PCK351D NXP Semiconductors, PCK351D Datasheet - Page 15

Clock Buffer 1:10 CLK DISTR DEV 3-ST OUTPUT

PCK351D

Manufacturer Part Number
PCK351D
Description
Clock Buffer 1:10 CLK DISTR DEV 3-ST OUTPUT
Manufacturer
NXP Semiconductors
Datasheet

Specifications of PCK351D

Number Of Outputs
10
Propagation Delay (max)
4.1 ns
Supply Voltage (max)
3.6 V
Supply Voltage (min)
3 V
Maximum Power Dissipation
650 mW
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Mounting Style
SMD/SMT
Package / Case
SO-24
Operating Supply Voltage (max)
3.6V
Operating Temp Range
-40C to 85C
Propagation Delay Time
6.3ns
Operating Supply Voltage (min)
3V
Mounting
Surface Mount
Pin Count
24
Operating Supply Voltage (typ)
3.3V
Package Type
SO
Quiescent Current
25mA
Power Dissipation
650mW
Operating Temperature Classification
Industrial
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
PCK351D,112

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
PCK351D
Quantity:
329
Part Number:
PCK351DB,112
Manufacturer:
Maxim
Quantity:
49
Philips Semiconductors
PCK351_2
Product data sheet
13.4 Manual soldering
13.5 Package related soldering information
During placement and before soldering, the package must be fixed with a droplet of
adhesive. The adhesive can be applied by screen printing, pin transfer or syringe
dispensing. The package can be soldered after the adhesive is cured.
Typical dwell time of the leads in the wave ranges from 3 seconds to 4 seconds at 250 C
or 265 C, depending on solder material applied, SnPb or Pb-free respectively.
A mildly-activated flux will eliminate the need for removal of corrosive residues in most
applications.
Fix the component by first soldering two diagonally-opposite end leads. Use a low voltage
(24 V or less) soldering iron applied to the flat part of the lead. Contact time must be
limited to 10 seconds at up to 300 C.
When using a dedicated tool, all other leads can be soldered in one operation within
2 seconds to 5 seconds between 270 C and 320 C.
Table 11:
[1]
[2]
[3]
Package
BGA, HTSSON..T
SSOP..T
DHVQFN, HBCC, HBGA, HLQFP, HSO, HSOP,
HSQFP, HSSON, HTQFP, HTSSOP, HVQFN,
HVSON, SMS
PLCC
LQFP, QFP, TQFP
SSOP, TSSOP, VSO, VSSOP
CWQCCN..L
– smaller than 1.27 mm, the footprint longitudinal axis must be parallel to the
The footprint must incorporate solder thieves at the downstream end.
For packages with leads on four sides, the footprint must be placed at a 45 angle to
the transport direction of the printed-circuit board. The footprint must incorporate
solder thieves downstream and at the side corners.
For more detailed information on the BGA packages refer to the (LF)BGA Application Note (AN01026);
order a copy from your Philips Semiconductors sales office.
All surface mount (SMD) packages are moisture sensitive. Depending upon the moisture content, the
maximum temperature (with respect to time) and body size of the package, there is a risk that internal or
external package cracks may occur due to vaporization of the moisture in them (the so called popcorn
effect). For details, refer to the Drypack information in the Data Handbook IC26; Integrated Circuit
Packages; Section: Packing Methods .
These transparent plastic packages are extremely sensitive to reflow soldering conditions and must on no
account be processed through more than one soldering cycle or subjected to infrared reflow soldering with
peak temperature exceeding 217 C
body peak temperature must be kept as low as possible.
[5]
transport direction of the printed-circuit board.
, SO, SOJ
[3]
[1]
, TFBGA, VFBGA, XSON
Suitability of surface mount IC packages for wave and reflow soldering methods
[8]
, PMFP
[3]
, LBGA, LFBGA, SQFP,
Rev. 02 — 16 December 2005
[9]
, WQCCN..L
1 : 10 clock distribution device with 3-state outputs
[8]
10 C measured in the atmosphere of the reflow oven. The package
Soldering method
Wave
not suitable
not suitable
suitable
not recommended
not recommended
not suitable
[4]
© Koninklijke Philips Electronics N.V. 2005. All rights reserved.
[5] [6]
[7]
PCK351
Reflow
suitable
suitable
suitable
suitable
suitable
not suitable
[2]
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