R-5A Series

  • Non-isolated
  • Synchronous rectification design
  • Adjustable output voltage
  • 2, 3, 4 & 5AMP adjustable positive step down integrated switching regulator
  • Over load protection
  • Continuous short circuit protection
  • Efficiency up to 96 %

The R-5xxxA series is a high performance 1.2V to 5.5V, 2Amp to 5Amp, 12-Pin SIP (single in-line package) integrated switching regulator (ISR). The synchronous - rectified design yields excellent efficiencies up to 96%. Short circuit protection reduces the short circuit input current to under 50mA. Autosense function compensates for any losses in long circuit loops.

Power (W)
Vin (V)
Main Vout (V)
Iout 1 (mA)
Current (A)
  Part Number Vin (V) Main Vout (V) Package Style Current (A)
1 DC/DC, 6 W, Single Output, THT R-521.2DA
4.5 - 18 1 to 3 SIP12 2
2 DC/DC, 6 W, Single Output, THT R-521.2PA
4.5 - 18 1 to 3 SIP12 2
3 DC/DC, 9 W, Single Output, THT R-521.8DA
4.5 - 18 1.1 to 4.5 SIP12 2
4 DC/DC, 9 W, Single Output, THT R-521.8PA
4.5 - 18 1.1 to 4.5 SIP12 2
5 DC/DC, 11 W, Single Output, THT R-522.5DA
4.5 - 18 1.6 to 5.5 SIP12 2
6 DC/DC, 11 W, Single Output, THT R-522.5PA
4.5 - 18 1.6 to 5.5 SIP12 2
7 DC/DC, 11 W, Single Output, THT R-523.3DA
4.5 - 18 1.6 to 5.5 SIP12 2
8 DC/DC, 11 W, Single Output, THT R-523.3PA
4.5 - 18 1.6 to 5.5 SIP12 2
9 DC/DC, 11 W, Single Output, THT R-525.0DA
6.5 - 18 3 to 5.5 SIP12 2
10 DC/DC, 11 W, Single Output, THT R-525.0PA
6.5 - 18 3 to 5.5 SIP12 2
11 DC/DC, 9 W, Single Output, THT R-531.2DA
4.5 - 18 1 to 3 SIP12 3
12 DC/DC, 9 W, Single Output, THT R-531.2PA
4.5 - 18 1 to 3 SIP12 3
13 DC/DC, 13.5 W, Single Output, THT R-531.8DA
4.5 - 18 1.1 to 4.5 SIP12 3
14 DC/DC, 13.5 W, Single Output, THT R-531.8PA
4.5 - 18 1.1 to 4.5 SIP12 3
15 DC/DC, 16.5 W, Single Output, THT R-532.5DA
4.5 - 18 1.6 to 5.5 SIP12 3
16 DC/DC, 16.5 W, Single Output, THT R-532.5PA
4.5 - 18 1.6 to 5.5 SIP12 3
17 DC/DC, 16.5 W, Single Output, THT R-533.3DA
4.5 - 18 1.6 to 5.5 SIP12 3
18 DC/DC, 16.5 W, Single Output, THT R-533.3PA
4.5 - 18 1.6 to 5.5 SIP12 3
19 DC/DC, 16.5 W, Single Output, THT R-535.0DA
6.5 - 18 3 to 5.5 SIP12 3
20 DC/DC, 16.5 W, Single Output, THT R-535.0PA
6.5 - 18 3 to 5.5 SIP12 3
21 DC/DC, 12 W, Single Output, THT R-541.2DA
4.5 - 18 1 to 3 SIP12 4
22 DC/DC, 12 W, Single Output, THT R-541.2PA
4.5 - 18 1 to 3 SIP12 4
23 DC/DC, 18 W, Single Output, THT R-541.8DA
4.5 - 18 1.1 to 4.5 SIP12 4
24 DC/DC, 18 W, Single Output, THT R-541.8PA
4.5 - 18 1.1 to 4.5 SIP12 4
25 DC/DC, 22 W, Single Output, THT R-542.5DA
4.5 - 18 1.6 to 5.5 SIP12 4
26 DC/DC, 22 W, Single Output, THT R-542.5PA
4.5 - 18 1.6 to 5.5 SIP12 4
27 DC/DC, 22 W, Single Output, THT R-543.3DA
4.5 - 18 1.6 to 5.5 SIP12 4
28 DC/DC, 22 W, Single Output, THT R-543.3PA
4.5 - 18 1.6 to 5.5 SIP12 4
29 DC/DC, 22 W, Single Output, THT R-545.0DA
6.5 - 18 3 to 5.5 SIP12 4
30 DC/DC, 22 W, Single Output, THT R-545.0PA
6.5 - 18 3 to 5.5 SIP12 4
31 DC/DC, 15 W, Single Output, THT R-551.2DA
4.5 - 18 1 to 3 SIP12 5
32 DC/DC, 15 W, Single Output, THT R-551.2PA
4.5 - 18 1 to 3 SIP12 5
33 DC/DC, 22.5 W, Single Output, THT R-551.8DA
4.5 - 18 1.1 to 4.5 SIP12 5
34 DC/DC, 22.5 W, Single Output, THT R-551.8PA
4.5 - 18 1.1 to 4.5 SIP12 5
35 DC/DC, 27.5 W, Single Output, THT R-552.5DA
4.5 - 18 1.6 to 5.5 SIP12 5
