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MaximalRDV Rack Access Power Controllers (PTC) 

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Overview:

Altronix Maximal Rack Mount Seriesunits distribute and switch power to access control systems and accessories . 
They convert a 220VAC (working range 198VAC - 256VAC), 50/60Hz input into eight (8) or sixteen (16) inde-
pendently controlled 12VDC and/or 24VDC PTC protected outputs . Outputs are activated by an normally open 
(NO) or normally closed (NC) dry trigger input from an Access Control System, Card Reader, Keypad, Push 
Button, PIR, etc . Units will route power to a variety of access control hardware devices including: Mag Locks, 
Electric Strikes, Magnetic Door Holders, etc . Outputs will operate in both Fail-Safe and/or Fail-Secure modes . 
The FACP Interface enables Emergency Egress, Alarm Monitoring, or may be used to trigger other auxiliary 
devices . The fire alarm disconnect feature is individually selectable for any or all of the outputs (see chart below) .

Maximal Rack Mount Series Configuration Chart:

Altronix 
Model Number

Power

Supply 1 

(8 outputs)

Power

Supply 2

(8 outputs)

Total 

Output 

Current

PTC 

Protected 

Auto-

Resettable

Outputs

Maximum 

Current

Per 

ACM8CBR-M 

Output

220VAC 

50/60Hz 

Input 

(current 

draw)

Power 

Supply 

Board 

Input 

Fuse 

Rating

Maximal1RHDV

12VDC @ 4A

N/A

4A

8

2 .0A

0 .9A

5A/

250V

24VDC @ 3A

N/A

3A

Maximal1RDV

12VDC @ 4A

N/A

4A

16

2 .0A

09A

5A/

250V

24VDC @ 3A

N/A

3A

Maximal3RHDV

12VDC @ 6A

N/A

6A

8

2 .0A

0 .9A

3 .5A/
250V

24VDC @ 6A

N/A

Maximal3RDV

12VDC @ 6A

N/A

6A

16

2 .0A

0 .9A

3 .5A/
250V

24VDC @ 6A

Maximal33RDV

12VDC @ 6A 12VDC @ 6A

12A

16

2 .0A

1 .9A

3 .5A/
250V

24VDC @ 6A 24VDC @ 6A
12VDC @ 6A 24VDC @ 6A

Specifications:

Inputs:

•  Normally closed [NC] or normally open [NO] 
  dry contact inputs (switch selectable) .

Outputs:

•  Individually selectable Mag Lock/Strike (Fail-Safe,
  Fail-Secure) solid state PTC protected power outputs .
•  Thermal and short circuit protection with auto reset .

Fire Alarm Interface:

•  Fire Alarm disconnect (latching with reset or
  non-latching) is individually selectable for any or
  all of the outputs .
•  Remote reset capability for latching Fire Alarm
  Interface mode .
•  Fire Alarm disconnect input options:
  a) Normally open [NO] or normally closed [NC] 
    dry contact input .
  b) Polarity reversal input from 
  FACP 

signaling 

circuit .

Visual Indicators:

•  Individual Output Status LEDs located on the
  front panel .

Battery Backup:

•  Built-in charger for sealed lead acid or 
  gel type batteries
  (A separate enclosure is required for batteries) . 
•  Maximum charge current 0 .7A . 
•  Automatic switch over to stand-by battery 
  when AC fails .
•  Zero voltage drop when unit switches over to
  battery backup (AC failure condition) .

Supervision:

•  AC fail supervision (form “C” contact) .
•  Low battery supervision (form “C” contact) .

Additional Features:

•  Removable terminal blocks with locking 
  screw flange .
•  3-wire line cord .
•  Illuminated master power disconnect 
  circuit breaker with manual reset .

Rack Dimensions 

(H x W x D)

:

  3 .25” x 19 .125” x 8 .5”
  (82 .6mm x 485 .8mm x 215 .9mm) .

Summary of Contents for Maximal1RDV

Page 1: ...al1RDV 12VDC 4A or 24VDC 3A 12VDC 4A or 24VDC 3A Eight 8 PTC Protected Outputs Sixteen 16 PTC Protected Outputs Maximal3RHDV Maximal3RDV 12VDC or 24VDC 6A 12VDC or 24VDC 6A Eight 8 PTC Protected Outpu...

Page 2: ...tion Charts pg 5 LED Diagnostics pg 5 Power Supply Board Output Voltage Settings pg 6 Fire Alarm Interface Output Selection and Input Type pg 7 Power Supply Boards Drawings pg 8 FACP Hook Up Diagrams...

Page 3: ...Maximal3RHDV 12VDC 6A N A 6A 8 2 0A 0 9A 3 5A 250V 24VDC 6A N A Maximal3RDV 12VDC 6A N A 6A 16 2 0A 0 9A 3 5A 250V 24VDC 6A Maximal33RDV 12VDC 6A 12VDC 6A 12A 16 2 0A 1 9A 3 5A 250V 24VDC 6A 24VDC 6A...

Page 4: ...to the appropriate positions Figs 3a and 3b pg 7 Fire Alarm Interface Switch Settings pg 5 6 Battery Connections For access control applications batteries are optional If batteries are not used a loss...

Page 5: ...is fully charged check specified voltage at the battery terminals and at the board terminals marked BAT to ensure that there is no break in the battery connection wires Fire Alarm Interface Switch Se...

Page 6: ...enclosure that may be of sufficient magnitude to constitute an electric shock The exclamation point within an equilateral triangle is intended to alert the user to the presence of important operating...

Page 7: ...OUTPUT SELECT ON 4 3 1 2 ON 4 3 1 2 ON 4 3 1 2 ON 4 3 1 2 ON 4 3 1 2 FIRE ALARM INTERFACE OUTPUT SELECT ON 4 3 1 2 ON 4 3 1 2 ON 4 3 1 2 ON 4 3 1 2 INPUT TYPE SW3 SW3 DIP Switch for NO or NC Input ON...

Page 8: ...y and AC Supervision LOW BAT NC C NO NC C NO AC FAIL ON Power Supply Board Maximal1RHDV Maximal1RDV Fig 4 BAT Built in Battery Charging Power Supply Board L G N 5A 250V Built in Battery Charging Batte...

Page 9: ...set Switch 1 2 FACP RESET Fig 7 Latching Latching Latching Normally Closed Input from FACP GND IN8 GND Factory Installed Jumper Normally Closed NC Dry Trigger Input 1 2 FACP RESET 1 2 GND FACP IN8 RES...

Page 10: ...head screws B to secure brackets 3 Carefully place faceplate over LEDs and secure using three 3 pan head screws C on top and three 3 pan head screws C on the bottom of faceplate Fig 13b 4 Slide unit...

Page 11: ...MaximalRDV Rack Access Power Controllers PTC 11 Notes...

Page 12: ...19 125 x 8 5 82 6mm x 485 8mm x 215 9mm 3 125 79 4mm 8 5 215 9mm 0 75 19 1mm 19 125 485 8mm 17 625 447 7mm OUT1 OUT2 OUT3 OUT4 OUT5 OUT6 OUT7 2 1 OUT8 OUT9 OUT10 OUT11 OUT12 OUT13 OUT14 OUT15 OUT16 I...

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