Plc6es7513-1al02-0ab0
Siemens CPU Module 6ES7513-1AL02-0AB0, original
Product Functions
● I&M Data Yes; I&M0 to I&M3
● Clock Synchronization Mode Yes; Distributed and Centralized; With small organization blocks, 6 cycles of 500 µs (Distributed) and 1 ms (Centralized)
With Package
● STEP 7 TIA Port, Configurable/Integrated, starting from version V17 (Firmware V2.9) / V15 (Firmware V2.5) and above; Can be configured as 6ES7513-1AL01-0AB0 through older versions of TIA Portal
Configuration Control
Through Data Groups Yes
Display
Diagonal Screen Size [cm] 3.45 cm
Operating Elements
Number of Buttons 8
Number of Operating Mode Buttons 2
Power Supply Voltage
Voltage Type of Power Supply 24 V DC
Allowable Range, Lower Limit (DC) 19.2 V
Allowable Range, Upper Limit (DC) 28.8 V
Reverse Polarity Protection Yes
Power Supply and Voltage Break Bridging
● Bridging Time for Power Failure/Power Cut 5 ms
● Repetition Rate, Minimum Value 1/s
Input Current
Consumed Current (Rated Value) 0.7 A
Consumed Current, Maximum Value 0.95 A
Switch-on Current, Maximum Value 1.9 A; Rated Value
I²t 0.02 A²·s
Power
Feed-in Power on Backplane Bus 10 W
Power Consumption from Backplane Bus (when balanced) 5.5 W
Power Loss
Power Loss, Typical Value 5.7 W
Memory
Number of SIMATIC Memory Card Slots 1
Need SIMATIC memory card Yes
Working memory
● Integrated (for programs) 300 kbyte
● Integrated (for data) 1.5 Mbyte
Load memory
● Plug-in (SIMATIC memory card), value 32 Gbyte
Buffer
● Maintenance-free Yes
CPU - processing time
For bit operations, typical value 40 ns
For word operations, typical value 48 ns
For operations, typical value 64 ns
For floating-point operations, typical value 256 ns
CPU - components
Number of elements (total) 4 000; Program blocks (OB, FB, FC, DB) and UDT
DB
● Numbering range 1 - 60 999; Divided as follows: User-available numbering range: 1 - 59 999 and numbering range of data blocks created by SFC 86: 60 000 - 60 999
● Capacity, value 1.5 Mbyte; For addressed databases, the capacity is 64 KB
FB
● Numbering range 0 - 65 535
● Capacity, value 300 kbyte
FC
● Numbering range 0 - 65 535
● Capacity, value 300 kbyte
OB
● Capacity, value 300 kbyte
● Number of available cyclic OBs 100
● Number of time alarm OBs 20
● Number of delayed alarm OBs 20
● Number of wake-up warning OBs 20; With small organization blocks, 3 cycles of 500 µs
● Number of process alarm OBs 50
● Number of DPV1 alarm OBs 3
● Number of isochronous mode OBs 2
● Number of technical synchronization warning OBs 2
● Number of startup OBs 100
● Number of asynchronous error OBs 4
● Number of synchronous error OBs 2
● Number of diagnostic alarm OBs 1
Nesting depth
● For each priority level 24
Counters, timers and their retentivity
S7 counters
● Quantity 2 048
Retentivity
— Adjustable Yes
IEC counters
● Quantity Arbitrary (only limited by system memory)
Retentivity
— Adjustable Yes
S7 timers
● Quantity 2 048
Retentivity
— Adjustable Yes
IEC timers
● Quantity Arbitrary (only limited by system memory)
Retentivity
— Adjustable Yes
Data ranges and their retentivity
Reserved data ranges (including time, counters, markers), value 128 kbyte; in total; available retentivity memory for memory, timers, counters, databases and technical data (axes): 88 KB
Extended reserved data ranges (including time, counters, markers), value 1.5 Mbyte; when using PS 60 W 24/48/60 V DC HF
Markers
● Capacity, value 16 kbyte
● Number of timing markers 8; 8 clock memory bits combine into one clock memory byte
Data components
● Adjustable retentivity Yes
● Preset retentivity No
Local data
● For each priority level, the value is 64 kbyte; each block is 16 KB
Address range
Number of IO modules: 2 048; number of modules/sub-modules
