MEANWELL RSP

RSP-2400
2400W Single Output Power Supply
series
Features :
AC input 180 ~ 264VAC
AC input active surge current limiting
High efficiency up to 91%
Built-in active PFC function,PF>0.95
Protections: Short circuit / Overload / Over voltage / Over temperature
/ Fan alarm
Forced air cooling by built-in DC with fan speed control function
Output voltage can be trimmed between 20~110% of the rated output voltage
3
High power density 12.5W/inch
Current sharing up to 3 units
Alarm signal output (relay contact and TTL signal)
Built-in 12V/0.1A auxiliary output for remote control
Built-in remote ON-OFF control
Built-in remote sense function
3 years warranty
SPECIFICATION
MODEL
OUTPUT
INPUT
RSP-2400-12
RSP-2400-24
RSP-2400-48
DC VOLTAGE
12V
24V
48V
RATED CURRENT
166.7A
100A
50A
CURRENT RANGE
0 ~ 166.7A
0 ~ 100A
0 ~ 50A
RATED POWER
2000.4W
2400W
2400W
RIPPLE & NOISE (max.) Note.2 150mVp-p
150mVp-p
200mVp-p
VOLTAGE ADJ. RANGE
22 ~ 28V
43 ~ 56V
1.0%
1.0%
10.8 ~ 13.2V
VOLTAGE TOLERANCE Note.3 1.0%
LINE REGULATION
0.5%
0.5%
0.5%
LOAD REGULATION
0.5%
0.5%
0.5%
SETUP, RISE TIME
1000ms, 80ms at full load
HOLD UP TIME (Typ.)
12ms at full load
VOLTAGE RANGE
180 ~ 264VAC
FREQUENCY RANGE
47 ~ 63Hz
POWER FACTOR (Typ.)
0.95/230VAC at full load
EFFICIENCY (Typ.)
87%
AC CURRENT (Typ.)
INRUSH CURRENT (Typ.)
15.5A/180VAC
60A/230VAC
LEAKAGE CURRENT
<2.0mA / 240VAC
OVERLOAD
PROTECTION OVER VOLTAGE
254 ~ 370VDC
90%
100 ~ 112% rated output power
User adjustable continuous constant current limiting or constant current limiting with delay shutdown after 5 seconds, re-power on to recover
13.8 ~ 16.8V
28.8 ~ 33.6V
95
95
AUXILIARY POWER(AUX)
Protection type : Shut down o/p voltage, recovers automatically after temperature goes down
[email protected](Only for Remote ON/OFF control)
WORKING TEMP.
5
5
(12V), 100
(12V), 85
5
5
(24V,48V) (TSW1: detect on heatsink of power transistor)
(24V), 80
5 (48V) (TSW2 : detect on heatsink of o/p diode)
Please see the Function Manual
Please see the Function Manual
2.4 ~ 13.2V
4.8 ~ 28V
-20 ~ +70
(Refer to "Derating Curve")
20~90% RH non-condensing
TEMP. COEFFICIENT
VIBRATION
SAFETY STANDARDS
SAFETY & WITHSTAND VOLTAGE
ISOLATION RESISTANCE
EMC
EMC EMISSION
(Note 4)
0.05%/ (0 ~ 50 )
10 ~ 500Hz, 2G 10min./1cycle, 60min. each along X, Y, Z axes
UL60950-1, TUV EN60950-1 approved
EMC IMMUNITY
MTBF
DIMENSION
PACKING
9.6 ~ 56V
Please see the Function Manual
WORKING HUMIDITY
ENVIRONMENT STORAGE TEMP., HUMIDITY
NOTE
57.6 ~ 67.2V
Protection type : Shut down o/p voltage, re-power on to recover
OVER TEMPERATURE
REMOTE ON/OFF CONTROL
FUNCTION ALARM SIGNAL OUTPUT
OUTPUT VOLTAGE TRIM
CURRENT SHARING
OTHERS
91.5%
12A/230VAC
-40 ~ +85
, 10 ~ 95% RH
I/P-O/P:3KVAC
I/P-FG:1.5KVAC
O/P-FG:0.5KVAC
I/P-O/P, I/P-FG, O/P-FG:100M Ohms / 500VDC / 25 / 70% RH
Compliance to EN55022 (CISPR22), EN61000-3-2,-3
Compliance to EN61000-4-2,3,4,5,6,8,11, EN55024, light industry level, criteria A
106.7K hrs min. MIL-HDBK-217F (25
278*177.8*63.5mm (L*W*H)
3.3Kg; 4pcs/14.2Kg/1.89CUFT
)
1. All parameters NOT specially mentioned are measured at 230VAC input, rated load and 25 of ambient temperature.
2. Ripple & noise are measured at 20MHz of bandwidth by using a 12" twisted pair-wire terminated with a 0.1uf & 47uf parallel capacitor.
