The "1818" is my first search word in this website, So I upload Lcd drive(Ssd1818a) C language code as my support.
96*64 DOT matrix Graphic
LCD controller: SSD1818A
Parallel interface
Initial routine code
Command write and Data write
Base functions and application code
Ascii font library
Product Photo
Mcu: Pic16F887...etc.
Keywords: Ssd1818a, DOT matrix graphic, Parallel interface, Initial routine, base font8x8 librarys
This module provides an interface to an alphanumeric display module.
The current version of this driver supports any alphanumeric LCD module based on the:Hitachi HD44780 DOT MATRIX LCD controller.
THIS DOCUMENT IS PROVIDED TO THE USER AS IS . Etc.etc.
Data from HITACHI LIQUID CRYSTAL CHARACTER DISPLAY MODULE and OPTREX DOT MATRIX LCD MODULE databooks
The object detector described below has been initially proposed by
P.F. Felzenszwalb in [Felzenszwalb2010]. It is based on a
Dalal-Triggs detector that uses a single filter on histogram of
oriented gradients (HOG) features to represent an object category.
This detector uses a sliding window approach, where a filter is
applied at all positions and scales of an image. The first
innovation is enriching the Dalal-Triggs model using a
star-structured part-based model defined by a “root” filter
(analogous to the Dalal-Triggs filter) plus a set of parts filters
and associated deformation models. The score of one of star models
at a particular position and scale within an image is the score of
the root filter at the given location plus the sum over parts of the
maximum, over placements of that part, of the part filter score on
its location minus a deformation cost easuring the deviation of the
part from its ideal location relative to the root. Both root and
part filter scores are defined by the DOT product between a filter
(a set of weights) and a subwindow of a feature pyramid computed
from the input image. Another improvement is a representation of the
class of models by a mixture of star models. The score of a mixture
model at a particular position and scale is the maximum over
components, of the score of that component model at the given
location.
LED 線陣顯示裝置, 分為 LED 線性旋轉(zhuǎn)顯示主機(jī)和圖文錄入器兩部分。主機(jī)用直流電機(jī)帶動由紅綠 LED 組成的線陣旋轉(zhuǎn), 同時線陣按照時序依次切換顯示狀態(tài), 在固定區(qū)域利用視覺暫留效果形成 16×16 點陣, 用以顯示圖文;圖文錄入器用 HMI 觸控屏作為人機(jī)交互界面, 實現(xiàn)圖文錄入和回放功能。主機(jī)與圖文錄入器通過無線通信方式進(jìn)行信息交互,可由圖文錄入器控制主機(jī)切換不同工作任務(wù), 以及改變線陣顯示內(nèi)容。The LED linear array display device is divided into two parts:the one is the main unit used to display content,and the other one is used to input the contents.The main unit is driven by a DC motor to rotate the linear array composed by red and green light emitting diodes.At the same time,the 16×16 DOT matrix that switching the display state according to the time sequence on the main unit displays pictures and texts in the fixed area,by using the visual temporary effect.The HMI touch screen is used as human machine interface to realize the function that input and playback pictures and texts.The two parts of the device communicate with each other through wireless communication.The image and text input controller can control the main unit to switch different tasks and change the content of linear array displayed.
Note: Before commissioning the value of the connected mains voltage must be set in the servo controller(factory setting=3×400 V AC). More detailed information see chapter 4"Commissioning".通訊接口所有的Servo-One系列均有USB及TCP/IP通訊接口,可通過LT-I公司的Drive-Manager5軟件進(jìn)行通訊,進(jìn)行相關(guān)參數(shù)的讀寫和現(xiàn)場調(diào)試,詳情請參考章節(jié).…軟件調(diào)試。Servo-One Junior:X9(USB1.1)TCP/IP(開發(fā)中)Servo-One:X2(USB1.1)X3(TCP/IP)Note: The faults can be acknowledged in accordance with their programmed reaction(ER) or reset via a 24 V-reset(X9/10)(ER.).Attention: Faults marked with a DOT can only be reset, after the cause of the fault has been eliminated.顯示為當(dāng)前版本V5.4.0同時,相應(yīng)的USB接口驅(qū)動也在對應(yīng)的安裝文件夾內(nèi),例:C:\Program FileLTI DRiVES GmbHILTi DriveManager 5.4.0drivers