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ADNS-2610 View Datasheet(PDF) - Agilent Technologies, Inc

Part Name
Description
Manufacturer
ADNS-2610
Agilent
Agilent Technologies, Inc Agilent
ADNS-2610 Datasheet PDF : 27 Pages
1 2 3 4 5 6 7 8 9 10 Next Last
SERIAL
PORT
SCK
SDIO
SERIAL
PORT
OSCILLATOR
OSC_IN
OSC_OUT
RESONATOR
IMAGE
PROCESSOR
REFA
VOLTAGE
REFERENCE
7. Insert PCB assembly over the
lens onto the base plate
aligning post to retain PCB
assembly. The sensor aperture
ring should self-align to the
lens.
LED
CONTROL
LED
CONTROL
VDD
5 VOLT
POWER
GND
Figure 6. Block diagram of ADNS-2610 optical mouse sensor.
PCB Assembly Considerations
1. Insert the sensor and all other
electrical components into
PCB. Note: Pin 1 of the sensor
should always be the reference
point of mechanical cutouts.
2. Bend the LED leads 90° and
then insert the LED into the
assembly clip until the snap
feature locks the LED base.
optical aperture from direct
solder contact. The solder
fixture is also used to set the
reference height of the sensor
to the PCB top during wave
soldering (Note: DO NOT
remove the kapton tape during
wave soldering).
5. Place the lens onto the base
plate.
3. Insert the LED/clip assembly
into PCB.
4. Wave solder the entire assem-
bly in a no-wash solder
process utilizing solder
fixture. The solder fixture is
needed to protect the sensor
during the solder process. The
fixture should be designed to
expose the sensor leads to
solder while shielding the
6. Remove the protective kapton
tape from optical aperture of
the sensor. Care must be taken
to keep contaminants from
entering the aperture. It is
recommended not to place the
PCB facing up during the
entire mouse assembly pro-
cess. The PCB should be held
vertically for the kapton
removal process.
Sensor
Clip
8. The optical position reference
for the PCB is set by the base
plate and lens. Note that the
PCB motion due to button
presses must be minimized to
maintain optical alignment.
9. Install mouse top case. There
MUST be a feature in the top
case to press down onto the
clip to ensure all components
are interlocked to the correct
vertical height.
Design Considerations for Improving
ESD Performance
The flange on the lens has been
designed to increase the creepage
and clearance distance for
electrostatic discharge. The table
below shows typical values
assuming base plate construction
per the Agilent supplied IGES file
and HDNS-2100 lens flange.
Typical Distance
Creepage
Clearance
Millimeters
16.0
2.1
For improved ESD performance,
the lens flange can be sealed (i.e.
glued) to the base plate. Note
that the lens material is polycar-
bonate and therefore, cyanoacry-
late based adhesives or other
adhesives that may damage the
lens should NOT be used.
PCB
LED
Lens/Light Pipe
Base Plate
Surface
Figure 7. Sectional view of PCB assembly highlighting optical mouse components (optical mouse sensor, clip, lens, LED, PCB and base plate).
4

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