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Maximal11V / Maximal33V / Maximal55V / Maximal77V / Maximal75V Access Power Controllers (Fused) 

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MaximalV Series Overview:

Altronix MaximalV Access Power/Controllers distribute and switch power to access control systems and acces-
sories . They convert a 220VAC (working range 198VAC - 256VAC), 50/60Hz input into sixteen (16) indepen-
dently controlled 12VDC or 24VDC fuse protected outputs . These Fail-Safe/Fail-Secure power outputs may be 
converted to dry form “C” contacts . The outputs are activated by an open collector sink or normally open (NO) 
dry trigger input from an Access Control System, Keypad, Push Button, REX PIR, etc . Units will route power 
to a variety of access control hardware devices including Mag Locks, Electric Strikes, Magnetic Door Holders, 
etc . 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 sixteen (16) outputs .

Maximal Series Configuration Chart:

Altronix
Model 
Number

Output Voltage Options

Total 

Output 

Current 

(16 outputs)

Fuse 

Protected

Outputs

220VAC, 

50/60Hz 

Input 

Current

Current 

per 

ACM8 
output

Power 

Supply

Board 

Input 

Fuse 

Rating

Power 

Supply

Board 

Output 

Fuse 

Rating

Power Supply 1 Power Supply 2

Maximal11V

AL400XB2V

AL400XB2V

16

3A

2 .5A

5A/250V

15A/32V

12VDC @ 3 .5A

12VDC @ 3 .5A

7A

12VDC @ 2 .7A

24VDC @ 2 .7A

5 .4A

24VDC @ 3 .5A

24VDC @ 2 .7A

6 .2A

Maximal33V

AL600XB220

AL600XB220

3A

12VDC @ 5 .5A

12VDC @ 5 .5A

11A

12VDC @ 5 .7A

24VDC @ 5 .7A

11 .4A

24VDC @ 5 .5A

24VDC @ 5 .7A

11 .2A

Maximal55V

AL1012XB220

AL1012XB220

19

2 .6A

15A/32V

12VDC @ 9 .5A

12VDC @ 9 .5A

Maximal75V

AL1012XB220

AL1024XB2V

19 .2

3 .8A

15A/32V

12VDC @ 9 .5A

24VDC @ 9 .5A

Maximal77V

AL1024XB2V

AL1024XB2V

19 .4

5A

15A/32V

24VDC @ 9 .7A

24VDC @ 9 .7A

MaximalV Series Features:

•  Sixteen (16) independently trigger controlled outputs .
  Output options:
    a) Sixteen (16) Fail-Safe filtered and electronically regulated power outputs .
    b) Sixteen (16) Fail-Secure filtered and electronically regulated power outputs .
    c) Sixteen (16) form “C” relay outputs (rated @ 5A/28VDC or VAC) .
    d) Any combination of the above .
•  Sixteen (16) Access Control System trigger inputs .
  Input trigger options:
    a) Sixteen (16) normally open (NO) dry trigger inputs .
    b) Sixteen (16) open collector inputs .
    c) Any combination of the above .
•  Sixteen (16) unswitched filtered and electronically regulated aux . power outputs (outputs are rated @ 2 .5A) .
•  ACM8 maximum current is 2 .5A per output .
•  Red LEDs on ACM8 board indicate individual outputs are triggered (relays energized) .
•  Fire Alarm disconnect (latching or non-latching) is individually selectable for any or all of the 
  sixteen (16) outputs . Fire Alarm disconnect input trigger options:
    a) Normally open (NO) or normally closed (NC) dry trigger input .
    b) Polarity reversal input from FACP signaling circuit .
•  Green LED on ACM8 board indicates FACP disconnect is triggered .
•  FACP output relay indicates that FACP input is triggered (form “C” contact rated @ 1A/28VDC) .
•  Power supply input options:
    a) Factory installed power supplies provide common power for both ACM8 boards and all connected
   access 

control 

devices .

    b) An optional external access control power supply may be connected to isolate the ACM8 boards from 
      the access control devices (only applicable on Maximal11V).

Summary of Contents for Maximal11V

Page 1: ...uts Maximal33V Power Supply 1 12VDC 5 5A or 24VDC 5 7A Power Supply 2 12VDC 5 5A or 24VDC 5 7A Sixteen 16 fuse protected outputs Maximal55V Power Supply 1 12VDC 9 5A Power Supply 2 12VDC 9 5A Sixteen 16 fuse protected outputs Maximal77V Power Supply 1 24VDC 9 7A Power Supply 2 24VDC 9 7A Sixteen 16 fuse protected outputs Maximal75V Power Supply 1 12VDC 9 5A Power Supply 2 24VDC 9 7A Sixteen 16 fus...