Peripheral address range
● Input terminals: 32 kbyte; all input terminals are within the process image
● Output terminals: 32 kbyte; all output terminals are within the process image
For each integrated IO subsystem
— Input terminals (capacity): 8 kbyte
— Output terminals (capacity): 8 kbyte
For each CM / CP
— Input terminals (capacity): 8 kbyte
— Output terminals (capacity): 8 kbyte
Component process image
● Number of component process images, value: 32
Hardware expansion
Number of distributed IO systems: 32; A distributed IO system is a system formed by connecting distributed peripheral devices together through PROFINET or PROFIBUS communication modules, or a system formed by connecting peripheral devices together through AS-i master modules or links (e.g., IE/PB links)
Number of DP masters
● Regarding CM: 6; A maximum of 6 CMs (PROFINET + PROFIBUS) can be plugged in total
Number of IO controllers
● Integrated: 1
● Regarding CM: 6; A maximum of 6 CMs (PROFINET + PROFIBUS) can be plugged in total
Component carrier
● Number of components per component carrier, value: 32; CPU + 31 modules
● Number of rows, value: 1
PtP CM
● Number of PtP CMs: The number of connectable PtP CMs is limited only by the available slots
Time
Clock
● Type: Hardware clock
● Buffer duration: 6 wk; Typical value when the ambient temperature is 40°C
● Daily deviation, value 10 s; Typical value: 2 s
Running time counter
● Quantity 16
Time synchronization
● Support provided Yes
● In AS, master station Yes
● In AS, slave station Yes
● Via NTP on Ethernet Yes
Interface
Number of PROFINET interfaces 1
1. Interface
Physical interface
● RJ 45 (Ethernet) Yes; X1
● Number of ports 2
● Integrated switch Yes
Protocol
● IP protocol Yes; IPv4
● PROFINET IO controller Yes
● PROFINET IO device Yes
● SIMATIC communication Yes
● Open IE communication Yes; Options can also be encrypted
● Web server Yes
● Gas-liquid redundancy Yes
The SIMATIC series PLCs of Siemens were born in 1958. After going through the C3, S3, S5, and S7 series, they have become widely used programmable controllers.
The 6 generations of Siemens (SIMATIC) PLCs
1. The earliest product of Siemens was the SIMATIC S3 launched in 1975. In fact, it was a binary controller with a simple operation interface.
2. In 1979, the S3 system was replaced by the SIMATIC S5, which systematically used microprocessors.
3. In the early 1980s, the S5 system was further upgraded to the U series PLCs. The more commonly used models are: S5 - 90U, 95U, 100U, 115U, 135U, 155U.
4. In April 1994, the S7 series was born. It has advantages such as being more international, of a higher level, having a smaller installation space, and a better WINDOWS user interface. Its models are: S7 - 200, 300, 400.
5. In 1996, in the field of process control, Siemens proposed the concept of PCS7 (Process Control System 7), integrating its advantageous WINCC (Operation Interface Compatible with WINDOWS), PROFIBUS (Industrial Fieldbus), COROS (Monitoring System), SINEC (Siemens Industrial Network) and control and adjustment technologies.
6. Siemens proposed the concept of TIA (Totally Integrated Automation), that is, the Totally Integrated Automation System, integrating PLC technology into the entire automation field.
S3 and S5 series of PLCs have gradually withdrawn from the market and production has stopped. The S7 series of PLCs has developed into the control core of Siemens' automation system. The TDC system uses the SIMADYN D technology kernel and is a further upgrade of the S7 series of products. It is a programmable controller with powerful functions in Siemens' automation system.
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