FAIL (the browser should render some flash content, not this).

 

 

Eagle Signal B90D DIN-Rail Mount Timer
 

B90D.gif (31403 bytes)
 
  • Space Saving 22.5 mm wide DIN rail mount design
  • Field Selectable choice of S timing modes
  • Multiple time ranges allow settings from 0.2 seconds to 999 hrs.
  • Digital Setting accuracy of ± 0.5%
  • LCD display provides field programmability,
    progress indication and operation status
  • Lithium battery provides long life and eliminates
    the need for external power
  • SPDT contacts rated for up to 8 amps
  • Single model accepts a wide range
    (12 V to 260V) of AC and DC start signals
  • UL recognized, CE compliant
   

Save interior panel space, simplify wiring and improve performance with the Eagle Signal brand B9OD DIN rail timer. The unit mounts on a standard 35mm DIN rail, and with multiple functions and time ranges enables you to standardize on one device to fulfill all your behind the panel timing needs.

The B9OD offers improved performance via digital setting accuracy (0.5% compared to 10% on some analog set DIN rail timers) and eliminates fiddling with pots for "fine adjustment". The LCD display provides for simple timer setup, and provides progress indication and output status that can be helpful in troubleshooting / maintenance.

Standard On-Delay, Off Delay, Interval, and One Shot Operation are field selectable, as are a variety of repeat cycle modes that allow for asymmetrical cycling and the ability to start with either the On or Off function.

Internal 3-volt lithium batteries, with 10-year life, eliminate the need to provide and wire an external power source for this device.

A wide range of DC start signals makes the B9OD compatible for use with most sourcing proximity and photo sensors, while AC input capability enables the unit to replace many plug-in TDRs and older electro-mechanical timers. All inputs are optically isolated and programmable for level or edge trigger operation. An 8 amp SPDT relay output can be used for direct switching of loads.


 
 

 

Applied Thermal Systems, Inc. © 2010 | All Rights reserved