UC2842ANG ON Semiconductor, UC2842ANG Datasheet - Page 13

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UC2842ANG

Manufacturer Part Number
UC2842ANG
Description
IC CTRLR CURRENT MODE HP 8DIP
Manufacturer
ON Semiconductor
Type
High Performance Current Mode Controllersr
Datasheet

Specifications of UC2842ANG

Pwm Type
Current Mode
Number Of Outputs
1
Frequency - Max
500kHz
Duty Cycle
96%
Voltage - Supply
11 V ~ 25 V
Buck
No
Boost
No
Flyback
Yes
Inverting
No
Doubler
No
Divider
No
Cuk
No
Isolated
Yes
Operating Temperature
-40°C ~ 85°C
Package / Case
8-DIP (0.300", 7.62mm)
Frequency-max
500kHz
Output Voltage Range
4.95 V to 5.05 V
Input Voltage Range
30 V
Operating Temperature Range
- 25 C to + 85 C
Mounting Style
Through Hole
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
UC2842ANGOS
Figure 27. Current Waveform Spike Suppression
The totem−pole output can furnish negative base current for enhanced
transistor turn−off, with the addition of capacitor C
The addition of the RC filter will eliminate instability caused by the leading
edge spike on the current waveform.
The MCR101 SCR must be selected for a holding of less than 0.5 mA at T
The simple two transistor circuit can be used in place of the SCR as shown. All
resistors are 10 k.
Figure 29. Bipolar Transistor Drive
MCR
101
+
5.0V
+
0
+
+
ref
I
B
Comp/Latch
Figure 31. Latched Shutdown
3905
S
R
2N
Q
6(1)
5(8)
3(5)
+
Removal
+
Charge
7(12)
Base
3903
2N
8(14)
4(7)
2(3)
1(1)
C
1
V
CC
7(11)
6(10)
5(8)
3(5)
1
UC3842A, UC3843A, UC2842A, UC2843A
.
+
Q1
R
EA
V
R
R
S
in
C
+
R
Osc
1.0mA
Bias
Q1
R
V
2R
S
in
R
A(min)
5(9)
.
http://onsemi.com
+
5.0V
13
+
+
ref
Comp/Latch
S
R
Q
Error Amp compensation circuit for stabilizing current−mode boost and flyback
topologies operating with continuous inductor current.
Error Amp compensation circuit for stabilizing any current−mode topology except
for boost and flyback converters operating with continuous inductor current.
Series gate resistor R
caused by the MOSFET input capacitance and any series wiring inductance
in the gate−source circuit.
+
Figure 30. Isolated MOSFET Drive
C
Figure 28. MOSFET Parasitic Oscillations
Figure 32. Error Amplifier Compensation
R
p
From V
+
7(12)
R
p
From V
R
d
i
+
R
O
C
5.0V
R
O
i
I
V
d
7(11)
6(1)
5(8)
3(5)
+
CC
+
ref
C
Comp/Latch
g
C
I
R
will damp any high frequency parasitic oscillations
S
R
2(3)
1(1)
f
Q
Boundary
Isolation
R
R
R
S
2(3)
1(1)
+
f
2.5V
+
+
7(12)
N
EA
2.5V
S
+
+
Q1
1.0mA
EA
V
CC
7(11)
6(10)
5(8)
3(5)
+
N
V
+
0
2R
p
I
pk
in
É É É
1.0mA
R
50% DC
=
R
2R
g
É
V
V
5(9)
(pin 1)
R
GS
3 R
Waveforms
− 1.4
5(9)
S
Q1
+
0
R
V
S
in
É É É É
25% DC
N
N
P
S

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