參數(shù)資料
型號: ADNS-3060
英文描述: High-performance Optical Mouse Sensor
中文描述: 高性能的光學(xué)鼠標(biāo)傳感器
文件頁數(shù): 20/38頁
文件大小: 530K
代理商: ADNS-3060
20
Figure 25. Pixel address map (surface referenced)
The pixel output order as related to the surface is shown below.
Cable
RB
LB
A3060
10
1
20
11
Top Xray View of Mouse
Positive X
Positive Y
899 898 897 896 895 894 893 892 891 890 889 888 887 886 885 884 883 882 881 880 879 878 877 876 875 874 873 872 871 870
869 868 867 866 865 864 863 862 861 860 859 858 857 856 855 854 853 852 851 850 849 848 847 846 845 844 843 842 841 840
839 838
59 58 57 56 55 54 53 52 51 50 49 48 47 46 45 44 43 42 41 40 39 38 37 36 35 34 33 32 31 30
29 28 27 26 25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9
etc.
61 60
8
7
6
5
4
3
2
1
0
expanded view of the
surface as viewed
through the lens
last output
first output
Error detection and recovery
1. The ADNS-3060 and the
micro-controller might get
out of synchronization due
to ESD events, power supply
droops or micro-controller
firmware flaws. In such a
case, the micro-controller
should pulse NCS high for
at least 1 ms. The ADNS-
3060 will reset the serial
port (but not the control
registers) and will be
prepared for the beginning
of a new transmission after
the normal transaction
delay.
2. Invalid addresses: Writing
to an invalid address will
have no effect. Reading from
an invalid address will
return all zeros.
3. Termination of a
transmission by the micro-
controller may sometimes be
required (for example, due
to a USB suspend interrupt
during a read operation).
To accomplish this the
micro-controller should raise
NCS. The ADNS-3060 will
not write to any register
and will reset the serial port
(but not the control
registers) and be prepared
for the beginning of future
transmissions after NCS goes
low. The normal delays
between reads or writes
(t
SWW
, t
swr
, t
SRAD
, t
SRAD-mot
)
are still required after
aborted transmissions.
4. The micro-controller can
verify success of write
operations by issuing a read
command to the same
address and comparing
written data to read data.
5. The micro-controller can
verify the synchronization of
the serial port by
periodically reading the
product ID and inverse
product ID registers.
6. The microcontroller can read
the SROM_ID register to
verify that the sensor is
running downloaded SROM
code. ESD or similar noise
events may cause the sensor
to revert to native ROM
execution. If this should
happen, pulse RESET and
reload the SROM
instructions.
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