## Slide 1

![**DISCLAIMER**  Information in this document is confidential and is subject to legal privilege. This document includes ADLINK Technology Inc., ('ADLINK') products. No license is expressed or implied, by estoppel or otherwise, and no intellectual property rights are granted in this document. ADLINK reserves the right to make changes to any information, specifications, products, and product descriptions at any time, without notice. Any products, dates, and drawings are preliminary and based on current expectations, and are subject to change without notice. ADLINK accepts no liability for any actions taken on the basis of the information provided in this document. ADLINK disclaims any expressed or implied warranty as to the use of the information acquired in this document.  This document shall be viewed by the intended recipient(s) only, and shall not be reproduced, distributed, published, shared or exchanged by or between any other parties without the prior written consent of ADLINK.  All ADLINK Technology, Inc. products are manufactured or assembled at the ADLINK owned and operated facilities in Taiwan, China, Germany, and the United States. ADLINK Technology, Inc., is not owned, directed, or subsidized by the People's Republic of China. The ADLINK name and its logos are trademarks of ADLINK Technology, Inc., in the US and other countries. All product and company names are either trademarked ™ or registered ® trademarks of their respective holders.  ADLINK   Leading Edge AI Computing Confidential](.apc-series-sales-deck-0410/slide-001.jpg)

## Slide 2

![This slide features a presentation header and a technical diagram.  **Text Content:** *   **Top Right:** 'ADLINK' logo with the tagline 'LEADING EDGE AI COMPUTING'. *   **Left Panel (Red Background):**     *   'APC Series'     *   'Software-defined Motion Controller' *   **Grey Bar:** 'April 2026' *   **Bottom Left:** 'ADLINK   Leading Edge AI Computing' *   **Center Graphic (Software Stack):**     *   Top Layer: 'RTOS'     *   Middle Layers: 'DAQ', 'VISION'     *   Bottom Layers: 'Windows' (appearing twice)     *   Side Layer: 'HYPERVISOR'     *   Label: 'SuperCAT'     *   Label: 'APC-M47/C47'     *   Label: 'EtherCAT' *   **Right Side (Hardware):**     *   Label pointing to green board: 'Pro Series ATX Motherboard'     *   Label pointing to black board: 'Value Series ATX Motherboard'  **Visual Description:** The slide is divided diagonally. The left side is a solid red block containing the title. The right side displays a dark blue, high-tech background featuring a 3D diagram. This diagram shows a stack of software layers (RTOS, DAQ, Vision) sitting atop a black server chassis labeled 'APC-M47/C47.' To the right of the server are two physical motherboards. Floating holographic screens in the background display data points labeled 'DAQ' and 'VISION.'](.apc-series-sales-deck-0410/slide-002.jpg)

## Slide 3

![**Title:** Comprehensive EtherCAT Ecosystem: From Hardware Precision to Software-Defined Flexibility **Subtitle:** Simplify Motion, Unify Control And Maximize Efficiency  **Top Right Section:** Automation Product Software (APS SDK) 400+ motion functions with no-code testing (Image of software interface) APS Automation Software  **Central Left (Red Circle):** SuperCAT SuperCAT Series Super-performance Soft EtherCAT Master Controller with up to 128-axis support  **Central Right (Blue Circle):** PCIe-8332/8334/8338 PCIe motion control card with up to 64-axis support  **Center:** EtherCAT  **Bottom Row (Left to Right):** *   **ECAT-IO Series:** Modular IO module     *   (Icons) AIO, DIO *   **ES Series:** EtherCAT Slice I/O Module     *   (Icons) AIO, DIO, RS-232 RS-485, SerialTC/RTD Hub *   **ECAT-TRG4:** 4-CH high-speed position compare trigger module     *   (Icons) Encoder, Camera & Light *   **Nu-Step DA Series:** 2-phase EtherCAT stepper driver     *   (Icons) Steppe r, Camera & Light *   **ECAT-4XMO:** 4-CH motion control module bridge pulse train to EtherCAT     *   (Icons) Pulse train motor driver, Camera & Light  **Footer:** ADLINK   Leading Edge AI Computing](.apc-series-sales-deck-0410/slide-003.jpg)

