FEATURES
High Efficiency: 90% @ 5V/20A
Standard footprint
Size: 57.9mmx36.8mmx12.7mm
(2.28”x1.45”x0.50”)
Industry standard pin out
Fixed frequency operation
Metal baseplate
Input UVLO, Output OCP, OVP, OTP
Basic insulation
No minimum load required
2:1 input voltge range
ISO 9001, TL 9000, ISO 14001, QS9000,
OHSAS18001 certified manufacturing
facility
UL/cUL 60950 (US & Canada)
Recognized, and TUV (EN60950)
Certified
CE mark meets 73/23/EEC and
93/68/EEC directives
Delphi Series Q48SL, 100W Quarter Brick Family
DC/DC Power Modules: 48V in, 5V/20A out
The Delphi Series Q48SL Quarter Brick, 48V input, single output, isolated
DC/DC converter is the latest offering from a world leader in power
system and technology and manufacturing
―
Delta Electronics, Inc. This
product family provides up to 100 watts of power or 35A of output current
(2.5V and below) in an industry standard footprint. With creative design
technology and optimization of component placement, these converters
possess outstanding electrical and thermal performances, as well as
extremely high reliability under highly stressful operating conditions. All
models are fully protected from abnormal input/output voltage, current,
and temperature conditions. The Delphi Series converters meet all safety
requirements with basic insulation.
OPTIONS
Positive On/Off logic
Short pin lengths available
APPLICATIONS
Telecom/Datacom
Wireless Networks
Optical Network Equipment
Server and Data Storage
Industrial/Testing Equipment
DATASHEET
DS_Q48SL05020_01262007
TECHNICAL SPECIFICATIONS
(T
A
=25°C, airflow rate=300 LFM, V
in
=48Vdc, nominal Vout unless otherwise noted.)
PARAMETER
ABSOLUTE MAXIMUM RATINGS
Input Voltage
Continuous
Transient (100ms)
Operating Case Temperature
Storage Temperature
Input/Output Isolation Voltage
INPUT CHARACTERISTICS
Operating Input Voltage
Input Under-Voltage Lockout
Turn-On Voltage Threshold
Turn-Off Voltage Threshold
Lockout Hysteresis Voltage
Input Over-Voltage Lockout
Turn-Off Threshold
Turn-On Threshold
Maximum Input Current
No-Load Input Current
Off Converter Input Current
Inrush Current(I
2
t)
Input Reflected-Ripple Current
Input Voltage Ripple Rejection
OUTPUT CHARACTERISTICS
Output Voltage Set Point
Output Voltage Regulation
Over Load
Over Line
Over Temperature
Total Output Voltage Range
Output Voltage Ripple and Noise
Peak-to-Peak
RMS
Operating Output Current Range
Output DC Current-Limit Inception
DYNAMIC CHARACTERISTICS
Output Voltage Current Transient
Positive Step Change in Output Current
Negative Step Change in Output Current
Settling Time (within 1% Vout nominal)
Turn-On Transient
Start-Up Time, From On/Off Control
Start-Up Time, From Input
Maximum Output Capacitance
EFFICIENCY
100% Load
60% Load
ISOLATION CHARACTERISTICS
Input to Output
Input to Case
Output to Case
Isolation Resistance
Isolation Capacitance
FEATURE CHARACTERISTICS
Switching Frequency
ON/OFF Control, Negative Remote On/Off logic
Logic Low (Module On)
Logic High (Module Off)
ON/OFF Control, Positive Remote On/Off logic
Logic Low (Module Off)
Logic High (Module On)
ON/OFF Current (for Both Remote on/off logic)
Leakage Current (for Both Remote on/off logic)
Output Voltage Trim Range
Output Voltage Remote Sense Range
Output Over-Voltage Protection
GENERAL SPECIFICATIONS
MTBF
Weight
Over-Temperature Shutdown
NOTES and CONDITIONS
Q48SL05020 (Standard)
Min.
Typ.
Max.
