GE
D1810 Series
Security
Overview
The IFS D1810 contact closure transceiver provides
one-way or bi-directional transmission of contact closure
over one or two multimode optical fibers. The transceiver
has a contact input and a 0.5 amp contact output.
Plug-and-play design ensures ease of installation
requiring no electrical or optical adjustments. Each
tranceiver incorporates power and transmit/receive status
indicating LED’s for monitoring confirmation of contact
closure. The modules are available in either stand-alone
or rack mount versions.
Application Examples
• Alarm Event Triggering
• Building Automation & Environmental Control Systems
• Gate Control
• Fire & Alarm Systems
• PIR Signal Transmission
• Traffic Signal Control Equipment
IFS Bi-Directional Contact
Closure Transceiver
Standard Features
•
Transmits a Single Contact Closure in One or Two Directions
• Distances up to 2.5 Miles (4 km)
• 24 VDC, 0.5 Amp Relay Output, Normally Open
• Point-to-Point Transmission Architecture
• Tested and Certified by an Independent Testing
Laboratory for Full Compliance with the Environmental
Requirements (Ambient Operating Temperature,
Mechanical Shock, Vibration, Humidity with Condensation,
High-Line/Low-Line Voltage Conditions and Transient
Voltage Protection) of NEMA TS-1/TS-2 and the Caltrans
Specification for Traffic Signal Control Equipment.
• No In-field Electrical or Optical Adjustments Required
• Power, Transmit and Receive Status LED Indicators
Bi-Directional
Contact Closure
Transceiver
Provides one-way or bi-directional
transmission of contact closure
over one or two multimode fibers.
• Hot-Swappable Rack Modules
• Automatic Resettable Solid-State Current Limiters
• Contact Input
• Comprehensive Lifetime Warranty
GE
D1810 D1810
1
Contact out
1
Contact out
1
Contact in
1
Contact in
2 Fibers
62.5/125µm MM
up to 2.5 miles
(4 km)
ifs
InternationalInternational
F
iberFiber
SystemsSystems
IncorporatedIncorporated
2
03.426.1180203.426.1180
ifs
InternationalInternational
F
iberFiber
SystemsSystems
I
ncorporatedIncorporated
2
03.426.1180203.426.1180
Security
North America
T 203 4261180
F 203 426 3326
E sales@ifs.com
Asia
T +65 6235 2661
F +65 6235 2369
Australia and New Zealand
T +613 9239 1200
F +613 9239 1299
Europe
T +44 113 238 1668
F +44 113 253 8121
Latin America
T 512 477 8787
F 512 477 8555
Design Center:
T 888 999 9437
F 203 426 3326
www.ifs.com
Specifications subject to
change without notice
© 2008 General Electric Company
All Rights Reserved
Specifications
DATA
Contact Interface: Response Time: 0.5 msec
Input: Dry Contact Closure
Output: SPST Relay, 0.5 A contact rating, normally open
WAVELENGTH 850 nm, Multimode
NUMBER OF FIBERS 2
CONNECTORS
Data and Power: Terminal Block with Screw Clamps
Optical: ST
ELECTRICAL & MECHANICAL
Power:
Surface Mount: 24 VAC C.T. @ 150 mA
Rack: From Rack
Number of Rack Slots: 1
Current Protection: Automatic Resettable Solid-State Current Limiters
Circuit Board: Meets IPC Standard
Size (in./cm.) (LxWxH)
Surface Mount: 7.0 x 4.9 x 1.0 in., 17.8 x 12.5 x 2.5 cm
Rack Mount: 7.0 x 4.9 x 2.0 in., 17.8 x 12.5 x 5.0 cm
Shipping Weight: < 2 lbs./0.9 kg
ENVIRONMENTAL
MTBF: > 100,000 hours
Operating Temp: -40° C to +74° C
Storage Temp: -40° C to +85° C
Relative Humidity: 0% to 95% (non-condensing)
AGENCY COMPLIANCE
MADE IN THE USA
Complies with FDA Performance
Standard for Laser Products, Title 21,
Code of Federal Regulations, Subchapter J
Ordering Information
Part Number
Multimode
62.5/125µm**
Accessories
Options
* Optical transmission distance is limited to optical loss of the fiber and any additional loss introduced by connectors, splices and patch panels.
Distance can also be limited by fiber bandwidth. ** For 50/125 Fiber, subtract 4 dB from Optical Power Budget .
D1810
♦
♦
PS-24 VACCT 24 VAC C.T. Transformer (Included)
Add ‘-R3’ to Model Number for R3 Rack Mount - No Charge (Requires R3 Rack purchased separately)
Description
Bi-Directional Contact Closure Transceiver (850 nm)
Fibers Required
2
♦♦
All accessories are third party manufactured.
Opt. Pwr. Budget
14 dB
Max. Distance*
2.5 miles (4 km)
System Design