discs, or shafts with keyways) are passed through the probe's magnetic field, the flux density is modulated.  This induces AC voltages in the coil.  One complete cycle of voltage is generated for each object passed.

This is why the instrument has a differential input to measure the pulses.
When the sensor coil is "open" (this means broken) the instruments shutdown the LED display indicating a failure.

Normal operation with the N1 limit bug in manual mode:


Normal operation with N1 limit bug as an external signal (here in zero):


The dashed display indicates that the N1 limit has not been configured yet. 

During the BITE test:


Applying some pulses...

I just have a very simple pulse generator and I'm applying a range of frequencies between 90 Hz and 2.78 KHz.

 





Saturday, June 18, 2016

Fuel Flow/Used Indicator

I have another interesting engine instrument from the 737-300. This is a Flow meter indicator that provides two indications... by default the fuel flow rate and as a second option the consumed fuel.
So basically this instrument integrates the fuel flow rate and stores the consumed fuel by the engine.

Info about this gauge...

Brand: Smith Industries
PN: WL203EED4


Lets take a look inside...

This picture shows very clear the DC motor plus the encoder and the signal conditioning board.


This is a closer look of the mechanics... as it can be seen it is pretty simple!


This picture shows 4 electronic boards.
From top to bottom, the first one is the signal conditioning board; the second one is the processing unit; the third one is the digital display driver and control unit; and the last one is the power supply and DC motor driver.


Some repair...

I currently got two of this units, but it turned out that one of them (the one in the picture) was not working at all, so I had to start looking for the issues.
I must say that it took me a lot of time to got it to work because there were 6 issues in this unit !!!!

I will explain them, just in case you have some similar issues.

First step that I did was to disassemble the back board which implements the input power protection and power lines filtering.


On that board we can see a circuitry like this: 


This is a simple implementation of a regulator plus some line filtering.
So the first issue that I found was that the power transistor (2N5497) was burned out... so I bought a replacement named as BD247C.

But if this input protection is broken the power supply should be checked just in case that it is burned out as well... so that is what I did.

This is the power supply assembly:


After analyzing the complete board I could identify the following components:


So these are the main components on this board that should be verified.
I found out that all of them were in bad condition, for example:

The power MOSFET was presenting a short circuit, so I put this component aside and I applied power again.
Then the power supply controller (SG1524J) was not oscillating and was not providing the proper 5V voltage reference, so that means that this IC was burned out as well.
So I bought a new set of MOSFET plus the controller (Very difficult to find!!!) and still was not working !!
Then I could verify that the voltage monitor integrated circuit (LM324) was not performing properly so I had to replace it.
I also found out that the zener diode that feeds the voltage monitor IC presented short circuit situation, so I had to replace it as well.

After this the device was starting properly, but the display was not working !! but I could see some blinking in the moment of power down the instrument.

So the device has a light senor just right up the number 1 (you will see it in the first picture) that is regulating the intensity of the LED display.

Observed schematic:



Doing back engineering of the signal conditioning board I found out that one resistor was "open", it is marked in the following picture:



Hopefully the colors on the old package still were visible to I could identify that it was an 100K normal resistor.... so I replaced this componente and WORKING AGAIN!!!!

Pinout and other schematics...




Unit powered up...







Oil Temperature Indicator

This post is about an Engine oil temperature gauge.

Some info about the unit...

Brand: The Lewis Engrg. Co.
PN: 162BL804A

Some pictures...


Unfortunately this is another unit that it is sealed, so again I had to cat the housing to be able to get an schematic.
This is a totally analog device, so it wasn't so much effort to figure out the pinout.

The pinout...


Later I will make a curve to see the relation of the position of the pointer with the input current.

Oil Quantity Indicator

Ok.. I got two Engine Oil Quantity Indicators and this is the way to find them:

Brand: Simmonds Precision
PN: 10031-0000-01
Boeing PN: 10-60722-8

This how this part looks like:


This unit works with a power supply of 115V 400Hz and I believe that it is measuring the level of oil using the capacitance method, I'm really not sure at this point.
Let see inside:


As we can see it is a pure analog device.
After doing back engineering I could discover this pinout:


Again I don't have a picture of the oscilloscope when I tested this, but the pins 2 and 3 are 400Hz sinusoidal outputs.
The pin 3 provides a sine wave where the amplitude is proportional to the position of the pointer.
This signal is compared outside of the instrument with the signal provided by the pin 2, which is a fixed amplitude sine wave.
I will upload some videos of the system working.