36 DC/DC, 27.5 W, Single Output, THT R-552.5PA
4.5 - 18 1.6 to 5.5 SIP12 5
37 DC/DC, 27.5 W, Single Output, THT R-553.3DA
4.5 - 18 1.6 to 5.5 SIP12 5
38 DC/DC, 27.5 W, Single Output, THT R-553.3PA
4.5 - 18 1.6 to 5.5 SIP12 5
39 DC/DC, 27.5 W, Single Output, THT R-555.0DA
7 - 18 3 to 5.5 SIP12 5
40 DC/DC, 27.5 W, Single Output, THT R-555.0PA
7 - 18 3 to 5.5 SIP12 5
Attributes R-5A
AC/DC or DC/DC DC/DC
Isolation Non-Isolated
Nr. of Outputs Single
Mounting Type THT
Package Style SIP12
Length (mm) 32.2
Width (mm) 9.1
Height (mm) 15
Certifications EN 60950-1, IEC 60950-1
MIN Operating Temp (°C) -40
MAX Operating Temp (°C) 85
Protections SCP
Control Pin Function Enabled
Directives REACH, RoHS 2+ (10/10)
Packaging Type Tube
Warranty 3 Years
Regulation Regulated
  Part Number Power (W) Vout 1 (V) Vin (V) Mounting Type
1 DC/DC, 6 W, Single Output, THT R-521.2DA
6 4.5 - 18 THT
2 DC/DC, 6 W, Single Output, THT R-521.2PA
6 4.5 - 18 THT
3 DC/DC, 9 W, Single Output, THT R-521.8DA
9 4.5 - 18 THT
4 DC/DC, 9 W, Single Output, THT R-521.8PA
9 4.5 - 18 THT
5 DC/DC, 11 W, Single Output, THT R-522.5DA
11 4.5 - 18 THT
6 DC/DC, 11 W, Single Output, THT R-522.5PA
11 4.5 - 18 THT
7 DC/DC, 11 W, Single Output, THT R-523.3DA
11 4.5 - 18 THT
8 DC/DC, 11 W, Single Output, THT R-523.3PA
11 4.5 - 18 THT
9 DC/DC, 11 W, Single Output, THT R-525.0DA
11 6.5 - 18 THT
10 DC/DC, 11 W, Single Output, THT R-525.0PA
11 6.5 - 18 THT
11 DC/DC, 9 W, Single Output, THT R-531.2DA
9 4.5 - 18 THT
12 DC/DC, 9 W, Single Output, THT R-531.2PA
9 4.5 - 18 THT
13 DC/DC, 13.5 W, Single Output, THT R-531.8DA
13.5 4.5 - 18 THT
14 DC/DC, 13.5 W, Single Output, THT R-531.8PA
13.5 4.5 - 18 THT
15 DC/DC, 16.5 W, Single Output, THT R-532.5DA
16.5 4.5 - 18 THT
16 DC/DC, 16.5 W, Single Output, THT R-532.5PA
16.5 4.5 - 18 THT
17 DC/DC, 16.5 W, Single Output, THT R-533.3DA
16.5 4.5 - 18 THT
18 DC/DC, 16.5 W, Single Output, THT R-533.3PA
16.5 4.5 - 18 THT
19 DC/DC, 16.5 W, Single Output, THT R-535.0DA
16.5 6.5 - 18 THT
20 DC/DC, 16.5 W, Single Output, THT R-535.0PA
16.5 6.5 - 18 THT
21 DC/DC, 12 W, Single Output, THT R-541.2DA
12 4.5 - 18 THT
22 DC/DC, 12 W, Single Output, THT R-541.2PA
12 4.5 - 18 THT
23 DC/DC, 18 W, Single Output, THT R-541.8DA
18 4.5 - 18 THT
24 DC/DC, 18 W, Single Output, THT R-541.8PA
18 4.5 - 18 THT
25 DC/DC, 22 W, Single Output, THT R-542.5DA
22 4.5 - 18 THT
26 DC/DC, 22 W, Single Output, THT R-542.5PA
22 4.5 - 18 THT
27 DC/DC, 22 W, Single Output, THT R-543.3DA
22 4.5 - 18 THT
28 DC/DC, 22 W, Single Output, THT R-543.3PA
22 4.5 - 18 THT
29 DC/DC, 22 W, Single Output, THT R-545.0DA
22 6.5 - 18 THT
30 DC/DC, 22 W, Single Output, THT R-545.0PA
22 6.5 - 18 THT
31 DC/DC, 15 W, Single Output, THT R-551.2DA
15 4.5 - 18 THT
32 DC/DC, 15 W, Single Output, THT R-551.2PA
15 4.5 - 18 THT
33 DC/DC, 22.5 W, Single Output, THT R-551.8DA
22.5 4.5 - 18 THT
34 DC/DC, 22.5 W, Single Output, THT R-551.8PA
22.5 4.5 - 18 THT
35 DC/DC, 27.5 W, Single Output, THT R-552.5DA
27.5 4.5 - 18 THT
36 DC/DC, 27.5 W, Single Output, THT R-552.5PA
27.5 4.5 - 18 THT
37 DC/DC, 27.5 W, Single Output, THT R-553.3DA
27.5 4.5 - 18 THT
38 DC/DC, 27.5 W, Single Output, THT R-553.3PA
27.5 4.5 - 18 THT
39 DC/DC, 27.5 W, Single Output, THT R-555.0DA
27.5 7 - 18 THT
40 DC/DC, 27.5 W, Single Output, THT R-555.0PA
27.5 7 - 18 THT

