Phoenix Contact QUINT4-PS/48-110DC/24DC/2.5/ PT Скачать руководство пользователя страница 1

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Description

DC/DC converter

QUINT4-PS/48-110DC/24DC/2.5/

PT

© PHOENIX CONTACT

Data sheet

QUINT POWER power supplies are exceptionally small yet 

offer superior system availability in the sub 100 W power 

range.

Powerful

– Static boost of up to 125% (P

N

) for a sustained period

– Dynamic boost of up to 200% (P

N

) for 4.9 s

Space-saving

– Slim design

– Slim design for 120 mm control boxes

Preventive

– Function monitoring through adjustable signaling of 

power thresholds or output voltage

Flexible connection technology

– Tried-and-tested screw connection

– Fast Push-in connection

Durable

– Efficiency up to 92%

– Low power dissipation

Technical data (short form)

Input voltage range

48 V DC ... 110 V DC 

-37,5 % ...+40 %

Mains buffering

typ. 14 ms (48 V DC)

Nominal output voltage (U

N

)

24 V DC

Setting range of the output voltage 

(U

Set

)

24 V DC ... 28 V DC

Nominal output current (I

N

)

Static Boost (I

Stat.Boost

)

Dynamic Boost (I

Dyn.Boost

)

2.5 A

3.125 A (≤ 40 °C)

5 A (≤ 60 °C (4,9 s))

Output power (P

N

)

Output power (P

Stat. Boost

)

Output power (P

Dyn. Boost

)

60 W

75 W

120 W

Efficiency

typ. 93.7 % (110 V DC)

Residual ripple

< 20 mV

PP

MTBF (IEC 61709, SN 29500)

> 618000 h (40 °C)

Ambient temperature (operation)

-25 °C ... 70 °C

-40°C (startup type tested)

> 60 °C Derating: 2.5 %/K

Dimensions W/H/D

32 mm / 106 mm / 90 mm

Weight

0.24 kg

All technical specifications are nominal and refer to a room temperature of 25 °C and 70% relative humidity at 

100 m above sea level.

110261_en_00

2021-08-03

Содержание QUINT4-PS/48-110DC/24DC/2.5/ PT

Страница 1: ...power dissipation Technical data short form Input voltage range 48 V DC 110 V DC 37 5 40 Mains buffering typ 14 ms 48 V DC Nominal output voltage UN 24 V DC Setting range of the output voltage USet 2...

Страница 2: ...3 Ordering data 3 4 Technical data 4 5 Safety and installation notes 13 6 High voltage test HIPOT 14 7 Structure of the power supply 15 8 Mounting removing the power supply 18 9 Device connection term...

Страница 3: ...1 Multi channel electronic circuit breaker for protecting four loads at 24 V DC in the event of overload and short circuit With electronic locking of the set nominal currents For installation on DIN...

Страница 4: ...n 8 A Inrush current integral I2t typ 0 1 A2s Input fuse slow blow internal 4 A During the first few microseconds the current flow into the filter capacitors is excluded The SCCR value short circuit c...

Страница 5: ...0 0 0 0 5 1 0 1 5 2 0 2 5 3 0 3 5 4 0 I In A IOut A UIn 48 V DC UOut 24 V DC UIn 110 V DC UOut 24 V DC Input connection data Connection method Push in connection Conductor cross section rigid 0 2 mm...

Страница 6: ...n series yes Feedback voltage resistance 35 V DC Protection against overvoltage at the output OVP 32 V DC Rise time typical 1 s UOUT 10 90 Output connection data Connection method Push in connection C...

Страница 7: ...30 C The expected service life is based on the capacitors used If the capacitor specification is observed the specified data will be ensured until the end of the stated service life For runtimes beyon...

Страница 8: ...ature storage transport 40 C 85 C Max permissible relative humidity operation 95 at 25 C non condensing Installation height 5000 m 2000 m observe derating Vibration operation 15 Hz 2 5 mm amplitude 15...

Страница 9: ...1 12 UL Listed UL 61010 2 201 CAN CSA C22 2 No 61010 2 201 18 UL 121201 CSA C22 2 No 213 17 Class I Division 2 Groups A B C D T4 Hazardous Location CB Scheme IEC 61010 1 IEC 61010 2 201 Shipbuilding...

Страница 10: ...0 6 1 residential EN 61000 6 2 industrial and EN 61000 6 5 power station equipment zone IEC EN 61850 3 energy supply CE basic standard Minimum normative requirements of EN 61000 6 2 CE immunity for in...