Page 2: ...ery Specifications pg 8 Power Supply Board Output Voltage Settings pg 9 Access Power Controller Typical Application Diagram for each ACM8 pg 9 Maximal11V Maximal33V Maximal55V Battery Hookup and Tamper Switch Installation pg 10 Maximal77V Battery Hookup and Tamper Switch Installation pg 11 Maximal75V Battery Hookup and Tamper Switch Installation pg 12 NEC Power Limited Wiring Requirements for Maxi...

Page 3: ... 7A 11 2A Maximal55V AL1012XB220 AL1012XB220 19 2 6A 15A 32V 12VDC 9 5A 12VDC 9 5A Maximal75V AL1012XB220 AL1024XB2V 19 2 3 8A 15A 32V 12VDC 9 5A 24VDC 9 5A Maximal77V AL1024XB2V AL1024XB2V 19 4 5A 15A 32V 24VDC 9 7A 24VDC 9 7A MaximalV Series Features Sixteen 16 independently trigger controlled outputs Output options a Sixteen 16 Fail Safe filtered and electronically regulated power outputs b Six...

Page 4: ...ver the three upper screws Install the three lower screws and make sure to tighten all screws Enclosure Dimensions pg 20 2 The power supply is pre wired to the ground chassis Connect main incoming ground to the provided earth safety ground lug Connect unswitched AC power 220VAC 50 60Hz to the terminals marked L N on both power supply boards Use 14 AWG or larger for all power connections Keep power...

Page 5: ... switch upon a fire alarm input trigger to the ACM8 boards 10 Stand by Battery Connections Figs 3 5 pgs 10 12 For Access Control applications batteries are optional If batteries are not used a loss of AC will result in the loss of output voltage Batteries must be lead acid or gel type Connect one 1 12VDC battery to the terminals marked BAT for 12VDC operation Figs 3 5 pgs 10 12 Use two 2 12VDC bat...

Page 6: ...m Disconnect by activating the Normally Closed reset switch Output Voltage Test Under normal load conditions the DC output voltage should be checked for proper voltage level Power Supply Board Stand by Battery Specifications pg 8 Battery Test Under normal load conditions check that the battery is fully charged check specified voltage at the battery terminals and at the board terminals marked BAT t...

Page 7: ...AT for 12VDC operation Fig 3 pg 10 Fig 5 pg 12 Use two 2 12VDC batteries wired in series for 24VDC operation Figs 3 5 pgs 10 12 Access Power Controller Terminal Identification Terminal Legend Function Description Power 12VDC or 24VDC input from power supply board Control only applicable for Maximal11 These terminals can be connected to an external access control power supply to provide isolated op...

Page 8: ...ion 12VDC 40AH N A 3 5A 0 5A 24VDC 40AH N A 2 7A 0 7A Maximal33 AL600XB220 Refer to Fig 1a pg 9 for Switch SW1 location and position 12VDC 40AH N A 5 5A 5 5A 24VDC 40AH N A 5 5A 0 7A Maximal55 Maximal75 AL1012XB220 Factory set at 12VDC 12VDC 12AH 9 0A Battery capacity for emergency stand by at least 20 min N A Maximal75 AL1024XB2V Factory set at 24VDC 24VDC 12AH 7 7A 1 2A N A Maximal77 AL1024XB2V ...

Page 9: ...ed Power Supply For this application corresponding fuse F8 must be removed Keypad NC C NO COM OUTPUT 1 LED1 F1 NC C NO COM OUTPUT 2 IN GND 1 IN GND 2 IN GND 3 IN GND 4 IN GND 5 IN GND 6 IN GND 7 MAIN IN GND 8 LED2 LED3 LED4 LED5 LED6 LED7 LED8 J2 TRG FACP NC C NO COM OUTPUT 3 NC C NO COM OUTPUT 4 NC C NO COM OUTPUT 5 NC C NO COM OUTPUT 6 NO C NC INP T RET NC C NO COM OUTPUT 7 NC C NO COM OUTPUT 8 ...

Page 10: ...TPUT 2 IN GND 1 IN GND 2 IN GND 3 IN GND 4 IN GND 5 IN GND 6 IN GND 7 MAIN IN GND 8 LED2 LED3 LED4 LED5 LED6 LED7 LED8 J2 TRG NC C NO COM OUTPUT 3 NC C NO COM OUTPUT 4 NC C NO COM OUTPUT 5 NC C NO COM OUTPUT 6 NO C NC INP T RET NC C NO COM OUTPUT 7 NC C NO COM OUTPUT 8 Power Control F2 F3 F6 F7 F8 F4 F5 J1 J3 FACP INTERFACE 10A 250V 1 2 3 4 O N 1 2 3 4 O N NC C NO COM OUTPUT 1 LED1 F1 NC C NO COM ...

