Dynalock 2513 Mini-Mag Gate Lock, 650lbs, Satin Aluminum

  • MPN: 2513-US28
  • JMAC ID: 200591874
$297.00
JMAC_ID:
200591874
df_manual_boost:
1.50
The 2513 Series is a full size 650 lbs. holding force electromagnet. It is designed for high security on sliding and swinging gates, or any door subjected to the elements. Specify for outdoor commercial, industrial, institutional, or residential openings.

The 2513 is fully sealed with a 3/8 threaded conduit nipple for wiring from the side. Optional Dynastat feature signals magnetic bond status. This allows integrated remote monitoring of the lock, reducing additional parts and labor.

The coil and housing assembly mounts rigidly to the post or frame while the armature mounts to the gate in a manner that allows it to pivot slightly to compensate for gate misalignment. When the gate is closed and the lock is energized the armature is magnetically bonded to the lock face, thus securing the gate without utilizing any moving parts. Specify the GLBM option for an adjustable Z bracket, designed to mate with the armature or lock housing. The 2513 Lock housing mounts with easy to use face-drilled holes.

UPC: 609010207258
Also known as: 2513US28



For more information about the Dynalock 2513-US28, please contact us.
  • Satin aluminum finish
  • Weather Resistant: Designed specifically to be used outside
  • A totally plated coil and armature provides protection against corrosion
  • No moving parts means little or no maintenance from wear and tear
  • Low power consumption conserves energy, reduces operation cost, and extends battery backup time
  • Lifetime Warranty: Made in the USA by DynaLock, with over 20 years experience in the manufacture of electronic security & access control products.
  • 12 or 24VDC: Field Selectable. AC voltage requires optional rectifier (PN# 7088)
  • Long Leads: 6’ Long / 18 gauge flying lead connections
  • No residual magnetism: The gate releases without delay when lock is de-energized
  • Includes spike suppression MOV to protect other solid state components within the system from damage when the lock is de-energized
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