UC3844BNG ON Semiconductor, UC3844BNG Datasheet - Page 9

IC CTLR CURRENT MODE 8-DIP

UC3844BNG

Manufacturer Part Number
UC3844BNG
Description
IC CTLR CURRENT MODE 8-DIP
Manufacturer
ON Semiconductor
Type
Pulse Width Modulator Controllerr
Datasheets

Specifications of UC3844BNG

Pwm Type
Current Mode
Number Of Outputs
1
Frequency - Max
275kHz
Duty Cycle
50%
Voltage - Supply
11.5 V ~ 25 V
Buck
No
Boost
Yes
Flyback
Yes
Inverting
Yes
Doubler
No
Divider
No
Cuk
No
Isolated
Yes
Operating Temperature
0°C ~ 70°C
Package / Case
8-DIP (0.300", 7.62mm)
Frequency-max
275kHz
Number Of Pwm Outputs
1
On/off Pin
No
Adjustable Output
No
Topology
Boost/Flyback
Switching Freq
500KHz
Operating Supply Voltage (max)
30V
Output Current
1000A
Synchronous Pin
No
Rise Time
50ns
Fall Time
50ns
Operating Temperature Classification
Commercial
Mounting
Through Hole
Pin Count
8
Package Type
PDIP
Duty Cycle (max)
48 % (Typ)
Output Voltage
4.9 V to 5.1 V
Mounting Style
Through Hole
Switching Frequency
500 KHz
Operating Supply Voltage
30 V
Maximum Operating Temperature
70 C
Minimum Operating Temperature
0 C
Current, Input Bias
-2 μA
Current, Output
+12 mA (Sink), -1 mA (Source)
Current, Supply
30 mA
Frequency, Oscillator
250 kHz
Power Dissipation
1.25 W
Regulation, Line
2 mV
Regulation, Load
3 mV
Regulator Type
DC-DC
Temperature, Operating, Range
0 to +70 °C
Time, Fall
50 ns
Time, Rise
50 ns
Voltage, Gain
3 V/V
Voltage, Input
-0.3 to +5.5 V
Voltage, Noise
50 μV
Voltage, Output
5 V
Voltage, Output, High
13.5 V
Voltage, Output, Low
1.6 V
Voltage, Supply
36 V
Voltage, Supply, Rejection Ratio
70 dB
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
UC3844BNGOS

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
UC3844BNG
Manufacturer:
ON/安森美
Quantity:
20 000
Part Number:
UC3844BNG
0
Part Number:
UC3844BNG/UC3844BN
0
Undervoltage Lockout
incorporated to guarantee that the IC is fully functional
before the output stage is enabled. The positive power
supply terminal (V
each monitored by separate comparators. Each has built−in
hysteresis to prevent erratic output behavior as their
respective thresholds are crossed. The V
upper and lower thresholds are 16 V/10 V for the UCX844B,
and 8.4 V/7.6 V for the UCX845B. The V
upper and lower thresholds are 3.6 V/3.4 V. The large
hysteresis and low startup current of the UCX844B makes
it ideally suited in off−line converter applications where
efficient bootstrap startup techniques are required
(Figure 30). The UCX845B is intended for lower voltage
dc−dc converter applications. A 36 V Zener is connected as
a shunt regulator from V
protect the IC from excessive voltage that can occur during
system startup. The minimum operating voltage for the
UCX844B is 11 V and 8.2 V for the UCX845B.
Output
was specifically designed for direct drive of power
MOSFETs. It is capable of up to ±1.0 A peak drive current
and has a typical rise and fall time of 50 ns with a 1.0 nF load.
Additional internal circuitry has been added to keep the
Output in a sinking mode whenever an undervoltage lockout
is active. This characteristic eliminates the need for an
external pulldown resistor.
pins for V
implementation will significantly reduce the level of
switching transient noise imposed on the control circuitry.
This becomes particularly useful when reducing the I
clamp level. The separate V
The diode clamp is required if the Sync amplitude is large enough to cause
the bottom side of C
External
Sync
Input
Two undervoltage lockout comparators have been
These devices contain a single totem pole output stage that
The SOIC−14 surface mount package provides separate
Figure 18. External Clock Synchronization
0.01
C
(output supply) and Power Ground. Proper
T
C
to go more than 300 mV below ground.
R
47
T
T
CC
8(14)
V
4(7)
2(3)
1(1)
ref
) and the reference output (V
CC
to ground. Its purpose is to
C
EA
R
R
supply input allows the
+
Bias
Osc
2R
CC
ref
R
comparator
comparator
5(9)
ref
pk(max)
http://onsemi.com
) are
9
f +
R
R
designer added flexibility in tailoring the drive voltage
independent of V
to this input when driving power MOSFETs in systems
where V
power and control ground connections in a current−sensing
power MOSFET application.
Reference
tolerance at T
UC384XB. Its primary purpose is to supply charging current
to the oscillator timing capacitor. The reference has
short−circuit protection and is capable of providing in
excess of 20 mA for powering additional control system
circuitry.
Design Considerations
wire−wrap or plug−in prototype boards. High frequency
circuit layout techniques are imperative to prevent
pulse−width jitter. This is usually caused by excessive noise
pick−up imposed on the Current Sense or Voltage Feedback
inputs. Noise immunity can be improved by lowering circuit
impedances at these points. The printed circuit layout should
contain a ground plane with low−current signal and
high−current switch and output grounds returning on
separate paths back to the input filter capacitor. Ceramic
bypass capacitors (0.1 mF) connected directly to V
and V
This provides a low impedance path for filtering the high
frequency noise. All high current loops should be kept as
short as possible using heavy copper runs to minimize
radiated EMI. The Error Amp compensation circuitry and
the converter output voltage divider should be located close
to the IC and as far as possible from the power switch and
other noise−generating components.
C
A
B
6
5
2
The 5.0 V bandgap reference is trimmed to ±1.0%
Do not attempt to construct the converter on
Figure 19. External Duty Cycle Clamp and
(R A ) 2R B )C
8
ref
5.0k
5.0k
5.0k
1
1.44
CC
may be required depending upon circuit layout.
Multi−Unit Synchronization
is greater than 20 V. Figure 23 shows proper
MC1455
J
R
S
= 25°C on the UC284XB, and ±2.0% on the
Q
4
CC
D (max) +
. A Zener clamp is typically connected
3
7
R A ) 2R B
R A
8(14)
4(7)
2(3)
1(1)
To Additional
UCX84XBs
R
R
EA
+
Osc
Bias
CC
2R
5(9)
, V
R
C
,

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