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LM2596TVADJG датащи(PDF) 4 Page - ON Semiconductor

номер детали LM2596TVADJG
подробное описание детали  3.0 A, Step-Down Switching Regulator
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производитель  ONSEMI [ON Semiconductor]
домашняя страница  http://www.onsemi.com
Logo ONSEMI - ON Semiconductor

LM2596TVADJG датащи(HTML) 4 Page - ON Semiconductor

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LM2596
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4
SYSTEM PARAMETERS
ELECTRICAL CHARACTERISTICS Specifications with standard type face are for TJ = 25°C, and those with boldface type apply
over full Operating Temperature Range −40°C to +125°C
Characteristics
Symbol
Min
Typ
Max
Unit
LM2596 (Note 1, Test Circuit Figure 15)
Feedback Voltage (Vin = 12 V, ILoad = 0.5 A, Vout = 5.0 V, )
VFB_nom
1.23
V
Feedback Voltage (8.5 V ≤ Vin ≤ 40 V, 0.5 A ≤ ILoad ≤ 3.0 A, Vout = 5.0 V)
VFB
1.193
1.18
1.267
1.28
V
Efficiency (Vin = 12 V, ILoad = 3.0 A, Vout = 5.0 V)
η
73
%
Characteristics
Symbol
Min
Typ
Max
Unit
Feedback Bias Current (Vout = 5.0 V)
Ib
25
100
200
nA
Oscillator Frequency (Note 2)
fosc
135
120
150
165
180
kHz
Saturation Voltage (Iout = 3.0 A, Notes 3 and 4)
Vsat
1.5
1.8
2.0
V
Max Duty Cycle “ON” (Note 4)
DC
95
%
Current Limit (Peak Current, Notes 2 and 3)
ICL
4.2
3.5
5.6
6.9
7.5
A
Output Leakage Current (Notes 5 and 6)
Output = 0 V
Output = −1.0 V
IL
0.5
6.0
2.0
20
mA
Quiescent Current (Note 5)
IQ
5.0
10
mA
Standby Quiescent Current (ON/OFF Pin = 5.0 V (“OFF”))
(Note 6)
Istby
80
200
250
mA
ON/OFF PIN LOGIC INPUT
Threshold Voltage
1.6
V
Vout = 0 V (Regulator OFF)
VIH
2.2
2.4
V
Vout = Nominal Output Voltage (Regulator ON)
VIL
1.0
0.8
V
ON/OFF Pin Input Current
ON/OFF Pin = 5.0 V (Regulator OFF)
IIH
15
30
mA
ON/OFF Pin = 0 V (regulator ON)
IIL
0.01
5.0
mA
1. External components such as the catch diode, inductor, input and output capacitors can affect switching regulator system performance.
When the LM2596 is used as shown in the Figure 15 test circuit, system performance will be as shown in system parameters section.
2. The oscillator frequency reduces to approximately 30 kHz in the event of an output short or an overload which causes the regulated output
voltage to drop approximately 40% from the nominal output voltage. This self protection feature lowers the average dissipation of the IC by
lowering the minimum duty cycle from 5% down to approximately 2%.
3. No diode, inductor or capacitor connected to output (Pin 2) sourcing the current.
4. Feedback (Pin 4) removed from output and connected to 0 V.
5. Feedback (Pin 4) removed from output and connected to +12 V to force the output transistor “off”.
6. Vin = 40 V.


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