Phoenix Contact QUINT-PS/24DC/24DC/5/CO Datasheet
Phoenix Contact QUINT-PS/24DC/24DC/5/CO Datasheet

Phoenix Contact QUINT-PS/24DC/24DC/5/CO Datasheet

Dc/dc converter with sfb technology, dip-coated, primary-switched, input: 24 v dc, output: 24 v dc, output current: 5 a

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QUINT-PS/24DC/24DC/ 5/CO
DC/DC converter with SFB technology, dip-coated,
primary-switched, input: 24 V DC, output: 24 V DC,
output current: 5 A
Data sheet
105537_en_02
1

Description

QUINT DC/DC converter – superior system availability from
SFB technology
Compact DC/DC converters from the new QUINT POWER
generation maximize your system availability. With SFB
technology (Selective Fuse Breaking Technology), 6-fold
nominal current for 12 ms, it is possible to trigger even
standard circuit breakers reliably and quickly. Faulty current
paths are switched off selectively, the fault is located, and
important system parts remain in operation. Comprehensive
diagnostics are provided through constant monitoring of the
input voltage, output voltage and output current. Preventive
function monitoring visualizes critical operating states and
indicates them to the controller before errors can occur.
The application fields for DC/DC converters are numerous
Changing the voltage level
Refreshing the output voltage for constant voltage at
the end of long cables
Setup of independent supply systems by electrical
isolation
Make sure you always use the latest documentation.
It can be downloaded from the product at phoenixcontact.net/products.
© PHOENIX CONTACT
2017-07-28
Features
Wide-range voltage input
Galvanic isolation
Reverse polarity protection
Preventive function monitoring
Reliable starting of difficult loads with POWER BOOST
static power reserve
Fast tripping of standard circuit breakers with dynamic
SFB technology power reserve
High MTBF > 890000 h (40 °C)
Flexible use
Dip coating enables use in oxidizing and sulfidizing
atmospheres with humidities of up to 100 %
Adjustable output voltage
Can be used in Class I, Division 2, Groups A, B, C, D
(Hazardous Location) ANSI-ISA 12.12

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Summary of Contents for Phoenix Contact QUINT-PS/24DC/24DC/5/CO

  • Page 1: Description

    QUINT-PS/24DC/24DC/ 5/CO DC/DC converter with SFB technology, dip-coated, primary-switched, input: 24 V DC, output: 24 V DC, output current: 5 A Data sheet 105537_en_02 © PHOENIX CONTACT 2017-07-28 Description QUINT DC/DC converter – superior system availability from Features SFB technology –...
  • Page 2: Table Of Contents

    ....................17 16.2 Voltage-dependent derating ....................18 16.3 Position-dependent derating Operating modes ........................21 ........................ 21 17.1 Series operation ....................... 21 17.2 Parallel operation ......................21 17.3 Redundant operation ....................... 22 17.4 Increasing power 105537_en_02 PHOENIX CONTACT 2 / 22...
  • Page 3: Ordering Data

    Thermomagnetic device circuit breaker, 1-pos., tripping CB TM1 16A SFB P 2800845 characteristic SFB, 1 PDT contact, plug for base element. Our range of accessories is being continually extended, our current range can be found in the download area. 105537_en_02 PHOENIX CONTACT 3 / 22...
  • Page 4: Technical Data

    Circuit breaker against surge voltage at output by invasive < 35 V DC foreign matter Feedback resistance 35 V DC Power consumption Maximum power dissipation in no-load condition 2.4 W Power loss nominal load max. 11.4 W 105537_en_02 PHOENIX CONTACT 4 / 22...
  • Page 5 0.2 mm² ... 2.5 mm² Conductor cross section, flexible 0.2 mm² ... 2.5 mm² Conductor cross section AWG/kcmil 24 ... 12 Stripping length 8 mm Screw thread Tightening torque 0.5 Nm ... 0.6 Nm 105537_en_02 PHOENIX CONTACT 5 / 22...
  • Page 6 UL/C-UL Recognized UL 60950-1 UL ANSI/ISA-12.12.01 Class I, Division 2, Groups A, B, C, D (Hazardous Location) Shipbuilding DNV GL (EMC B) Current approvals/permissions for the product can be found in the download area under phoenixcontact.net/ products. 105537_en_02 PHOENIX CONTACT 6 / 22...
  • Page 7 Conducted interference EN 61000-4-6 Input/Output/Signal asymmetrical asymmetrical Frequency range 0.15 MHz ... 80 MHz 0.15 MHz ... 80 MHz Voltage 10 V (Test Level 3) 10 V (Test Level 3) Comments Criterion A Criterion A 105537_en_02 PHOENIX CONTACT 7 / 22...
  • Page 8 All technical specifications are nominal and refer to a room temperature of 25 °C and 70% relative humidity at 100 m above sea level. Current approvals/permissions for the product can be found in the download area under phoenixcontact.net/ products. 105537_en_02 PHOENIX CONTACT 8 / 22...
  • Page 9: Safety Regulations And Installation Notes

