RO ASSOCIATES SV48-24-150-1
Specifications
# of Outputs
1
DC Voltage Adjust (typ)
60-110% Vout
Efficiency
0.88
External Load Capacitance
10,000uF
Input
DC
Input Amps
6.5 max.
Input overvoltage
80VDC, Continuous
Input Ripple Rejection
60dB @ 120Hz
INPUT-OUTPUT Isolation
1500VDC
Isolation Capacitance
2000pF
Isolation resistance
10M Ohms
Line Regulation
±0.1% HL-LL
Load Regulation
±0.2% max.
Mounting and Connection
Pins
On/Off Control
Yes
Operating Temp
-40 to +100°C, Baseplate
Output Amps
6.2
Output Voltage
15
Over Current protection
110-130%
Over temp protection
105°C
Over Voltage Protection
26.5-33 VDC
Package
1/2 Brick
Preset Accuracy
±2%
Ripple/noise
400mV p-p max., 5 to 20 MHz
Short circuit protection
170% FL
Size (inches)
0.5" x 2.4" x 2.28"
Size (mm)
12.7 x 61 x 58
Storage Temperature
-40°C to +110°C
Temperature Coefficient
100-300mV
Thermal Resistance
Case-to-Ambient:6.6°C/w @ Tc-100°C
Transient response
100uS
Weight (g)
118
Weight (lbs)
0.26
Weight (Oz)
4.2
Features
- Construction: Encapsulated
- Input Voltage Range: 36-75VDC
- Output Voltages: 24
- Output Watts: 220
- Size (inches): 0.5" x 2.4" x 2.28"
Datasheet
Extracted Text
DC-DC Converters, SV48-24 Series TM 50 to 240W, 36~75Vdc Input SUPER VERTER World's Most Advanced High Density DC-DC Converters. MODEL SELECTION Model Name Vin(Vdc) Vout(Vdc) Io(Amps) Watts API P/N SV48-24-50-1 36-75 24 2.1 50 API0DC15-001 SV48-24-75-1 36-75 24 3.1 75 API0DC16-001 SV48-24-100-1 36-75 24 4.2 100 API0DC17-001 SV48-24-150-1 36-75 24 6.3 150 API0DC59-001 Size: 60.70mm x 57.91mm x 13.30mm SV48-24-200-1 36-75 24 8.3 200 API-215-99721 API0DC09-001 (2.39in. x 2.28in. x 0.52in.) SV48-24-240-1 36-75 24 10 240 SV48-26-225-1 36-75 26 8.7 API0DC07-001 225 DESCRIPTION FEATURES 3 The SuperVerter module is a high density DC- High Power Density - Up to 85W/in DC converter designed for use in distributed Constant Frequency - 370kHz o power architectures, workstations, EDP -40 to +100 C Operation equipment, and telecommunication Over Temperature Protection (Except 50W and 75W) appliciations. The surface mount construction High Efficiency: 86% Typical uses a metal baseplate and planar transformers Low Output Noise to produce up to 240W in a half brick package. Industry-Standard Pinout The SuperVerter module is a suitable Metal Baseplate replacement for all industry standard half brick 2:1 Input Voltage Range modules. Over Voltage Protection Current Limit/Short Circuit Protection Adjustable Output Voltage: 60% to 110% of V 0,set Remote Sense OPTION Logic ON/OFF Choice Of Remote On/off Logic Configuration Safety Agency Approval Heat Sink Available For Extended Operation SPECIFICATION ABSOLUTE MAXIMUM RATINGS: Exceeding absolute maximum ratings may cause permanent damage and reduce reliability PARAMETER MAX UNITS CONDITIONS MIN Continuous Input Voltage 80 Vdc Transient Input Voltage 100 ms max. 100 Vdc Input/Output Isolation Vdc 1500 o Operating Case Temperature 100 C -40 o Storage Temperature -40 110 C Electrical Specifications: Unless otherwise indicated specifications apply over all operating input voltage, resistive load, and temperature conditions. http://www.acbel.com Released: 01-02-'03 i. Specifications subject to change without notice. ii. All illustrations are for reference only. DC-DC Converters, SV48-24 Series TM 50 to 240W, 36~75Vdc Input SUPER VERTER INPUT SPECIFICATIONS: MAX UNITS CONDITIONS PARAMETER MIN TYP 75 V Operation Input Voltage (Vi ) 36 48 Maximum Input Current (I ): i,max 2.1 A V = 0Vdc to 75Vdc SV48-24-50-1 i 2.5 A I = I SV48-24-75-1 o o,max 3.5 A SV48-24-100-1 4.0 A SV48-24-150-1 6.5 A SV48-24-200-1 8.5 A SV48-24-240-1 2 1.0 A s Inrush Transient mAp-p 5Hz~20MHz, 12 H Input