CES ANALYZERS ((131-9(A))) - DESCRIPTION AND OPERATION
__________________________________________________
1. General
_______ The Electronic Control Box (ECB) examines the APU faults and the APU life (performance) data. Software algorithms within the ECB monitor the faults and the life data for indication and memorization. The analysis of the APU data is divided into two main parts:
-
APU life data,
-
APU fault data.
The APU life data is used to monitor the health and usage statistic of the
APU. The APU fault data is used to support trouble shooting on the APU.
The results of the APU data analysis are available on the Multipurpose
Control and Display Unit (MCDU) via the Centralized Fault Data System
(CFDS).
2. Component Location
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(Ref. Fig. 001)
-------------------------------------------------------------------------------FIN | FUNCTIONAL DESIGNATION | PANEL|ZONE|ACCESS | ATA
| | | | DOOR | REF. -------------------------------------------------------------------------------59KD ELECTRONIC CONTROL BOX (ECB) 152 827 49-61-34
DATA MEMORY MODULE (DMM) 315 315AL 49-73-51
3. System Description
__________________
(Ref. Fig. 002)
A. APU Life Data The APU life data is associated physically with the related APU by the Data Memory Module (DMM). The DMM is a nonvolatile memory device and is installed on the APU. It keeps the data about the APU health monitoring and the APU life usage. The DMM uses an Electrical Erasable Read-only-Memory (EEPROM) to store the information. During the APU start procedure, the ECB reads the actual DMM data and stores it in its memory. The data will be updated in the ECB during the APU operation. During the APU shutdown (engine rolldown) the ECB transmits the updated data to the DMM and the old database is enlarged with the new data. The database of the DMM stores 126 different parameters, such as:
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APU serial and model number,
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APU operating hours and starts,
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APU accumulated HOT time,
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APU accumulated shutdowns.
etc. The DMM provides this data via the ARINC 429 data bus to the CFDS. Access to this data is through the 'SERVICE DATA' page of the APU menu.
R EFF : 001-049, 101-105, 107-107, 151-199, 49-73-00Page 1 201-210, Config-2 Aug 01/05
CES
Analyzers - Component Location Figure 001 (SHEET 1)
R EFF : 001-049, 101-105, 107-107, 151-199, 49-73-00Page 2 201-210, Config-2 Aug 01/05
CES
Analyzers - Component Location Figure 001 (SHEET 2)
R EFF : 001-049, 101-105, 107-107, 151-199, 49-73-00Page 3 201-210, Config-2 Aug 01/05
CES
Analyzers - Block Diagram
Figure 002
CES
B. APU Fault Data
The Built-In Test Equipment (BITE) software of the ECB gives:
-Fault detection,
-Equipment protection,
-Failure information.
The BITE uses input from the same hardware devices and sensors already
used for APU control and operation. This ensures a safe and reliable
operation of the APU. When the BITE detects a failed device or an
operational fault, the ECB stores the failure in the BITE fault memory.
The BITE of the ECB operates in three modes:
-Power Up Test (PUT),
-In Operation Test (IOT),
-Self Test (SET).
-Ground Scanning
PUT
The PUT is an automatic system self-test which is initiated when the ECB
has finished its initialization and the APU speed (N) is less than 7
%rpm.
IOT
The IOT tests automatically those LRUs which have to be tested during APU
operation.
SET
The SET is similar to the PUT, but has to be called up via a CFDS menu
page.
Dependant on the faults the ECB either prevents an APU start or shuts down the APU or operates the APU with certain default operating values. The CFDS gives access to the fault data via the MCDU.
4. Power Supply____________ (Ref. 49-61-00).
5. Interface_________
A. Aircraft Digital Interface The ECB communicates to other aircraft systems via three seperate LOW SPEED ARINC 429 buses.
(1)
ARINC 429 Input from the CFDS The ECB uses this bus to receive specified data from the CFDS with applicable ARINC lables.
(2)
ARINC 429 Output to the CFDS
The ECB uses this bus to transmit data to the
-CFDS
-SDAC
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