Страница 11: ...n A Criterion A Power frequency magnetic field EN 61000 4 8 50 Hz 60 Hz 30 A m 16 67 Hz 50 Hz 60 Hz 100 A m 60 s not required 50 Hz 60 Hz 1 kA m 3 s not required 0 Hz 300 A m DC 60 s Comments Criterio...

Страница 12: ...al 1 MHz 1 kV Test Level 2 asymmetrical Signals 1 MHz 0 5 kV Test Level 2 symmetrical 1 MHz 0 5 kV Test Level 2 symmetrical 1 MHz 1 kV Test Level 2 asymmetrical 1 MHz 1 kV Test Level 2 asymmetrical Co...

Страница 13: ...re the correct size and have sufficient fuse protection For the connection parameters for wiring the power supply such as the required stripping length with and without ferrule refer to the technical...

Страница 14: ...certification authority 6 3 High voltage dielectric test performed by the customer Apart from routine and type tests to guarantee electrical safety the end user does not have to perform another high...

Страница 15: ...lock output voltage Output DC 3 Accommodation for cable binders 4 Integrated snap on foot for carrier rail mounting 5 QR code web link 6 Connection terminal block input voltage Input 7 Signaling DC OK...

Страница 16: ...50 0 30 30 50 5 30 30 If adjacent components are active and the nominal output power 50 there must be lateral spacing of 15 mm 32 b c 99 24 28V a a Input DC Output DC Boost 100 75 50 POut PThr Signal...

Страница 17: ...current limitation Switching transistor and main transmitter electrically isolating Secondary rectification and smoothing Filter Optocoupler electrically isolating Additional regulatory protection ag...

Страница 18: ...the integrated snap on foot audibly latches into place B 3 Check that the power supply is securely attached to the DIN rail Figure 7 Snapping the power supply onto the DIN rail 8 2 Removing the power...

Страница 19: ...ble binders Make sure that the connection wiring is attached safely and securely without damaging the connection wiring Figure 10 Secure connection wiring with cable binder Shorten the excess length o...

Страница 20: ...circuit proof and no load proof In the event of an error the output voltage is limited 10 Output characteristic curves The U I output characteristic curve is optimized for the following applications W...

Страница 21: ...termine the required recovery time tPause at the maximum dynamic boost current IDyn Boost based on the following values IBase Load Duration of the boost current tDyn Boost Ambient temperature 40 C or...

Страница 22: ...A the dynamic output current IDyn Boost of 5 A increases for 2 s tDyn Boost After a recovery time tPause of 6 s the dynamic boost is available once again Figure 18 Example recovery time for 40 C 1 7 5...

Страница 23: ...t is switched to active low 12 2 Rotary selector switch in position 50 75 or boost 100 In each of these switch positions the output power POut is monitored When the set threshold is exceeded the yello...

Страница 24: ...hen you are using signal connection types p l f and h for the signal paths DIN EN 61000 6 5 Electromagnetic Compatibility EMC The interface area may include items such as equipment devices apparatus a...

Страница 25: ...ries operation 13 2 Parallel operation You can connect several power supplies in parallel in order to increase the power or to supply the loads redundantly Figure 24 Schematic diagram in parallel oper...

Страница 26: ...hematic diagram redundant operation with diode Certain specifications apply in redundancy operation with regard to the configuration of the keepout areas In redundancy operation the power supplies are...

Страница 27: ...output more than the nominal power for a sustained period Figure 27 Output power depending on the ambient temperature 14 2 Installation height The power supply can be operated at an installation heigh...

Страница 28: ...locks facing downward Please observe the derating for any mounting other than the normal mounting position Reduce the output power based on the prevailing ambient temperature The recommended output po...

Страница 29: ...ing position 180 Z axis 14 3 4 Rotated mounting position 270 Z axis QUINT POWER Ord No xxxxxxx B o o s t 1 0 0 7 5 P ou t P Th r 5 0 D C O K U O ut S ig n a l S IG 2 4 2 8 V P Out C 0 25 50 75 100 125...

Страница 30: ...4 3 6 Rotated mounting position 270 X axis QUINT POWER O rd N o x x x x x x x B o o s t 1 0 0 7 5 P o u t P T hr 5 0 D C O K U O u t 2 4 2 8 V S i g n a l S I G P Out C 0 25 50 75 100 125 150 175 200...

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