參數(shù)資料
型號: PKD4118SIOD/C
廠商: ERICSSON POWER MODULES AB
元件分類: 電源模塊
英文描述: 1-OUTPUT 16.8 W DC-DC REG PWR SUPPLY MODULE
文件頁數(shù): 9/20頁
文件大?。?/td> 390K
代理商: PKD4118SIOD/C
17
EN/LZT 146 120 R2A Ericsson Microelectronics AB, June 2002
Case to ambient thermal resistance
Thermal resistance
0
2
4
6
8
10
12
14
0,0
0,5
1,0
1,5
2,0
2,5
3,0
(m/s)
(°C/W)
Tested in windtunnel with a cross section of 305×305mm mounted
on a 2 layer PCB with a size of 230×160mm.
Airspeed measured at module.
Calculation of temperature increase of case
1. First we need to know the powerloss by using the for-
mula:
((
) - 1) × output power = losses.
η = efciency of converter. E.g 89% = 0.89
2. Then we take the powerlosses × thermal resistance at
the air speed in your system. This gives the temperature
increase.
3. Max allowed ambient temperature, is max allowed case
temperature (100°C) – temperature increase.
E.g PKD 4210 at 1m/s:
1
η
Soldering information
The PKD series of DC/DC power modules are manufac-
tured in surface mount technology. Extra precautions must
therefore be taken when reow soldering. Neglecting the
soldering information given below may result in permanent
damage or signicant degradation of power module perfor-
mance.
The PKD series can be reow soldered using Natural Con-
vection, Forced Convection Technologies. The high thermal
mass of the component and its effect on temperature re-
quires that particular attention be paid to other temperature
sensitive components.
Please measure temperatures on pin: 22
Ramp and slope: max 4°C per second.
B. 3.275W × 9.0°C/W = 29.5°C
C.100°C - 29.5°C = max ambient temperature is 70.5°C
The real temperature will be dependent on several factors
like PCB size, direction of air ow, air turbulence etc. Please
always verify by testing.
A. ((
) - 1) × 26.5W = 3.275W
1
0.89
Low temperature solder 1)
Peak 210-235°C
Min 10 s over 200°C
30-100 s over 183°C
High temperature solder 2)
Peak 235-260°C
Min 20 s over 230°C
30-100 s over 221°C
Input and output impedance
Both the source impedance of the power feeding and the
load impedance will interact with the impedance of the
DC/DC power module. It is most important to have the ratio
between L and C as low as possible, i.e. a low characteristic
impedance, both at the input and output, as the power mo-
dules have a low energy storage capability. Use an electro-
lytic capacitor across the input if the source inductance is
larger than 10 H.
The equivalent series resistance of these capacitors
together with the capacitance acts as a lossless damping
lter. Suitable capacitor values are in the range 10 –100 F.
Protection and control function
Remote Control pin (RC)
The PKD power modules are offered with either positive or
negative logic to turn the converter on or off.
The SI version has positive logic and the converter will turn
on if the input voltage is applied with the RC pin open. Turn
off is achieved by connecting the RC pin to the minus input.
To ensure safe turn off of the SI version the voltage differ-
ence between negative input pin (–In) and the remote control
pin (RC) shall be less than 0.6V. The converter will restart
when this connection is opened.
The SIN version has negative logic and will be off until the
RC pin is connected to the minus input.
To turn on the SIN version the voltage between RC pin and
minus input should be less than 1V.
To turn off the SIN version the RC pin should be left open, or
should be connected to a voltage higher than 4V referenced
to minus input. RC is CMOS open drain compatible. Current
is less than 1mA and voltage less than 15V.
1) Solder with a melting point approximately 180°C.
2) Solder with a melting point approximately 220°C.
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