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Tango8P(CB) - PoE Driven Multi-Output Power Supply

Installation Instructions:

Wiring methods shall be in accordance with the National Electrical Code/NFPA 70/NFPA 72/ANSI, the Canadian 
Electrical Code and with all local codes and authorities having jurisdiction . Product is intended for indoor use only . 
1 .  Mount unit in desired location . Mark and predrill holes in the wall to line up with the top two keyholes in 
  the enclosure . Install two upper fasteners and screws in the wall with the screw heads protruding . Place the 
  enclosure’s upper keyholes over the two upper screws, level and secure . Mark the position of the lower two 
  holes . Remove the enclosure . Drill the lower holes and install the two fasteners . Place the enclosure’s upper 
  keyholes over the two upper screws . Install the two lower screws and make sure to tighten all screws 
  (Enclosure Dimensions, pg. 8) . Secure enclosure to earth ground .
2 . Ensure all output jumpers [OUT1 - OUT8] on PDS8(CB) are placed in the
  OFF (center) position marked [•] (Fig. 1, pg. 4) .
3 .  Connect IEEE802 .3bt PSE from PoE source to RJ45 Jack marked [PoE+ Data Input]
  on the Tango1B board (Fig. 2b, pg. 4). If Data pass-through is required, connect another
  IEEE802 .3bt PSE to RJ45 Jack marked [Data Output] (Fig. 2a, pg. 4) . 
  CAUTION: Do not touch exposed metal parts.
  There are no user serviceable parts inside. Refer installation and servicing to qualified service personnel.
4 . Set each output [OUT1 - OUT8] to route power from Input 1 or Input 2 (jumper position 1 or 2) 
  (Fig. 1, 2, pg. 4, Fig. 3 pg. 6) . IN1 = 24VDC, IN2 = 12VDC .
 

Note: Measure output voltage before connecting devices . This helps avoiding potential damage .

6 .  Connect devices to terminal pairs 1 to 8, marked [P (Positive) - OUT1-OUT8, N (Negative)] 
  (Fig. 2, pg. 4, Fig. 3 pg. 6) .
6 .  When the use of stand-by batteries is desired, they must be Lithium Iron Phosphate (LiFePO4) . 

  Connect batteries to the terminals marked [+ BAT –] on Tango1B (battery leads included) (Fig. 2f, pg. 4) .
7 .  Connect appropriate signaling notification devices to terminals marked [C FAIL NC] (Fig. 2c, pg. 4)
  supervisory relay output .

Fig. 2 - Tango1B with PDS8 stacked above

 

Wiring:

Use 18 AWG or larger for all low voltage power connections .

2a

2b

2c

2d

2e

2f

PDS8
PDS8CB

Dual Voltage

Power Distribution

Module

+ INP1

 -- 

PWR1 +

O

F

F

IN

1

IN

2

Out1

<

1 off 

2>

PWR1 +

PWR2 +

PWR2 +

COM (--- )

COM (--- )

+ INP2

 -- 

IN2 Fuse

IN1 Fuse

Common   Power   Outputs (NEG)

N

P

OUT1

OUT2

OUT3

OUT4

OUT5

OUT6

OUT7

OUT8

 

8

10

10

3

3

3

3

3

3

3

3

Out2

<

1 off 

2>

Out3

<

1 off 

2>

Out4

<

1 off 

2>

Out5

<

1 off 

2>

Out6

<

1 off 

2>

Out7

<

1 off 

2>

Out8

<

1 off 

2>

1g

OFF
IN1
IN2

Fig. 1

Summary of Contents for Tango Series

Page 1: ...P 12VDC and or 24VDC selectable by output 75W max Eight 8 fuse protected outputs Built in Lithium Iron Phosphate Battery Charger Tango8PCB 12VDC and or 24VDC selectable by output 75W max Eight 8 Class 2 power limited PTC protected outputs Built in Lithium Iron Phosphate Battery Charger More than just power TM ...

Page 2: ... Multi Output Power Supply Table of Contents Overview pg 3 Specifications pg 3 Stand by Specifications pg 3 Installation Instructions pg 4 Wiring pg 4 LED Diagnostics pg 5 Terminal Identification pg 5 Enclosure Dimensions pg 8 ...

Page 3: ...sition for servicing Surge suppression Fuse PTC Ratings Main input fuses rated 10A 32V each PDS8 output fuses rated 3A 32V each PDS8CB output PTCs rated 2A each TANGO1B battery fuse rated 10A 32V each Ethernet Output Tango1B Pass through Ethernet Port data only 100 1G Battery Tango1B 12VDC battery charger for Lithium Iron Phosphate Battery LiFeP04 only Battery cont d Tango1B Unique technology allo...

Page 4: ...red connect another IEEE802 3bt PSE to RJ45 Jack marked Data Output Fig 2a pg 4 CAUTION Do not touch exposed metal parts There are no user serviceable parts inside Refer installation and servicing to qualified service personnel 4 Set each output OUT1 OUT8 to route power from Input 1 or Input 2 jumper position 1 or 2 Fig 1 2 pg 4 Fig 3 pg 6 IN1 24VDC IN2 12VDC Note Measure output voltage before con...

Page 5: ...n PDS8 LED ON Green 12VDC Output Green and Red 24VDC Output Terminal Identification Tango1B Terminal RJ45 Legend Function Description PoE Data Input IEEE802 3bt Input Fig 2b pg 4 Data Output Passes Data to Switch Fig 2a pg 4 C FAIL NC Power and Battery Fail Fig 2c pg 4 12V 12VDC output Fig 2d pg 4 24V 24VDC output Fig 2e pg 4 BAT Lithium Iron Phosphate battery backup Fig 2f pg 4 8 Pin Connector Fi...

Page 6: ...Outputs NEG N P OUT1 OUT2 OUT3 OUT4 OUT5 OUT6 OUT7 OUT8 1 2 3 4 5 6 7 8 10 10 3 3 3 3 3 3 3 3 Out2 1 off 2 Out3 1 off 2 Out4 1 off 2 Out5 1 off 2 Out6 1 off 2 Out7 1 off 2 Out8 1 off 2 Supervision power limited PoE Input Data Pass Through LiFeP04 Battery connection non power limited DC Output to devices Tango8P non power limited Tango8PCB power limited Optional LiFeP04 Battery PTC Protected Output...

Page 7: ...Tango8P CB PoE Driven Multi Output Power Supply 7 Notes ...

Page 8: ...0S MEMBER 1 5 38 1mm 1 5 38 1mm 1 5 38 1mm 5 0 127 0mm 5 0 127 0mm 1 5 38 1mm 2 0 50 8mm 2 0 50 8mm 1 75 44 45mm 1 75 44 45mm 4 5 114 3mm 1 25 31 75mm 4 5 114 3mm 1 25 31 75mm 1 25 31 75mm 1 25 31 75mm 1 1 27 94mm 1 1 27 94mm 0 79 20 06mm 1 1 27 94mm 0 91 23 114mm 0 91 23 114mm 1 375 34 925mm 1 125 28 575mm 15 5 393 7mm 4 615 117 22mm 12 23 310 64mm 4 615 117 22mm 1 5 38 1mm 1 5 38 1mm 4 615 117 2...

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