ETC PT5105N

PT5100 Series
1-A Positive Step-down
Integrated Switching Regulator
SLTS028B
(Revised 11/8/2001)
Features
• 90%+ Efficiency
• Internal Short-Circuit Protection
• Pin-Compatible with 3-Terminal
Linear Regulators
• Laser-Trimmed Output Voltage
• Over-Temperature Protection
• Small Footprint
• Wide Input Range
• 5-Pin Mount Option
(Suffixes L & M)
Description
Ordering Information
The PT5100 modules are a series of
economical, easy-to-use 1-A positive
step-down, Integrated Switching Regulators (ISRs). These ISRs are compatible
with most TO-220 style linear regulators,
and when employed as a linear replacement, provide significant benefits in
both efficiency and power dissipation.
They are recommended for use in a wide
variety of on-board power regulation
applications. These include computer,
data storage, industrial controls, and
battery powered equipment. Modules
are laser-trimmed for optimal output
voltage accuracy, and exhibit excellent
line and load regulation. The PT5100
also features output current limiting
and thermal shutdown protection.
PT5101¨
PT5102¨
PT5103¨
PT5105¨
PT5107¨
PT5109¨
PT5110¨
PT5111¨
PT5112¨
= +5.0 Volts
= +12.0 Volts
= +3.3 Volts
= +6.5 Volts
= +15.0 Volts
= +5.6 Volts
= +9.0 Volts
= +10.0 Volts
= +8.0 Volts
Package (EAD)
PT Series Suffix (PT1234x )
Case/Pin
Configuration
Order
Suffix
Vertical
Horizontal
SMD
Horizontal, 2-pin Tab
SMD, 2-Pin Tab
N
A
C
M
L
Pin-Out Information
Pin
Package
Code
(EAD)
(EAA)
(EAC)
(EAM)
(EAL)
Function
1
Vin
2
GND
3
Vout
(Reference the applicable package code drawing for
the dimensions and PC board layout)
Standard Application
+VIN
1
PT5100
2
C1
C2
1µF
100µF
COM
+VOUT
3
+
L
O
A
D
COM
C1 = Optional 1µF ceramic capacitor
C2 = Required 100µF electrolytic
For technical support and more information, see inside back cover or visit www.ti.com
PT5100 Series
1-A Positive Step-down
Integrated Switching Regulator
Specifications
(Unless otherwise stated, Ta =25°C, Vin =Vinmin, C out =100µF, and Io =Iomax)
Characteristic
Symbol
Output Current
Input Voltage Range
Io
Vin
Set Point Voltage Tolerance
Temperature Variation
Line Regulation
Load Regulation
Total Output Voltage Variation
Vo tol
Regtemp
Regline
Regload
∆Votot
Efficiency
η
Vo Ripple (pk-pk)
Transient Response
Current Limit
Switching Frequency
Vr
ttr
∆Vtr
Ilim
ƒs
External Output Capacitance
Operating Temperature Range
Thermal Resistance
Cout
Ta
θja
Storage Temperature
Reliability
Ts
MTBF
Mechanical Shock
—
Mechanical Vibration
—
Weight
—
Flammability
—
Notes: (1)
(2)
(3)
(4)
Conditions
Min
Over Vin range
Over Io Range
Vo =3.3V
Vo =5.0V
Vo >5.0V
0° ≤Ta ≤ +60°C, Io =Iomin
Over Vin range
Over Io range
Includes set-point, line, load,
0° ≤Ta ≤ +60°C
Vo = 15V
Vo = 12V
Vo = 10V
Vo =5.0V
Vo =3.3V
20MHz bandwidth
1A/µs load step, 50% to 100% Iomax
Vo over/undershoot
∆Vo = –1%
Over Vin range
Vo ≥ 5.0V
Vo ≤ 3.3V
Over Vin range
Free-air convection (40-60LFM)
—
Per Bellcore TR-332
50% stress, Ta =40°C, ground benign
Per Mil-Std-883D, method 2002.3,
1mS, half-sine, mounted to a fixture
Per Mil-Std-883D, Method 2007.2
20-2000Hz, soldered in PC board
Suffixes N, A, & C
Suffixes L & M
Materials meet UL 94V-0
Vo =3.3V
Vo =5.0V
Vo ≥ 12V
0.1 (1)
9
9
Vo + 4
—
—
—
—
PT5100 SERIES
Typ
Max
—
—
—
—
±1
±0.5
±5
±5
1.0
26
38
38
±2
—
±10
±10
Units
A
VDC
%Vo
%Vo
mV
mV
—
±1.5
±3
—
—
—
—
—
—
—
—
1.2
500
575
100
–40 (2)
—
—
—
–40
95
94
92
90
82
2
100
±5.0
2.6
650
725
—
—
45
50
60
—
—
—
—
—
—
—
200
—
—
800
875
—
+85 (3)
—
—
—
+125
%Vo
11.3
—
—
106 Hrs
—
500
—
G’s
—
5 (4)
—
G’s
—
—
4.5
6.5
—
—
grams
%
%Vo
µs
%Vo
A
kHz
µF
°C
°C/W
°C
The ISR will operate at no load with reduced specifications.
