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ED5000N (S)(A) Series Exit Device
Copyright © 2018 Corbin Russwin, Inc. All rights reserved.
Reproduction in whole or in part without the express written
permission of Corbin Russwin, Inc. is prohibited.
The Corbin Russwin Access 600 TCRNE1 Series exit device is designed to interface with existing Wiegand
Electrical Access Control (EAC) panels. The reader requires 12VDC for power and is available with 125 kHz HID
proximity technology. The Access 600 technology is designed around Corbin Russwin’s Grade 1 hardware. The
exit device comes with touch bar monitoring (REX) and is provided with an external Door Position Switch (DPS).
The exit device trim is operated by a 24VDC solenoid and is offered in fail safe and fail secure versions. Weather
seal gaskets are also included for outdoor applications. The Access 600 reader provides visual (LED) and audible
indication of lock state (locked/unlocked).
• Door Thickness: 1-3/4” Standard; Can be furnished for other door thicknesses upon request.
Consult factory.
• Outside lever controlled by reader or key allows lever to retract latch
• Inside push bar produces REX (request to exit) signal and retracts latch
• Fail safe or fail secure operation (must specify)
• Wire from EAC panel to door must be shielded with a drain terminated at EAC panel controller
• Wires directly to EAC panels
• Accepts all HID 125 kHz bit formats
• McKinney QC12 Hinge with ElectroLynx® plug and play
2) General Description
3) Features
4) Regulatory Specifications
Destructive Attack
Level I
Line Security
Level I
Endurance
Level IV
Standby Power
Level I
Wiring methods shall be in accordance with the National Electrical Code (ANSI/NFPA70), CSA 22.1, Canadian Electrical
Code (CEC), Part I, Safety Standard for Electrical Installations, local codes, and the authorities having jurisdiction.
• UL294 6th Edition (Access Control System Units)
• This product meets the requirements of CAN/ULC-S319-05 Equipment Class I
• ANSI/BHMA A156.25 Listed Grade 1 Compliant
• UL 294 Access Control Performance Ratings:
• Reader Draw = 150mA @12VDC / 24VDC
• Actuator Draw = 400mA inrush / 15mA continuous @12VDC / 24VDC
• Total System Draw = 550mA @12VDC / 24VDC