Bryant 821T Installation, Start-Up, Operating And Service And Maintenance Instructions page 51

Variable--speed, ecm induced--combustion, 2--stage 4-way multipoise, non-condensing gas furnace
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which is the true on- -board CF selection as shown in Fig. 53.
If the furnace control CPU switches from low- -cooling to
high- -cooling, the furnace control CPU will energize the air
conditioning relay ACR. When the air conditioning relay ACR is
energized the R- -to- -Y1- -and- -Y2 circuits switch the outdoor unit
to high- -cooling speed, and the R- -to- -G- -and- -Y1- -and- -Y/Y2
circuits transition the furnace blower motor BLWM to
high- -cooling airflow. High- -cooling airflow is based on the A/C
selection shown in Fig. 53.
NOTE: When transitioning from low- -cooling to high- -cooling
the outdoor unit compressor will shut down for 1 minute while
the furnace blower motor BLWM transitions to run at
high- -cooling airflow.
The electronic air cleaner terminal EAC- -1 is energized with 115
vac whenever the blower motor BLWM is operating.
When the thermostat is satisfied, the R- -to- -G- -and- -Y circuit are
opened. The outdoor unit stops, and the furnace blower BLWM
and electronic air cleaner terminal EAC- -1 will remain energized
for an additional 90 seconds. Jumper Y1 to DHUM to reduce the
cooling off- -delay to 5 seconds. (See Fig. 26.)
c. Two- -Stage Thermostat and Two- -Speed Cooling
See Fig. 33 for thermostat connections
NOTE: The air conditioning relay disable jumper ACRDJ must
be disconnected to allow thermostat control of the outdoor unit
staging. (See Fig. 26.)
The thermostat closes the R- -to- -G- -and- -Y1 circuits for
low- -cooling or closes the R- -to- -G- -and- -Y1- -and- -Y2 circuits for
high- -cooling. The R- -to- -Y1 circuit starts the outdoor unit on
low- -cooling speed, and the R- -to- -G- -and- -Y1 circuit starts the
furnace blower motor BLWM at low- -cooling airflow which is the
true on- -board CF selection as shown in Table 4 and Fig. 53. The
R- -to- -Y1- -and- -Y2 circuits start the outdoor unit on high- -cooling
speed, and the R- -to- - G- -and- -Y/Y2 circuits start the furnace
blower motor BLWM at high- -cooling airflow. High- -cooling
airflow is based on the A/C (air conditioning) selection shown in
Fig. 53.
The electronic air cleaner terminal EAC- -1 is energized with 115
vac whenever the blower motor BLWM is operating.
When the thermostat is satisfied, the R- -to- -G- -and- -Y1 or R- -to- -
G- -and- -Y1- -and- -Y2 circuits are opened. The outdoor unit stops,
and the furnace blower BLWM and electronic air cleaner terminal
EAC- -1 will remain energized for an additional 90 seconds.
Jumper Y1 to DHUM to reduce the cooling off- -delay to 5
seconds. (See Fig. 26.)
4. Thermidistat Mode
See Fig. 27- -29 for thermostat connections.
The dehumidification output, DHUM on the Thermidistat
should be connected to the furnace control thermostat ter-
minal DHUM. When there is a dehumidify demand, the
DHUM input is activated, which means 24 vac signal is
removed from the DHUM input terminal. In other words,
the DHUM input logic is reversed. The DHUM input is
turned ON when no dehumidify demand exists. Once 24
vac is detected by the furnace control on the DHUM input,
the furnace control operates in Thermidistat mode. If the
DHUM input is low for more than 48 hours, the furnace
control reverts back to non- -Thermidistat mode.
The cooling operation described in item 3. above also ap-
plies to operation with a Thermidistat. The exceptions are
listed below:
a. Low cooling- -When the R- -to- -G- -and- -Y1 circuit is
closed and there is a demand for dehumidification, the
furnace blower motor BLWM will drop the blower
airflow to 90 percent of low- -cooling airflow which is
the true on- -board CF selection as shown in Table 4
and Fig. 53.
b. High cooling- -When the R- -to- -G- -and Y/Y2 circuit is
closed and there is a demand for dehumidification, the
furnace blower motor BLWM will drop the blower
airflow to 90 percent of high- -cooling airflow. High- -
cooling airflow is based on the A/C (air conditioning)
selection shown in Fig. 53.
c. Cooling off- -delay- -When the "call for cooling" is
satisfied and there is a demand for dehumidification,
the cooling blower- -off delay is decreased from 90
seconds to 5 seconds.
5. Continuous Blower Mode
When the R- -to- -G circuit is closed by the thermostat, the
blower motor BLWM will operate at continuous blower
airflow. Continuous blower airflow selection is initially
based on the CF selection shown in Table 4 and and Fig.
53. Factory default is shown in Table 4. Terminal EAC- -1
is energized as long as the blower motor BLWM is ener-
gized.
During a call for heat, the furnace control CPU will transi-
tion the blower motor BLWM to continuous blower air-
flow or low- -heat airflow whichever is lowest. The blower
motor BLWM will remain ON until the main burners ig-
nite then shut OFF and remain OFF for the blower- -ON
delay (45 seconds in low- -heat, and 25 seconds in high- -
heat), allowing the furnace heat exchangers to heat up
more quickly, then restarts at the end of the blower- -ON
delay period at low- -heat or high- -heat airflow, respective-
ly.
The blower motor BLWM will revert to continuous- -blow-
er airflow after the heating cycle is completed. In high- -
heat, the furnace control CPU will drop the blower motor
BLWM to low- -heat airflow during the selected blower- -
OFF delay period before transitioning to continuous- -
blower airflow.
When the thermostat "calls for low- -cooling", the blower
motor BLWM will switch to operate at low- -cooling air-
flow. When the thermostat is satisfied, the blower motor
BLWM will operate an additional 90 seconds at low- -cool-
ing airflow before transitioning back to continuous- -blow-
er airflow.
When the thermostat "calls for high- -cooling", the blower
motor BLWM will operate at high cooling airflow. When
the thermostat is satisfied, the blower motor BLWM will
operate an additional 90 seconds at high- -cooling airflow
before transitioning back to continuous- -blower airflow.
When the R- -to- -G circuit is opened, the blower motor
BLWM will continue operating for an additional 5 sec-
onds, if no other function requires blower motor BLWM
operation.
Continuous Blower Speed Selection from Thermostat
To select different continuous- -blower airflow from the
room thermostat, momentarily turn off the FAN switch or
push button on the room thermostat for 1- -3 seconds after
the blower motor BLWM is operating. The furnace control
CPU will shift the continuous- -blower airflow from the
factory setting to the next highest CF selection airflow as
shown in Table 4 and Fig. 53. Momentarily turning off the
FAN switch again at the thermostat will shift the continu-
ous- -blower airflow up one more increment. If you repeat
this procedure enough you will eventually shift the contin-
uous- -blower airflow to the lowest CF selection as shown
in Table 4 and Fig. 53. The selection can be changed as
many times as desired and is stored in the memory to be
automatically used following a power interruption.
NOTE: If the blower- -off delay is set to the maximum, the
adjustable continuous- -fan feature is locked (i.e., fan speed cannot
be changed from its current setting).
51

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