## Slide 4

![This slide is titled **Challenges** and is divided into two sections: text on the left and an image on the right.  **Left Section (Text):** Three key challenges are listed with red icons and accompanying descriptions:  1.  **System Integration Complexity**     'Integrating separate vision IPCs and external motion controllers leads to complex wiring, larger cabinets, and higher assembly costs' 2.  **Cross-System Communication Barriers**     'Synchronizing data between independent vision PCs and external controllers causes severe integration difficulties' 3.  **Fragmented Development & TCO**     'Managing multiple platforms from different vendors increases R&D time, debugging difficulty, and total cost of ownership'  **Right Section (Image):** A photograph shows the interior of an electrical cabinet filled with wiring and hardware. Yellow dotted lines point to specific areas with labels: *   **Oversized Cabinet** (pointing to the top edge) *   **Complex Wiring** (pointing to the middle) *   **Separated Controllers** (pointing to the bottom right)  **Footer:** The bottom left corner displays the logo and text: **ADLINK   Leading Edge AI Computing**](.apc-series-sales-deck-0410/slide-004.jpg)

## Slide 5

![**Title:** APC Series : Software-defined Motion Controller **Subtitle:** Empowering Machine Builders with Highly Flexible Motion Architectures  **Left Section:** *   Ultimate 3-in-1 Convergence *   Unify Motion, Vision, and Edge Computing in one  **Middle Section:** *   PC-Powered Control *   Accelerate integration with advanced PC computing  **Right Section:** *   Simplified Software EtherCAT *   Zero motion cards *   Minimal wiring  **Footer:** ADLINK   Leading Edge AI Computing](.apc-series-sales-deck-0410/slide-005.jpg)

## Slide 6

![**Main Features**  **High-Performance Motion Control** *   **High-Speed Sync:** Up to 128 axes @ 1ms or 16 axes @ 125µs *   **Dynamic Accuracy:** Built-in Dual Master & 2D/3D error compensation  **Windows & RTOS Integration** *   **Data Sync:** Via Shared Memory & Command Queues *   **Resource Allocation:** Flexible LAN, COM, and PCIe assignment  **High Computing Performance** *   **Scalable Architecture:** Broad support for Intel® Gen 6-15 CPUs *   **Workload Consolidation:** Run CPU apps directly in RTOS  **(Text within the graphic on the right)** SuperCAT RTOS DAQ VISION HYPERVISOR Windows Windows ADLINK EtherCAT  **(Footer)** ADLINK   Leading Edge AI Computing](.apc-series-sales-deck-0410/slide-006.jpg)

## Slide 7

![This slide presents the **Mainstream Electronics Automation Platform**, described as 'Highly integrated, cost-effective software-defined control for high-throughput manufacturing.'  **Left Side Content:** *   **Applications:** Listed in a teal box as 'SMT   Component Pick & Place   Dispensing'. *   **Verified Platform:** 'Mainstream Controller (APC-C47 with Intel® Core™ i5-12500E) + SuperCAT Classic Edition'. *   **Key Features:**     *   'Reliable Motion Control: Built-in gantry control for smooth multi-axis sync'     *   'Vision Integration: Optimized for high-throughput, rule-based inspection'     *   'Rapid Deployment: Designed for minimized system bring-up time' *   **Footer:** 'ADLINK   Leading Edge AI Computing'.  **Right Side Content (Diagram):** *   **Top:** Shows the **SuperCAT** logo above a layered diagram (RTOS, VISION, DAQ) and an image of a black computer chassis and motherboard. *   **Middle:** A red arrow labeled '**APC-**' points left. To the right, text reads '**Value Series ATX Motherboard**' next to an Intel Core i5 logo. *   **Connections:** A vertical red line labeled '**EtherCAT**' connects to an image of a '**Servo Driver / Motor**'. *   **Bottom:** The line continues down to an image of a '**ECAT-IO Series Modular IO module**'. Below this is a box listing '**DIO**' and '**AIO**' with icons. *   **Note:** Bottom right text states '*Configurations vary by application'.](.apc-series-sales-deck-0410/slide-007.jpg)