Reflected-Ripple Current: dB Source Impedance Peak to Peak 5 @ 120Hz Input Ripple Rejection 60 Caution: This power module is not internally fused. An input line fuse must always be used. OUTPUT SPECIFICATIONS: TYP MAX UNITS CONDITIONS PARAMETER MIN o 24.00 24.45 V T =25 C, V =48V, I = I Output Voltage Set Point (V ) 23.55 o,set c i o o,max 0.01 0.1 % V =36V to 75V Line Regulation i 0.05 0.2 % I =0.5A to I Load Regulation o o,max o o 50 300 mV Tc=-40 C to 100 C Temperature Drift 1.5 % Total Regulation 5Hz to 20MHz Output Ripple and Noise Voltage: 150 mVrms RMS 400 mV Peak to Peak 0 p-p 3,300 F Electrolytic capacitor External Load Capacitance Output Current( I ): o 2.1 A At I < I ,the modules SV48-24-50-1 0.15 o o,min 3.1 A may exceed output ripple SV48-24-75-1 0.15 4.2 A specifications SV48-24-100-1 0.15 6.3 A SV48-24-150-1 0.15 8.4 A SV48-24-200-1 0.15 10.0 A SV48-24-240-1 0.15 Output Current limit:: 2.4 3.0 A V =90% of V SV48-24-50-1 o o,set 3.6 4.3 A Vo=250mV SV48-24-75-1 4.8 5.5 A SV48-24-100-1 7.3 8.2 A SV48-24-150-1 9.2 10.9 A SV48-24-200-1 11.0 13.0 A SV48-24-240-1 170 %I Output Short Circuit Current o,max 370 kHz Switching Frequency Efficiency: 86 SV48-24-50-1 % 84 87 SV48-24-75-1 % 85 88 SV48-24-100-1 % 86 88 SV48-24-150-1 % 86 87 SV48-24-200-1 % 85 86 SV48-24-240-1 % 84 o Tc=70 C V =48V Dynamic Response: i 3 I =I Peak Deviation %V o o,max o,set 300 25%-50%-75% load Setting Time s 0.1A/ s o Tc=25 C V =48V i http://www.acbel.com i. Specifications subject to change without notice. ii. All illustrations are for reference only. DC-DC Converters, SV48-24 Series TM 50 to 240W, 36~75Vdc Input SUPER VERTER CONTROL SPECIFICATIONS: PARAMETER MIN TYP MAX UNITS CONDITIONS Logic On/Off: Logic Low: Ion/off 1 mA Von/off=0V Von/off 1.2 V Ion/off<1mA Logic High:Ion/off (Leakage Current) 50 A Von/off=15V Von/of 15 V Ion/off=0.0 A Turn-On Time 8 25 ms I = 80% of I o o,max V within +/- 1% V o o,set Output Remote Sense Range 1.2 V Output Voltage Trim Range 60 110 %V o,set Over Voltage Protection 26.5 31.2 V Auto recovery o Over Temperature Protection 105 C Auto recovery (except to 50W and 75W ) ISOLATION SPECIFICATIONS: PARAMETER CONDITIONS MIN MAX UNITS TYP Input to Output Vdc 1500 Input to Case Vdc 1500 Output to Case Vdc 500 Input to Output Capacity pF 2000 Isolation Resistance Mohm 10 GENERAL SPECIFICATIONS: CONDITIONS MIN TYP MAX UNITS PARAMETER o Mhrs Tc=40 C,Io =80% of I MTBF 1.3 o,max g Weight 118 3 2.39x2.28x0.52 in Size TRIM CIRCUIT OUTLINE DRAWING 57.91 +Out +Outo (2.28) 4.83(0.19) INNER HOLE +Sense +Sense M3 X 0.5 48.26 THRU (4X) (1.90) R trim-down Trim Trim Load Load R trim-up -IN -OUT -Sense -Sense 10.16 (0.40)(4X) CASE -S -Out -Out 60.70 15.24 50.80 T (2.39) (0.60) 7.62 (2.00) (0.30)(2X) ON/OFF +S Trim-Up Trim-Down +IN +OUT Rtrim-down= ((100/ %)-2) Kohms 12.57 (0.50) Vo(100+ %) 100+2 % - Rtrim-up= ( ) Kohms 1.225 % % 4.95(0.20) 11.51 (0.45) DIA. 2.03 (0.08) PIN DIA. 1.00 (0.04) PIN (2X) (7X) % = Desired Output Voltage Change Vo = Output Voltage 19.20(0.75) 13.30(0.52) Rtrim-up= External Resistor Value to Increase Vo 9.73(0.38) Rtrim-down= External Resistor Value to Decrease Vo ALUMINUM HEATSINK SURFACE http://www.acbel.com i. Specifications subject to change without notice. ii. All illustrations are for reference only. DC-DC Converters, SV48-24 Series TM 50 to 240W, 36~75Vdc Input SUPER VERTER PERFORMANCE CURVES: SV48-24-75 Figure 1. Efficiency at nominal output voltage vs. load current Figure 2. Efficiency at nominal output voltage vs. load current o o for 36V, 48V and 75V input voltage at Tc=25 C for 36V, 48V and 75V input voltage at Tc=70 C Figure 4.Power dissipation at nominal output voltage vs. load Figure 3. Power