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Hochiki AIE-EA Installation Instruction

Analog sensors/bases

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INSTALLATION INSTRUCTION FOR HOCHIKI ANALOG SENSORS/BASES
These instructions apply to all Hochiki America NS DCP (Digital Communication Protocol) analog sensors and
bases.
These units must be installed and maintained in accordance with applicable N.F.P.A. standards, local codes and
any authority having jurisdiction. Please refer to N.F.P.A. 72 National Fire Alarm and Signaling Code for
installation guidelines and testing procedures. Also refer to Hochiki America Technical Bulletin HA-96 Analog
/Analog 2 for testing, cleaning, and maintenance.
Smoke detectors should be tested upon completion of installation and at least semiannually thereafter, in
accordance with N.F.P.A. 72, section on "Inspection, Testing and Maintenance".
To install the detector, insert the detector into the base. Turn the detector clockwise until it stops. Tighten tamper
screw. Use "3M" Weatherban #606 nonflammable sealing compound to seal field wiring conduit openings in the
mounting back box. Compliance with this request may reduce the occurrence of the "STACK EFFECT".
CATEGORY
Model
AIE-EA
ALG-V
Applied Voltage
41.0 VDC
41.0 VDC
(Maximum)
Operating
Voltage Range
24 - 40.7 VDC
24 - 40.7 VDC
(S-SC)
300 fpm:
0.88 - 3.57 %/ft*
Sensitivity
2000 fpm:
0.88 - 2.81 %/ft**
0.55 - 1.15 %/ft
Range
4000 fpm:
0.88 - 2.52 %/ft**
Current
350
350
Consumption
(S-SC)
Device Type
A8 Hex
88 Hex
Code
Operating
Temperature
UL Listed
Ambient
Temperature
Storage
Temperature
Dimension
3.94"D X 1.50"H
3.94"D X 1.75"H
Environment
Indoor Use Only
Indoor Use Only
Visual Alarm/
Dual LED
Dual LED
Power Indicator
CO Sensor
N/A
N/A
Response Time
*
= Open Area Application
**
= Duct Application
Note:
1)
An average of 6.75mA (communication current) per Loop of SLC
devices, must be factored into the panel battery backup calculations.
2)
The total worst case current consumption for both communication
and Alarm LED's for all detectors above is 30mA @ 39.5VDC.
3)
See control panel for proper address setting and testing procedure.
BASE SPECIFICATIONS
CATEGORY
BASE
Model
YBN-NSA-4
HSB-NSA-6
Applied Voltage
41.0 VDC
41.0 VDC
(Maximum)
Operating
Voltage Range
24 - 40.7 VDC
24 - 40.7 VDC
(S-SC)
Alarm Current
8mA Typical
8mA Typical
(S-SC)
Remote LED
8mA Typical
8mA Typical
Current
Operating
Temperature
UL Listed
Ambient
Temperature
Storage
Temperature
Dimension
5.87"D X 0.47"H
4.13"D X 0.31"H
Indoor Use Only
Indoor Use Only
Environment
Mounting Box
3"-O, 4"-O, 4"-S
3"-O
Compatibility
AMERICA CORPORATION
7051 VILLAGE DRIVE, SUITE 100
BUENA PARK, CA 90621-2268
www.acornfiresecurity.com
SENSOR SPECIFICATIONS
SMOKE SENSORS
ALK-V/ALK-D
ALN-V
41.0 VDC
41.0 VDC
22.9 - 39.5 VDC
24 - 41.0 VDC
300 fpm:
0.50 - 3.80 %/ft*
300 fpm:
0.70 - 4.00 %/ft*
2000 fpm:
0.50 - 2.74 %/ft**
4000 fpm:
0.50 - 2.68 %/ft**
2000 fpm:
0.70 - 3.86 %/ft**
0 - 4000 fpm: 0.50 - 2.68 %/ft**
4000 fpm:
0.70 - 2.65 %/ft**
(ALK-D only)
350
450
88 Hex (ALK-V)
88 Hex
89 Hex (ALK-D)
3.94"D X 1.50"H
3.94"D X 1.56"H
Indoor Use Only
Indoor Use Only
Dual LED
Dual LED
N/A
N/A
5
6
YBN-NSA-4
5
6
HSB-NSA-6
www.acornfiresecurity.com
HEAT SENSOR
ATG-EA
ATJ-EA
41.0 VDC
41.0 VDC
24 - 41.0 VDC
24 - 41.0 VDC
300 fpm:
300 fpm:
2000 fpm:
4000 fpm:
350
350
98 Hex
98 Hex
3.94"D X 1.56"H
3.94"D X 1.56"H
Indoor Use Only
Indoor Use Only
Dual LED
Dual LED
N/A
N/A
TYPICAL DCP WIRING CONNECTION
U.L.
LISTED
COMPATIBILE
( + )
DCP
1
2
LOOP
8mA MAX.
( - )
OUTPUT
U.L.
LISTED
( + )
POWER
*
LIMITED
SUPPLY
ATTENTION!!!!
INSTALLATION WIRING SHALL NOT EXCEED
50 OHMS (14-18 AWG.)
( + )
U.L.
LISTED
COMPATIBILE
CONTROL
PANEL
( - )
U.L.
LISTED
POWER
LIMITED
( + )
SUPPLY
*
HSB-NSA-6
8mA MAX.
OUTPUT
- OPTIONAL WIRING CONFIGURATIONS FOR REMOTE OUTPUT
*
MULTI-CRITERIA SENSORS
ACA-V
ACC-V
41.0 VDC
41.0 VDC
24 - 41.0 VDC
24 - 41.0 VDC
300 fpm:
0.88 - 3.57 %/ft*
300 fpm:
0.70 - 4.00 %/ft*
2000 fpm:
0.88 - 3.11 %/ft**
2000 fpm:
0.70 - 3.86 %/ft**
4000 fpm:
0.88 - 2.81 %/ft**
4000 fpm:
0.70 - 2.65 %/ft**
0.50 - 2.52 %/ft**
450
450
30 mA Max. Alarm Current
D8 Hex
D8 Hex
3.94"D X 1.90"H
3.94"D X 1.56"H
Indoor Use Only
Indoor Use Only
Dual LED
Dual LED
N/A
N/A
WARNING!!!!
Failure to follow these instructions may
result in the failure of the detector
to initate an alarm condition. Hochiki
America is not responsible for detectors
that have been improperly installed,
tested or maintained.
CARBON MONOXIDE IS AN ODORLESS,
COLORLESS, TASTELESS GAS. WHEN
UNIT IS IN ALARM, MOVE TO FRESH
AIR IMMEDIATELTY!
1
2
YBN-NSA-4
8mA MAX.
OUTPUT
1
2
8mA MAX.
OUTPUT
DWG #
PG 1 OF 4, 06/16
PART# 1700-09985
ACD-V
41.0 VDC
24 - 41.0 VDC
0.77 - 3.47 %/ft*
0.77 - 3.56 %/ft**
0.77 - 4.00 %/ft**
600
D9 Hex
3.94"D X 1.56"H
Indoor Use Only
Dual LED
70 ppm 60 - 240 min.
1
2
1
2
HA-06-043

