150W AC/DC Economical Ultra Slim Industrial DIN Rail Power Supply XDR-150E Series
Brand: MEAN WELL
Key Features
- 85~264Vac input range
- Global certificates in multi-fields (ITE 62368-1, Industrial 61558-1/-2-16, 61010)
- 30mm slim width
- High efficiency up to 91% and low no-load power dissipation (0.6W~1W)
- Built-in constant current limiting circuit
- Protections: Short circuit / Overload / Over voltage / Over temperature
- Fanless design, cooling by free air convection
- Over voltage category III (OVC III)
- -40~+70°C wide range operation temperature (derating above +50°C)
- Operating altitude up to 5000 meters
- Built-in DC OK relay contact
- Can be installed on DIN rail TS-35/7.5 or 15
- 3 years warranty
Applications
- Industrial control system
- Semiconductor fabrication equipment
- Factory automation
- Electro-mechanical apparatus
- Battery charger
Description
The XDR-150E series is a 150W AC/DC economical ultra-slim industrial DIN rail power supply. Key features include a narrow 30mm casing for optimized system installation space and an ultra-wide input range of 85~264Vac for global use. It boasts a maximum efficiency of 91% and low standby power consumption (0.6W~1W) for energy savings. It features built-in constant current limiting, a fanless design, a wide operating temperature range of -40 to +70°C (derating above +50°C at full load), OVCIII compliance, and a built-in DC OK signal. With comprehensive protection functions, complete safety certifications, and a 3-year warranty, the XDR-150E series is a compact, high-performance, and highly reliable DIN rail power supply.
Model Encoding
The model encoding follows the pattern: XDR - 150E - [Output Voltage]
- XDR: Series name
- 150E: Economical version, 150W output wattage
- [Output Voltage]: e.g., 12, 24, 36, 48 (indicating 12V, 24V, 36V, 48V DC output)
Specifications
XDR-150E-12 | XDR-150E-24 | XDR-150E-36 | XDR-150E-48 | |
---|---|---|---|---|
OUTPUT | ||||
DC VOLTAGE | 12V | 24V | 36V | 48V |
RATED CURRENT | 115VAC: 10A | 115VAC: 5.2A | 115VAC: 3.46A | 115VAC: 2.6A |
230VAC: 11A | 230VAC: 6.5A | 230VAC: 4.33A | 230VAC: 3.25A | |
CURRENT RANGE | 115VAC: 0~10A | 115VAC: 0~5.2A | 115VAC: 0~3.46A | 115VAC: 0~2.6A |
230VAC: 0~11A | 230VAC: 0~6.5A | 230VAC: 0~4.33A | 230VAC: 0~3.25A | |
RATED POWER | 115VAC: 120W | 115VAC: 124.8W | 115VAC: 124.56W | 115VAC: 124.8W |
230VAC: 132W | 230VAC: 156W | 230VAC: 155.88W | 230VAC: 156W | |
RIPPLE & NOISE (max.) | Note.2: 100mVp-p | Note.2: 120mVp-p | Note.2: 150mVp-p | Note.2: 200mVp-p |
VOLTAGE ADJ. RANGE | 12~15V | 24~29V | 36~42V | 48~55V |
VOLTAGE TOLERANCE | Note.3: ±2.0% | Note.3: ±1.0% | Note.3: ±1.0% | Note.3: ±1.0% |
LINE REGULATION | ±0.5% | ±0.5% | ±0.5% | ±0.5% |
LOAD REGULATION | ±1.0% | ±1.0% | ±1.0% | ±1.0% |
SETUP, RISE TIME | 1200ms, 60ms/230Vac; 2500ms, 60ms/115Vac at full load | |||
HOLD UP TIME (Typ.) | 16ms/230Vac; 8ms/115Vac at full load | |||
INPUT | ||||
AC VOLTAGE RANGE | 85~264Vac | |||
DC VOLTAGE RANGE | 120~370Vdc | |||
NO LOAD POWER CONSUMPTION (Typ.) | 0.6W @115Vac; 0.9W @ 230Vac (for 12V); 0.8W @115Vac; 1W @ 230Vac (for 24~48V) | |||
FREQUENCY RANGE | 47~63Hz | |||
EFFICIENCY (Typ.) | 89% | 91% | 91% | 91% |
AC CURRENT (Typ.) | 2.6A/115Vac; 1.6A/230Vac | |||
INRUSH CURRENT (Typ.) | COLD START 20A/115Vac; 40A/230Vac | |||
LEAKAGE CURRENT | <1mA / 240Vac | |||
PROTECTION | ||||
