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PTH12060LAH Datasheet(PDF) 4 Page - Texas Instruments

Part # PTH12060LAH
Description  10-A, 12-V INPUT NON-ISOLATED WIDE-OUTPUT ADJUST POWER MODULE
PDF  30 Pages
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Manufacturer  TI2 [Texas Instruments]
Direct Link  https://www.ti.com
Logo TI2 - Texas Instruments

PTH12060LAH Datasheet(HTML) 4 Page - Texas Instruments

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ELECTRICAL CHARACTERISTICS
PTH12060W/L
SLTS217H – MAY 2003 – REVISED DECEMBER 2008 .................................................................................................................................................... www.ti.com
TA = 25C; VI = 12 V; VO = 1.8 V; CI = 560 µF, CO = 0 µF, and IO = IOmax (unless otherwise stated)
PTH12060L
UNIT
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
Over
ΔVadj range
85°C, 200 LFM airflow
0
10
(1)
IO
Output current
A
25°C, natural convention
0
10
(1)
VI
Input voltage range
Over IO range
10.8
13.2
V
VO tol
Set-point voltage tolerance
±2
(2)
%VO
ΔRegtemp
Temperature variation
–40°C < TA < 85°C
±0.5
%VO
ΔRegline
Line regulation
Over VI range
±10
mV
ΔRegload
Load regulation
Over IO range
±12
mV
ΔRegtot
Total output variation
Includes set-point, line, load, –40°C
≤ TA ≤ 85°C
±3
%VO
ΔVadj
Output voltage adjust range
Over VI range
0.8
1.8
V
RSET = 130 Ω, VO = 1.8 V
88%
RSET = 3.57 kΩ, VO = 1.5 V
87%
η
Efficiency
IO = 8 A
RSET = 12.1 kΩ, VO = 1.2 V
84%
RSET = 32.4 kΩ, VO = 1 V
82%
RSET = open circuit, VO = 0.8 V
81%
VO > 1 V
20
(3)
20-MHz bandwidth,
VO ripple (peak-to-peak)
mVPP
with CO2 = 10 µF ceramic
VO ≤ 1 V
30
(3)
IO trip
Overcurrent threshold
Reset, followed by auto-recovery
20
A
ttr
1 A/µs load step, 50 to 100%
Recovery time
70
µS
Transient response
IOmax,
VO over/undershoot
100
mV
ΔVtr
CO1 = 330 µF
VOadj
Margin up/dow adjust
±5%
IILmargin
Margin input current (pins 9/10)
Pin to GND
–8
(4)
µA
IILtrack
Track input current (pin 8)
Pin to GND
–0.11
(5)
mA
dVtrack/dt
Track slew rate capability
CO ≤ CO (max)
1
V/ms
VI increasing
9.5
10.4
UVLO
Under-voltage lockout
V
VI decreasing
8.8
9
VIH
Input high voltage, Referenced to GND
Open
(5)
V
VIL
Inhibit Control (pin 3)
Input low voltage, Referenced to GND
–0.2
0.5
IIL
Input low current, Pin 3 to GND
0.24
mA
II
Input standby current
Inhibit (pin 3) to GND, Track (pin 8) open
10
mA
f s
Switching frequency
Over VI and IO ranges
200
250
300
kHz
CI
External input capacitance
560
(6)
µF
Nonceramic
0
330
(7)
5500
(8)
Capacitance value
µF
CO
External output capacitance
Ceramic
0
300
Equivalent series resistance (nonceramic)
4
(9)
m
Per Bellcore TR-332
6.4
MTBF
Reliability
10
6 Hr
50% stress, TA = 40°C, ground benign
(1)
See SOA curves or consult factory for appropriate derating.
(2)
The set-point voltage tolerance is affected by the tolerance and stability of RSET. The stated limit is unconditionally met if RSET has a
tolerance of 1% with 100 ppm/°C or better temperature stability.
(3)
The peak-to-peak output ripple voltage is measured with an external 10-µF ceramic capacitor. See the standard application schematic.
(4)
A small, low-leakage (<100 nA) MOSFET is recommended to control this pin. The open-circuit voltage is less than 1 Vdc.
(5)
This control pin has an internal pull-up to the input voltage VI. If it is left open-circuit, the module operates when input power is applied.
A small, low-leakage (<100 nA) MOSFET or open-drain/collector voltage supervisor IC is recommended for control. Do not place an
external pull-up on this pin. For further information, see the application information section.
(6)
A 560-µF input capacitor are required for proper operation. The electrolytic capacitor must be rated for a minimum of 1050 mA rms of
ripple current.
(7)
An external output capacitor is not required for basic operation. Adding 330 µF of distributed capacitance at the load improves the
transient response.
(8)
This is the calculated maximum. The minimum ESR limitation oftens result in a lower value. When controlling the Track pin using a
voltage supervisor, CO(max) is reduced to 2200 µF. See the application notes for further guidance.
(9)
This is the typical ESR for all the electrolytic (nonceramic) output capacitance. Use 7 m
Ω as the minimum when using max-ESR values
to calculate.
4
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