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부품번호 LM5030MMX 기능
기능 100V Push-Pull Current Mode PWM Controller
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LM5030MMX 데이터시트, 핀배열, 회로
August 2003
LM5030
100V Push-Pull Current Mode PWM Controller
General Description
The LM5030 High Voltage PWM controller contains all of the
features needed to implement Push-Pull and Bridge topolo-
gies, using current-mode control in a small 10 pin package.
This device provides two alternating gate driver outputs. The
LM5030 includes a high-voltage start-up regulator that oper-
ates over a wide input range of 14V to 100V. Additional
features include: error amplifier, precision reference, dual
mode current limit, slope compensation, softstart, sync ca-
pability and thermal shutdown. This high speed IC has total
propagation delays less than 100ns and a 1MHz capable
single resistor adjustable oscillator.
Package: MSOP-10 (Contact factory for thermally enhanced
LLP availability).
Features
n Internal High Voltage Start-up Regulator
n Single Resistor Oscillator Setting
n Synchronizable
n Error Amplifier
n Precision Reference
n Adjustable Softstart
n Dual Mode Over-Current Protection
n Slope Compensation
n Direct Optocoupler Interface
n 1.5A Peak Gate Drivers
n Thermal Shutdown
Applications
n Telecommunication Power Converters
n Industrial Power Converters
n +42V Automotive Systems
Connection Diagram
Top View
10-Lead MSOP
20058112
Ordering Information
Order Number
LM5030MM
LM5030MMX
Package Marking
S73B
S73B
NSC Package Drawing
MUB10A
MUB10A
Supplies As
1000 Units on Tape and Reel
3500 Units on Tape and Reel
© 2003 National Semiconductor Corporation DS200581
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LM5030MMX pdf, 반도체, 판매, 대치품
Absolute Maximum Ratings (Note 1)
If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales Office/
Distributors for availability and specifications.
VIN to GND (Survival)
VCC to GND (Survival)
RT to GND (Survival)
All other pins to GND (Survival)
Power Dissipation (Note 2)
ESD Rating (Note 3)
Human Body Model
Machine Model
-0.3V to 100V
-0.3V to 16V
-0.3V to 5.5V
-0.3V to 7V
Internally Limited
2kV
200V
Lead Temperature
(Soldering 4 seconds)
Storage Temperature Range
Junction Temperature
Operating Ratings
Junction Temperature
VIN
260˚C
-55˚C to +150˚C
150˚C
-40˚C to +105˚C
14V to 90V
Electrical Characteristics
Specifications in standard type face are for TJ= +25˚C and those in boldface type apply over the full operating junction tem-
perature range. Unless otherwise specified: VIN = 48V, VCC = 10V, and RT = 26.7K
Symbol
Parameter
Conditions
Min Typ
Max
Units
(Note 4) (Note 5)
(Note 4)
Startup Regulator
VCCReg
I-VIN
VCC Regulation
VCC Current Limit
Startup Regulator Leakage
(external Vcc Supply)
open ckt
(Note 2)
VIN = 90V
7.4 7.7
8.0
V
10 17
mA
150 500 µA
IIN
VCC Supply
Shutdown Current
VCC undervoltage Lockout
Voltage
SS = 0V, VCC = open
250
VccReg VccReg -
- 300mV 100mV
350
µA
V
Undervoltage Hysteresis
1.2 1.6
2.1
V
ICC Supply Current
Error Amplifier
Cload = 0
2 3 mA
GBW
Gain Bandwidth
4 MHz
DC Gain
75 dB
Input Voltage
COMP Sink Capability
Current Limit
VFB = COMP
VFB = 1.5V COMP= 1V
1.220
5
1.245
13
1.270
V
mA
CS1 Cycle by Cycle CS Threshold
0.45
0.5
0.55
V
Voltage
CS2
Restart CS Threshold Voltage Resets SS capacitor; auto 0.575
0.625
0.675
V
restart
ILIM Delay to Output
CS step from 0 to 0.6V
30
ns
Time to onset of OUT
Transition (90%)
Cload = 0
CS Sink Current (clocked)
CS = 0.3V
36
mA
Soft Start/Shutdown
Softstart Current Source
7 10 13 µA
Softstart to COMP Offset
0.25
0.5
0.75
V
Shutdown Threshold
0.2 0.45
0.7
V
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LM5030MMX 전자부품, 판매, 대치품
Typical Performance Characteristics Unless otherwise specified: TJ = 25˚C. (Continued)
Feedback Amplifier Gainphase
20058115
Detailed Operating Description
The LM5030 High Voltage PWM controller contains all of the
features needed to implement Push-Pull and Bridge topolo-
gies, using current-mode control in a small 10 pin package.