Documents & Media

Title Type Date
R-5A.pdf Datasheet
Yes you can. Please refer to the Innoline Application Notes and find our recommended circuits to get a negative output from each series of our switching regulator families.
The datasheets specify the maximum capacitive load. If the combined capacitive load is higher, the converter may go into short circuit protection on power-up.
For switching regulators, but the output capacitor may discharge back into the output of the converter if the input supply is suddenly removed and damage the converter. Fitting protection diodes can avoid this reverse current flow.
No. Switching regulators function differently than linear regulators and this “trick” does not work. They need a very good ground connection to function properly.
All of our DC/DC converters contain a built-in input capacitor filter, so an external capacitor is not required for normal operation, unless specified in the datasheet. An input capacitor may also be required to meet surge requirements or to smooth the DC supply at the point of load. If several DC/DCs are powered from the same rail, then input capacitors placed close to the input pins are recommended.
No external components are needed. An input capacitor is recommended only if the input voltage exceeds 26V. An output capacitor helps reduce output ripple further, but the ripple is relatively low anyway.
The Innoline series all use intelligent controllers that measure the output current on each switching cycle (Current Mode Control). If the output is overloaded, the converter will deliver the over-current until either the converter overheats and shuts itself down (thermal protection) or the load current exceeds the safe limits. If the output is short circuited, the controller shuts down the output drive circuitry. The output condition is continuously monitored and the converter automatically restarts.
Type is not critical. Actually, a lower quality, relatively high ESR capacitor on the input is actually an advantage as its internal resistance helps damp down any switch-on surge oscillations.
A combination of tantalum or electrolytic in parallel with an MLCC on the input or output combines the advantages of both types (high ESR to reduce ringing, low ESR to filter noise).
The R-78 costs more than a linear regulator because it is intelligent. It may look similar to a three-pin linear regulator, but it is far more efficient and inside is a controller chip that protects the converter against overload, over temperature and short circuits. This makes it very robust and hard-to-kill.
Even if the converter itself costs more, the savings that can be made in the primary power supply (because it needs less output current), assembly (because there is no fiddly heatsink, screw, nut and thermal paste to worry about) and inventory (one part rather than 7 parts with the linear regulator + heatsink + mounting + input and output capacitors) mean that the overall power supply cost can be lower with the R-78 than with the ""cheaper"" linear regulator.
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