Note3: no suffix for CTRL function with Positive Logic (1=ON, 0=OFF), and trim pin
add “N” for CTRL function with Negative Logic (0=ON, 1=OFF), and trim pin
Note4: add suffix -HC for premounted Heat-sink and clips
www.recom-power.com
REV.: 1/2016
PD-1
Package
4)
Control Logic
(3)
RP20-F
DC/DC Converter
Specifications
measured at Ta = 25°C, nominal input voltage, full load otherwise noted
BASIC CHARACTERISTICS
Parameter
Input Voltage Range
Undervoltage Lockout (ULVO)
Input Filter
(5)
Input Reflected Ripple Current
(6)
Input Surge Voltage
nominal Vin and full load
Vin = 12V, 100ms max.
Vin = 24V, 100ms max.
Vin = 48V, 100ms max.
Power up
Remote ON/OFF
450kHz
Single
Dual
Single 3.3Vout
measured by 20MHz bandwidth
Single 5Vout, 12Vout, 15Vout
with a 0.1µF/50V MLCC
Dual All
Positive Logic
Remote ON/OFF
(8)
Negative Logic
Input current of Remote pin (CTRL)
DC-DC ON
DC-DC OFF
DC-DC ON
DC-DC OFF
DC-DC OFF
DC-DC ON
-0.5mA
0%
±10%
±10%
60mVp-p
75mVp-p
100mVp-p
Open or 3.0V < Vr < 12V
Short or 0V < Vr < 1.2V
Short or 0V < Vr < 1.2V
Open or 3.0V < Vr < 12V
2.5mA
0.5mA
10ms
10ms
500kHz
550kHz
20mAp-p
36VDC
50VDC
100VDC
Series
Condition
nom. Vin = 12V
nom. Vin = 24V
nom. Vin = 48V
Min.
9VDC
18VDC
36VDc
Typ.
12VDC
24VDC
48VDC
Max.
18VDC
36VDC
75VDC
none
L-C Type
Start-up time
Operating Frequency Range
Minimum Load
(7)
Optional Output Trim
Ripple and Noise
Notes:
Note5: An external filter capacitor is required for normal operation. The capacitor should be capable of handling 1A
ripple current for 48V/24V models. RECOM suggest: Nippon chemi-con KY series, 220µF/100V, ESR 90m
Ω.
Note6: Simulated source impedance of 12µH. 12µH inductor in series with +Vin.
Note7: The RP20-F series requires a minimum of 10% loading on the output to maintain specified regulation. Operation
under no-load condition will not damage these devices, however they may not meet all listed specification.
Note8: The ON/OFF control function can be positive or negative logic. The pin voltage is referenced to -Vin pin.
RP20-1205SF
95
90
85
Efficiency vs. Output Current
92
90
Efficiency vs. Input Voltage
Efficiency [%]
80
75
70
65
60
55
50
45
40
10
20
30
40
50
60
70
80
9Vin
12Vin
18Vin
90
100
Efficiency [%]
88
86
84
82
80
9
10
11
12
13
14
15
16
17
18
Output Current [%]
Input Voltage [VDC]
continued on next page
PD-2
REV.: 1/2016
www.recom-power.com
RP20-F
DC/DC Converter
Specifications
measured at Ta = 25°C, nominal input voltage, full load otherwise noted
RP20-2405SF
95
90
85
90
80
75
70
65
60
55
50
45
40
10
20
30
40
50
60
70
80
18Vin
24Vin
36Vin
90
100
Series
Efficiency vs. Input Voltage
92
Efficiency vs. Output Current
Efficiency [%]
Efficiency [%]
88
86
84
82
80
18
20
22
24
26
28
30
32
34
36
Output Current [%]
Input Voltage [VDC]
RP20-4805SF
95
90
85
Efficiency vs. Output Current
92
90
Efficiency vs. Input Voltage
Efficiency [%]
80
75
70
65
60
55
50
45
40
10
20
30
40
50
60
70
80
36Vin
48Vin
75Vin
90
100
Efficiency [%]
88
86
84
82
80
36
40
44
48
52
56
60
64
68
72
75
Output Current [%]
Input Voltage [VDC]
REGULATIONS
Parameter
Output Voltage Accuracy
Voltage Adjustability
Line Voltage Regulation
Load Voltage Regulation
Cross Regulation
Transient Response recovery time
Condition
full load and nominal Vin
Single
low line to high line at full load
no laod to full load
asymmetrical 25%<>100% load
25% load step change
Value
±1%
±10%
±0.2%
±0.5%
±5%
250µs
External Output Trimming
Output Voltage Trimming
Single output Powerline converters offer the feature of trimming the output voltage over a certain range around the nominal value by using external
trim resistors. No general equation can be given for calculating the trim resistors, but the following trimtables give typical values for chosing these
trimming resistors. If voltages between the given trim points are required, extrapolate between the two nearest given values to work out the resistor
required or use a variable resistor to set the output voltage. Output can be externally trimmed by using the method shown below.