Features included are, startup regulator, dual mode current
limit, dual alternating gate drivers, thermal shutdown, soft-
start and slope compensation. This high speed IC has total
propagation delays <100nS. The Functional Block Diagram
of the LM5030 is shown in Figure 1.
The LM5030 is designed for Current-Mode Control convert-
ers which require alternating outputs, such as Push-Pull and
Half/Full Bridge topologies. The features included in the
LM5030 enable all of the advantages of Current-Mode Con-
trol, line feed-forward, cycle by cycle current limit and sim-
plified loop compensation. The oscillator ramp is internally
buffered and added to the PWM comparator input to provide
slope compensation necessary for current mode control at
higher duty cycles.
High Voltage Start-Up Regulator
The LM5030 contains an internal high voltage startup regu-
lator. The input pin (Vin) can be connected directly to line
voltages as high as 100V. The regulator output is internally
current limited to 10mA. Upon power up, the regulator is
enabled and sources current into an external capacitor con-
nected to the VCC pin. The recommended capacitance range
for the VCC regulator is 0.1µF to 50µF. When the voltage on
the VCC pin reaches the regulation point of 7.7V, the control-
ler outputs are enabled. The outputs will remain enabled
unless, VCC falls below 6.1V or if the SS/SHUTDOWN pin is
pulled to ground or an over temperature condition occurs. In
typical applications, an auxiliary transformer winding is diode
connected to the VCC pin. This winding raises the VCC
voltage greater than 8V, effectively shutting off the internal
startup regulator and saving power while reducing the con-
troller dissipation. The external VCC capacitor must be sized
such that the self-bias will maintain a VCC voltage greater
than 6.1V during the initial start-up. During a fault mode
when the converter self bias winding is inactive, external
current draw on the VCC line should be limited as to not
exceed the maximum power dissipation of the controller. An
external start-up or other bias rail can be used instead of the
internal start-up regulator by connecting the VCC and the Vin
pins and feeding the external bias voltage (8 - 15V) to that
node.
Error Amplifier
An internal high gain error amplifier is provided within the
LM5030. The amplifier’s non-inverting reference is tied to
1.25V. In non-isolated applications the power converter out-
put is connected to the VFB pin via the voltage setting
resistors and loop compensation is connected between the
COMP and VFB pins.
For most isolated applications the error amplifier function is
implemented on the secondary side ground. Since the inter-
nal error amplifier is configured as an open drain output it
can be disabled by connecting VFB to ground. The internal
5K pull-up resistor, connected between the 5V reference and
COMP, can be used as the pull-up for an optocoupler or
other isolation device.
PWM Comparator
The PWM comparator compares the compensated current
ramp signal to the loop error voltage from the internal error
amplifier (COMP pin). This comparator is optimized for
speed in order to achieve minimum discernable duty cycles.
The comparator polarity is such that zero Volts on the COMP
pin will cause a zero duty cycle.
Current Limit/ Current Sense
The LM5030 contains two levels of over-current protection. If
the voltage on the current sense comparator exceeds 0.5
Volts the present cycle is terminated (cycle by cycle current
limit). If the voltage on the current sense comparator ex-
ceeds 0.625 Volts, the controller will terminate the present
cycle and discharge the softstart capacitor. A small RC filter,
located near the controller, is recommended for the CS pin.
An internal MOSFET discharges the current sense filter
capacitor at the conclusion of every cycle, to improve dy-
namic performance.
The LM5030 CS and PWM comparators are very fast, and
as such will respond to short duration noise pulses. Layout
considerations are critical for the current sense filter and
sense resistor. The capacitor associated with the CS filter
must be placed very close to the device and connected
directly to the pins of the IC (CS and RTN). Also if a current
sense transformer is used, both leads of the transformer
secondary should be routed to the sense resistor, which
should also be located close to the IC. If a current sense
resistor located in the drive transistor sources is used, for
current sense, a low inductance resistor should be chosen.
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