dissipation at nominal output voltage vs. load o o current for 36V, 48V and 75V input voltage at Tc=70 C current for 36V, 48V and 75V input voltage at Tc=25 C Figure 6. Typical start-up at 0.8Io,max load current (10ms/div) Figure 5. Input current vs. input voltage for maximum load Top Trace: 48V input voltage (20V/div) current Bottom Trace: Output voltage (10V/div) http://www.acbel.com i. Specifications subject to change without notice. ii. All illustrations are for reference only. DC-DC Converters, SV48-24 Series TM 50 to 240W, 36~75Vdc Input SUPER VERTER Figure 7. Output voltage ripple at maximum output current and Figure 8. Output voltage response to step-change in load current (2.5 s/div) at 48V input voltage and dI/dt=0.1A/ s (100 s/div) Top Trace: 36V input voltage (100mV/div) Top Trace: Step change in 25% of Io,max (1V/div) Middle Trace: 48V input voltage (100mV/div) Middle Trace: 25%-50%-25% of Io,max (100mV/div) Bottom Trace: 75V input voltage (100mV/div) Bottom Trace: 50%-75%-50% of Io,max (100mV/div) o Vi(+) 78 C Vo(+) o 82 C Vi(-) Vo(-) Figure 10. Thermal plot without heat sink at 48V input voltage, Figure 9. Magnitude and phase of loop gain for 48V input voltage o maximum load current and room temperature, measured after at full rated power and 25 C half an hour Figure 11.Forced convection power dissipation vs. local ambient Figure 12. Case-to-ambient thermal resistance vs. airflow for temperature with no heat sink for either orientation either orientation http://www.acbel.com i. Specifications subject to change without notice. ii. All illustrations are for reference only. DC-DC Converters, SV48-24 Series TM 50 to 240W, 36~75Vdc Input SUPER VERTER SV48-24-240 Figure 1. Efficiency at nominal output voltage vs. load current Figure 2. Efficiency at nominal output voltage vs. load current o o for 36V, 48V and 75V input voltage at Tc=25 C for 36V, 48V and 75V input voltage at Tc=70 C Figure 3. Power dissipation at nominal output voltage vs. load Figure 4.Power dissipation at nominal output voltage vs. load o o current for 36V, 48V and 75V input voltage at Tc=25 C current for 36V, 48V and 75V input voltage at Tc=70 C Figure 6. Typical start-up at 0.8Io,max load current (10ms/div) Figure 5. Input current vs. input voltage for maximum load Top Trace: 48V input voltage (20V/div) current Bottom Trace: Output voltage (10V/div) http://www.acbel.com i. Specifications subject to change without notice. ii. All illustrations are for reference only. DC-DC Converters, SV48-24 Series TM 50 to 240W, 36~75Vdc Input SUPER VERTER Figure 7. Output voltage ripple at maximum output current and Figure 8. Output voltage response to step-change in load current (2.5 s/div) at 48V input voltage and dI/dt=0.1A/ s (100 s/div) Top Trace: 36V input voltage (100mV/div) Top Trace: Step change in 25% of Io,max (1V/div) Middle Trace: 48V input voltage (100mV/div) Middle Trace: 25%-50%-25% of Io,max (200mV/div) Bottom Trace: 75V input voltage (100mV/div) Bottom Trace: 50%-75%-50% of Io,max (200mV/div) o 87 C Vi(+) Vo(+) o 92 C o 103 C o 96 C Vo(-) Vi(-) Figure 10. Thermal plot without heat sink at 48V input voltage, Figure 9. Magnitude and phase of loop gain for 48V input voltage o maximum load current and room temperature, measured at over at full rated power and 25 C temperature shut down. Figure 12. Case-to-ambient thermal resistance vs. airflow for Figure 11.Forced convection power dissipation vs. local ambient either orientation temperature with no heat sink for either orientation http://www.acbel.com i. Specifications subject to change without notice. ii. All illustrations are for reference only.
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