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Coaxlink Quad 3D-LLE

Quad CXP-6 Framegrabber mit On-Board Laserlinien-Extraktion für 3D-Profiling

Im Überblick
  • Laserlinien-Extraktion ohne CPU-Nutzung des Hosts
  • Echtzeitgenerierung von 16-Bit-Höhenprofilen in 3D
  • Auswahl an Algorithmen: Maximum, Peak, Center of Gravity (COG)
  • Genauigkeit: bis zu 1/256 Pixel (mit den Algorithmen Peak und COG)
  • Leistung: 19.000 Profile/s von 1024 x 128 Bildern. 38.000 Profile/s von 1024 x 64 Bildern



Vergleichen Händler


Laserlinien-Extraktion ohne CPU-Nutzung des Hosts
Laserlinien-Extraktion ohne CPU-Nutzung des Hosts

Der in der Coaxlink integrierte FPGA misst die Position der Laserlinie während der Bilderfassung, ohne die Host-CPU zu laden.


Unterstützung langer Kabel
Unterstützung langer Kabel

  • 40 Meter bei CXP-6-Geschwindigkeit (6,25 Gbit/s)
  • 100 Meter bei CXP-3-Geschwindigkeit (3 Gbit/s)


Memento Event Logging Tool

  • Memento is an advanced development and debugging tool available for Coaxlink cards.
  • Memento records an accurate log of all the events related to the camera, the frame grabber and its driver as well as the application.
  • It provides the developer with a precise timeline of time-stamped events, along with context information and logic analyzer view.
  • Es bietet wertvolle Hilfe bei der Anwendungsentwicklung und beim Debuggen sowie während des Maschinenbetriebs.


Trigger-Fähigkeiten für Flächenscans

  • Wenn sich das Teil in seiner Position befindet, wird die Erfassung mithilfe eines Triggers ausgelöst. Hardware-Trigger kommen von den Coaxlink I/O-Leitungen. Software-Trigger kommen von der Anwendung.
  • Eine optionale Triggerverzögerung ist verfügbar, um die Erfassung entsprechend einer programmierbaren Zeit zu verschieben.
  • Eine Funktion zur Dezimierung von Triggern ermöglicht das Überspringen einiger Trigger.
  • Mit der Belichtungssteuerung der Kamera kann die Anwendung die Belichtungszeit der Kamera steuern.
  • Nach Beginn der Erfassung generiert die Coaxlink-Karte zum entsprechenden Zeitpunkt ein Signal, das ein an die Ausgangsleitung angeschlossenes Beleuchtungsgerät steuert.


Windows-, Linux- und Mac OS-Treiber verfügbar
Windows-, Linux- und Mac OS-Treiber verfügbar

  • Including support for Intel 32-bit and 64-bit platforms as well as ARM 64-bit platforms


Echtzeitgenerierung von 16-Bit-Höhenprofilen in 3D
Echtzeitgenerierung von 16-Bit-Höhenprofilen in 3D

Die Coaxlink überträgt die berechneten 3D-Höhenprofile direkt und ohne Verzögerung in Echtzeit an den Speicher des Host-PC.


Verwendung von Standard-Koaxialkabeln
Verwendung von Standard-Koaxialkabeln

  • Ein einziges, preiswertes Kabel für Datenübertragung, Kamerasteuerung, Auslöser und Stromversorgung
  • Hohe Zuverlässigkeit und Flexibilität, einsatzbereit in den härtesten Umgebungen


Universelle I/O-Leitungen
Universelle I/O-Leitungen

  • Kompatibel mit einer breiten Palette an Sensoren und Bewegungsencodern.
  • Highspeed-Differenzeingänge: Quadratur-Bewegungsencoder unterstützt bis zu 5 MHz.
  • Getrennte Strommesseingänge: 5 V, 12 V, 24 V Signalspannungen akzeptiert, bis zu 50 kHz, einzeln galvanisch getrennt bis 500 VAC RMS.
  • Galvanisch getrennte Kontaktausgänge.
  • 5V-konforme Highspeed-TTL-Eingänge/ LVTTL-Ausgänge.


Der Coaxlink-Treiber umfasst die folgenden Tools:
Der Coaxlink-Treiber umfasst die folgenden Tools:

  • Genicam Browser: An application giving access to the Genicamfeatures exposed by the GenTL Producer(s) in the system.
  • GenTL Console: Ein Befehlszeilentool, das Zugriff auf Funktionen und Befehle gibt, die vom Euresys GenTL Producer zur Verfügung gestellt werden.


