参数资料
型号: PTH03000WAZT
厂商: Texas Instruments
文件页数: 3/13页
文件大小: 0K
描述: MODULE PIP 3.3VIN 6A ADJ SMD
标准包装: 250
系列: PTH03000W
类型: 非隔离(POL)
输出数: 1
电压 - 输入(最小): 3V
电压 - 输入(最大): 3.6V
Voltage - Output 1: 0.9 ~ 2.5 V
电流 - 输出(最大): 6A
电源(瓦) - 制造商系列: 15W
安装类型: 表面贴装
封装/外壳: 5-DIP SMD 模块
尺寸/尺寸: 0.75" L x 0.50" W x 0.36" H(19.1mm x 12.7mm x 9.1mm)
包装: 带卷 (TR)
工作温度: -40°C ~ 85°C
效率: 93%
电源(瓦特)- 最大: 15W
PTH03000W —3.3-V Input
6-A, 3.3-V Input Non-Isolated
Wide-Output Adjust Power Module
Environmental & Absolute Maximum Ratings
SLTS200C– MAY 2003 – REVISED DECEMBER 2003
Characteristics
Operating Temperature Range
Solder Reflow Temperature
Storage Temperature
Over Temperature Protection
Mechanical Shock
Mechanical Vibration
Symbols
T a
T reflow
T s
OTP
Conditions
Over V in Range
Surface temperature of module body or pins
IC junction temperature
Per Mil-STD-883D, Method 2002.3
1 msec, ? sine, mounted
Mil-STD-883D, Method 2007.2
Min
–40 (i)
–40
Typ
150
500
20
Max
+85
235 (ii)
+125
Units
°C
°C
°C
°C
G’s
G’s
20-2000 Hz
Weight
2
grams
Flammability
Meets UL 94V-O
Notes: (i) During reflow of SMD package version do not elevate peak temperature of the module, pins or internal components above the stated maximum.
Electrical Specifications
Unless otherwise stated, T a =25 °C, V in =3.3 V, V o =2 V, C in =100 μF, C out =0 μF, and I o =I o max
PTH03000W
Characteristics
Symbols
Conditions
Min
Typ
Max
Units
Output Current
Input Voltage Range
Set-Point Voltage Tolerance
I o
V in
V o tol
0.9 V ≤ V o ≤ 2.5 V,
Over I o range
T a =60 °C, 200 LFM airflow
T a =25 °C, natural convection
0
0
3
6 (1)
6 (1)
3.6
±2 (2)
A
V
%V o
Temperature Variation
Line Regulation
Load Regulation
Total Output Variation
Efficiency
V o Ripple (pk-pk)
Transient Response
Current Limit
Under-Voltage Lockout
Inhibit Control (pin 3)
Input High Voltage
Input Low Voltage
Input Low Current
Standby Input Current
Switching Frequency
External Input Capacitance
? Reg temp
? Reg line
? Reg load
? Reg tot
η
V r
t tr
? V tr
I lim
UVLO
V IH
V IL
I IL
I in inh
? s
C in
–40 °C <T a < +85 °C
Over V in range
Over I o range
Includes set-point, line, load,
–40 °C ≤ T a ≤ +85 °C
I o =4 A R SET = 576 ? V o = 2.5 V
R SET = 3.09 k ? V o = 2.0 V
R SET = 4.87 k ? V o = 1.8 V
R SET = 9.76 k ? V o = 1.5 V
R SET = 24.3 k ? V o = 1.2 V
R SET = 82.5 k ? V o = 1.0 V
20 MHz bandwidth
1 A/μs load step, 50 to 100 % I o max,
V o =1.8 V, C out =100 μF
Recovery time
V o over/undershoot
? V o = –50 mV
V in increasing
V in decreasing
Referenced to GND
Pin 3 to GND
pins 1 & 3 connected
Over V in and I o ranges
2.6
V in –0.5
–0.2
100 (4)
±0.5
±5
±5
93
91
90
88
86
84
20
70
100
13
2.95
2.8
–10
1
700
±3 (2)
3
Open (3)
0.8
%V o
mV
mV
%V o
%
mVpp
μSec
mV
A
V
V
μA
mA
kHz
μF
External Output Capacitance
C out
Capacitance value
non-ceramic
ceramic
0
0
100
(5)
1,000 (6)
300
μF
Equiv. series resistance (non-ceramic)
4
(7)
m ?
Reliability
MTBF
Per Bellcore TR-332
50 % stress, T a =40 °C, ground benign
28
10 6 Hrs
Notes: (1) See SOA curves or consult factory for appropriate derating.
(2) The set-point voltage tolerance is affected by the tolerance and stability ofR SET . The stated limit is unconditionally met if R SET has a tolerance of 1 %
with 100 ppm/°C or better temperature stability.
(3) The Inhibit control (pin 3) has an internal pull-up to Vin, and if left open-circuit the module will operate when input power is applied. A small low-
leakage (<100 nA) MOSFET is recommended to control this input. See application notes for more information.
(4) The regulator requires a minimum of 100 μF input capacitor with a minimum 300 mArms ripple current rating. For further information, consult the
related application note on Capacitor Recommendations.
(5) An external output capacitor is not required for basic operation. Adding 100 μF of distributed capacitance at the load will improve the transient response.
(6) This is the calculated maximum. The minimum ESR limitation will often result in a lower value. Consult the application notes for further guidance.
(7) This is the typical ESR for all the electrolytic (non-ceramic) output capacitance. Use 7 m ? as the minimum when using max-ESR values to calculate.
For technical support and further information visit http://power.ti.com
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