Specifically designed for data storage
applications, this device integrates two voltage
regulators, each one able to supply 1A. It is
assembled in PPAK and in a new surface
mounting pa ckage named SPAK ( PowerFle x) at
5 pins. The first regulator block supply 3.3V to
power the Read Channel and Memory Chips
requiring this voltage. The second one is an
Adjustable output voltage from 1.25V to 3.0V that
PPAK
SPAK-5L
(PowerFlex
)
could power several kind of different
micro-controllers.
Both outputs are current limited and
overtemperature protected.
The very good thermal performances of the
package SPAK with only 2°C/W of Thermal
Resistance Junction to Case is important to
underline.
SCHEMATIC DIAGRAM
Thermal
Thermal
Protection
Protection
Err-Amp
Err-Amp
Err-AmpPower OutputVREF2
Err-AmpPower OutputVREF2
Over current
Over current
Protection
Protection
Power OutputVREF1
Power OutputVREF1
Over current
Over current
Protection
Protection
RA
RA
RB
RB
GND
GND
VOUT1
VOUT1
VOUT2
VOUT2
ADJ
ADJ
1/12March 2002
ST2L01
ABSOLUTE MAXIMUM RATINGS
SymbolParameterValueUnit
V
V
ESD
T
T
GENERAL OPERATING CONDITION
SymbolParameterValueUnit
V
∆V
THERMAL DATA
SymbolParameterSPAK-5LPPAKUnit
R
thj-case
Input Voltage
IN
ESD Tolerance (Human Body Model)
Storage Temperature Range
Output Pin: adjustable output voltage; bypass with a 1µF capacitor to GND
Output Pin: fixed (3.3V) output voltage; bypass with a 1µF capacitor to GND
ORDERING INFORMATION
TYPESPAK (Power Flex) 5 leads (*) PPAK (*)
ST2L01ST2L01K5 ST2L01PT
(*) Avai l abl e in Tape & Re el wi th the suffix "R"
2/12
ST2L01
TYPICAL APPLICATION CIRCUIT
R
VO = V
REF
Note:
C
value could be lowered down to 470n F Ceramic Capacitor (X7R);
O1
C
, CO1 and CO2 capacitors must be located not more than 0.5" from the outputs pins of t he device.
I
For mor e details about Capacitors read the "Application Hint s"
ELECTRICAL CHARACTERISTICS OF OUTPUT 1 (VI=5V, IO1=10mA Tj = 0 to 125°C unless otherwise
specified. Typical values are referred at T
SymbolParameterTest ConditionsMin.Typ.Max.Unit
I
Input CurrentIO1 = IO2 =0Tj = 0 to 125°C1528mA
I
V
Output Voltage 1Tj = 25°C 3.233.33.37V
O1
I
O1
T
∆V
∆V
SVR1Supply Voltage RejectionV
∆V
∆V
Note 1: Low duty cycle p ul se testing wi t h Kelvin connections are required in order to maintain accurate data
Note 2: Dropout Voltage is defined as the minimum differential voltage between V
when the output voltage drops 1% below its nominal value.
Note 3: Transient response is defined with a step change in load from 10mA to 500mA as the time from the load step until the output voltage
reaches it’s minimum value.
Note 4: Min i m um lo ad current is defined as the minimum current requi red at the output in ord er for the output voltage to maintain regulation.
Note 5: Guaranteed by design, not tested in production.