Trim up
5
RU
4
3
4
Trim down
RD
continued on next page
www.recom-power.com
REV.: 1/2016
PD-3
RP20-F
DC/DC Converter
Specifications
measured at Ta = 25°C, nominal input voltage, full load otherwise noted
RP20-xx3.3SF
Trim up
Vout =
R
U
=
Trim down
Vout =
R
D
=
Trim up
Vout =
R
U
=
Trim down
Vout =
R
D
=
Trim up
Vout =
R
U
=
Trim down
Vout =
R
D
=
Trim up
Vout =
R
U
=
Trim down
Vout =
R
D
=
1
3.333
57.93
1
3.267
69.47
1
5.05
36.57
1
4.95
45.53
1
12.12
367.91
1
11.88
460.99
1
15.15
404.18
1
14.85
499.82
2
3.366
26.16
2
3.234
31.23
2
5.10
16.58
2
4.90
20.61
2
12.24
165.95
2
11.76
207.95
2
15.3
180.59
2
14.70
223.41
3
3.399
15.58
3
3.201
18.49
3
5.15
9.92
3
4.85
12.31
3
12.36
98.64
3
11.64
123.60
3
15.45
106.06
3
14.55
131.27
4
3.432
10.28
4
3.168
12.12
4
5.20
6.58
4
4.80
8.15
4
12.48
64.98
4
11.52
81.42
4
15.60
68.80
4
14.40
85.20
5
3.465
7.11
5
3.135
8.29
5
5.25
4.59
5
4.75
5.66
5
12.60
44.78
5
11.40
56.12
5
15.75
46.44
5
14.25
57.56
6
3.498
4.99
6
3.102
5.74
6
5.30
3.25
6
4.70
4.00
6
12.72
31.32
6
11.28
39.25
6
15.90
31.53
6
14.10
39.14
7
3.531
3.48
7
3.069
3.92
7
5.35
2.30
7
4.65
2.81
7
12.84
21.70
7
11.16
27.20
7
16.05
20.88
7
13.95
25.97
8
3.564
2.34
8
3.036
2.56
8
5.4
1.59
8
4.60
1.92
8
12.96
14.49
8
11.04
18.16
8
16.20
12.90
8
13.80
16.10
9
3.597
1.46
9
3.003
1.50
9
5.45
1.03
9
4.55
1.23
9
13.08
8.88
9
10.92
11.13
9
16.35
6.69
9
13.65
8.42
10
3.63
0.75
10
2.97
0.65
10
5.50
0.59
10
4.50
0.68
10
13.20
4.39
10
10.8
5.51
10
16.50
1.72
10
13.50
2.282
%
Volts
kOhms
%
Volts
kOhms
%
Volts
kOhms
%
Volts
kOhms
%
Volts
kOhms
%
Volts
kOhms
%
Volts
kOhms
%
Volts
kOhms
Series
RP20-xx05SF
RP20-xx12SF
RP20-xx15SF
PROTECTIONS
Parameter
Short Circuit Protection (SCP)
3.3Vout
5Vout
Zener Diode Clamp
12Vout
15Vout
% of Iout rated
I/P to O/P
I/P to O/P to case
500 VDC
Notes:
Note9: This power module is not internally fused. An input line fuse must always be used.
PD-4
REV.: 1/2016
www.recom-power.com
Condition
Value
continuous, automatic recovery
3.9VDC
6.2VDC
15VDC
18VDC
150% typ.
1.6kVDC/1 minute
1.6kVDC/1 minute
1GΩ min.
1000pF max.
