ASB160 XPPOWER | Alldatasheet

Document overview

  • PDF pages: 5

Technical content

Features

  • Complete AC-DC power supply
  • No extra components required
  • Baseplate cooled full brick package
  • Low profile
  • Input range 90 to 264VAC
  • Single outputs from 12 to 54VDC
  • Output voltage trim ±5%
  • High efficiency - up to 93%
  • Over current, over voltage and over temperature protection
  • Optional heatsink available
  • -40 to +90°C baseplate operating temperature
  • 3 year warranty AC-DC Converters Industrial Electronics Instrumentation Railway Security Technology BASEPLATE COOLED AC-DC POWER SUPPLIES

AC-DC POWER SUPPLIESASB160 Series Output Characteristic Minimum Typical Maximum Units Notes & Conditions Output Voltage 12 54 VDC See Models and Ratings table Initial Set Accuracy 1 % At 60% load Output Voltage Trim 95 105 % Of nominal output voltage. See application note Minimum Load No minimum load required Start Up Delay 1.3 s Start Up Rise Time 10 ms Hold Up Time 8 10 ms Full load and 115VAC Line Regulation ±0.5 % Load Regulation ±0.5 % Transient Response 2 % Maximum deviation, recovering to less than 1% within 300µs for 25% step load Ripple and Noise 1 % pk-pk 20MHz bandwidth, measured with 20MHz Bandwidth and 10µF electrolytic in parallel with 0.1µF ceramic capacitor Overload Protection 110 140 % Overvoltage Protection 110 150 % Auto recovery except 54V version recycle AC to reset Short Circuit Protection T rip and restart (hiccup), auto resetting Thermal Protection Measured internally at the baseplate, auto resetting Temperature Coefficient 0.02 %/°C After 20 minute warm up Remote Sense 5 % Maximum compensation Input Characteristic Minimum Typical Maximum Units Notes & Conditions Input Voltage 90 264 VAC Input Frequency 47 63 Hz Input Current 1.7/0.82 A 115VAC/230VAC Inrush Current 100 A 230VAC, cold start at 25°C Earth Leakage Current 750 µA 264VAC, 60Hz Power Factor 0.9 Full load No Load Input Power 0.5/0.7 W 12V-48V/54V Input Protection Internal T3.15A/250VAC fitted in line General Characteristic Minimum Typical Maximum Units Notes & Conditions Efficiency 92 % See models and ratings table Isolation: Input to Output Input to Ground Output to Ground

3000 VAC

1500 VAC

500 VAC

180 250 kHz Main converter, variable, load dependant 100 150 PFC Power Density 18.5 W/in3 Mean Time Between Failure 160 khrs MIL-HDBK-217F at 25°C GB and 115VAC Weight 0.62 (280) lb(g)

Safety Agency Standard Notes & Conditions UL UL62368-1 TUV EN62368-1 CB IEC62368-1 CE Meets all applicable directives UKCA Meets all applicable legislation EMC: Immunity Phenomenon Standard T est Level Criteria Notes & Conditions Radiated EN61000-4-2 3/2 A ±8kV air/±4kV contact Radiated Immunity EN61000-4-3 3V/m A EFT/Burst EN61000-4-4 2 A Surge EN61000-4-5 Installation Class 3 A Conducted EN61000-4-6 3V A Dips and Interruptions EN61000-4-11 Dip: 100% 10ms A/B High Line/Low Line Dip: 30% 500ms A/B High Line/Low Line Int: 100% 5000ms B EMC: Emissions Phenomenon Standard T est Level Notes & Conditions Conducted EN55032 Level B ESD Harmonic Currents EN61000-3-2 Class A Voltage Flicker EN61000-3-3 Environmental Characteristic Minimum Typical Maximum Units Notes & Conditions Operating Temperature -40 +90 °C Baseplate T emperature, see derating curve Cooling Conduction cooled via baseplate Operating Humidity 5 90 %RH Non-condensing Storage Temperature -40 +90 °C Operating Altitude 5000 m Shock IEC68-2-27 , 30g, 11ms half sine, 3 times in each of 6 axes Vibration IEC68-2-6, 10-500Hz, 2g 10 mins/sweep, 60 mins for each of 3 axes