OVERLOAD | 105~130% rated output power, constant current limiting without shutdown, recovers automatically after fault condition is removed | |||
OVER VOLTAGE | 15~18V | 30~34V | 43~50V | 56~65V |
OVER TEMPERATURE | Protection type: Shut down o/p voltage, recovers automatically after fault condition is removed | |||
FUNCTION | ||||
DC OK RELAY CONTACT | Relay Contact Ratings (max.): 30Vdc/1A, 30Vac/0.5A resistive load | |||
ENVIRONMENT | ||||
WORKING TEMP. | Note.4: -40~+70°C (Refer to "Derating Curve") | |||
WORKING HUMIDITY | 20~95% RH non-condensing | |||
STORAGE TEMP., HUMIDITY | -40~+85°C, 10~95% RH non-condensing | |||
TEMP. COEFFICIENT | ±0.03% /°C (0~50°C) | |||
VIBRATION | Component: 10~500Hz, 2G 10min./1cycle, 60min. each along X, Y, Z axes; Mounting: Compliance to IEC60068-2-6 |
Safety & EMC
Category | Standards & Notes | Test Level / Note |
---|---|---|
SAFETY STANDARDS Note.7 | ||
UL61010; TUV BS EN/EN62368-1, BS EN/EN61558-1/-2-16, BS EN/EN61010; CB IEC62368-1, IEC61558-1, IEC61010; RCM AS/NZS 62368-1, AS/NZS 61558-1/-2-16; BSMI CNS15598-1; CCC GB4943.1; EAC TPTC004 approved; KC KC62368-1 and BIS IS13252 (Part 1):2010 certified. (Contact sales for inquiries on specific certifications.) | ||
OVER VOLTAGE CATEGORY Note.5 | IEC/EN 61558-1/-2-16 (OVC III, altitude up to 2000m) | |
IEC/EN/UL 61010 (OVC II, altitude up to 5000m) | ||
IEC/EN 62368-1 (OVC II, altitude up to 5000m) | ||
SAFETY EXTRA-LOW VOLTAGE(SELV) | IEC/EN 61558-2-16 (SELV) | |
IEC/EN/UL 61010-2-201 (SELV) | ||
IEC/EN 62368-1 (SELV / ES1) | ||
WITHSTAND VOLTAGE | I/P-O/P: 4KVac; I/P-FG: 2KVac; O/P-FG: 1.5KVac; O/P-DC OK: 0.5KVac | |
ISOLATION RESISTANCE | I/P-O/P, I/P-FG, O/P-FG: 100M Ohms/500Vdc/25°C/70%RH | |
EMC EMISSION | ||
Parameter | Standard | Test Level / Note |
Conducted | BS EN/EN55032 (CISPR32) / BS EN/EN61204-3 / CNS15936 | Class B |
Radiated | BS EN/EN55032 (CISPR32) / BS EN/EN61204-3 / CNS15936 | Class B |
Harmonic Current | BS EN/EN61000-3-2 | Class A (80% LOAD) |
Voltage Flicker | BS EN/EN61000-3-3 | --- |
EMC IMMUNITY | ||
BS EN/EN55035, BS EN/EN61204-3, BS EN/EN61000-6-2 (BS EN/EN50082-2) | ||
Parameter | Standard | Test Level / Note |
ESD | BS EN/EN61000-4-2 | Level 3, 8KV air; Level 2, 4KV contact; criteria A |
Radiated | BS EN/EN61000-4-3 | Level 3, 10V/m; criteria A |
EFT/Burst | BS EN/EN61000-4-4 | Level 3, 2KV; criteria A |
Surge | BS EN/EN61000-4-5 | Level 4, 2KV/Line-Line; Level 4, 4KV/Line-Line-Chassis; criteria A |
Conducted | BS EN/EN61000-4-6 | Level 3, 10V; criteria A |
Magnetic Field | BS EN/EN61000-4-8 | Level 4, 30A/m; criteria A |
OTHERS | ||
MTBF | 2201.7K hrs min. Telcordia SR-332 (Bellcore); 440.4K hrs min. MIL-HDBK-217F (25°C) | |
DIMENSION | 30*125.2*116mm (W*H*D) | |
PACKING | 510g; 24pcs/13.25Kg/1.16CUFT |
Diagrams and Visual Descriptions
Block Diagram
The block diagram illustrates the power conversion process. Input AC power first passes through an EMI filter and rectifiers. This is followed by a power switching stage controlled by PWM (Pulse Width Modulation) at 70KHz. Protection circuits such as Overload Protection (OLP), Over Temperature Protection (OTP), and Over Voltage Protection (OVP) are integrated. A constant current (CC) circuit is also present. The output stage includes rectifiers and a filter, delivering regulated DC voltage (+Vo, -Vo). A DC OK signal indicates the status of the output voltage, managed by a relay control.
