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Section 4 Service Procedures
To reduce the risk of electric shock, fire, explosion, serious injury or death:
• Disconnect electric power to the dryer(s) before servicing.
• Close gas shut-off valve to gas dryer(s) before servicing.
• Never start the dryer(s) with any guards/panels removed.
• Whenever ground wires are removed during servicing, these ground wires must be
reconnected to ensure that the dryer is properly grounded.
W001R1
WARNING
© Copyright, Alliance Laundry Systems LLC – DO NOT COPY or TRANSMIT
20. BURNER SYSTEM OPERATION
Refer to Figure 10
a. Components
(1) This burner has four basic components:
(a.) A silicon carbide (glow bar) igniter
(b.) Burner tube
(c.) Sensor
(d.) Two-stage gas valve consisting of a
split-coil valve and a secondary coil
valve.
(2) The split-coil valve is opened when the
dryer thermostat calls for heat, while the
secondary valve does not open until the
igniter has attained ignition temperature.
b. Pre-Ignition Circuits
(1) When the dryer thermostat calls for heat,
circuits are completed through the holding
coil, sensor, booster coil and igniter.
(2) Both coils must be energized to open split-
coil valve.
(3) Once opened, the holding coil can hold the
valve open without assistance from the
booster coil.
(4) The current shunted around the secondary
coil by the sensor, passes through the
igniter causing it to get hot.
c. Burn Circuit
(1) In approximately 15 seconds, the igniter
attains ignition temperature and the sensor
(located on the left of the igniter) contacts
will open.
(2) A circuit is then completed through the
secondary valve coil, opening the valve
and allowing gas to flow.
(3) Ignition is made and the heat from the
burner flame causes the sensor contacts to
remain open.
Figure 10
DRY839S
SINGLE INPUT VALVE
PRE-IGNITION CIRCUIT
BURN CIRCUIT
Secondary
Valve
Secondary
Valve
Secondary
Coil
Secondary
Coil
Holding
Coil
Holding
Coil
Booster
Coil
Booster
Coil
Split-Coil
Valve
Gas Flow
Split-Coil
Valve
Gas Flow
120 V.
120 V.
60 Hz.
60 Hz.
Igniter
Sensor
Igniter
Sensor