60W DIN Rail Power Supply with 48VDC Output, 90-264VAC Input, and High Efficiency for Industrial Applications
| Output Current: | 1.25A | Efficiency: | >89.0%@ 230VAC |
| Frequency Range: | 47Hz-63Hz | Output Voltage: | 48VDC |
| Input Voltage: | 90-264VAC | Output Power: | 60W |
| High Light: | 48V DIN Rail Industrial Power Supply,60W DIN Rail Power Supply |
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The GWS-DP60-48 is an economical 60W DIN Rail industrial power supply conforming to German industrial standards. It is suitable for installation on TS-35/7.5 or TS-35/15 rails and features a full-range AC input from 90Vac to 264Vac, complying with EN61000-3-2 standards regarding EU-specified harmonic current specifications.
It uses a highly flame-retardant plastic housing to ensure safety, robustness, and durability. Based on the principle of natural air convection, the bottom and top of the housing are equipped with numerous ventilation holes to facilitate internal airflow, ensuring a high conversion efficiency of 88%, extending the power supply's lifespan, and easily handling harsh environments from -40°C to +70°C. Furthermore, this power supply features short-circuit, overcurrent, and overvoltage protection, making it suitable for a wide variety of inductive or capacitive load applications. Its comprehensive protection functions and compliance with relevant industrial control equipment certifications make it a highly competitive power supply solution for industrial applications.
| Model | GWS-DP60-48 |
|---|---|
| Output Specifications | |
| Group of Output | 1 |
| Rated Output Voltage | 48VDC |
| Factory Set Output Voltage | 45.6-50.4VDC (Vin: 220Vac / Load: 0A) |
| Output Rated Current | 1.25A |
| Output Current Range | 0-1.25A |
| Rated Output Power | 60W |
| Total Peak Output Power | 80 W (Sustained for 10 seconds at 220 VAC) |
| Peak Output Current | 1.66A (Sustained for 10 seconds at 220 VAC) |
| Ripple Noise | Peak-to-peak value ≤200mV. (Measurement method: The terminal should be connected in parallel with 0.1uF and 47uF capacitors, and the measurement should be performed at a bandwidth of 20MHz) |
| Output Voltage Adjustment Range | 47-56VDC |
| Stabilized Voltage Precision | ±5% (45.6VDC-50.4VDC) |
| Line Regulation | ±1% (@90-264VAC input, 0-100% load) |
| Load Regulation | ±5% (@90-264Vac input, 0-100% load) |
| Output Start-up Time | <3.0S @ nominal input (100% load) |
| Output Hold-up Time | >20ms @ 115VAC, >100ms @ 230VAC (100% load) |
| Voltage Overshoot | ≤10% |
| Input Specifications | |
| Input Voltage Range | 90-264VAC |
| Rated Input Voltage Range | 100-240VAC |
| Frequency Range | 47Hz-63Hz |
| Rated Frequency | 50Hz/60Hz |
| Starting Voltage | 90VAC |
| Efficiency | >85.0%@115VAC, >88.0%@ 230VAC |
| Input Current | <1.60A@115VAC, <0.80A@ 230VAC |
| Start Inrush Current | <40A@ 115VAC, <50A@230VAC |
| Power Factor | PF>0.5 (at full load) |
| Over-power Protection | 78-97W swing test (Test method: Continuously increase the output current until protection is triggered; Protection mode: swing test; automatically resumes normal operation after the overpower condition is resolved.) |
| Over-voltage Protection | 57-70V swing test (Short pins 1 and 2 of U8 to trigger the swing test; output returns to normal when the short is removed). Note: Do not apply an external voltage |
| Over-current Protection | 1.5-2.0A swing test (Test method: Continuously increase the output current until protection is triggered; Protection mode: swing test; the unit automatically resumes normal operation once the overcurrent condition is resolved.) |
| Short-circuit Protection | Short-circuit the power supply's output terminals directly using a copper wire with sufficient cross-sectional area and a length of 15 cm ± 5 cm. The short-circuit may be maintained for an extended period; the unit automatically resumes normal operation once the short-circuit is resolved. |
| Operation TEMP/ Humidity | -40℃~+70℃, 20%-95%RH non-condensing |
| Storage TEMP/ Humidity | -40℃~+85℃, 10%-95%RH non-condensing |
| Temperature Coefficient | ±0.03%/℃ (0-50℃) |
| Vibration | Frequency range: 10-500 Hz, acceleration: 2 G, 10 minutes per sweep cycle, with 6 sweep cycles along each of the X, Y, and Z axes |
| Shock | Acceleration: 20 G, duration: 11 ms, with 3 shock tests along each of the X, Y, and Z axes |
| Altitude | 5000m |
| Safety Standard | EN IEC 62368-1 □Reference ☑Certification |
| Insulation Strength | Input-Output: 3 kV AC/10 mA; Input-Enclosure: 1.5 kV AC/10 mA; Output-Enclosure: 0.5 kV DC/10 mA. Each test lasts 1 minute |
| Grounding Test | Test conditions: 32 A for 2 minutes; ground impedance: <0.1 Ω. |
| Leakage Current | Input to ground ≤3.5 mA; input to output ≤0.25 mA (Input 264 VAC, frequency 63 Hz) |
| Insulation Resistance | Input-output: 10 MΩ |
| Conducted Interference | EN55032, FCC Part 15 Class B |
| Radiated Interference | EN55032, FCC Part 15 Class B |
| Harmonic Current | EN61000-3-2 Class D |
| Conducted Immunity | EN61000-4-6 Level 3 |
| Radiated Immunity | EN61000-4-3 Level 3 Class B |
| Power-Frequency Immunity | EN61000-4-8 Level 3 |
| Electrostatic Immunity | EN61000-4-2 Level 4 Class B |
| Fast Pulse Groups | EN61000-4-4 Level 4 Class B |
| Lightning Strikes (Surge) | EN61000-4-5 Level 4 Class B |
| Interrupts, Dips | EN61000-4-11 |
| Dimension | 102.5*93*41mm |
| Net /Gross Weight | 0.28kg/ 0.32kg |
| Warranty | 5 years, lifelong maintenance |

- 90~264VAC input
- 100% full load aging test
- Meets safety and EMC standards
- High efficiency, long life, and high reliability
- Operating temperature range: -40℃~+70℃
- Protection functions: short circuit/overload/overvoltage
- Factory automation
- Industrial control systems
- Electromechanical equipment
- Semiconductor manufacturing equipment
1. All specifications and parameters were measured at an input of 230 VAC, rated load, and an ambient temperature of 25°C.
2. Ripple and noise measurement method: Use a 12' twisted-pair cable with 0.1 μF and 47 μF capacitors connected in parallel at the terminals; measurements were taken at a bandwidth of 20 MHz.
3. Accuracy: Includes setting error, linear regulation, and load regulation.
4. The power supply should be considered part of the system. Electromagnetic compatibility verification must be performed in conjunction with the terminal equipment.