Line Regulation 1VI = 4.75 to 5.25V0.16mV
O1
Load Regulation 1IO = 0.01 to 1A (Note 1)312mV
OUT1
V
Dropout Voltage 1IO = 1A Tj = 0 to 125°C
D1
(Note 2)
t
Transient ResponseIO = 10 to 500mA t
TR
(Note 3, 5)
Current Limit 1RL = 0Tj = 0 to 125°C1A
I
SC1
I
Minimum Load Current 1Tj = 0 to 125°C(Note 4)0mA
O1
I
O1
T
(Note 5)
Thermal RegulationI
O
eN1Output NoiseB= 10Hz to 10KHz (Note 5)40µVrms
Temperature StabilityTj = 0 to 125°C (Note 5)0.5%V
O1
Long Term Stability Tj = 125°C, 1000Hrs (Note 5)0.3%V
O1
= 25°C, CI = 1µF (Tantalum), CO1 = CO1 =1µF (X7R)
j
= 5mA to 1A VI = 4.75 to 5.25V
= 0 to 125°C
j
3.23.33.4
1.11.3V
= t
= 1µs
fall
f
= 100Hz6068dB
I
f
= 1KHz6070
I
f
= 10KHz5065
I
f
= 100KHz3038
I
= 30ms (Note 5)0.1%/W
and VO requir ed to m anta in re gulat ion at VO. It is measured
I
= 5 ±0.25V
I
= 100 mA
= 0 to 125°C
j
= 1A, t
rise
PULSE
<1µs
1
(1 + )+I
R
2
ADJR1
O
O
3/12
ST2L01
ELECTRICAL CHARACTERISTICS OF OUTPUT 2 (VI=5V, IO2=10mA Tj = 0 to 125°C unless otherwise
specified. Typical values are referred at T
"Typical Application Circuit "figure with R
SymbolParameterTest ConditionsMin.Typ.Max.Unit
V
Operating Input VoltageIO2 =5mA to 1ATj = 0 to 125°C4.5V
I
V
Output Voltage 2Tj = 25°C 2.452.52.55V
O2
V
∆V
∆V
∆I
SVR2Supply Voltage RejectionV
∆V
∆V
Note 1: Low duty cycle p ul se testing wi t h Kelvin connections are required in order to maintain accurate data
Note 2: Dropout Voltage is defined as the minimum differential voltage between V
when the output voltage drops 1% below its nominal value.
Note 3: Transient response is defined with a step change in load from 10mA to 500mA as the time from the load step until the output voltage
reaches it’s minimum value.
Note 4: Min i m um lo ad current is defined as the minimum current requi red at the output in ord er for the output voltage to maintain regulation.
Note 5: Guaranteed by design, not tested in production.
Reference Voltage
REF
(measured between pins 4
and 2)
Line Regulation 2VI = 4.75 to 5.25V0.0040.2%
O2
Load Regulation 2IO = 0.01 to 1A (Note 1)0.080.4%
O2
V
Dropout Voltage 2IO = 1A Tj = 0 to 125°C
D2
Tj = 25°C 1.2251.251.275V
I
T
(Note 2)
Transient ResponseIO = 10 to 500mA t
t
TR
(Note 3, 5)
I
Current Limit 2RL = 0Tj = 0 to 125°C1A
SC2
I
Minimum Load Current 2Tj = 0 to 125°C(Note 4)1mA
O2
I
Adjust Pin CurrentTj = 0 to 125°C35120µA
ADJ
Adjust Pin CurrentIO1 = 5mA to 1A VI = 4.75 to 5.25V
ADJ
T
I
T
(Note 5)
Thermal Regulation 2I
eN2Output Noise 1B= 10Hz to 10KHz (Note 5)30µVrms
Temperature StabilityTj = 0 to 125°C (Note 5)0.5%V
REF
Long Term Stability Tj = 125°C, 1000Hrs (Note 5)0.3%V
REF
= 25°C, CI = 1µF (Tantalum), CO1 = CO1 =1µF (X7R). Refer to
j
=120Ω".
1=R2
= 5mA to 1A VI = 4.75 to 5.25V
O1
= 0 to 125°C
j
1.21251.251.2875
1.11.3V
= t
rise
fall
= 1µs
<1µs
05µA
= 0 to 125°C
j
= 5 ±0.25V
I
= 100 mA
O1
= 0 to 125°C
j
= 1A, t
O
PULSE
f
= 100Hz7077dB
I
f
= 1KHz7080
I
f
= 10KHz5065
I
f
= 100KHz3043
I
= 30ms (Note 5)0.1%/W
and VO requir ed to m anta in re gulat ion at VO. It is measured
I
O
O
4/12
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