2866378 [PHOENIX]
DC-DC Regulated Power Supply Module, 1 Output, 240W, Hybrid, ROHS COMPLIANT, PACKAGE;型号: | 2866378 |
厂家: | PHOENIX CONTACT |
描述: | DC-DC Regulated Power Supply Module, 1 Output, 240W, Hybrid, ROHS COMPLIANT, PACKAGE |
文件: | 总12页 (文件大小:608K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
QUINT-PS-24DC/24DC/10
QUINT DC-DC converter, primary switched mode,
input: 24 V DC, output: 24 V DC/10 A
INTERFACE
© PHOENIX CONTACT - 02/2006
Data Sheet
Description
The QUINT DC-DC converter 24 V/10 A converts the DC
voltage from 18 V ... 32 V to an adjustable, controlled and
galvanically separated 24 V output voltage. If no regulated
and stable 24 V DC voltage is available to supply a load,
DC-DC converters ensure the adjustment of the 24 V load:
A non-regulated DC voltage is converted to an adjustable
output voltage of 22.5 V ... 28.5 V.
Due to electrical isolation, the DC voltage circuits are elec-
trically isolated from each other in a safe way. With a design
width of only 80 mm, the housing is extremely slim. The
floating DC-OK output and an LED are available for signal-
ing.
Danger!
Components with dangerously high voltage and high stored energy are located in the device!
Never carry out work on live parts!
Depending on the ambient temperature and the load, the housing can become very hot!
Make sure you always use the the latest documentation.
It can be downloaded at www.download.phoenixcontact.com.
A conversion table is available on the Internet at
www.download.phoenixcontact.com/general/7000_en_00.pdf.
This data sheet is valid for the following products listed on the following page:
PHOENIX CONTACT GmbH & Co. KG • 32823 Blomberg • Germany
102126_03_en
1
Phone: +49-(0) 5235-3-00 • Fax: +49-(0) 5235-3-4 12 00 • www.phoenixcontact.com
www.phoenixcontact.com/salesnetwork
QUINT-PS-24DC/24DC/10
Order data
Description
Type
Order No.
Pcs./pkt.
QUINT DC-DC converter, primary switched mode, input: 24 V DC,
output: 24 V DC/10 A
QUINT-PS-24DC/24DC/10
2866378
1
Technical data
Input data
Nominal input voltage
Input voltage range DC
DC frequency range
Current consumption
Inrush current limitation/I2t
Power failure bypass
Typical response time
Protective circuitry
Input fuse
24 V DC
18 V DC ... 32 V DC
0 Hz
Approx. 11.4 A (at 24 V)
< 20 A (typical)
> 3 ms (for 24 V DC)
< 1 s
Transient surge protection Varistor
Internal, 25A T
Output data
Nominal output voltage
Setting range of the output voltage
Output current
24 V ±1%
22.5 V DC ... 28.5 V DC
10 A (-25 °C ... 60 °C)
From +60°C 2.5% per Kelvin
Approx. 18 A
Derating
Current limitation
Max. capacitive load
Control deviation
Unlimited
< 1 % (change in load, static 10% ... 90%)
< 2 % (change in load, dynamic 10% ... 90%)
< 0.1 % (change in input voltage ±10%)
Power loss nominal load max.