3. Tolerance : includes set up tolerance, line regulation and load regulation.
4. The power supply is considered a component which will be installed into a final equipment. The final equipment must be re-confirmed that it still meets
EMC directives. For guidance on how to perform these EMC tests, please refer to “EMI testing of component power supplies.”
(as available on http://www.meanwell.com)
File Name:RSP-2400-SPEC 2011-12-19
RSP-2400
2400W Single Output Power Supply
Mechanical Specification
Case No.982B
series
Unit:mm
278
236.3
40
CN1 CN2
8 64 2
7 53 1
20
38
63.5
12.5
27
CN3
8 6 4 2 10 8 6 4 2
7 5 31 9 75 31
8-M4(Both Sides) L=5mm
236.3
7.9
27
4-M4 L=5mm
OUTPUT
4
+V
-V
162
Air flow
direction
+
SVR
CN3
8 6 4 2 10 8 6 4 2
7 5 31 97 5 31
177.8
LED
CN1 CN2
8 642
7 531
TB1
1
13
2
3
10
INPUT
16max.
AC Input Terminal Pin No. Assignment
Pin No.
1
2
3
Control Pin No. Assignment(CN1,CN2) : HRS DF11-8DP-2DS or equivalent
Pin No.
Assignment
AC/L
AC/N
FG
1
2
3
4
Assignment
RCG
RC
PV
PS
Pin No.
5,7
6
8
Terminal
Assignment Mating Housing
-S
CS(Current Share) HRS DF11-8DS HRS DF11-**SC
or equivalent or equivalent
+S
RCG: Remote ON/OFF Ground
RC : Remote ON/OFF
PV :Output Voltage External Control
PS : Reference Voltage Terminal
-S : -Remote Sensing
CS: Load Share
+S: +Remote Sensing
Control Pin No. Assignment(CN3) : HRS DF11-10DP-2DS or equivalent
Pin No.
1
2
3
Assignment
P OK GND
P OK
P OK GND2
Pin No.
4
5
6
Assignment
P OK2
RCG
RC
P OK GND: Power OK Ground
P OK: Power OK Signal (Relay Contact)
P OK2: Power OK Signal (TTL Signal)
Pin No.
7
8
9
Assignment
AUXG
AUX
OLP
Pin No.
10
RCG: Remote ON/OFF Ground
RC: Remote ON/OFF
AUXG: Auxiliary Ground
Assignment
OL-SD
Mating Housing
HRS DF11-10DS HRS DF11-**SC
or equivalent
or equivalent
AUX: Auxiliary Output
OLP: OLP mode select
OL-SD: OLP mode select
Block Diagram
Terminal
PFC fosc : 88KHz
PWM fosc : 100KHz
+S
I/P
EMI
FILTER
ACTIVE
INRUSH
CURRENT
LIMITING
RECTIFIERS
&
PFC
RECTIFIERS
&
FILTER
POWER
SWITCHING
+V
-V
-S
PFC
CONTROL
O.T.P.
O.V.P.
O.L.P.
PWM
CONTROL
LOAD
SHARING
AUX
POWER
DETECTION
CIRCUIT
P OK
REMOTE
CONTROL
RC
CS
FAN
RECTIFIERS
&
FILTER
AUX POWER
(12V/0.1A)
File Name:RSP-2400-SPEC 2011-12-19
RSP-2400
2400W Single Output Power Supply
Derating Curve
series
Static Characteristics
100
80
100
90
50
LOAD (%)
LOAD (%)
60
40
20
-20
80
70
60
0
10
20
30
40
50
60
70 (HORIZONTAL)
180
185
190
195
200
210
220
230
240
250
264
INPUT VOLTAGE (V) 60Hz
AMBIENT TEMPERATURE ( )
Function Manual
1.Remote ON/OFF
(1)Remote ON/OFF control becomes available by applying voltage in CN1 & CN2 & CN3.
(2)Table 1.1 shows the specification of Remote ON/OFF function.
(3)Fig.1.2 shows the example to connect Remote ON/OFF control function.
Table 1.1 Specification of Remote ON/OFF
Connection Method
Fig. 1.2(A)
Output on
SW Open
SW Logic
Output off
SW Close
Fig. 1.2(B)
SW Open
SW Close
Fig. 1.2(C)
SW Close
SW Open
Fig.1.2 Examples of connecting remote ON/OFF
(A)Using external voltage source
(B)Using internal 12V auxiliary output
AUX
AUX
1K
12V
1K
RC
12V typ.
SW
RCG
RC
12V typ.
RCG
SW
AUXG
AUXG
(C)Using internal 12V auxiliary output
AUX
1K
12V typ.
