SPECIFICATIONS
1.0 APPLICATION
This specification applies to the 10.4" (inch) standard
TOUCH PANEL (Pen/Finger type).
The part number of this panel is N010-0550-T611.
2.0 ADDITIONAL APPLICATIONS
Tech Bes N-25004 Control IC specification and N-25018
Touch Panel Specification are also applicable.
3.0 DESCRIPTION AND BLOCK DIAGRAM
This panel in combination with a control IC chip is used
to transfer the co-ordinates of the touched position to the
host system (see block diagram on the font sheet).
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4.0 DRAWING
Definitions of the major dimensions indicated on this diagram:
Effective Input Area (A) Area guaranteed to meet all the
characteristics detailed in this specification
Anti-input Area (C) An insulating area allowed to protect the
touch panel from giving false readings when an enclosure
touches the panel. (See fixing instructions)
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5.0 CHARACTERISTICS
5.1 MECHANICAL
Operating Force 0.05~0.49 N (5 ~ 50gF)
Measured with a Silicon
Measurement Rod R 8 (Round type 8mm)
Silicon Rubber Hardness
60°C
Hardness of Surface Pencil hardness 2H minimum against
specification JIS K-5400
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5.2 OPTICAL
Anti Newton Ring
Transparency 78% min. measured in the effective input area to
JIS K 7105 using a MURAKAMI SHIKISAI KENKYUSHO type IIR 100
meter.
Haze 5% type measured in the effective input area using a
MURAKAMI
SHIKISAI KENKYUSHO type IIR 100 meter with an Anti Glare
treated surface.
Newton
Ring:
An optical
interference pattern set up when light is reflected between
closely-spaced surfaces. It has the appearance of oil on
water.
Click here for a photograph.
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5.3 ELECTRICAL
-
Rated Voltage:
DC 7V max.
- Resistance X axis:
300 to 850 W (at the connector)
- Resistance Y axis:
100 to 600 W (at the connector)
- Switch Bounce (Chattering):
20ms min when using the silicon
rubber measurement rod
- Insulation resistance:
10MW minimum at 25KV DC
- Dielectric Strength:
No problems when at 25KV DC for 1 minute
Linearity:
2% max.
Note 1:
Measurement condition of linearity is corrected within the
control IC. In general the location accuracy is specified
as follows:
Actual co-ordinate point - theoretical co-ordinate point
= location accuracy.
In general a 9 point co-ordinate calibration system is used
to adjust the micro controller accuracy. (20 point can be
used in combination with an EEPROM design).
Note 2:
Pins 3, 5 and 7 are the glass and film connection points.
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5.4 ENVIRONMENTAL
-
Operating Temperature:
-0°C to 50°C
- Storage Temperature:
-20°C to 70°C
- Operating Humidity:
20% to 85% RH with a Maximum wet bulb
temperature of 38°C
- Storage Humidity:
10% to 90% RH with a Maximum wet bulb
temperature of 38°C
- Chemical Resistance:
Coating with the following chemicals and
storing at room temperature for 2
hours gives no problems. 10% Nacl-water solution,
ethyl-acetate, ethylalcohol,
toluene, methyl-ethyl-ketone
- Low Air Pressure:
No issues down to 0.5 x Normal Air pressure
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5.6 FINGER LIFE
A finger is simulated
by a silicon rubber plunger R8
(Round type 8mm size) hardness 60°C at 200g at frequency 5Hz.
A failure is judged to happen when the current
consumption or insulation resistance or dielectric
strength are not met as shown in 5.3.
The location accuracy with 9 point calibration must be
±4.4
mm max.
Operating force is 150g max.
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