Maximum power dissipation idling
Efficiency
28 W
2 W
> 88 %
Ascent time
< 2 ms (UOUT (10% ... 90%))
< 100 mVSS
Residual ripple
Peak switching voltages
Connection in parallel
< 100 mVSS
Yes, for redundancy and increased capacity
Yes, limited to approx. 35 V DC
35 V DC
Surge protection against internal surge voltages
Resistance to reverse feed
Status indication
Status display
"DC OK" LED green
UOUT > 21.5 V: LED lights up
Signal output
DC OK active
Output description
Continuous current
Output voltage
UOUT > 21.5 V: High signal
Max. 40 mA
+ 24 V DC
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PHOENIX CONTACT
2
QUINT-PS-24DC/24DC/10
Signal output
DC OK floating
Output description
Continuous current
Maximum switching voltage
UOUT > 21.5 V: Contact closed
Max. 1 A
Max. 30 V AC/DC
Ratings / standards
Electrical Equipment for Machinery
EN 60204
Safety transformers for power supply units
Electrical safety (of information technology equipment)
EN 61558-2-17
EN 60950/VDE 0805 (SELV)
UL/C-UL recognized UL 60950
UL/C-UL Listed UL 508
German Lloyd, ABS
EN 50178/VDE 0160 (PELV)
EN 60950 (SELV)
Industrial control equipment
Shipbuilding
Electronic equipment for use in electrical power installations
SELV
EN 60204 (PELV)
Safe isolation
DIN VDE 0100-410
Protection against electric shock, basic requirements for safe isolation in DIN VDE 0106-101
electrical equipment
General data
Insulation voltage input/output
1.5 kV AC (type test)
1 kV AC (routine test)
Horizontal DIN rail NS 35, EN 60715
IP20
Installation position
Degree of protection
Class of protection
MTBF
Class 3
> 500 000 h in acc. with IEC 61709 (SN 29500)
Housing version
Width
AluNox (AlMg1)
80 mm
Height
130 mm
125 mm
122 mm
130 mm
83 mm
Depth
Width with alternative assembly
Height with alternative assembly
Depth with alternative assembly
Weight
0.95 kg
Climatic data
Ambient temperature (operation)
Ambient temperature (storage/transport)
Max. permissible. relative humidity (operation)
Vibration (operation)
-25 °C ... 70 °C (> 60°C derating)
-40 °C ... 85 °C
95 % (at 25°C, no condensation)
< 15 Hz, amplitude ±2.5 mm in acc. with IEC 60068-2-6
15 Hz ... 150 Hz, 2.3g, 90 min.
30g in all directions in acc. with IEC 60068-2-27
2
Shock
Pollution degree in acc. with EN 50178
Climatic class
3K3 (in acc. with EN 60721)
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PHOENIX CONTACT
3
QUINT-PS-24DC/24DC/10
Conformance with EMC directive 89/336/EEC
Immunity to interference in acc. with EN 61000-6-2
Discharge of static electricity in acc. with EN 61000-4-2
Housing
Level 3
8 kV
Contact discharge
Discharge in air
8 kV
Comments
Criterion B
Electromagnetic HF field in acc. with EN 61000-4-3
Housing
Level 3
Frequency range
80 MHz ... 2 GHz
10 V/m
Field intensity
Comments
Criterion A
Fast transients (burst) in acc. with EN 61000-4-4
Input
2 kV (Level 3 - asymmetrical)
2 kV (Level 3 - asymmetrical)
1 kV (Level 2 - asymmetrical)
Output
Signal
Surge voltage capacities (surge) in acc. with EN 61000-4-5
Input/Output/Signal
2 kV (Level 3 - asymmetrical)
1 kV (Level 3 - asymmetrical)
Criterion B
Comments
Conducted disturbance in acc. with EN 61000-4-6
Input/Output/Signal
Frequency range
Voltage
Level 3 - asymmetrical
0.15 MHz ... 80 MHz
10 V
Comments
Criterion A
Emitted interference in acc. with EN 61000-6-3
Radio interference voltage in acc. with EN 55011
Emitted radio interference in acc. with EN 55011
EN 55011 (EN 55022) Class B, area of application: Industry and residential
EN 55011 (EN 55022) Class B, area of application: Industry and residential
Note:
Criterion A: Normal operating behavior within the defined limits.
Criterion B: Temporary impairment to operational behavior that is corrected by the device itself
EN 55011 corresponds to CISPR11 / EN 55022 corresponds to CISPR22
EN 61000 corresponds to IEC 1000
Block diagram
DC OK
13
14
102126_03_en
PHOENIX CONTACT
4
QUINT-PS-24DC/24DC/10
Structure
1 - DC input
7
2 - DC output
3 - DC OK output active
4 - DC OK output floating
13
3
14
4
5 - Potentiometer 22.5 V DC ... 28.5 V DC
6 - DC OK control lamp
DC
K
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OK
1
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2
-
1
5
3
-6
7 - Universal DIN rail adapter UTA 107
0
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6
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[mm2]
stranded
AWG
[Nm]
Torque
solid
Input
Output
signal
0.2 - 2.5 0.2 - 2.5 24 - 12
0.2 - 2.5 0.2 - 2.5 24 - 12
0.2 - 2.5 0.2 - 2.5 24 - 12
0.5 - 0.6
0.5 - 0.6
0.5 - 0.6
Input data
Nominal input voltage
Input voltage range DC
Input fuse
24 V DC
18 V DC ... 32 V DC
internal, 25A T
Type of connection
Stripping length
COMBICON screw/plug connection
7 mm
Output data
Nominal output voltage
24 V ±1%
Setting range of the output voltage
Output current
22.5 V DC ... 28.5 V DC
10 A (-25 °C ... 60 °C)
COMBICON screw/plug connection
7 mm
Type of connection
Stripping length
102126_03_en
PHOENIX CONTACT
5
QUINT-PS-24DC/24DC/10
Safety and warning notes
The power supply units are built-in devices. The device may only be installed and put into operation by qual-
ified personnel. The corresponding national regulations (e.g. VDE, DIN) must be observed.