Derating Curve
The derating curve graph shows the relationship between ambient temperature (°C) and the percentage of load (%) the power supply can handle. The curve indicates that the power supply operates at 100% load up to approximately 50°C. Beyond 50°C, the load capacity is derated linearly, reaching 75% load at 60°C and 0% load at 70°C (vertical axis). The horizontal axis ranges from -40°C to 70°C.
Static Characteristics
The static characteristics graph illustrates the output load percentage (%) versus input voltage (V) at 60Hz. Two curves are shown: one for the 12V models and another for the 24V to 48V models. For the 12V models, the output is stable at 100% load from approximately 100V to 264V input. For the 24V-48V models, the output is stable at 100% load from approximately 135V to 264V input, with a slight reduction in maximum load capacity at lower input voltages (e.g., around 90% load at 100V input).
DC OK Relay Contact
The DC OK relay contact provides a status indication for the power supply. When the PSU is ON and the DC output is OK, the relay contact is closed. When the PSU turns OFF or experiences a DC Fail, the relay contact is open. The maximum ratings for this contact are 30Vdc/1A or 30Vac/0.5A resistive load. The diagram shows an internal circuit where the DC OK status is signaled via a relay contact, which can be used with an external voltage source (U) and resistor (R), with a maximum sink of 30Vdc/1A or 30Vac/0.5A.
Mechanical Specification
The power supply has compact dimensions of 30mm (width) x 125.2mm (height) x 116mm (depth), with a tolerance of ±1mm. Terminal pin assignments are clearly defined for AC input, DC output, and control signals:
- AC Input Terminal Block (C): Pin 1 for AC/L or DC Input +Vin, Pin 2 for AC/N or DC Input -Vin, Pin 3 for FG (Frame Ground).
- DC Output Terminal Block (A): Pin 1 for DC Output +Vo, Pins 2 & 3 for DC Output -Vo.
- Control Pin Block (B): Pins 1 & 2 for DC OK Relay Contact.
Recommended Wiring
Recommended wiring specifications for different terminals:
- AC Input Terminal Block: Solid Wire: 6mm² max. (AWG 20~10), Wire Stripping Length: 7~8mm, Screw Terminal Torque: 5 Lb-In.
- DC Output Terminal Block: Solid Wire: 6mm² max. (AWG 16~10), Wire Stripping Length: 7~8mm, Screw Terminal Torque: 5 Lb-In.
- Signal Connector: Solid Wire: 1.5mm² max. (AWG 24~16), Wire Stripping Length: 8~9mm.
Installation Instruction
This series is designed to fit DIN rail TS35/7.5 or TS35/15. For detailed installation procedures, please refer to the official MEAN WELL installation manual available at: http://www.meanwell.com/manual.html.
Note on Installation Clearances: For permanent full power operation, clearances of 40mm on top, 20mm on the bottom, and 5mm on the left and right sides are recommended. If an adjacent device is a heat source, a 15mm clearance is advised.
Notes
- All parameters not specially mentioned are measured at 230Vac input, rated load, and 25°C ambient temperature.
- Ripple & noise are measured with a 20MHz bandwidth using a 12" twisted pair-wire terminated with a 0.1µF & 47µF parallel capacitor.
- Tolerance includes set-up tolerance, line regulation, and load regulation.
- For ambient temperatures between -40°C and -20°C, and input voltage between 85V and 90V, the derating curve drops to 40%.
- Ambient temperature derating is 3.5°C/1000m for fanless models and 5°C/1000m for fan models for operating altitudes above 2000m (6500ft).
- Installation clearances: 40mm on top, 20mm on the bottom, 5mm on the left and right side are recommended when loaded permanently with full power. In case the adjacent device is a heat source, a 15mm clearance is advised.
- The power supply is considered a component to be installed into final equipment. The final equipment must be re-confirmed to meet EMC directives. (Refer to EMI statement).
Product Liability Disclaimer: For detailed information, please refer to MEAN WELL Service Disclaimer.