Fire-Lite MS-9200UDLS Manual page 161

Addressable fire alarm control panel
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Calculating the System Current Load
Table 7.3 contains columns for calculating current load. For each column, calculate the current and
enter the total (in amperes) in the bottom row. When finished, copy the totals from Calculation
Column 2 and Calculation Column 3 to Table 7.4 on page 162. For maximum output current
available per circuit and per panel, refer to Section 1.2, "Specifications", on page 15.
Calculation Column 1
Device Type
Primary (AC) Power Source
Fire Alarm Current (amps)
Qty
Main Circuit Board
ANN-80(C)
[
]
ANN-(R)LED
[
]
ANN-RLY
[
]
ANN-I/O
[
]
ANN-S/PG
[
]
ANN-LC
[
]
ACM-8RF
[
]
ACM-16ATF
[
]
ACM-32AF
AEM-16ATF
[
]
AEM-32AF
AFM-16ATF
[
]
AFM-32AF
AFM-16AF
[
]
LDM-32F
[
]
LDM-E32F
[
]
LCD-80F
[
]
ECC-FFT
4XTMF
[
]
4-wire Detector Heads
[
]
Power Supervision
[
]
6
Relays
CP350 & CP355
SD350 & SD355
SD350T & SD355T
AD350 & AD355
H350 & H355
H350R & H355R
H355HT
D350P & D350PL
D350RP & D350RPL
7
B501BH & B501BHT
B224RB Relay Base
B224BI Isolator Base
maximum alarm draw
for all devices =
MMF-300
MMF-300-10
MDF-300
MMF-301
MMF-302
MMF-302-6
BG-12LX
CMF-300
CMF-300-6
CRF-300
CRF-300-6
I300
NAC #1
[
]
NAC #2
[
]
NAC #3
[
]
NAC #4
[
]
FCPS (remote sync)
[
]
Current Draw from TB3
[
]
Sum each column for
AC Powered,
totals
Fire Alarm Load
1 All eight ACM-8RF relays activated on a single module.
2 All annunciator LEDs on
3 LDM-32F or ANN-I/O with LEDs on
4 If using the Reverse Polarity Alarm output, add 0.005 amps; if using the Reverse Polarity Trouble output, add another
0.005 amps.
5 Refer to the Device Compatibility Document for standby current.
6 Must use compatible listed Power Supervision Relay.
7 Maximum alarm current for each sounder base is 0.015 amps which must be supplied by aux. 24VDC source.
8 Total current load cannot exceed 3.0 amps with one transformer or 6.0 amps with optional XRM-24B(E) added.
MS-9200UDLS Series Manual — P/N 52750:H 4/14/2014
X[current draw]=
Total
X[0.040]=
X[0.068]=
X[0.075]=
X[0.200]=
X[0.045]=
X[0.150]=
1
X[0.158]
=
2
X[0.056]
=
2
X[0.018]
=
2
X[0.056]
=
2
X[0.065]
=
3
X[0.056]
=
X[0.018]=
X[0.064]=
N/A
4
X[0.011]
=
X[
]=
X[0.025]=
0.400
X[
]=
X[
]=
X[
]=
X[
]=
X[0.02]=
[
]=
Battery Powered,
8
=
Fire Alarm Load =
Table 7.3 System Current Load Calculations
Calculation Column 2
Secondary (Battery) Power Source
Fire Alarm Current (amps)
Qty
X[current draw]=
Total
1
X[0.275]=
0.275
[
]
X[0.040]=
[
]
X[0.068]=
[
]
X[0.075]=
[
]
X[0.200]=
[
]
X[0.045]=
[
]
X[0.150]=
[
]
X[0.158]=
[
]
X[0.056]=
[
]
X[0.018]=
[
]
X[0.056]=
[
]
X[0.065]=
[
]
X[0.056]=
[
]
X[0.018]=
[
]
X[0.064]=
[
]
X[0.230]=
[
]
X[0.011]=
5
[
]
X[
]
=
[
]
X[0.025]=
maximum alarm draw
0.400
for all devices =
[
]
X[
]=
[
]
X[
]=
[
]
X[
]=
[
]
X[
]=
[
]
X[0.0217]=
[
]
[
]=
Power Supply Calculations
Calculation Column 3
Secondary (Battery) Power Source
Standby Current (amps)
Qty
X[current draw]=
1
X[0.145]=
[
]
X[0.015]=
[
]
X[0.028]=
[
]
X[0.015]=
[
]
X[0.035]=
[
]
X[0.045]=
[
]
X[0.150]=
[
]
X[0.030]=
[
]
X[0.040]=
[
]
X[0.002]=
[
]
X[0.040]=
[
]
X[0.025]=
[
]
X[0.040]=
[
]
X[0.002]=
[
]
X[0.025]=
[
]
X[0.120]=
[
]
X[0.005]=
[
]
X[
]=
[
]
X[0.025]=
[
]
X[0.00030]=
[
]
X[0.00030]=
[
]
X[0.00030]=
[
]
X[0.00030]=
[
]
X[0.00030]=
[
]
X[0.00030]=
[
]
X[0.00030]=
[
]
X[0.00030]=
[
]
X[0.00030]=
[
]
X[0.001]=
[
]
X[0.00050]=
[
]
X[0.00045]=
[
]
X[0.00040]=
[
]
X[0.00350]=
[
]
X[0.00075]=
[
]
X[0.000375]=
[
]
X[0.00027]=
[
]
X[0.00200]=
[
]
X[0.00030]=
[
]
X[0.00039]=
[
]
X[0.00225]=
[
]
X[0.00027]=
[
]
X[0.00145]=
[
]
X[0.00040]=
[
]
[
]=
Battery Powered,
Standby Load =
Total
0.145
161

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