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Summary of Contents for Hochiki AIE-EA

  • Page 1 INSTALLATION INSTRUCTION FOR HOCHIKI ANALOG SENSORS/BASES These instructions apply to all Hochiki America NS DCP (Digital Communication Protocol) analog sensors and bases. These units must be installed and maintained in accordance with applicable N.F.P.A. standards, local codes and any authority having jurisdiction. Please refer to N.F.P.A. 72 National Fire Alarm and Signaling Code for installation guidelines and testing procedures.
  • Page 2 These guidelines contain general information on duct smoke detector installation, but does not preclude NFPA or other information listed. Hochiki America Corporation assumes no responsibility for improperly installed duct detectors or applications. When installing the ALK-D/ALN-V/ACD-V please consider the items following below.
  • Page 3 www.acornfiresecurity.com When installing detectors downstream of filters, be aware that filter fires may be detected, but if the filters themselves become blocked, insufficient air flow in the duct may affect detector response. Duct detectors installed in the supply air side may monitor upstream equipment and/or filters.
  • Page 4 CO cooling phase wait until standby mode status before continuing to test CO The Hochiki ACD-V is a Multi Criteria Sensor. The ACD-V is capable of Smoke, Heat and CO Detection individually along with many criteria combinations based upon the activation mode setting of the detector (the activation mode is set through panel programming).

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