Phoenix Power supply unit - UNO-PS/1AC/48DC/100W - 2902996 New & Original with very competitive price and One year Warranty
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Phoenix Power supply unit - UNO-PS/1AC/48DC/100W - 2902996
Primary-switched UNO POWER power supply for DIN rail mounting, input: 1-phase, output: 48 V DC/100 W
Product Description
UNO POWER power supplies with basic functionality
Thanks to their high power density, compact UNO POWER power supplies are the ideal solution for loads up to 240 W, particularly in compact control boxes.
The power supply units are available in various performance classes and overall widths. Their high degree of efficiency and low idling losses ensure a high level of energy efficiency.
Key Commercial Data
Orderkey | 2902996 |
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Packing unit | 1 pc |
Catalog page | Page 273 (C-4-2019) |
GTIN | 4046356808361 |
Weight per Piece (excluding packing) | 360.000 g |
Custom tariff number | 85044030 |
Country of origin | PL (Poland) |
Dimensions
Width | 55 mm |
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Height | 90 mm |
Depth | 84 mm |
Ambient conditions
Degree of protection | IP20 |
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Ambient temperature (operation) | -25 °C ... 70 °C (> 55 °C Derating: 2.5 %/K) |
Ambient temperature (storage/transport) | -40 °C ... 85 °C |
Max. permissible relative humidity (operation) | ≤ 95 % (at 25 °C, non-condensing) |
Climatic class | 3K3 (in acc. with EN 60721) |
Degree of pollution | 2 |
Input data
Nominal input voltage range | 100 V AC ... 240 V AC |
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Input voltage range | 85 V AC ... 264 V AC |
Frequency range (fN) | 50 Hz ... 60 Hz 10 % |
Current consumption | 2.2 A (100 V AC) |
1.1 A (240 V AC) | |
Nominal power consumption | 213.3 VA |
Inrush current | < 40 A (typical) |
Mains buffering time | typ. 25 ms (120 V AC) |
typ. 90 ms (230 V AC) | |
Input fuse | 4 A (slow-blow, internal) |
Recommended breaker for input protection | 6 A ... 16 A (Characteristics B, C, D, K) |
Power factor (cos phi) | 0.52 |
Type of protection | Transient surge protection |
Protective circuit/component | Varistor |
Output data
Nominal output voltage | 48 V DC ±1 % |
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Nominal output current (IN) | 2.1 A (-25 °C ... 55 °C) |
Derating | 55 °C ... 70 °C (2.5%/K) |
Connection in parallel | Yes, for redundancy and increased capacity |
Connection in series | yes |
Feedback voltage resistance | < 60 V DC |
Protection against overvoltage at the output (OVP) | ≤ 60 V DC |
Control deviation | < 1 % (change in load, static 10 % ... 90 %) |
< 2 % (Dynamic load change 10 % ... 90 %, 10 Hz) | |
< 0.1 % (change in input voltage ±10 %) | |
Residual ripple | < 40 mVPP (with nominal values) |
Output power | 100 W |
Typical response time | < 1 s |
Maximum power dissipation in no-load condition | < 0.4 W |
Power loss nominal load max. | < 11 W |
General
Net weight | 0.34 kg |
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Efficiency | typ. 88 % (120 V AC) |
typ. 90 % (230 V AC) | |
Insulation voltage input/output | 4 kV AC (type test) |
3 kV AC (routine test) | |
Protection class | II (in closed control cabinet) |
Degree of protection | IP20 |
MTBF (IEC 61709, SN 29500) | > 1010000 h (40 °C) |
Mounting position | horizontal DIN rail NS 35, EN 60715 |
Assembly instructions | alignable: 0 mm horizontally, 30 mm vertically |
Connection data, input
Connection method | Screw connection |
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Conductor cross section solid min. | 0.2 mm² |
Conductor cross section solid max. | 2.5 mm² |
Conductor cross section flexible min. | 0.2 mm² |
Conductor cross section flexible max. | 2.5 mm² |
Conductor cross section AWG min. | 24 |
Conductor cross section AWG max. | 14 |
Stripping length | 8 mm |
Screw thread | M3 |
Connection data, output
Connection method | Screw connection |
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Conductor cross section solid min. | 0.2 mm² |
Conductor cross section solid max. | 2.5 mm² |
Conductor cross section flexible min. | 0.2 mm² |
Conductor cross section flexible max. | 2.5 mm² |
Conductor cross section AWG min. | 24 |
Conductor cross section AWG max. | 14 |
Stripping length | 8 mm |
Screw thread | M3 |
Standards
EMC requirements for noise immunity | EN 61000-6-1 |
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EN 61000-6-2 | |
EMC requirements for noise emission | EN 61000-6-3 |
EN 61000-6-4 | |
Standard - Safety of transformers | EN 61558-2-16 |
Standard - Electrical safety | IEC 60950-1/VDE 0805 (SELV) |
Standard – Electronic equipment for use in electrical power installations and their assembly into electrical power installations | EN 50178/VDE 0160 (PELV) |
Standard – Safety extra-low voltage | IEC 60950-1 (SELV) and EN 60204-1 (PELV) |
Standard - Safe isolation | DIN VDE 0100-410 |
Standard – Limitation of mains harmonic currents | EN 61000-3-2 |
Mains variation/undervoltage | EN 61000-4-11 |
Conformance/approvals
UL approvals | UL/C-UL listed UL 508 |
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UL/C-UL Recognized UL 60950-1 | |
UL/C-UL Listed ANSI/ISA-12.12.01 Class I, Division 2, Groups A, B, C, D T4 (Hazardous Location) | |
CSA | CAN/CSA-C22.2 No. 60950-1-07 |
CSA-C22.2 No. 107.1-01 | |
CAN/CSA-C22.2 No. 213 Class I, Division 2, Groups A, B, C, D T4 (Hazardous Location) |
EMC data
Electromagnetic compatibility | Conformance with EMC Directive 2014/30/EU |
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Low Voltage Directive | Conformance with LV directive 2006/95/EC |
Electrostatic discharge | EN 61000-4-2 |
Contact discharge | 6 kV (Test Level 3) |
Discharge in air | 8 kV (Test Level 3) |
Electromagnetic HF field | EN 61000-4-3 |
Frequency range | 80 MHz ... 1 GHz |
Test field strength | 10 V/m |
Frequency range | 1 GHz ... 2 GHz |
Test field strength | 10 V/m |
Frequency range | 2 GHz ... 3 GHz |
Test field strength | 10 V/m |
Comments | Criterion A |
Fast transients (burst) | EN 61000-4-4 |
Input | 4 kV (Test Level 4 - asymmetrical) |
Output | 2 kV (Test Level 3 - asymmetrical) |
Comments | Criterion B |
Surge voltage load (surge) | EN 61000-4-5 |
Input | 2 kV (Test Level 3 - symmetrical) |
4 kV (Test Level 4 - asymmetrical) | |
Output | 1 kV (Test Level 2 - symmetrical) |
2 kV (Test Level 1 - asymmetrical) | |
Comments | Criterion B |
Conducted interference | EN 61000-4-6 |
Frequency range | 10 kHz ... 80 MHz |
Voltage | 10 V (Test Level 3) |
Comments | Criterion A |
Voltage dips | EN 61000-4-11 |
Criterion A | Normal operating behavior within the specified limits. |
Criterion B | Temporary impairment to operational behavior that is corrected by the device itself. |