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PTH12020LAH датащи(PDF) 4 Page - Texas Instruments

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номер детали PTH12020LAH
подробное описание детали  18-A, 12-V INPUT NON-ISOLATED WIDE-OUTPUT ADJUST POWER MODULE
PDF  27 Pages
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производитель  TI [Texas Instruments]
домашняя страница  http://www.ti.com
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ELECTRICAL CHARACTERISTICS
PTH12020W/L
SLTS208E–MAY 2003–REVISED OCTOBER 2005
ELECTRICAL CHARACTERISTICS (continued)
TA =25°C, VI =12 V, VO = 3.3 V, CI = 560 µF, CO =0 µF, and Io =Iomax) (unless otherwise noted)
PTH12020W
PARAMETER
TEST CONDITIONS
UNIT
MIN
TYP
MAX
Vin increasing
9.7
10.4
UVLO
Undervoltage lockout
V
Vin decreasing
8.8
9.2
Inhibit control (pin 3)
VIH
2
Open(4)
Input high voltage
Referenced to GND
V
VIL
Input low voltage
–0.2
0.5
IIL inhibit
Input low current
Pin to GND
0.24
mA
Iin inh
Input standby current
Inhibit (pin 3) to GND, Track (pin 8) open
5
mA
ƒs
Switching frequency
Over Vin and Io ranges
260
320
380
kHz
CI
External input capacitance
560 (5)
µF
Non-ceramic
0
330 (6)
9900 (7)
Capacitance value
µF
CO
External output capacitance
Ceramic
0
300
Equivalent series resistance (non-ceramic)
4 (8)
mΩ
MTBF
Reliability
Per Bellcore TR-332, 50% stress, TA =40°C, ground benign
5.3
106 Hrs
(4) This control pin is pulled up to an internal supply voltage. To avoid risk of damage to the module, do not apply an external voltage
greater than 7 V. If this input is left open-circuit the module will operate when input power is applied. A small low-leakage (<100 nA)
MOSFET or open-drain/collector voltage supervisor IC is recommended for control. For further information, consult the related
application note.
(5) A 560 µF electrolytic input capacitor is required for proper operation. The capitor must be rated for a minimum of 800 mA rms of ripple
current.
(6) An external output capacitor is not required for basic operation. Adding 330 µF of distributed capacitance at the load will improve the
transient response.
(7) This is the calculated maximum. The minimum ESR limitation will often result in a lower value. When controlling the Track pin using a
voltage supervisor, the maximum output capacitance is reduced to 6600 µF. Consult the application notes for further guidance.
(8) This is the typical ESR for all the electrolytic (non-ceramic) output capacitance. Use 7 mΩ as the minimum when using max-ESR values
to calculate.
TA =25°C, VI =12 V, VO = 3.3 V, CI = 560 µF, CO =0 µF, and Io =Iomax) (unless otherwise noted)
PTH12020L
PARAMETER
TEST CONDITIONS
UNIT
MIN
TYP
MAX
60°C, 200 LFM airflow
0
18(1)
IO
Output current
A
25°C, natural convection
0
18(1)
Vin
Input voltage range
Over Io range
10.8
13.2
V
Votol
Set-point voltage tolerance
±2 (2)
%Vo
∆Regtemp
Temperature variation
–40°C <TA <85°C
±0.5
%Vo
∆Regline
Line regulation
Over Vin range
±5mV
∆Regload
Load regulation
Over Io range
±5mV
∆Regtot
Total output variation
Includes set-point, line, load, –40°C ≤ TA≤ 85°C±3 (2)
%Vo
∆Vadj
Output voltage adjust range
Over Vin range
0.8
1.8
V
RSET = 130 Ω,Vo = 1.8 V
89%
RSET =3.57kΩ,Vo = 1.5 V
87%
η
Efficiency
IO =12A
RSET = 12.1 kΩ,Vo = 1.2 V
85%
RSET = 32.4 kΩ,Vo = 1.0 V
83%
RSET = open cct., Vo = 0.8 V
80%
Vr
Vo ripple (pk-pk)
20 MHz bandwidth
Vo >2.5 V
1
%Vo
Io trip
Over-current threshold
Reset, followed by auto-recovery
30
A
ttr
Recovery time
70
µSec
1A/µs load step, 50 to
Transient response
100% Iomax,Cout = 330 µF
∆Vtr
Vo over/undershoot
70
mV
∆Vomargin
Margin up/down adjust
±5%
(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.
4



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