RP60Q-11024SRUW/N-HC = 110V Input Voltage, 24V Output Voltage, Single, negative logic and fitted Heat-sink
RP60Q-11015SRUW/P-HC = 110V Input Voltage, 15V Output Voltage, Single, positive logic and fitted Heat-sink
https://www.recom-power.com/pdf/
Powerline_DC-DC/RSPxxx-168.pdf
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PB-1
RP60Q-RUW
DC/DC Converter
Specifications
(measured @ Ta= 25°C, nom. Vin, full load and after warm-up unless otherwise stated)
BASIC CHARACTERISTICS
Parameter
Internal Input Filter
Input Voltage Range
Input Surge Voltage
Under Voltage Lockout (ULVO)
Input Current Range
Quiescent Current
Output Voltage Trimming
Minimum Load
Start-up Time
Rise Time
Positive Logic
ON/OFF Control
(5)
Negative Logic
Input Current of CTRL pin
Standby Current
Internal Operating Frequency
Output Ripple and Noise
(6)
Remote Sense
(7)
Notes:
Note5: The ON/OFF control function can be positive or negative logic. The pin voltage is referenced to -Vin pin
Note6: Measurements are made for 5Vout with a 1µF/25V X7R MLCC and a 22µF/25V E-Cap; for 15Vout
with a 22µF/25V X7R MLCC, for 24Vout with a 4.7µF/50V X7R MLCC and for 48Vout with a 2.2µF/100V X7R MLCC
Note7: Refer to page PB-5 Remote Sense. If not used connect Remote Sense pins to corresponding output pins
measured at 20MHz BW
5Vout
12, 15Vout
24Vout
48Vout
DC-DC OFF
DC-DC ON
DC-DC OFF
DC-DC ON
DC-DC OFF
-0.5mA
constant resistive load
< 1s
nom. Vin = 110VDC
Vin = 16VDC
Vin = 110VDC
Vin = 160VDC
nom. Vin = 110VDC
-20%
0%
75ms
40ms
Open or 3 < V
CTRL
< 12VDC
Short or 0 < V
CTRL
< 1.2VDC
Short or 0 < V
CTRL
< 1.2VDC
Open or 3 < V
CTRL
< 12VDC
1mA
4mA
180kHz
75mVp-p
100mVp-p
200mVp-p
300mVp-p
10%
100ms
nom. Vin = 110VDC
DC-DC ON
DC-DC OFF
10VDC
11VDC
4.2A
0.6A
0.45A
10mA
+10%
16VDC
110VDC
Series
Condition
Min.
Typ.
Max.
Pi-Type
160VDC
185VDC
14VDC
12VDC
5.2A
RP60Q-11005SRW
Efficiency vs. Output Load
100
90
80
100
90
80
Efficiency vs. Input Voltage
Efficiency [%]
Efficiency [%]
24Vin
36Vin
48Vin
72Vin
110Vin
0
10
20
30
40
50
60
70
80
90
100
70
60
50
40
30
20
10
0
70
60
50
40
30
20
10
0
16
30
55
70
85
100
115
100% load
50% load
25% load
130
145
160
Output Load [%]
continued on next page
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Input Voltage [VDC]
PB-2
RP60Q-RUW
DC/DC Converter
Specifications
(measured @ Ta= 25°C, nom. Vin, full load and after warm-up unless otherwise stated)
RP60Q-11005SRW
Power Dissipation vs. Output Current
8
7
Series
Typical Output Ripple and Noise/full load
Power Dissipation [W]
6
5
4
3
2
1
0
0
10
20
30
40
50
60
70
80
24Vin
36Vin
48Vin
72Vin
110Vin
90
100
Output Load [%]
ON/OFF Control Start up Rise Characteristic
Power up Start-up Rise Characteristic
Input Voltage Range
Output Power [%]
100
Continuous full power operation is rated between 16V and 160V,
including full load start-up.
Once running, the converter will operate for short periods of time over
an extended input voltage range down to 14V and up to 185V, thus
covering all EN50155 under-voltage and over-voltage transient
conditions.
0.1s
continuous operation
<1s
0
14.0
16.0
Input Voltage [VDC]
160
185
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PB-3
RP60Q-RUW
DC/DC Converter
Specifications
(measured @ Ta= 25°C, nom. Vin, full load and after warm-up unless otherwise stated)
Series
OUTPUT VOLTAGE TRIMMING
Output Voltage Trimming
It allows the user to increase or decrease the output voltage of the module. This is accomplished by connecting an external resistor between the Trim pin and
either the +Sense or -Sense pins. With an external resistor between the Trim and +Sense pin, the output voltage increases. With an external resistor between
the Trim and -Sense pin, the output voltage decreases. The external Trim resistor needs to be at least 1/8W of rated. The values for trim resistors shown in trim
tables below are according to standard E96 values; therefore, the specified voltage may slightly vary.