## Slide 8

![This slide presents the 'Premium Semiconductor Control Platform' by ADLINK.  **Left Side Content:** *   **Title:** 'Premium Semiconductor Control Platform' *   **Description:** 'Ultra precision and force control engineered for advanced packaging and component handling' *   **Applications:** 'Advanced Die Bonding   Wafer Probing   High-End AOI' *   **Verified Platform:** 'Premium Controller (APC-M47 with Intel® Core™ i9-14900) + SuperCAT Ultimate Edition' *   **Key Features:**     *   'Soft Landing Control: Prevents die or bump damage'     *   'Sub-Micron Accuracy: Advanced 2D/3D dynamic error compensation'     *   'System Consolidation: Integrates motion, vision, and edge computing' *   **Footer:** 'ADLINK   Leading Edge AI Computing'  **Right Side Diagram:** *   **Top Component:** Shows the 'APC-M47' unit with 'SuperCAT' software layers (RTOS, DAQ, VISION, SUPERIO). Next to it is a 'Pro Series ATX Motherboard' and an 'Intel CORE i9' logo. *   **Connectivity:** Connected via 'EtherCAT' to a 'Servo Driver / Motor'. *   **Branch 1 (Left):** 'ECAT-TRG4 4-CH high-speed position compare trigger module'. Below it lists capabilities: 'Light', 'Camera', 'Pulse train motor driver'. *   **Branch 2 (Right):** 'ES Series EtherCAT Slice I/O Module'. Below it lists capabilities: 'RS-232 RS-485 Serial', 'TC/ RTD Hub', 'DIO', 'AIO'. *   **Note:** '*Configurations vary by' (text cuts off at the bottom).](.apc-series-sales-deck-0410/slide-008.jpg)

## Slide 9

![**Feature Matrix: APC-C47 vs. APC-M47** **Premium vs. Mainstream capabilities to accelerate your deployment decisions**  **Visual Overview:** *   **Left:** SuperCAT logo above a server tower graphic with layers labeled RTOS, DAP, VISION, INTERFACE, DRIVER. *   **Middle (Green Header):** Mainstream Electronics Automation Platform. Applications: SMT, Dispensing, Component Pick & Place. Image of a motherboard labeled APC-C47. *   **Right (Blue Header):** Premium Semiconductor Control Platform. Applications: Advanced Die Bonding, Wafer Probing, High-End AOI. Image of a circuit board labeled APC-M47. *   **Column Headers (Red Text):** SuperCAT Edition, Classic, Ultimate.  **Table Content:** *   **Control Mode:**     *   Soft Landing (Checkmark under Ultimate)     *   PT / PVT Motion Mode (Checkmark under Ultimate) *   **Motion:**     *   Linear / Circular / Helical Interpolation (Checkmarks under Classic, Ultimate)     *   E-Gear / Gantry (Checkmark under Ultimate)     *   2D / 3D Dynamic Error Compensation (Checkmarks under Classic, Ultimate)     *   Position Comparison Trigger Output (Checkmark under Ultimate) *   **Application:**     *   User RTOS Application Dev. Environment (Checkmarks under Classic, Ultimate)     *   User Task Framework (by API supported) (Checkmarks under Classic, Ultimate) *   **Utility & GUI:**     *   IO Address Mapping (Intel Core i5 logo under Classic, Intel Core i9 logo under Ultimate)     *   Simulation Axis and IO](.apc-series-sales-deck-0410/slide-009.jpg)

## Slide 10

![The slide features four vertical panels under the central title 'Application Scenarios,' each illustrating a specific industry:  *   **EV Battery:** A close-up of a green circuit board. *   **Semiconductor:** A machine applying a substance to a circuit board. *   **Optoelectronic:** A machine working on a strip of electronic components. *   **Humanoid Robot:** A robotic figure in a contemplative pose.  The footer text reads: 'ADLINK   Leading Edge AI Computing'.](.apc-series-sales-deck-0410/slide-010.jpg)

## Slide 11

![Centered on a grey background is a red parallelogram to the left of the stacked white text 'Success Story'. In the bottom left corner, the text reads 'ADLINK   Leading Edge AI' with 'Computing' directly below 'ADLINK'.](.apc-series-sales-deck-0410/slide-011.jpg)

