The ST750A is an adjustable output CMOS,
step-down switching regulator. The ST750A
accepts inputs between 4V and 1 1V and delivers
450mA. Typical efficiencies are 85% to 96%.
Quiescent supply current is 0.8mA and only 0.3µA
in shutdown mode. The output does not exhibit
frequency over th is specified range. Pulse-width
modulation (PWM) current-mode control provides
ST750A
ADJUSTABLE STEP-DOWN,
DIP-8SO-8
precise output regulation and excellent transient
responses.Outputvoltageaccuracyis
guaranteed to be ±4.5% plus feedback resistor
tolerance overline, load, and temperature
varations.
Fixed-frequencyswitchingandabsenc eof
subharmonic ruipple allows easy filtering of output
ripple and noise, as well as the use of smal l
external components. This regul ators requi re o nly
a s ingle inductorvalue to workin most
applications, so no inductor design is necessary.
Typical applications are: Cellular phones & radios,
portable Instruments, Porta ble Communications
Equipments and Computer Peripherals.
SCHEMATIC DIAGRAM
1/9January 2003
Page 2
ST750A
ABSOLUTE MAXIMUM RATINGS
SymbolParameter²ValueUnit
V
V
V
SHDN
V
S,VC
I
LX
I
REF
P
TOT
T
T
Absolute Maximum Ratings are those values beyond which damage to the device may occur. Functional operation under these condition is
not implied.
THERMAL DATA
SymbolParameterSO-8DIP-8Unit
R
thj-amb
(*) This value depends from thermal design of PCB on which the device is mounted.
DC Input Voltage
CC
Switch Pin Voltage-0.3 to (VCC+ 0.3)
LX
Shutdown Voltage (SHDN)-0.3 to (VCC+ 0.3)
Soft Start (SS) and Compensation Capacitor (CC) Pins Voltage-0.3 to (VCC+ 0.3)
Switching Peak Current
Reference Current
Continuous Power Dissipation at TA=70°C (DIP-8)
2REFReference Output Voltage: (1.25V): Bypass to GND with a capacitor that does not
3SSSoft Start: a capacitor between SS and GND provides soft-start and short-circuit
4CCCompensation Capacitor Input: externally compensates the outer (voltage)
5ICInternal Connection: make no external connection to this pin
6GNDGround
7LXSwitch Output. Drain of internal P-Channel Power MOSFET
8V
CC
Shutdown control (active low): If connected to GND the IC is in shutdown.
Connect to V
for normal operation (ON MODE)
CC
exceed 47nF
protections.
feedback loop. Connect to OUT with 330pF capacitor
Supply Voltage Input. Bypass to GND with 1µF ceramic capacitance and large
value electrolytic capacitor in parallel. The 1µF capacitor must be as close as
possible to the GND and V
CC
pins
ST750A
3/9
Page 4
ST750A
ELECTRICALCHARACTERISTICS(VCC=5V,IO=0mA,TA=T
MIN
toT
,unless otherwisespecified.)
MAX
SymbolParameterTest ConditionsMin.Typ.Max.Unit
Input Voltage411V
V
CC
V
Output VoltageVCC=6to11VIO=0 to 450mA4.7555.25V
O
∆V
∆V
I
SUPPLY
I
SHDN
V
R
DS(on)
V
∆V
f
Line RegulationVCC= 4 to 11V0.15%/V
O
Load RegulatioIO= 0 to 450mA0.005%/mA
O
ηPower EfficencyI
Supply CurrentON Mode
V
SHDN Input High Threshold2V
IH
SHDN Input Low Threshold0.25V
V
IL
=300mA92%
O
0.8
OFF Mode, SHDN
=0
0.3
Shutdown Input Leakage
Current
Under Voltage LockoutVCCFalling2.73V
LOCK
LX On ResistanceILX=500mA0.5Ω
LX Leakage CurrentVCC= 12VVLX=0V1µA
I
LX
Reference VoltageTA= 25°C1.171.241.31V
REF
Temperature Reference
REF
Drift
Switching FrequencyB series
OSC
Compensation Pin
R
C
Impedance
C series
180
160
50ppm/°C
200220
7500Ω
2.5
100
1µA
KHz
280
mA
µA
TYPICAL APP LICATION CIRCUIT
4/9
Page 5
TYPICAL P ERFO RMAN CE CHARACTERISTICS (unless ot herwise spec ified Tj=25°C
ST750A
Figure1 : Ef fice nc y vs Output Current
Figure2 : SupplyCurrentvs Temperature
Figure4 : O scillator Frequency v s Input Voltage
Figure5 : Peak I nduc tor Current vs Output
Current
Figure3 : O s cillator Frequen cy vs Temp erature
Figure6 : O utput Volt age v s Output Current
5/9
Page 6
ST750A
V
11V,I
300mA
V
11V,I
300mA
Figure7 : Switching Waveforms, Co ntinuous
Conduction
=6Vto
I
=
O
Figure8 : Switching Waveforms, Dis co ntinuous
Conduction
rmation furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the
sequences of u se of such inform ation nor for any in fring ement of p atents or o ther ri ghts of th ird p arties which may resul t fr o m
use. No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications
ntioned in this publication are subject to change without notice. This publication supersedes and replaces all information
viously supplied. STMicroelectronics products are not authorized for use as critical components in life support devices or
tems without express written approval of STMicroelectronics.
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