AC-DC POWER SUPPLIESASB160 Series Heatsink Option Mechanical Details 4.20 (106.7) Grey 0.23 (5.9) 0.78 (19.7) 4.60 (116.8) 2.40 (61.0) 0.400 (10.16) 0.400 (10.16) 2.00 (50.8) 0.299 (7.60) 0.299 (7.60) 0.299 (7.60) 0.299 (7.60) Moun/g2462ng inserts ø0.13 (3.2) through 4 places Earth AC L -V out T rim +V out +Sen -Sen AC N FG 4.60 (116.8) 0.079 (2.00) 0.039 (1.00) 4.20 (106.7) Grey 0.23 (5.9) 0.78 (19.7) 4.60 (116.8) 2.40 (61.0) 0.400 (10.16) 0.400 (10.16) 2.00 (50.8) 0.299 (7.60) 0.299 (7.60) 0.299 (7.60) 0.299 (7.60) Moun/g2462ng inserts ø0.13 (3.2) through 4 places Earth AC L -V out T rim +V out +Sen -Sen AC N FG 4.60 (116.8) 0.079 (2.00) 0.039 (1.00) Notes: 1. Dimensions shown in inches (mm). 2. Weight: 0.62lb (280g) 4. Pin pitch tolerance: ±0.014 (±0.35) 5. Case tolerance: ±0.02 (±0.5) 6. Baseplate is connected to FG Pin When ASB160 is fitted with IFH HEATSINK and mounted in horizontal position with heatsink upper most, the baseplate temperature will typically be 85°C in an ambient of 40°C. Derating Curve 100 -40- 30 -20- 10 01 02 0 Ambient Temperature (°C) Load (%) 30 40 50 60 70 80 90 With IFH HEATSINK 400 200 100 85 75 65 55 45 35 Baseplate Temperature (°C) LifetimeKHrs 100 -40- 30 -20- 10 01 02 0 Baseplate Temperature (°C) Load (%) 30 40 50 60 70 80 90 100 Some specification parameters may not be met Some specification parameters may not be met 100 -40- 30 -20- 10 01 02 0 Ambient Temperature (°C) Load (%) 30 40 50 60 70 80 90 With IFH HEATSINK 400 200 100 85 75 65 55 45 35 Baseplate Temperature (°C) LifetimeKHrs 100 -40- 30 -20- 10 01 02 0 Baseplate Temperature (°C) Load (%) 30 40 50 60 70 80 90 100 Some specification parameters may not be met Some specification parameters may not be met

Connecting an external resistor (Rd) between the Trim pin and the +Vo pin decreases the output voltage. The following table can be used to determine the required external resistor value to obtain a percentage output voltage change of 5%. T o Trim Up Connecting an external resistor (Ru) between the Trim pin and the -Vo pin increases the output voltage. The following table can be used to determine the required external resistor value to obtain a percentage output voltage change of 5%. ASB160 Series

518 January 2023

+Vo Trim down Trim up Trim -Vo +Vo Trim -Vo Rd RuLoad Load 100 10 20 30 40 50 60 70 80 90 100 Efficiency (%) Efficiency (%) 100 10 20 30 40 50 60 70 80 90 100

115 VAC

230 VAC

+Vo Trim down Trim up Trim -Vo +Vo Trim -Vo Rd RuLoad Load 100 10 20 30 40 50 60 70 80 90 100 Efficiency (%) Efficiency (%) 100 10 20 30 40 50 60 70 80 90 100 +Vo Trim down Trim up Trim -Vo +Vo Trim -Vo Rd RuLoad Load 100 10 20 30 40 50 60 70 80 90 100 Efficiency (%) Efficiency (%) 100 10 20 30 40 50 60 70 80 90 100 +Vo Trim down Trim up Trim -Vo +Vo Trim -Vo Rd RuLoad Load 100 10 20 30 40 50 60 70 80 90 100 Efficiency (%) Efficiency (%) 100 10 20 30 40 50 60 70 80 90 100 Trim Down (%) 12V 15V 24V 36V 48V 54V Rd (kΩ) 5 288.7 398.5 738 1215 1776 2005 Trim Up (%) 12V 15V 24V 36V 48V 54V Ru (kΩ) 5 79 84 90.8 92.8 89.4 90.8