Entwickelt mit Unterstützung der technologischen Entwicklungsabteilung DG06
Entwickelt mit Unterstützung der technologischen Entwicklungsabteilung DG06


Bilderfassung von den schnellsten und höchstauflösenden Kameras
Bilderfassung von den schnellsten und höchstauflösenden Kameras

  • Höchste Datenerfassungsrate der Branche
  • 25 Gbit/s (2.500 MB/s) Bandbreite von Kamera zu Host-PC-Speicher


Robuste Anschlüsse
Robuste Anschlüsse

Coaxlink verwendet DIN 1.0/2.3-Anschlüsse mit Push/Pull-Verriegelungssystem für zuverlässige Verbindungen


High-Performance DMA (Direct Memory Access)
High-Performance DMA (Direct Memory Access)

  • Direct transfer into user-allocated memory and hardware boards that expose PCI addresses
  • Hardware Scatter-Gather-Unterstützung
  • 64-Bit-Adressierungsfähigkeit


Compliant with <a href="https://www.euresys.com/genicam">Genicam</a> Including support for
Compliant with Genicam Including support for

  • GenApi
  • Die Standard Feature Naming Convention (SFNC)
  • GenTL


Mechanical
Form Factor PCI Express card
Format Standard profile, half length, 4-lane PCI Express card
Cooling method Air cooling, fan-cooled heatsink
Mounting For insertion in a standard height, 4-lane or higher, PCI Express card slot
Connectors
  • 'A', 'B', 'C', 'D' on bracket:
    • 4x DIN 1.0/2.3 female connectors
    • CoaXpress host interface
  • EXTERNAL I/O' on bracket:
    • 26-pin 3-row high-density female sub-D connector
    • I/O lines and power output
  • INTERNAL I/O 1' and 'INTERNAL I/O 2' on PCB:
    • 2x 26-pin 2-row 0.1" pitch pin header with shrouding
    • I/O lines and power output
  • 'AUXILIARY POWER INPUT' on module:
    • 6-pin PEG power socket
    • 12 VDC power input for PoCXP camera(s) and I/O power
  • 'C2C-LINK' on module:
    • 6-pin 2-row 0.1-in header
    • Card to card link
Lamp indicators
  • 'A', 'B', 'C', 'D' on bracket:
    • 4x bi-color red/green LEDs
    • CoaXPress Host connector indicator lamps
  • 'FPGA STATUS LAMP' on PCB:
    • Bi-color red/green LED
    • FPGA status lamp
  • 'BOARD STATUS LAMP' on PCB:
    • Bi-color red/green LED
Switches 'RECOVERY' on card PCB:
  • 3-pin 1-row 0.1" header
  • Firmware emergency recovery
Dimensions L 167.65 mm x H 111.15 mm L 6.6 in x H 4.38 in
Weight 180 g, 6.35 oz
Host bus
Standard PCI Express 2.0
Link width
  • 4 lanes
  • 1 lane or 2 lanes with reduced performance
Link speed
  • 5.0 GT/s (PCIe 2.0)
  • 2.5 GT/s (PCIe 1.0) with reduced performance
Maximum payload size 512 bytes
DMA 32- and 64-bit
Peak delivery bandwidth 2,000 MB/s
Effective (sustained) delivery bandwidth 1,700 MB/s (Host PC motherboard dependent)
Power consumption Typ. 16.8 W (3.8 W @ +3.3V, 13 W @ +12V), excluding camera and I/O power output
Camera / video inputs
Interface standard(s) CoaXPress 1.0, 1.1 and 1.1.1
Connectors 4x DIN1.0/2.3 75 Ohms CXP-6
Status LEDs 1 CoaXPress Host connection status per connector
Number of cameras One 1- or 2- or 4-connection camera
Line-scan cameras supported No
Maximum aggregated camera data transfer rate 25 Gbit/s (2,500 MB/s)
Supported CXP down-connection speeds 1.25 GT/s (CXP-1), 2.5 GT/s (CXP-2), 3.125 GT/s (CXP-3), 5 GT/s (CXP-5), and 6.25 GT/s (CXP-6)
Number of CXP data streams (per camera) 1 data stream per camera
Maximum CXP stream packet size 16,384 bytes
PoCXP (Power over CoaXPress)
  • PoCXP Safe Power:
    • 17 W of 24V DC regulated power per CoaXPress connector
    • PoCXP Device detection and automatic power-on
    • Overload and short-circuit protections
  • On-board 12V to 24V DC/DC converter
  • A +12V power source must be connected to the AUXILIARY POWER INPUT connector using a 6-pin PEG cable
Camera types
  • Gray-scale Area-scan cameras
Camera pixel formats supported Monochrome 8-bit (Mono8)
Area-scan camera control
Trigger
  • Precise control of asynchronous reset cameras, with exposure control.
  • Support of camera exposure/readout overlap.
  • Support of external hardware trigger, with optional delay and trigger decimation.
Strobe
  • Accurate control of the strobe position for strobed light sources.
  • Support of early and late strobe pulses.
On-board processing
On-board memory 1 GB
Image data stream processing Laser Line Extraction (LLE) processing core to compute the vertical position of one detected laser line along a ROI using one of the following algorithms:
  • Maximum Detection algorithm
    • Maximum ROI width: 8192 pixels
    • Maximum ROI height: 65536 pixels
    • Depth map format: 16-bit unsigned integer number
    • Accuracy: 1 pixel
  • 8-bit Maximum Detection algorithm
    • Maximum ROI width: 8192 pixels
    • Maximum ROI height: 256 pixels
    • Depth map format: 8-bit unsigned integer number
    • Accuracy: 1 pixel
  • Peak Detection algorithm
    • Maximum ROI width: 8192 pixels
    • Maximum ROI height: 2048 pixels
    • Depth map format: UQ11.5 fixed-point unsigned number
    • Accuracy: 1/32 pixel
  • High accuracy Peak Detection algorithm
    • Maximum ROI width: 8192 pixels
    • Maximum ROI height: 256 pixels
    • Depth map format: UQ8.8 fixed-point unsigned number
    • Accuracy: 1/256 pixel
  • Center Of Gravity algorithm
    • Maximum ROI width: 8192 pixels
    • Maximum ROI height: 2048 pixels
    • Depth map format: UQ11.5 fixed-point unsigned number
    • Accuracy: 1/32 pixel
  • High accuracy Center Of Gravity algorithm
    • Maximum ROI width: 8192 pixels
    • Maximum ROI height: 256 pixels
    • Depth map format: UQ8.8 fixed-point unsigned number
    • Accuracy: 1/256 pixel
Data stream statistics
  • Measurement of:
    • Frame rate (Area-scan only)
    • Line rate
    • Data rate
  • Configurable averaging interval
Event signaling and counting
  • The application software can be notified of the occurrence of various events:
    • Standard event: the EVENT_NEW_BUFFER event notifies the application of newly filled buffers
    • A large set of custom events
  • Custom events sources:
    • I/O Toolbox events
    • Camera and Illumination control events
    • CoaXPress data stream events
    • CoaXPress host interface events
  • Each custom event is associated with a 32-bit counter that counts the number of occurrences
  • The last three 32-bit context data words of the event context data can be configured with event-specific context data:
    • Event-specific data
    • State of all System I/O lines sampled at the event occurrence time
    • Value of any event counter
General Purpose Inputs and Outputs
Number of lines 20 I/O lines:
  • 4 differential inputs (DIN)
  • 4 singled-ended TTL inputs/outputs (TTLIO)
  • 8 isolated inputs (IIN)
  • 4 isolated outputs (IOUT)
Usage
  • Any I/O input lines can be used by any LIN tool of the I/O Toolbox
  • Selected pairs of I/O input lines can be used by any QDC tool of the I/O toolbox to decode A/B signals of a motion encoder
  • The LIN and QDC tools outputs can be further processed by the other tools (DIV, MDV, DEL) of the I/O toolbox to generate any of the following "trigger" events:
    • The "cycle trigger" of the Camera and Illumination controller
    • The "cycle sequence trigger" of the Camera and Illumination controller
    • The "start-of-scan trigger" of the Acquisition Controller (line-scan only)
    • The "end-of-scan trigger" of the Acquisition Controller (line-scan only)
Electrical specifications
  • DIN: High-speed differential inputs compatible with ANSI/EIA/TIA-422/485 differential line drivers and complementary TTL drivers
  • TTLIO: High-speed 5V-compliant TTL inputs or LVTTL outputs, compatible with totem-pole LVTTL, TTL, 5V CMOS drivers or LVTTL, TTL, 3V CMOS receivers
  • IIN: Isolated current-sense inputs with wide voltage input range up to 30V, compatible with totem-pole LVTTL, TTL, 5V CMOS drivers, RS-422 differential line drivers, potential free contacts, solid-state relays and opto-couplers
  • IOUT: Isolated contact outputs compatible with 30V / 100mA loads
Filter control
  • Glitch removal filter available on all System I/O input lines
  • Configurable filter time constants:
    • for DIN and TTLIO lines: 50 ns, 100 ns, 200 ns, 500 ns,1 µs
    • for IIN lines: 500 ns, 1 µs, 2 µs, 5 µs, 10 µs
Polarity control Yes
Power output Non-isolated, +12V, 1A, with electronic fuse protection
I/O Toolbox tools The I/O Toolbox is a configurable interconnection of tools that generates events (usually triggers) from input lines. The composition of the toolset is product- and firmware-dependent.
  • Line Input tool (LIN): Edge detector delivering events on rising or falling edges of any selected input line.
  • Quadrature Decoder tool (QDC): A composite tool including:
    • A quadrature edge detector delivering events on selected transitions of selected pairs of input lines.
    • An optional backward motion compensator for clean line-scan image acquisition when the motion is unstable.
    • A 32-bit up/down counter for delivering a position value.
  • Divider tool (DIV): to generate an event every nth input events from any I/O toolbox event source.
  • Multiplier/divider tool (MDV): to generate m events every d input events from any I/O toolbox event source.
  • Delay tool (DEL): to delay up to 16 events from one or two I/O toolbox event sources, by a programmable time or number of motion encoder ticks (any QDC events).
  • User Actions Scheduler tool (UAS): to delegate the execution of User Actions at a scheduled time or encoder position. Possible user actions include setting low/high/toggle any bit of the User Output Register or generation of any User Events.
I/O Toolbox composition 8 LIN, 1 QDC, 1 DIV, 1 MDV, 2 DEL, 1 UAS
C2C-Link
Description
  • Allows to accurately synchronize the trigger and start-of-exposure of multiple grabber-controlled area-scan and line-scan cameras.
  • C2C-Link is able to synchronize cameras connected
    • to the same Coaxlink card
    • to different cards in the same PC (requires an accessory cable such as the "3303 C2C-Link Ribbon Cable" or a custom-made C2C-Link cable)
    • to different cards in different PCs (requires one "1636 InterPC C2C-Link Adapter" for each PC and one RJ 45 CAT 5 STP straight LAN cable for each adapter but the last one)
Specification
  • Maximum distance
    • 60 cm inside a PC
    • 1200 m cumulated adapter to adapter cable length
  • Maximum trigger rate
    • 2.5 MHz for configurations using a single PC, or up to 10 PCs and 100 m total C2C-Link cable length
    • 200 kHz for configurations up to 32 PCs and 1200m total C2C-Link cable length
  • Trigger propagation delay from master to slave devices
    • Less than 10 ns for cameras on the same Coaxlink card or on different Coaxlink cards in the same PC
    • Less than 265 ns for cameras on different Coaxlink cards in different PCs (3 PCs and 40m total C2C-Link cable length)
Software
Host PC Operating System
  • Microsoft Windows 10, 8.1, 7 for x86 (32-bit) and x86-64 (64-bit) processor architectures
  • Linux for x86 (32-bit), x86-64 (64-bit) and aarch64 (64-bit) processor architectures
  • macOS for x86-64 (64-bit) processor architecture
Refer to release notes for details
APIs EGrabber class, with C++ and .NET APIs:
  • .NET assembly designed to be used with development environments compatible with .NET frameworks version 2.0 or higher
GenICam GenTL producer libraries compatible with C/C++ compilers:
  • x86 dynamic library designed to be used with ISO-compliant C/C++ compilers for the development of x86 applications
  • x86_64 dynamic library designed to be used with ISO-compliant C/C++ compilers for the development of x86_64 applications
  • aarch64 dynamic library designed to be used with ISO-compliant C/C++ compilers for the development of aarch64 applications
Memento Compatible with Memento Event Logging tool
Environmental conditions
Operating ambient air temperature 0 to +55 °C / +32 to +131 °F
Operating ambient air humidity 10 to 90% RH non-condensing
Storage ambient air temperature -20 to +70 °C / -4 to +158 °F
Storage ambient air humidity 10 to 90% RH non-condensing
Certifications
Electromagnetic - EMC standards
  • European Council EMC Directive 2004/108/EC
  • United States FCC rule 47 CFR 15
EMC - Emission
  • EN 55022:2010 Class B
  • FCC 47 Part 15 Class B
EMC - Immunity
  • EN 55024:2010 Class B
  • EN 61000-4-3
  • EN 61000-4-4
  • EN 61000-4-6
KC Certification Korean Radio Waves Act, Article 58-2, Clause 3
Flammability PCB compliant with UL 94 V-0
RoHS European Union Directive 2011/65/EU (ROHS2)
REACH European Union Regulation 1907/2006
WEEE Must be disposed of separately from normal household waste and must be recycled according to local regulations
Ordering Information
Product code - Description
Optional accessories
3D Acquisition Elec

3D-Bilderfassung für elektronische Inspektionssysteme

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Coaxlink Quad 3D-LLE
3D Acquisition Man

3D-Bilderfassung für Inspektionssysteme

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Coaxlink Quad 3D-LLE