Page 11: ...ED6 LED7 LED8 J2 TRG NC C NO COM OUTPUT 3 NC C NO COM OUTPUT 4 NC C NO COM OUTPUT 5 NC C NO COM OUTPUT 6 NO C NC INP T RET NC C NO COM OUTPUT 7 NC C NO COM OUTPUT 8 Power Control F2 F3 F6 F7 F8 F4 F5 J1 J3 FACP INTERFACE 10A 250V 1 2 3 4 O N 1 2 3 4 O N NC C NO COM OUTPUT 1 LED1 F1 NC C NO COM OUTPUT 2 IN GND 1 IN GND 2 IN GND 3 IN GND 4 IN GND 5 IN GND 6 IN GND 7 MAIN IN GND 8 LED2 LED3 LED4 LED5...

Page 12: ...C NO COM OUTPUT 2 IN GND 1 IN GND 2 IN GND 3 IN GND 4 IN GND 5 IN GND 6 IN GND 7 MAIN IN GND 8 LED2 LED3 LED4 LED5 LED6 LED7 LED8 J2 TRG NC C NO COM OUTPUT 3 NC C NO COM OUTPUT 4 NC C NO COM OUTPUT 5 NC C NO COM OUTPUT 6 NO C NC INP T RET NC C NO COM OUTPUT 7 NC C NO COM OUTPUT 8 Power Control F2 F3 F6 F7 F8 F4 F5 J1 J3 FACP INTERFACE 10A 250V 1 2 3 4 O N 1 2 3 4 O N NC C NO COM OUTPUT 1 LED1 F1 N...

Page 13: ...ent conduit knockouts to be used Any conduit knockouts may be used For power limited applications use of conduit is optional All field wiring connections must be made employing suitable gauge CM or FPL jacketed wire or equivalent substitute Note Refer to wire handling drawing below for the proper way to install the CM or FPL jacketed wire Fig 6a External Jacketed Shield Incorrect Wire Handling Cor...

Page 14: ...cific application may require different conduit knockouts to be used Any conduit knockouts may be used For power limited applications use of conduit is optional All field wiring connections must be made employing suitable gauge CM or FPL jacketed wire or equivalent substitute Note Refer to wire handling drawing below for the proper way to install the CM or FPL jacketed wire Fig 7a External Jackete...

Page 15: ...ent conduit knockouts to be used Any conduit knockouts may be used For power limited applications use of conduit is optional All field wiring connections must be made employing suitable gauge CM or FPL jacketed wire or equivalent substitute Note Refer to wire handling drawing below for the proper way to install the CM or FPL jacketed wire Fig 8a External Jacketed Shield Incorrect Wire Handling Cor...

Page 16: ...ent conduit knockouts to be used Any conduit knockouts may be used For power limited applications use of conduit is optional All field wiring connections must be made employing suitable gauge CM or FPL jacketed wire or equivalent substitute Note Refer to wire handling drawing below for the proper way to install the CM or FPL jacketed wire Fig 9a External Jacketed Shield Incorrect Wire Handling Cor...

Page 17: ... POWER INPUT 12 OR 24 VAC OR VDC ACM8 POWER Fig 10 Optional hook up using two 2 isolated power supply inputs Only applicable on Maximal11V CUT JUMPER FROM FACP OUTPUT CIRCUIT FACP OUTPUT EOL TRG NO C NC FACP INTERFACE Fig 11 Polarity reversal input from FACP signaling circuit output polarity is referenced in alarm condition Fig 12 Normally Open Non Latching FACP trigger input N O TRIGGER INPUT TRG...

Page 18: ...nt d N C RESET SWITCH N O TRIGGER INPUT JUMPER TRG NO C NC Fig 13 Normally Open FACP Latching trigger input with reset JUMPER N C DRY TRIGGER INPUT TRG NO C NC FACP INTERFACE Fig 14 Normally Closed Non Latching FACP trigger input N C TRIGGER INPUT N C RESET SWITCH JUMPER TRG Fig 15 Normally Closed Latching FACP trigger input with reset ...

Page 19: ...Maximal11V Maximal33V Maximal55V Maximal77V Maximal75V Access Power Controllers Fused 19 Notes ...

Page 20: ...0 8mm 2 50 8mm 2 50 8mm 6 25 158 75mm 6 25 158 75mm 4 101 6mm 4 101 6mm 2 50 8mm 4 101 6mm 8 9 226 06mm 8 4 213 36mm 7 177 8mm 7 177 8mm 7 177 8mm 8 4 213 36mm 8 5 215 9mm 8 5 215 9mm 7 5 190 5mm 10 254mm 1 5 38 1mm 1 5 38 1mm 1 5 38 1mm 26 660 4mm 26 660 4mm 7 5 190 5mm 5 127mm 26 660 4mm Altronix is not responsible for any typographical errors 140 58th Street Brooklyn New York 11220 USA phone 71...

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