80
100
100
125
48
34
32
2
81
79
75
35
33
3
Units
Vdc
Vdc
°C
°C
Vdc
Vdc
Vdc
Vdc
Vdc
Vdc
Vdc
A
MA
mA
A
2
s
mA
dB
Vdc
mV
mV
mV
V
mV
mV
A
%
mV
mV
us
20
20
2000
ms
ms
µF
%
%
Vdc
Vdc
Vdc
MΩ
pF
kHz
0.8
15
0.4
15
1
50
+10
+10
130
V
V
V
V
mA
uA
%
%
%
M hours
grams
°C
100ms
Tc
1 minute
-40
-55
1500
36
33
31
1
100% Load, 36Vin
100
3
0.015
10
50
4.92
5.00
±2
±2
±30
4.85
90
20
0
110
250
250
400
12
12
Full load; 5% overshoot of Vout at startup
90
90
1500
1500
500
10
1200
250
Von/off at Ion/off=1.0mA
Von/off at Ion/off=0.0 µA
Von/off at Ion/off=1.0mA
Von/off at Ion/off=0.0 µA
Ion/off at Von/off=0.0V
Logic High, Von/off=15V
Across Pins 9 & 5, Pout
≦
max rated power
Pout
≦
max rated power
Over full temp range; % of nominal Vout
Io=80% of Io, max; Tc=40°C
Average PCB Temperature
0
2.4
0
2.4
3.7
150
10
P-P thru 12µH inductor, 5Hz to 20MHz
120 Hz
Vin=48V, Io=Io.max, Tc=25°C
Io=Io,min to Io,max
Vin=36V to 75V
Tc=-40°C to 100°C
over sample load, line and temperature
5Hz to 20MHz bandwidth
Full Load, 1µF ceramic, 10µF tantalum
Full Load, 1µF ceramic, 10µF tantalum
Output Voltage 10% Low
48V, 10µF Tan & 1µF Ceramic load cap, 0.1A/µs
50% Io.max to 75% Io.max
75% Io.max to 50% Io.max
5.08
±7
±5
±100
5.15
150
40
20
150
-20
115
122
2.5
55
110
DS_Q48SL05020_01262007
2
ELECTRICAL CHARACTERISTICS CURVES
36Vin
48Vin
75Vin
POWER DISSIPATION (W)
EFFICIENCY (%)
95
90
85
80
75
70
65
60
5
10
15
20
O U TPU T C U R R EN T (A)
14.0
36Vin
48Vin
75Vin
12.0
10.0
8.0
6.0
4.0
2.0
0.0
5
10
15
20
OU TPU T C U R R EN T(A)
Figure 1:
Efficiency vs. load current for minimum, nominal, and
maximum input voltage at 25°C.
INPUT CURRENT (A)
Figure 2:
Power dissipation vs. load current for minimum,
nominal, and maximum input voltage at 25°C.
3.5
Io=20A
Io=12A
Io=2A
3.0
2.5
2.0
1.5
1.0
0.5
0.0
30
35
40
45
50
55
60
65
70
75
INPUT VOLTAGE (V)
Figure 3:
Typical input characteristics at room temperature
DS_Q48SL05020_01262007
3
ELECTRICAL CHARACTERISTICS CURVES
For Negative Remote On/Off Logic
Figure 4:
Turn-on transient at full rated load current (resistive
load) (5 ms/div). Top Trace: Vout; 2V/div; Bottom Trace:
ON/OFF input: 2V/div
Figure 5:
Turn-on transient at zero load current (5 ms/div). Top
Trace: Vout: 2V/div; Bottom Trace: ON/OFF input: 2V/div
For Positive Remote On/Off Logic
Figure 6:
Turn-on transient at full rated load current (resistive
load) (5 ms/div). Top Trace: Vout; 2V/div; Bottom Trace:
ON/OFF input: 2V/div
Figure 7:
Turn-on transient at zero load current (5 ms/div). Top
Trace: Vout: 2V/div; Bottom Trace: ON/OFF input: 2V/div
DS_Q48SL05020_01262007
4
ELECTRICAL CHARACTERISTICS CURVES
Figure 8:
Output voltage response to step-change in load
current (75%-50%-75% of Io, max; di/dt = 0.1A/µs). Load cap:
10µF, tantalum capacitor and 1µF ceramic capacitor. Top Trace:
Vout (100mV/div), Bottom Trace: Iout (10A/div). Scope
measurement should be made using a BNC cable (length
shorter than 20 inches). Position the load between 51 mm to 76
mm (2 inches to 3 inches) from the module.
Figure 9:
Output voltage response to step-change in load
current (75%-50%-75% of Io, max; di/dt = 2.5A/µs). Load cap:
470µF, 35m
Ω
ESR solid electrolytic capacitor and 1µF ceramic
capacitor. Top Trace: Vout (100mV/div), Bottom Trace: Iout
(10A/div). Scope measurement should be made using a BNC
cable (length shorter than 20 inches). Position the load
between 51 mm to 76 mm (2 inches to 3 inches) from the
module.
is
Cs:220uF
ESR< 0.1
Ω
﹫ ℃
100KHz
20
ic
Vi(+)
33uF
ESR< 0.5
Ω
﹫ ℃
100KHz
20
Vi(-)
Figure 10:
Test set-up diagram showing measurement points
for Input Terminal Ripple Current and Input Reflected Ripple
Current.
Note: Measured input reflected-ripple current with a simulated
source Inductance (L
TEST
) of 12
µH.
Capacitor Cs offset
possible battery impedance. Measure current as shown above.
DS_Q48SL05020_01262007
5