30-41-00
ALL ú ú 01 Page 1 ú Jul 12/99
BOEING PROPRIETARY - Copyright (C) - Unpublished Work - See title page for details.
A
737-300/400/500MAINTENANCE MANUAL
NO. 4 SEE A
NO. 5 NO. 4
WINDOW NO. 5
THERMAL
SWITCH
NO. 3 SIDE (UNHEATED) NO. 2 SIDE WINDOW HEAT SENSORS NO. 1 FWD NO. 2 SIDE WINDOW HEAT SENSORS NO. 3 SIDE (UNHEATED)
LEFT HAND WINDOWS RIGHT HAND WINDOWS
OVERHEAT A A OVERHEAT A OVERHEAT A OVERHEAT
ON G ON G ON G ON G
OFF SIDE L FWD OVHT WINDOW HEAT FWD OFF R SIDE
ON PWR TEST ON
A
WINDOW HEAT CONTROL UNITS (4 PLACES) SEE B M323 (RIGHT FRONT) M322 (LEFT SIDE) M321 (LEFT FRONT) M320 (RIGHT SIDE) DISCONNECT PANEL
E3-3 ELECTRICAL
SHELF FWD TERMINAL STRIP
(4 PLACES)
B
Control Cabin Window Anti-Icing System Equipment Location
Figure 1
EFFECTIVITYùùùùùùùùùùùùùùùùùùùùùùùùùùùùùù. ú
30-41-00
ALL ú ú 01 Page 2 ú Mar 15/95
BOEING PROPRIETARY - Copyright (C) - Unpublished Work - See title page for details.
A
737-300/400/500MAINTENANCE MANUAL
C. When the system is first energized, a ramp function in the heat control unit causes the power delivered to the No. 1 and No. 2 windows to increase gradually from zero to full power in approximately 3 minutes, unless it is controlled at a lesser level by the window reaching control temperature before the ramp time runs out. This reduces the thermal shock to the pane when the power is applied to a cold window. A power interruption of five seconds or more will cause the ramp function to start over from zero, while for lesser interruptions, the ramp will start over a fraction that is proportional to the time off. The window heat sensor provides a temperature control signal to the heat control unit which in turn modulates the amount of power to the window to maintain the window at the required operating temperature. The power indicating light will be on when power is being supplied to the window. If an overheat condition is detected, the heat control unit will cut off power to the windows, turn off the power indicating light, and turn on the overheat indicating light and the master caution and anti-ice lights of the master caution system (Ref Chapter 33, Master Warning and Caution Lights). While the system is in operation, the heat control unit may be functionally tested by the use of the system test switch. Holding the test switch in the POWER position will force the control unit to supply power to the window and turn on the power indicating light. If the operational confidence check is performed under conditions where the window temperature is within the overheat cutoff range, whether by outside environment or by excessively long testing, an overheat cutoff will occur. An overheat condition can be simulated by holding the test switch in the OVERHEAT position. The system is returned to normal by momentarily placing the control switch in the OFF position. The temperature of the No. 4 and 5 windows is controlled by the thermal switch on the No. 5 window.
2. Window Conductive Coating_________________________
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