Danger!
Components with dangerously high voltage and high stored energy are located in the device!
Never carry out work on live parts!
Depending on the ambient temperature and the load, the housing can become very hot!
Before startup please ensure:
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!
Installation
In order to guarantee sufficient convection, we
recommend observing the following minimum
distance to other modules: 5 cm in a vertical di-
rection and 0 cm in a horizontal direction.
The power supply unit can be snapped onto all
DIN rails in acc. with EN 60715. They must be
horizontal (connecting terminal blocks below).
13
14
DC
C
R
OK
1
3
1
4
DC
O
K
Output DC 24
UINTPO
Q
DC OK
Adjust
22.5-28.5V
Input
D
C
24V
102126_03_en
PHOENIX CONTACT
6
QUINT-PS-24DC/24DC/10
Installation position
(80)
(122)
DC
-
+
-
+
13 14 OK
DC OK
Adjust
22.5-29.5V
Input
DC 24V
-
+
Slim-style installation: Installation depth 125 mm (+ DIN rail) (state at delivery)
Low-profile installation: Installation depth 83 mm (+ DIN rail)
Slim-style installation:
Assembly
Position the module with the DIN rail guide on the upper edge
of the DIN rail, and snap it in with a downward motion.
Dismantling
Pull the snap lever open with the aid of a screwdriver and
slide the module out at the lower edge of the DIN rail.
102126_03_en
PHOENIX CONTACT
7
QUINT-PS-24DC/24DC/10
Low-profile installation:
Low-profile installation can be achieved by mounting the device at right-angles to the DIN rail. Mount the DIN rail adapter
(UTA 107) as described in the figure. No additional mounting material is required. Fixing screws: Torx T10 (torque 0.8 Nm
... 0.9 Nm).
Input
The connection is made using the "+" and "-" screw connec-
tions.
Protection of the primary side
Device installation must be carried out according to the reg-
ulations in EN 60950.
For device protection, there is an internal fuse. Additional de-
vice protection is not necessary.
13
3
14
4
DC
K
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OK
1
3
1
4
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5
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5
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0
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If an internal fuse is triggered, there is most
probably a malfunction in the device. In this
case, the device must be inspected in the fac-
tory!
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102126_03_en
PHOENIX CONTACT
8
QUINT-PS-24DC/24DC/10
Output
Make sure that all output lines are dimen-
sioned according to the maximum output cur-
rent or are separately protected! The cables on
the secondary side must have large cross sec-
tions in order to keep the voltage drops on the
lines as low as possible.
13
3
14
4
DC
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OK
1
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5
2
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5
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0
0
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0
0
-3
0
0
1
1
6
6
-1
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10
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The connection is made using the "+" and "-" screw connections on the screw connection of the DC output. At the time of
delivery, the output voltage is 24 V DC. The output voltage can be set on the potentiometer.
Protection of the secondary side
The device is electronically protected against short circuit and idling. In the event of a malfunction, the output voltage is
limited to 35 V DC.
Signaling
The two DC OK outputs are for preventive monitoring of the functions of the power supply unit. A floating signal contact and
an active DC OK signal are available. The DC OK LED also enables evaluation of the function of the power supply directly
on site.
State 1
State 2
DC OK LED
ON
OFF
Active DC OK switching output
Floating DC OK output
Meaning
U = +24 V (in reference to "-") U = 0 V (in reference to "-")
Closed Open
Normal operation of the power 1. The output voltage is less than 21.5 V.
supply (UOUT > 21.5 V)
There is a secondary consumer short circuit or
overload.
2. There is no input voltage or there is a device
fault.
102126_03_en
PHOENIX CONTACT
9
QUINT-PS-24DC/24DC/10
Floating contact
The floating signal contact opens and signalizes a drop in the
output voltage of 21.5 V. Signals and ohmic loads of up to
30 V and currents of up to 1 A can be connected. For heavily
inductive loads such as a relay, a suitable protection circuit
(e.g. damping diode) is necessary.