## Slide 12

![Based on the provided image, here is the verbatim content of the slide:  **Title:** PCB Screen Printer  **Red Section (Left Side):** **Powered by:** *   Software-defined Motion Controller(APC-C47) *   EtherCAT Solutions (ES Series) *   EtherCAT Solutions (ECAT-4XMO)  **Customer Challenge:** Oversized 4U IPCs and complex PCIe wiring disrupted cabinet designs, while traditional motion card EOL (End-of-Life) issues threatened high-volume production  **ADLINK Solution & Value:** *   **Ultra-Compact Deployment:** Replaced bulky IPCs and physical motion cards with the APC-C47, shrinking cabinet size *   **IO Integration:** Combined SuperCAT with ECAT-TRG4 for high-speed 2D position triggering without complex wiring *   **Eliminate Vendor Lock-in:** Hardware-agnostic software architecture resolved EOL risks and reduced Total Cost of Ownership (TCO)  **Right Side (Image Labels):** *   (On the device image): SuperCAT *   **Software-defined Motion Controller**     APC-C47 *   **EtherCAT Solution**     ES Series *   **EtherCAT Solution**     ECAT-4XMO  **Footer:** ADLINK   Leading Edge AI Computing](.apc-series-sales-deck-0410/slide-012.jpg)

## Slide 13

![This slide is titled **'Wafer Dicing Machine'** in large white text against a background image of industrial machinery.  **Left Panel:** A red banner lists the hardware **'Powered by:'** *   **'Software-defined Motion Controller (APC-M47)'** *   **'Frame Grabber/Video Capture Card (PCIe-CPL64V Full)'** *   **'Multi-Function DAQ Card (PCIe-9121)'**  Below this is a paragraph: **'Integrated motion control and DAQ solutions ensure precise movement and detect the cutting tool to verify clean, accurate wafer dicing into individual dies.'**  Under the red heading **'Customer Challenges:'**: *   **'Compact equipment with EtherCAT solutions and needs higher accuracy'** *   **'Integrated with AOI inspection system for immediate defect detection'** *   **'2-ch at ≥62.5 kS/s per channel to detect potential defects on the cutting tool rotating (75 points/rev @ 50,000 RPM)'** *   **'2-ch at 10 kS/s per channel for vibration monitoring'** *   **'Vision system for wafer alignment, dicing guidance, and post-dicing inspection'**  Under the red heading **'ADLINK Solution & Value:'**: *   **'Integrated and Modular Solutions:'**     *   **'APC-M47 unifies SuperCAT SoftMotion, DAQ, and AOI in a single controller'**     *   **'- SuperCAT supports user-defined mapping functions for flexibility across machine type'** *   **'Precise Multi-channel Data Acquisition;'**     *   **'- Support 4-ch total 400kS/s for 120 sampling points of the cutting tool.'**     *   **'- Support 14-bit resolution for detecting minor cutting defects'**     *   **'- Support channel gain queue function to manage data'** *   **'High-throughput Image Capturing:'**     *   **'- Support CameraLink full camera with up to 850MB/s, lower CPU loading'**  **Right Panel:** A diagram illustrates the system architecture. At the top is a server unit labeled **'Software-defined Motion Controller APC-M47'** with stacked software layers (RTOS, SuperCAT, DAQ, AOI). Lines connect it to four columns of hardware below:  1.  **'EtherCAT Solution ES Series'** (with icons for AI/O, DIO, RS-232 RS-485 Serial, TC/RTD, Hub) 2.  **'EtherCAT Solution ECAT-4XMO'** (with icons for Pulse train motor driver, Camera & Light) 3.  **'Frame Grabber PCIe-CPL64V Full'** (with icon for Industrial Cameras and CameraLink logo) 4.  **'Multi-Function DAQ PCIe-9121'** (with text for Vibration Sensors / Spindle Encoder)  **Footer:** **'ADLINK   Leading Edge AI Computing'**](.apc-series-sales-deck-0410/slide-013.jpg)

