- Phone
-
Address
3rd Floor, No. 88 Guangfulin Road, Songjiang District, Shanghai
Xunzhiman Intelligent Control Technology (Shanghai) Co., Ltd
3rd Floor, No. 88 Guangfulin Road, Songjiang District, Shanghai
Siemens touch screen 6AV6643-OBAO1-1AXO Siemens touch screen 6AV6643-OBAO1-1AXO
Xunzhiman Intelligent Control Technology (Shanghai) Co., Ltd. Shanghai Shimu Automation Equipment Co., Ltd
Our company sells Siemens automation products with quality assurance and price advantages
Siemens PLC, Siemens touch screen, Siemens CNC system, Siemens soft start, Siemens Ethernet
Siemens motors, Siemens frequency converters, Siemens DC speed controllers, Siemens wires and cables
Our company has a large supply of spot goods with price advantages, *, Germany*
Technical Specifications
| equipment | MP 277 8' Touch | MP 277 10' Touch | MP 277 8' Key | MP 277 10' Key |
| display | TFT LCD | TFT LCD | TFT LCD | TFT LCD |
| ·Size | 7.5 inches | 10.4 inches | 7.5 inches | 10.4 inches |
| ·Resolution (width x height, pixels) | 640 x 480 | 640 x 480 | 640 x 480 | 640 x 480 |
| ·Color | 64K color | 64K color | 64K color | 64K color |
| ·Average brightness lifetime of background light (25 ℃) | Approximately 50000 hours | Approximately 50000 hours | Approximately 50000 hours | Approximately 50000 hours |
| control component | Touch the screen | Keypad keyboard | ||
| ·Number input/letter input | Yes/Yes | Yes/Yes | ||
| ·Coating function/system buttons | Nothing | 26/38 | 36/38 | |
| storage | ||||
| ·User data available memory | 6MB | |||
| Integrated interface | 1×RS422/485 ; 2×USB1.1; 1×Ethernet | |||
| Connection with PLC | SIMATIC S7-200/300/400, WinAC, 3rd-party PLCs, . .. | |||
| clock | Software clock with backup battery (6 hours) | |||
| power supply | DC 24V (20.4V ~ 28.8V) | |||
| ·Rated current | 0.6A | 0.7A | 0.7A | 0.8A |
| Protection level | ||||
| ·Front panel | IP65,NEMA4x, NEMA12 | |||
| ·Rear panel | IP20 | |||
| certification | CE, cULus,,N117 | |||
| Upcoming certifications: FM, EX Zone 2/22 | ||||
| size | ||||
| ·Front panel dimensions width x height (mm) | 240×180 | 325×263 | 352×221 | 483×310 |
| ·Installation opening size width x height (mm) | 227×167 | 311×249 | 339×207 | 434×291 |
| ·Installation depth (mm) | 61 | 61 | 61 | 55 |
| weight | Approximately 1.61 kg | Approximately 2.65 kg | Approximately 2.25 kg | Approximately 4.95 kg |
| environmental conditions | ||||
| ·Installation angle | vertical | |||
| -Allowable inclination angle without external ventilation | ±35° | |||
| ·Temperature | ||||
| - Operation (vertical installation) | 0 ℃~+ 50 ℃ | |||
| - Operation (tilt angle) | 0 ℃~+ 40 ℃ | |||
| - Transportation and storage | - 20 ℃~+ 60 ℃ | |||
| ·Relative humidity | 90%; No concentration | |||
| function | ||||
| alarm system | ||||
| ·Number of alarms | 4000 | |||
| ·Bit/analog alarm | Yes/Yes | |||
| ·The length of the alarm (in characters) | 80 | |||
| ·The number of process values for each alarm | 8 | |||
| ·Message buffer | Loop buffer, 512 messages | |||
| object | ||||
| ·Process screen | 500 | |||
| ·Variable objects (for each screen) | 200 | |||
| ·Domain (for each screen) | 200 | |||
| ·Graphic objects (for each screen) | 10 (bar chart, trend curve) | |||
| ·Formula | 300 | |||
| -Data recording | 500 | |||
| -Article | 1000 | |||
| Configurable system keys | have | have | ||
| Graphics/Graphics List | have | |||
| variable | 2048 | |||
| User Management | have | |||
| Online connection (simultaneously) | 6 | |||
| Online language (simultaneously) | 5 | |||
| The keyboard on the screen | have | |||
| Clear screen | have | Nothing | ||
| font | WinCC flexible standard fonts, Tahoma fonts, symbolic languages | |||
| Security system (password) Protection) |
have | |||
| help system | have | |||
| VBscript script script | 50 | |||
| trend | 300 | |||
| graphic object | Vector graphics and graphics | |||
| Text Object | 10,000 | |||
| Task Plan (Timing) Function) |
48 | |||
| option | Sm@rtService , Sm@rtAccess ,/Audit, OPC server | |||
| Additional features | PROFIBUS DP direct keys,PROFINET IO direct keys | |||
| Order Number
Figure 1: The main steps of designing and debugging a programmable controller application system (1) Deeply understand and analyze the process conditions and control requirements of the controlled object a. The controlled object refers to the controlled mechanical, electrical equipment, production line, or production process. b. Control requirements mainly refer to the basic methods of control, the actions that should be completed, the composition of automatic work cycles, necessary protection and interlocking, etc. For more complex control systems, the control task can also be divided into several independent parts, which can simplify complexity and facilitate programming and debugging. (2) Identify I/O devices Determine the user input and output devices required for the PLC control system based on the functional requirements of the controlled object. Common input devices include buttons, selection switches, travel switches, sensors, etc. Common output devices include relays, contactors, indicator lights, solenoid valves, etc. (3) Choose the appropriate PLC type Based on the identified user I/O devices, count the required input and output signal points, select the appropriate PLC type, including model selection, capacity selection, I/O module selection, power module selection, etc. (4) Allocate I/O points Assign input and output points to the PLC, prepare an input/output allocation table, or draw a wiring diagram for the input/output terminals. Next, PLC program design can be carried out, and control cabinet or operation console design and on-site construction can also be carried out. (5) Design application system ladder diagram program Design a ladder diagram based on work function diagrams or status flowcharts, which is called programming. This step is the core work of the entire application system design, and it is also a relatively difficult step. To design a good ladder diagram, one must first be very familiar with the control requirements, and also have some practical experience in electrical design. (6) Input the program into the PLC When using a simple programmer to input a program into a PLC, it is necessary to first convert the ladder diagram into instruction mnemonics for input. When programming on a computer using auxiliary programming software for programmable controllers, the program can be downloaded to the PLC through the connection cable between the upper and lower computers. |
6AV6643-0CB01-1AX0 | 6AV6643-0CD01-1AX0 | 6AV6643-0DB01-1AX0 |
6AV6643-0DD01-1AX0
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