參數(shù)資料
型號(hào): BUD42D-1
英文描述: TRANSISTOR | BJT | NPN | 350V V(BR)CEO | 4A I(C) | TO-251AA
中文描述: 晶體管|晶體管|叩| 350V五(巴西)總裁| 4A條一(c)|至251AA
文件頁(yè)數(shù): 10/12頁(yè)
文件大?。?/td> 197K
代理商: BUD42D-1
BUD42D
http://onsemi.com
10
Minimum Pad Sizes Recommended for Surface Mounted Applications
inches
mm
0.265
6.7
0.118
3.0
0.070
1.8
1.6
0.063
1.6
0.063
6.7
0.265
2.3
0.090
2.3
0.090
TYPICAL SOLDER HEATING PROFILE
For any given circuit board, there will be a group of
control settings that will give the desired heat pattern. The
operator must set temperatures for several heating zones,
and a figure for belt speed. Taken together, these control
settings make up a heating “profile” for that particular
circuit board. On machines controlled by a computer, the
computer remembers these profiles from one operating
session to the next. Figure 32 shows a typical heating
profile for use when soldering a surface mount device to a
printed circuit board. This profile will vary among
soldering systems but it is a good starting point. Factors that
can affect the profile include the type of soldering system in
use, density and types of components on the board, type of
solder used, and the type of board or substrate material
being used. This profile shows temperature versus time.
The line on the graph shows the actual temperature that
might be experienced on the surface of a test board at or
near a central solder joint. The two profiles are based on a
high density and a low density board. The Vitronics
SMD310 convection/infrared reflow soldering system was
used to generate this profile. The type of solder used was
62/36/2 Tin Lead Silver with a melting point between
177–189
°
C. When this type of furnace is used for solder
reflow work, the circuit boards and solder joints tend to
heat first. The components on the board are then heated by
conduction. The circuit board, because it has a large surface
area, absorbs the thermal energy more efficiently, then
distributes this energy to the components. Because of this
effect, the main body of a component may be up to 30
degrees cooler than the adjacent solder joints.
STEP 1
PREHEAT
ZONE 1
RAMP"
STEP 2
VENT
SOAK"
STEP 3
HEATING
ZONES 2 & 5
RAMP"
STEP 4
HEATING
ZONES 3 & 6
SOAK"
STEP 5
HEATING
ZONES 4 & 7
SPIKE"
170
°
C
STEP 6
VENT
STEP 7
COOLING
200
°
C
150
°
C
100
°
C
50
°
C
TIME (3 TO 7 MINUTES TOTAL)
T
MAX
SOLDER IS LIQUID FOR
40 TO 80 SECONDS
(DEPENDING ON
MASS OF ASSEMBLY)
205
°
TO 219
°
C
PEAK AT
SOLDER JOINT
DESIRED CURVE FOR LOW
MASS ASSEMBLIES
100
°
C
150
°
C
160
°
C
140
°
C
DESIRED CURVE FOR HIGH
MASS ASSEMBLIES
Figure 32. Typical Solder Heating Profile
相關(guān)PDF資料
PDF描述
BUD43B1 TRANSISTOR | BJT | NPN | 350V V(BR)CEO | 2A I(C) | TO-251
BUD43BK TRANSISTOR | BJT | NPN | 350V V(BR)CEO | 2A I(C) | TO-251AA
BUD43BW TRANSISTOR | BJT | NPN | 350V V(BR)CEO | 2A I(C) | TO-252AA
BUD43D2-1 TRANSISTOR | BJT | NPN | 400V V(BR)CEO | 2A I(C) | TO-251AA
BUD44D2-1 TRANSISTOR | BJT | NPN | 400V V(BR)CEO | 2A I(C) | TO-251
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