1 3 1 4
+ + – –
DC OK
Active signal output
The 24 V DC signal is applied between the "DC OK" and "-"
connecting terminal blocks and can carry up to 40 mA. When
the output voltage drops below 21.5 V, this signal output sig-
nals by switching from "active high" to "low".
The DC OK signal is decoupled from the power output. It is
thus not possible for parallel switched devices to provide ex-
ternal supply.
13 14
- -
+ +
DC OK
The 24 V DC signal can be directly connected to a logic input
for evaluation.
Signal loop
Device 1
Output 24V DC
Device 2
Output 24V DC
The two above-mentioned signal outputs can be easily com-
bined.
Example: Monitoring of two devices.
1 3 1 4
1 3 1 4
+ + – –
+ + – –
Use the active signal output of device 1 and loop in the float-
ing signal output of device 2. In the event of malfunctioning,
a common alarm is output. Any number of devices can be
looped in. This signal combination saves wiring costs and
logic inputs.
24 V DC
40 mA
DC OK
102126_03_en
PHOENIX CONTACT 10
QUINT-PS-24DC/24DC/10
Function
Output characteristic curve
U
[ ]
OUT
V
240 W
At environmental temperatures of Tamb < +60°C, the device
can continuously supply 10 A at nominal voltage.
24
U
N
In the event of a higher load, the operating point follows the
U/I characteristic curve depicted in the figure. The output cur-
rent is limited to IBOOST. Thereby, the device does not switch
off, but rather supplies a continuous output current. The sec-
ondary voltage is reduced until the short circuit on the sec-
ondary side has been remedied.
< 60 °C
The U/I characteristic curve ensures that both heavily capac-
itive loads and devices with DC/DC converters in the primary
circuit can be fed without problems using QUINT POWER.
Downstream fuses are triggered reliably. Selectivity in the
design of your system is guaranteed at all times.
I
OUT
[ ]
A
10
I
N
UN = 24 V
IN = 10 A
PN = 240 W
Thermal behavior
With an ambient temperature of up to +60°C, the device sup-
plies the continuous output current of IN. In the case of ambi-
ent temperatures above +60°C, the output current must be
reduced by 2.5% per Kelvin increase in temperature. The de-
vice does not switch off at ambient temperatures of +70°C or
thermal overload. The output capacity is reduced as far as
necessary to provide device protection. After it has cooled
down, the output capacity is increased again.
UOUT = 24 V
IN
0
0
20
40
60
Ambient temperature [°C]
102126_03_en
PHOENIX CONTACT 11
QUINT-PS-24DC/24DC/10
Parallel operation
Devices of the same type can be connected in parallel to en-
able both redundancy and an increase in efficiency. No other
alignment is necessary when in the state of delivery.
If the output voltage is adjusted, a uniform distribution of
power is guaranteed by setting all parallel operated power
supply units to exactly the same output voltage.
To ensure symmetrical distribution of power, we recommend
designing all cable connections from the power supply unit to
a busbar of the same length and with the same conductor
cross section. The system makes it advisable to install a pro-
tective circuit at the output of each device when more than
two power supply units are connected in parallel (e.g. decou-
pling diode or DC fuse). This prevents high reverse feed cur-
rents in the event of a secondary device fault.
Redundant operation
IN
IN
Redundant circuits are suitable for the supply of systems
which make especially high requirements on the operational
safety. If a fault occurs in the primary circuit of the first power
supply unit, the second device automatically takes over the
entire power supply, without interruption, and vice versa. For
this reason, the power supply units to be connected in paral-
lel are dimensioned in such a way that the total current re-
quirement of all consumers can be completely covered by
one power supply unit. 100% redundancy makes external
decoupling diodes necessary (QUINT-DIODE/40, Order No.
2938963)!
-
-
+
+
+
-
Σ = IN
-
+
Increased performance
IN
IN
For n parallel connected devices, the output current can be
increased to n x IN. Parallel connection to increase efficiency
is used for the expansion of existing systems. It is advisable
to use parallel connection if the power supply unit does not
cover the current requirement of the most powerful con-
sumer. Otherwise the consumers should be spread among
individual devices independent of one another. A maximum
of five devices can be connected in parallel!
-
-
+
+
+
-
Σ = 2 x IN
-
+
102126_03_en
PHOENIX CONTACT 12
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