Dynalock 2585-US10B Mini Maglock, 650lbs, Ultra-Compact, Single Outswinging Door, Single Coil, Oil Rubbed Bronze

  • MPN: 2585 US10B
  • JMAC ID: 200316672
$362.00
JMAC_ID:
200316672
df_manual_boost:
1.75
Each Dynalock 2585-US10B electromagnetic lock is comprised of 3 basic components: a lock housing, an electromagnetic coil, and an armature. The coil and housing assembly mounts rigidly to the door frame while the armature mounts to the door in a manner that allows it to pivot slightly to compensate for door irregularities. When the door is closed and the lock is energized the armature is magnetically bonded to the lock face, thus securing the door without utilizing any moving parts.

The 2585-US10B is designed for single outswinging doors and has a shorter housing. At only 8 1/2" long, the 2585 "Bantam" lock is perfect for installations where space is limited. All locks are designed for ease of use, and built in the USA to last a lifetime. The unit features an oil rubbed bronze finish.


Also known as: DY-2585US10B, 2585US10B

Technical Specifications:
  • Finish Description: Dark Oxidized Satin Bronze Oil Rubbed
  • Finish: 613/US10B
  • Series: DynaLock 2000 Series Maglocks


For more information about the Dynalock 2585 US10B, please contact us.
  • No Residual Magnetism - The lock releases without delay when de-energized.
  • Single outswinging door
  • Single coil
  • Mounts to the underside of the frame header
  • Ultra-compact 8-1/2" long
  • Oil rubbed bronze finish
  • Holding Force - 650 lbs. holding force provides for effective traffic control. Examples include interior office doors, clean room interlocks, tool cribs, and x-ray areas.
  • 12 or 24 VDC field selectable
  • Low Power Consumption conserves energy, reduces operating cost, and extends battery backup time.
  • A Totally Plated Coil and armature provides protection against corrosion.
  • Narrow Backset - A thin lock section (1-1/4”) may mean the elimination of additional mounting brackets.
  • Built-In Spike Suppression protects other solid state components within the system from damage when the lock is de-energized.
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