Over Voltage Protection (OVP)
Over Load Protection (OLP)
Isolation Voltage
Isolation Resistance
Isolation Capacitance
RP20-F
DC/DC Converter
Specifications
measured at Ta = 25°C, nominal input voltage, full load otherwise noted
ENVIRONMENTAL
Parameter
Operating Temperature Range
Maximum Case Temperature
Temperature Coefficient
Thermal Impedance
Operating Humidity
Thermal Shock
Vibration
MTBF
MIL-HDBK-217F, full load
BELLCORE TR-NWT-000332
(10)
Natural convection (20LFM)
Natural convection (20LFM) with Heat-sink
Series
Condition
without derating
with derating
Value
-40°C to +70°C
-40°C to +100°C
+100°C
±0.02%/°C max.
12°C/Watt
10°C/Watt
5% - 95% RH
MIL-STD-810F
MIL-STD-810F
1583 x 10
3
hours
1791 x 10³ hours
Derating Graph
(11)
RP20-4805SF
100
80
60
40
20
0
-40
100
80
60
40
20
0
-40
RP20-4805SF with Heat-sink
Output Power [%]
-20
0
20
40
60
Ambient Temperature [°C]
70
80
100 120
Output Power [%]
-20
0
20
40
60
Ambient Temperature [°C]
80
75
100 120
Notes:
Note10: BELLCORE TR-NWT-000332. Case l: 50% Stress, Temperature at 40°C (Ground fixed and controlled environment).
Note11: Derating graphs are valid only for the shown part numbers. If you need detailed derating-information about a part-
number not shown here please contact our technical support service at techsupportAT@recom-power.com
SAFETY AND CERTIFICATIONS
Certificate Type (Safety)
UL General Safety
Report / File Number
E196683
Standard
UL60950-1 1st Ed.: 2003
C22.2 No. 60950 1st. Ed.: 2003
EMC Compliance
EMI Standard
(12)
ESD
Radiated Immunity
Fast Transient
(13)
Surge
(13)
Conducted Immunity
Condition
with external filter
Air ±8kV and Contact ±6kV
10 V/m
±2kV
±1kV
10 Vr.m.s
Standard / Criterion
EN55022, Class A or B
EN61000-4-2, Criteria B
EN61000-4-3, Criteria A
EN61000-4-4, Criteria B
EN61000-4-5, Criteria B
EN61000-4-6, Criteria A
Notes:
Note12: The standard modues meet EMI Class A or Class B with external components, see filter suggestions below.
Note13: An external input filter capacitor is required if the module has to meet EN61000-4-4, EN61000-4-5. The filter
capacitor Recom suggests: Nippon chemi-con KY series, 220µF/100V
2008年7月9日, CombOLED 研究项目的工作重点是开发出高性价比的生产工艺,以实现有机发光二极管 (OLED) 的量产。欧司朗光电半导体公司固态照明部主管 Bernhard Stapp 表示:“该项目由欧盟提供资金支持,欧司朗负责协调运作,旨在为推行新型照明光源应用创造必要的条件。”这包括采用性价比卓越的方法构建新型元件架构,从而生产出大幅面透明光源。作为 LED 市场的创新推...[详细]
UHF和HF都是一般的技术分类,不过每一类都有独立的支持协议。HF在13.56MHz频段更具有一致性,虽然国际业内行业标准很多。UHF RFID在858-960MHz频段已商业化。同时也有多种国际标准支持,包括EPC global Gen 2。 标签与读写器通过无线链接交换数据。链接可以通过适合任何频段的、具有不同读取范围和抗干扰性的EMF或RF场实现。HF RFID技术主要通过电磁场传送信...[详细]
目前医疗监护中无法动态掌握患者信息,一旦患者病情恶化,无法在第一时间实施抢救,对数据信息维护效率低。 文中首先阐述了蓝牙技术及其在医疗监护中应用的可行性,然后设计了系统框架,给出了具体功能,BlueTooth Wireless Communication Technology Application in Medical Monitoring包括数据采集和语音报警,最后对蓝牙信号在传输...[详细]
控制器局部网CAN(Controller Area Network)属于现场总线的一种,是一种有效支持分布式控制或实时控制的串行通信网络,被公认为是最有前途的现场总线之一。 在工业控制系统中,电动执行器是电动单元组合仪表中一个很重要的执行单元。它由控制电路和执行机构两个在电路上完全独立的部分组成,可接收来自调节器的电控信号,将其线性地转换成机械转角或直线位移,用来操纵风门、挡板、阀门等...[详细]