1K
RC
SW
RCG
AUXG
File Name:RSP-2400-SPEC 2011-12-19
RSP-2400
2400W Single Output Power Supply
series
2.Alarm Signal Output
(1)Alarm signal is sent out through "P OK" & "P OK GND" and P OK2 & P OK GND2 pins.
(2)An external voltage source is required for this function.
(3)Table 2.1 explains the alarm function built-in the power supply.
Function
Description
Output of alarm(P OK, Relay Contact) Output of alarm(P OK2, TTL Signal)
The signal is "Low" when the power supply is above
Low (0.5V max at 500mA)
Low (0.5V max at 10mA)
80% of the rated output voltage-Power OK
P OK
High or open
The signal turns to be "High" when the power supply High or open
is under 80% of the rated output voltage-Power Fail (External applied voltage, 500mA max.) (External applied voltage, 10mA max.)
Table 2.1 Explanation of alarm
P OK2
P OK
R
R
0.1uF
V
P OK GND
V
P OK GND2
External voltage and R
(The max. sink is 500mA and 20V)
External voltage and R
(The max. sink is 10mA and 30V)
Fig. 2.3 Internal circuit of P OK2 (Open collector method)
Fig. 2.2 Internal circuit of P OK (Relay, total is 10W)
3.Output Voltage TRIM
(1)Connecting an external DC source between PV & -S on CN1 or CN2, and +S & +V, -S & -V also need to be connected that is shown in Fig. 3.1.
(2)Adjustment of output voltage is possible between 20~110%(Typ.) of the rated output which is shown in Fig. 3.2. Reducing output current is required when the
output voltage is trimmed up.
Vout
OVP >120%
120
+S
100
100
-V
-S
PV
1~6V
-S
Fig. 3.1 Add on 1~6V external voltage
80
OUTPUT CURRENT (%)
LOAD
OUTPUT VOLTAGE (%)
+V
Non-Linear
60
40
20
1
2
3
4
5
6
V
80
60
40
20
20
40
EXTERNAL VOLTAGE (DC)
60
80
100
120
V
OUTPUT VOLTAGE (%)
Fig. 3.2 Output voltage trimming
File Name:RSP-2400-SPEC 2011-12-19
RSP-2400
2400W Single Output Power Supply
series
4.Current Sharing
(1)Parallel operation is available by connecting the units shown as below
(+S,-S and CS are connected mutually in parallel):
(2)The voltage difference among each output should be minimized that less than 2% is required.
(3)The total output current must not exceed the value determined by the following equation.
(Output current at parallel operation)=(The rated current per unit) x (Number of unit) x 0.9
(4) In parallel operation 3 units is the maximum, please consult the manufacturer for other applications.
(5) When remote sensing is used in parallel operation, the sensing wire must be connected only to the master unit.
(6) Wires of remote sensing should be kept at least 10 cm from input wires.
No.1(Master)
+V
CN1
+S
-S
CS
-V
+S
-S
CS
CN2
AC/L AC/N
+S
No.2(Slave)
-S
+V
CN1
+S
-S
CS
+V
-V
Load
-V
+S
-S
CS
CN2
AC/L AC/N
No.3(Slave)
+V
CN1
+S
-S
CS
-V
+S
-S
CS
CN2
AC/L AC/N
(7) Under parallel operation, the "output voltage trim" function is not available.
(8) When in parallel operation, the minimum output load should be greater than 2% of total output load (Min. Load >2% rated current per unit number of unit)
5.Select O.L.P mode
(1)Remove the shorting connector on CN3 that is shown in Fig 5.1, the O.L.P. mode will be "continuous constant current limiting".
(2)Insert the shorting connector on CN3 that is shown in Fig 5.2, the O.L.P. mode will be "constant current limiting with delay shutdown after 5 seconds,
re-power on to recover".
OL-SD
OL-SD
OLP
OLP
Fig. 5.1 Remove the CN3
OLP Mode : constant current limiting
Fig. 5.2 Insert the CN3
OLP Mode : constant current limiting with delay shutdown after 5 seconds
File Name:RSP-2400-SPEC 2011-12-19
RSP-2400
2400W Single Output Power Supply
series
6.Three Phase Connect
FIG. A: 3 3W 220VAC SYSTEM (STANDARD MODEL FOR STOCK)
R
R
L1
N1
220V
S
L2
N2
T
L3
N3
S
FG1
FG2
FG3
220V
N (NC)
FG
T
FIG. B: 3 4W 220/380VAC SYSTEM
R
R
L1
N1
220V
S
L2
N2
T
N
L3
N3
FG1
FG2
FG3
N
S
380V
FG
T
FIG. C: 3 4W 190/110VAC SYSTEM
R
110V
R
L1
N1
S
N
L2
N2
(N.C.)
T
L3
N3
S
FG1
FG2
FG3
190V
N (NC)
FG
T
File Name:RSP-2400-SPEC 2011-12-19