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LX1552 반도체 회로 부품 판매점

ULTRA-LOW START-UP CURRENT/ CURRENT-MODE PWM



Microsemi Corporation 로고
Microsemi Corporation
LX1552 데이터시트, 핀배열, 회로
T H E I N F I N I T E P O W E R O F I N N O VAT I O N
L I N DO C # : 1552
LX1552/3/4/5
ULTRA-LOW START-UP CURRENT, CURRENT-MODE PWM
PRODUCTION DATA SHEET
DESCRIPTION
The LX155X family of ultra-low start-up
current (250µA max.), current mode
control IC's offer new levels of energy
efficiency for offline converter applica-
tions. They are ideally optimized for
personal computer and CRT power
supplies although they can be used in
any number of off-line applications
where energy efficiency is critical.
Coupled with the fact that the LX155X
series requires a minimal set of external
components, the series offers an
excellent value for cost conscious
consumer applications.
Optimizing energy efficiency, the
LX155X series demonstrates a signifi-
cant power reduction as compared with
other similar off-line controllers. Table 1
compares the SG384X, UC384XA and
the LX155X start-up resistor power
dissipation. The LX155X offers an
overall 4X reduction in power dissipa-
tion. Additionally, the precise oscillator
discharge current gives the power
supply designer considerable flexibility
in optimizing system duty cycle
consistency.
The current mode architecture
demonstrates improved load regulation,
pulse by pulse current limiting and
inherent protection of the power supply
output switch. The LX155X includes a
bandgap reference trimmed to 1%, an
error amplifier, a current sense com-
parator internally clamped to 1V, a high
current totem pole output stage for fast
switching of power mosfet's, and an
externally programmable oscillator to
set operating frequency and maximum
duty cycle. The undervoltage lock-out
circuitry is designed to operate with as
little as 250µA of supply current
permitting very efficient bootstrap
designs.
PRODUCT HIGHLIGHT
TYPICAL APPLICATION OF LX155X USING ITS
MICROPOWER S TART-UP FEATURE
TABLE 1
AC
INPUT
R ST
I ST
VCC
LX1552
or
LX1554
Design Using
SG384x UC384xA LX155x
Max. Start-up Current
Specification (IST)
1000µA
500µA
250µA
Typical Start-Up
Resistor Value (RST)
62K124K248K
Max. Start-Up Resistor
Power Dissipation (PR)
2.26W
1.13W
0.56W
Note: Calculation is done for universal AC input speci-
fication of V =ACMIN 90VRMS to VACMAX= 265VRMS using the
following equation: (Resistor curr ent is selected to be
2 * IST at VACMIN.)
RST =
VAC MIN
2 * IST
,
PR =
2V
2
AC
MAX
RST
KEY FEATURES
s ULTRA-LOW START-UP CURRENT
(150µA typ.)
s TRIMMED OSCILLATOR DISCHARGE
CURRENT (±2% typ.)
s INITIAL OSCILLATOR FREQUENCY BETTER
THAN ±4%
s OUTPUT PULLDOWN DURING UVLO
s PRECISION 2.5V REFERENCE (±2% max.)
p CURRENT SENSE DELAY TO OUTPUT
(150ns typ.)
p AUTOMATIC FEED FORWARD
COMPENSATION
p PULSE-BY-PULSE CURRENT LIMITING
p ENHANCED LOAD RESPONSE
CHARACTERISTICS
p UNDER-VOLTAGE LOCKOUT WITH
HYSTERESIS
p DOUBLE PULSE SUPPRESSION
p HIGH CURRENT TOTEM POLE OUTPUT
(±1Amp peak)
p 500kHz OPERATION
A P P L I C AT I O N S
s ECONOMY OFF-LINE FLYBACK OR
FORWARD CONVERTERS
s DC-DC BUCK OR BOOST CONVERTERS
s LOW COST DC MOTOR CONTROL
AVAILABLE OP T I O N S PER PA RT #
Part # Start-Up Hysteresis Max. Duty
Voltage
Cycle
LX1552 16V
6V <100%
LX1553 8.4V 0.8V <100%
LX1554 16V
6V <50%
LX1555 8.4V 0.8V <50%
TA (°C)
M
Plastic DIP
8-pin
PACKAGE ORDER INFORMATION
DM
Plastic
8-pin
SOIC
D
Plastic SOIC
14-pin
Y
Ceramic DIP
8-pin
PW
TSSOP
20-pin
0 to 70
-40 to 85
-55 to 125
LX155xCM
LX155xIM
LX155xCDM
LX155xIDM
LX155xCD
LX155xID
LX155xMY
LX155xCPW
Note: All surface-mount packages are available in Tape & Reel. Append the letter "T" to part number. (i.e. LX1552CDMT)
Copyright © 1994
Rev. 1.0a 1/01
FOR FURTHER INFORMATION CALL (714) 898-8121
11861 WESTERN AVENUE, GARDEN GROVE, CA. 92841
1


