pca9535d NXP Semiconductors, pca9535d Datasheet - Page 27

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pca9535d

Manufacturer Part Number
pca9535d
Description
16-bit I2c And Smbus, Low Power I/o Port With Interrupt
Manufacturer
NXP Semiconductors
Datasheet

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NXP Semiconductors
PCA9535_PCA9535C_3
Product data sheet
15.4 Reflow soldering
Key characteristics in reflow soldering are:
Table 16.
Table 17.
Moisture sensitivity precautions, as indicated on the packing, must be respected at all
times.
Studies have shown that small packages reach higher temperatures during reflow
soldering, see
Package thickness (mm)
< 2.5
Package thickness (mm)
< 1.6
1.6 to 2.5
> 2.5
2.5
Process issues, such as application of adhesive and flux, clinching of leads, board
transport, the solder wave parameters, and the time during which components are
exposed to the wave
Solder bath specifications, including temperature and impurities
Lead-free versus SnPb soldering; note that a lead-free reflow process usually leads to
higher minimum peak temperatures (see
reducing the process window
Solder paste printing issues including smearing, release, and adjusting the process
window for a mix of large and small components on one board
Reflow temperature profile; this profile includes preheat, reflow (in which the board is
heated to the peak temperature) and cooling down. It is imperative that the peak
temperature is high enough for the solder to make reliable solder joints (a solder paste
characteristic). In addition, the peak temperature must be low enough that the
packages and/or boards are not damaged. The peak temperature of the package
depends on package thickness and volume and is classified in accordance with
Table 16
SnPb eutectic process (from J-STD-020C)
Lead-free process (from J-STD-020C)
and
Figure
17
29.
Rev. 03 — 4 October 2007
16-bit I
Package reflow temperature ( C)
Volume (mm
< 350
235
220
Package reflow temperature ( C)
Volume (mm
< 350
260
260
250
2
C-bus and SMBus, low power I/O port with interrupt
3
3
)
)
PCA9535; PCA9535C
Figure
350 to 2000
260
250
245
29) than a PbSn process, thus
220
220
350
> 2000
260
245
245
© NXP B.V. 2007. All rights reserved.
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