For operation below 0°C, use a tantalum type capacitor for C2.
See Thermal Derating curves.
The tab pins on the 5-pin mount package types (suffixes L & M) must be soldered. For more information see the applicable package outline drawing.
For technical support and more information, see inside back cover or visit www.ti.com
Typical Characteristics
PT5100 Series
1-A Positive Step-down
Integrated Switching Regulator
PT5103, 3.3 VDC
PT5101, 5.0 VDC
(See Note A)
Efficiency vs Output Current
PT5102, 12.0 VDC
(See Note A)
Efficiency vs Output Current
Efficiency vs Output Current
90
100
(See Note A)
100
85
80
Vin
70
9.0V
12.0V
18.0V
60
Vin
75
9.0V
12.0V
18.0V
24.0V
30.0V
38.0V
70
65
60
55
Efficiency - %
90
80
Efficiency - %
Efficiency - %
90
Vin
80
16.0V
20.0V
24.0V
30.0V
35.0V
38.0V
70
60
24.0V
50
26.0V
50
50
45
40
0
40
0
0.2
0.4
0.6
0.8
0.2
0.4
0.6
0.8
40
1
0
1
Iout-(Amps)
Ripple vs Output Current
0.4
Ripple vs Output Current
60
120
50
100
40
80
26.0V
24.0V
18.0V
12.0V
9.0V
20
10
0.8
1
Ripple vs Output Current
250
200
Vin
38.0V
30.0V
24.0V
18.0V
60
12.0 V
9.0V
40
20
38.0V
35.0V
30.0V
24.0V
20.0V
16.0V
150
Ripple-(mV)
Vin
Ripple-(mV)
30
0.6
Iout-(Amps)
Vin
Ripple-(mV)
0.2
Iout-(Amps)
100
50
0
0
0
0
0.2
0.4
0.6
0.8
0.2
0.4
0.8
0
1
0
Iout-(Amps)
Thermal Derating (Ta)
0.6
1
Thermal Derating (Ta)
(See Note B)
60°C
Iout-(Amps)
Iout-(Amps)
Iout-(Amps)
50°C
70°C
0.6
0
85°C
0.4
15
17
19
21
23
25
27
70°C
0.6
85°C
0.4
0.2
0
0
13
60°C
0.8
0.2
11
(See Note B)
50°C
0.2
9
1
1
0.8
0.4
0.8
Thermal Derating (Ta)
(See Note B)
70°C
0.8
85°C
0.6
Iout-(Amps)
1
7
0.4
Iout-(Amps)
1
0.6
0.2
7
11
15
19
Vin-(Volts)
23
27
31
35
15
39
17
19
21
Vin-(Volts)
Power Dissipation vs Output Current
25
27
29
31
33
35
37
Vin-(Volts)
Power Dissipation vs Output Current
1.2
23
Power Dissipation vs Output Current
1. 8
2. 4
1. 6
1
2
1. 4
26.0V
24.0V
18.0V
0.6
12.0V
9.0V
0.4
38.0V
30.0V
24.0V
18.0V
12.0V
9.0V
1
0. 8
0. 6
0. 4
0.2
Vin
Vin
1. 2
PD-(Watts)
0.8
PD-(Watts)
PD-(Watts)
Vin
1. 6
38 .0V
35 .0V
30 .0V
24 .0V
20 .0V
16 .0V
1. 2
0. 8
0. 4
0. 2
0
0
0
0
0.2
0.4
0.6
Iout-(Amps)
0.8
1
0
0. 2
0. 4
0. 6
0. 8
1
0
0. 2
Iout-(Amps)
Note A: Characteristic data has been developed from actual products tested at 25°C. This data is considered typical data for the Converter.
Note B: Thermal derating graphs are developed in free-air convection cooling, which corresponds to approximately 40–60LFM of airflow.
For technical support and more information, see inside back cover or visit www.ti.com
0. 4
0. 6
0. 8
Iout-(Amps)
1
39
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