REPAIRING AND NOT THROWING AWAY

Richtige Fernseher haben Röhren!

Richtige Fernseher haben Röhren!

In Brief: On this site you will find pictures and technical information about Service Modes, Circuit Diagrams, Firmware Update procedure, Disassemble procedure, Universal remote control set-up codes, Troubleshooting and more....

If you go into the profession, you will obtain or have access to a variety of tech tips databases HERE IT IS Master Electronics Repair !.

These are an excellent investment where the saying: 'time-is-money' rules. However, to learn, you need to develop a general troubleshooting approach - a logical, methodical, method of narrowing down the problem. A tech tip database might suggest: 'Replace C536' for a particular symptom. This is good advice for a specific problem on one model. However, what you really want to understand is why C536 was the cause and how to pinpoint the culprit in general even if you don't have a service manual or schematic and your tech tip database doesn't have an entry for your sick TV or VCR.

While schematics are nice, you won't always have them or be able to justify the purchase for a one-of repair. Therefore, in many cases, some reverse engineering will be necessary. The time will be well spent since even if you don't see another instance of the same model in your entire lifetime, you will have learned something in the process that can be applied to other equipment problems.
As always, when you get stuck, checking out a tech-tips database may quickly identify your problem and solution.In that case, you can greatly simplify your troubleshooting or at least confirm a diagnosis before ordering parts.

Happy repairing!
Today, the West is headed for the abyss. For the ultimate fate of our disposable society is for that society itself to be disposed of. And this will happen sooner, rather than later.

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..............The bitterness of poor quality is remembered long after the sweetness of todays funny gadgets low price has faded from memory........ . . . . . .....
Don't forget the past, the end of the world is upon us! Pretty soon it will all turn to dust!

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All posts are presented here for informative, historical and educative purposes as applicable within fair use. NOTHING HERE IS FOR SALE !

Thursday 28 February 2019

TERUMO INFUSION PUMP MODEL STC-508 [MEDICAL ELECTRONICS]

TERUMO INFUSION PUMP MODEL STC-508 [MEDICAL ELECTRONICS]

Self checking functions and error displays



[A] When the unit is turned On, all the LCD, LED and backlight repeat On and OFF three times.  Thereafter, buzzer sounds for 250msec.

[B]     Rom Check

When the unit power is ON sub CPU makes a specified summation check.  When there found an error, [Err 1] indication flickers.  When the unit power is turned ON, main CPU makes a specified summation check.  When there is found an error, [Err 2] indication flickers.

[C]    RAM check.

When the unit power is turned On, the SUB CPU checks read/write performance of RAM in use. If there found an error, [Err 1] indication flickers.  When the unit is turned ON, the main CPU checks the read/write performance of  RAM in use.  If there found an error [Err 2] indication flickers.

[D] Motor Rotation Check.

When the unit is powered ON, with door opened, indication comes on.  The motor is rotated simultaneously with buzzer check.  This confirms the input of motor pulse rotation.
Motor rotation check is also made while starting or during purge.  It counts the motor rotation detection pulse, and makes surveillance whether the speed is maintained within about +/--20% the controlled speed.  If it goes out of this range, error judgment is made.  On error judgment, [Err 3] indication flickers.

[E] Check on circuits of air-in-line detecting part and occlusion part.

When the unit is powered ON, without setting a tube (occlusion situation), when bubble is not detected, error judgment is made).  [Err 4 indication flickers.

[F]     E2-ROM check.

When failed to rite in data to E2-ROM correctly [Err 5] indication flickers.

[G] Out of Control Check.

When the communication is interrupted CPU is judged as having out of control.  When the main CPU detects communication errors (time-out-error) the motor indication flickers.  When the sub CPU detects communication errors (re-try over), the sub CPU outputs out of control detection signal [Err 7] indication flickers.

[H] Key Scanning Check.

When the unit power is turned ON, when some SW key other than the unit power key is pressed simultaneously with the unit power key [Err 8] indication flickers.
[I] Unit SW disconnection detection output.
After 5 seconds of switching On the unit by the sub CPU, surveillance on the unit SW disconnection detection starts.   Signal Input detecting unit SW disconnection is read with 1-minute intervals.  When the unit SW disconnection is detected, [Err 9] indication flickers.

[J] Source power shut down check.


When the unit is turned ON, after confirming the hystresis of shutdown written in E2ROM, when using battery power and battery voltage is low, [batter] indication flickers.  Thereafter, source power goes OFF.

[K] Restoration from [battery Err]

To restore, make connection with AC unit power, or switch On unit power again after recharging the battery to voltage exceeding 9,9VDC.

HOW TO HANDLE THE CASSES OF [ERR]-DROP ERR]


Motor comes to a stop.  Buzzer continues to sound.  Also, external alarm relay gives continuous output.
All the LED display goes OFF, except error indication. (when sub CPU goes out of control, display becomes indefinite)
Each LED for air-in-line occlusion and door open ON.  Each LED for battery/regulator unit power .ow battery, stop, and start and purge goes OFF.  (When sub CPU goes out of control, display becomes indefinite.)
Function of all the operating keys, except unit SW, becomes invalid.  To restore, once switch OFF, then switch On again.

This unit runs on 110/115/120/200/220/230/240VAC, 50Hz line current or on 12Volt DC current.  The unit switches automatically to the internal battery for backup power when line current is not supplied because the power cord has been unplugged, a power failure has occurred, or some other reason.  The battery charges whenever the unit is connected to power source, regardless of whether the power is ON or OFF.