LX1552 데이터시트, 핀배열, 회로
PRODUCT DATABOOK 1996/1997
LX1552/3/4/5
ULTRA-LOW START-UP CURRENT, CURRENT-MODE PWM
PRODUCTION DATA SHEET
A B S O L U T E M A X I M U M R AT I N G S (Note 1)
Supply Voltage (Low Impedance Source) .................................................................. 30V
Supply Voltage (ICC < 30mA) ......................................................................... Self Limiting
Output Current ............................................................................................................. ±1A
Output Energy (Capacitive Load) ................................................................................ 5µJ
Analog Inputs (Pins 2, 3) ........................................................................... -0.3V to +6.3V
Error Amp Output Sink Current ............................................................................... 10mA
Power Dissipation at TA = 25°C (DIL-8) ...................................................................... 1W
Operating Junction Temperature
Ceramic (Y Package) ............................................................................................ 150°C
Plastic (M, DM, D, PW Packages) ........................................................................ 150°C
Storage Temperature Range .................................................................... -65°C to +150°C
Lead Temperature (Soldering, 10 Seconds) ............................................................ 300°C
Note 1. Exceeding these ratings could cause damage to the device. All voltages are with respect
to Ground. Currents are positive into, negative out of the specified terminal. Pin
numbers refer to DIL packages only.
T H E R M A L D ATA
M PACKAGE:
THERMAL RESISTANCE-JUNCTION TO AMBIENT, θJA
DM PACKAGE:
95°C/W
THERMAL RESISTANCE-JUNCTION TO AMBIENT, θJA
D PACKAGE:
165°C/W
THERMAL RESISTANCE-JUNCTION TO AMBIENT, θJA
Y PACKAGE:
120°C/W
THERMAL RESISTANCE-JUNCTION TO AMBIENT, θJA
PW PACKAGE:
130°C/W
THERMAL RESISTANCE-JUNCTION TO AMBIENT, θJA
144°C/W
Junction Temperature Calculation:
T
J
=
T
A
+
(P
D
x
θJA).
The θJA numbers are guidelines for the thermal performance of the device/pc-board system.
All of the above assume no ambient airflow
PACKAGE PIN OUTS
COMP
VFB
ISENSE
RT/CT
1
2
3
4
8 VREF
7 VCC
6 OUTPUT
5 GND
M & Y PACKAGE
(Top View)
COMP
VFB
ISENSE
RT/CT
1 8 VREF
2 7 VCC
3 6 OUTPUT
4 5 GND
DM PACKAGE
(Top View)
COMP
N.C.
VFB
N.C.
ISENSE
N.C.
RT/CT
1 14 VREF
2 13 N.C.
3 12 VCC
4 11 VC
5 10 OUTPUT
6 9 GND
7 8 PWR GND
D PACKAGE
(Top View)
N.C.
N.C.
COMP
VFB
N.C.
ISENSE
N.C.
RT/CT
N.C.
N.C.
1 20
2 19
3 18
4 17
5 16
6 15
7 14
8 13
9 12
10 11
PW PACKAGE
(Top View)
N.C.
N.C.
VREF
N.C.
VCC
VC
OUTPUT
GND
PWR GND
N.C.
2 Copyright © 1994
Rev. 1.0a 1/01




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