Trim up
Trim
R
up
+Sense
Trim
-Sense
Trim down
R
down
Vout
nom
DVout
V
ref
R
up
R
down
= nominal output voltage
= output voltage change
= reference voltage
= trim up resistor
= trim down resistor
[VDC]
[%]
[VDC]
[W]
[W]
[W]
Vout
nom
5VDC
12VDC
15VDC
24VDC
48VDC
R
1
R
2
R
3
V
ref
10k2W
511kW
5k11
1.225VDC
R
1
,R
2,
R
3
= internal resistors
Calculation:
R
up
=
R
3
x Vout
nom
x (100
+
DVout
)
V
ref
x
DVout
-
(R
1
x
DVout)
+ R
2
DVout
R
down
=
R
2
DVout
- R
1
Practical Example RP60Q-xx05SRW +10% / -10%
R
up
=
5k11 x 5 x (100 + 10)
1.225 x 10
-
(10k2 x 10) + 511k
10
=
168kW
R
down
=
511k
10
- 10k2 =
40k9W
R
up
according to E96
≈
169kW
RP60Q-xx05SRW
Trim up
Vout
set
=
R
up
(E96)
≈
Trim up
Vout
set
=
R
up
(E96)
≈
1
5.05
1M58
1
12.12
4M53
2
5.10
806k
2
12.24
2M26
3
5.15
536k
3
12.36
1M54
4
5.20
402k
4
12.48
1M15
5
5.25
324k
5
12.60
931k
6
5.30
247k
6
12.72
787k
R
down
according to E96
≈
41k2W
7
5.35
237k
7
12.84
681k
8
5.4
205k
8
12.96
604k
9
5.45
187k
9
13.08
536k
10
5.50
169k
10
13.20
487k
[%]
[VDC]
[W]
[%]
[VDC]
[W]
RP60Q-xx12SRW
RP60Q-xx15SRW
Trim up
Vout
set
=
R
up
(E96)
≈
1
15.15
5M76
2
15.30
2M94
3
15.45
1M96
4
15.60
1M47
5
15.75
1M21
6
15.90
1M02
7
16.05
866k
8
16.20
768k
9
16.35
698k
10
16.50
619k
[%]
[VDC]
[W]
continued on next page
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PB-4
RP60Q-RUW
DC/DC Converter
Specifications
(measured @ Ta= 25°C, nom. Vin, full load and after warm-up unless otherwise stated)
Series
OUTPUT VOLTAGE TRIMMING
RP60Q-xx24SRW
Trim up
Vout
set
=
R
up
(E96)
≈
Trim up
Vout
set
=
R
up
(E96)
≈
1
24.24
9M53
1
48.48
19M6
2
24.48
4M7
2
48.96
9M94
3
24.72
3M24
3
49.44
6M65
4
24.96
2M94
4
49.92
5M11
5
25.20
2M
5
50.40
4M12
6
25.44
1M69
6
50.88
3M4
7
25.68
1M47
7
51.36
3M01
8
25.92
1M27
8
51.84
2M61
9
26.16
1M15
9
52.32
2M37
10
26.40
1M05
10
52.80
2M15
[%]
[VDC]
[W]
[%]
[VDC]
[W]
RP60Q-xx48SRW
Trim Down all Vout‘s
Trim down
R
down
(E96)
≈
Trim down
R
down
(E96)
≈
1
499k
11
36k5
2
243k
12
32k4
3
162k
13
28k7
4
118k
14
26k1
5
90k9
15
23k7
6
75k
16
21k5
7
63k4
17
19k6
8
53k6
18
18k2
9
46k4
19
16k5
10
41k2
20
15k4
[%]
[W]
[%]
[W]
REMOTE SENSE
+V
in
+V
out
+Sense
R
up
Load
R
down
-V
in
-Sense
-V
out
(GND)
RW
2
Trim
RW
1
The output voltage can be adjusted by both trim and remote sense. The
maximum combined adjustment range is ±10%. Derate the maximum
output power if using the trim or sense function to increase the output
voltage.
RW
1
... wire losses +
RW
2
... wire losses -
R
up
... trim up resistor
R
down
... trim down resistor
REGULATION
Parameter
Output Accuracy
Line Regulation
Load Regulation
Transient Response
low line to high line
0% load to 100% load
25% load step change
Condition
Value
±1.0% max.
±0.1% max.
0.1% max.
250µs typ.
Transient Response to Dynamic Load change from 100% to 75% to 100% of Full Load at nom. Vin