    1 (e.g., by line protection on the primary side). – All feed lines are sufficiently protected and dimensioned! – All output lines are dimensioned according to the maximum output current of the device or separately protected! – Sufficient convection is guaranteed! 105537_en_02 PHOENIX CONTACT 9 / 22...
  • Page 10: Basic Circuit Diagram

    > 19.2 V, active switching output I < I , active switching output DC OK, active switching output 10 SFB switch (left: SFB activated, right: SFB deactivated) 11 Strain relief for connecting cables 12 DIN rail adapter 105537_en_02 PHOENIX CONTACT 10 / 22...
  • Page 11: Dimensions And Mounting Positions

    0 ... 50 % -25 ... 70 °C 40 / 20 ≥50 ... 100 % -25 ... ≤40 °C ≥100 ... 125 % ≥50 ... 100 % >40 ... 70 °C Normal mounting position, installation depth 125 mm (+ DIN rail) (delivery state) Rotated mounting position, 270° Y-axis, installation depth: 35 mm (+ DIN rail) 105537_en_02 PHOENIX CONTACT 11 / 22...
  • Page 12: Mounting On Din Rails

    NOTE: Device may be damaged If an internal fuse trips, this is due to a device fault. In this case, the DC/DC converter must be inspected in the factory. Figure 5 Rotated mounting position (270° Y-axis) 105537_en_02 PHOENIX CONTACT 12 / 22...
  • Page 13: Output

    The connecting cables on the secondary side should have – SFB Technology = 30 A (for 12 ms) large cross sections to keep the voltage drops in the cables – = 120 W as low as possible. – = 150 W BOOST 105537_en_02 PHOENIX CONTACT 13 / 22...
  • Page 14: Sfb Technology

    Ensure the lowest possible cable impedance at the input of the DC/DC converter by using short cable lengths and large cable cross sections. Observe the maximum distance between the source to be supplied and the DC/DC converter. (see also SFB configuration) 105537_en_02 PHOENIX CONTACT 14 / 22...
  • Page 15: Sfb Configuration

    Ambient temperature: +20 °C – The internal resistances of the circuit breakers are considered. – In addition to short circuit current, the relevant power supply unit supplies half of the nominal current for paths connected in parallel. 105537_en_02 PHOENIX CONTACT 15 / 22...
  • Page 16: Signaling

    Meaning Normal POWER Overload PLC Digital Input operation BOOST, active   > 19.2 V DC < 19.2 V DC "U < 19.2 V" LED, yellow Active switching high output "U > 19.2 V" Meaning 105537_en_02 PHOENIX CONTACT 16 / 22...
  • Page 17: Active Switching Output "Uin > 19.2 V

    The upper voltage limit is 32 V DC for both starting and operation. -25 ℃ ... 40 ℃ 125% 100% 40 ℃ ... 60 ℃ = 24 V = 26 V = 28 V [U /V] 105537_en_02 PHOENIX CONTACT 17 / 22...
  • Page 18: Position-Dependent Derating

    Normal mounting position BOOST t p u > .2 V Ι < Ι [°C] - 2 9 < 1 9 . 2 I n p Rotated mounting position 90° X-axis BOOST [°C] 105537_en_02 PHOENIX CONTACT 18 / 22...
  • Page 19 QUINT-PS/24DC/24DC/ 5/CO Rotated mounting position 180° X-axis BOOST [°C] Rotated mounting position 270° X-axis BOOST I N T [°C] 105537_en_02 PHOENIX CONTACT 19 / 22...
  • Page 20 QUINT-PS/24DC/24DC/ 5/CO Rotated mounting position 90° Z-axis BOOST [°C] Rotated mounting position 270° Z-axis BOOST [°C] 105537_en_02 PHOENIX CONTACT 20 / 22...
  • Page 21: Operating Modes

    +48 V or -48 V as well as ±24 V DC can also be made available. Optimization of redundancy can be achieved by decoupling and monitoring. Phoenix Contact offers a comprehensive product range for this purpose (e. g., QUINT-DIODE or QUINT-ORING). +24 V...
  • Page 22: Increasing Power

    Otherwise, the loads should be distributed between individual devices that are independent of one another. + – + – – IΣ= 2 x I + – PHOENIX CONTACT GmbH & Co. KG • 32823 Blomberg • Germany 105537_en_02 22 / 22 phoenixcontact.com...

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