## Slide 14

![**Die Bonder**  **Powered by:** *   Software-defined Motion Controller (APC-M47) *   Frame Grabbers / Video Capture Cards (PCIe-CPL64V Full)  Precise die alignment and stable bonding force are essential for ensuring reliable die attach performance and preventing bump or die damage  **Customer Challenges:** *   Real-time vision-motion synchronization for die positioning *   Stable Z-axis pressure control (20-30N) during bonding to ensure consistent attach force and prevent die or bump damage *   Integration of multi-axis motion and vision inspection  **ADLINK Solution & Value:** *   Synchronized Vision-Motion Control: SuperCAT controller and CPL64V frame grabber synchronize image capture and motion execution for accurate die alignment *   Dynamic Compensation & Soft-Landing: SuperCAT provides 1D/2D position error compensation and Z-axis soft-landing control to ensure smooth contact and prevent die or bump damage *   High-Bandwidth, Reliable Vision Interface: CPL64V supports up to 850 MB/s DMA transfer with PoCL-safe power and stable image capture for high-speed inspection  **Step 1** **Camera Positioning** Capture and align die position with PCIe-CPL64V Frame Grabber for precise placement.  **Step 2** **Soft-Landing Control** Perform smooth Z-axis approach and stable bonding using SuperCAT SoftMotion.  **Step 3** **Post-Bond AOI** Inspect bonding quality with synchronized vision capture via CPL64V Frame Grabber.  Software-defined Motion Controller APC-M47  Frame Grabbers PCIe-CPL64V Full  ADLINK   Leading Edge AI Computing](.apc-series-sales-deck-0410/slide-014.jpg)

## Slide 15

![**Title:** Wafer Probing Machine  **Left Panel (Text & Background):** *   **Powered by:**     *   Software-defined Motion Controller (APC-M47),     *   Frame Grabber/Video Capture Card (PCIe-CPL64V Full)     *   Multi-Function DAQ Card (PCIe-9121) *   **Context:** Precise probe-pad alignment and real-time probe condition monitoring are critical to ensure accurate electrical contact and testing reliability. *   **Customer Challenges:**     *   2-ch AO for displacement control and camera signal trigger     *   Precise Probe-pad alignment     *   Probe condition inspection *   **ADLINK Solution & Value:**     *   **Integrated Motion and Trigger Control:**         *   - PCIe-9121 supports 16-ch multi-function DAQ card, ±10 V, 250 KS/s, dual AO outputs     *   **Real-time Image Transmission:**         *   - CPL64V frame grabber supports up to 850MB/s data transfer     *   **Simple Setup:**         *   - PoCL support simplifies camera power delivery and cabling         *   - Support SDK for AE/FAE development *   **Footer:** ADLINK   Leading Edge AI Computing  **Right Panel (System Diagram & Process Steps):** *   **System Architecture:**     *   Top unit: 'Software-defined Motion Controller APC-M47'     *   Left connection: 'Frame Grabber PCIe-CPL64V Full' connected to 'Industrial Cameras'     *   Right connection: 'Multi-Function DAQ PCIe-9121' connected to 'Displacement Control Camera Trigger' *   **Process Steps:**     *   **Step 1 Probe-pad Alignment:** Align probe-to-pad position with PCIe-CPL64V for precise electrical contact placement.     *   **Step 2 Probe Contact & Test:** Execute precise XYZ movement via SuperCAT SoftMotion with PCIe-9121 AO control.     *   **Step 3 Probe Condition Inspection:** Monitor probe tip condition in real-time via synchronized CPL64V vision capture.](.apc-series-sales-deck-0410/slide-015.jpg)

## Slide 16

![The slide is titled 'Why ADLINK'. Below the title are three distinct sections:  *   **Pre-Validated Motion & Edge Vision Synergy** *   **Unified APS API Architecture** (displayed under a gear icon labeled 'API') *   **Guaranteed Longevity & Global Supply Chain**  The footer text is 'ADLINK   Leading Edge AI Computing'.](.apc-series-sales-deck-0410/slide-016.jpg)

## Slide 17

![**Slide Title:** Contact Information  **Contact Details:** *   **Product Manager:** Ray Lin     *   **Email:** Ray.lin@adlinktech.com     *   **Phone:** +886-3-2165088 ext.8521 *   **Marketing Manager:** Jessie You     *   **Email:** Jessie.You@adlinktech.com     *   **Phone:** +886-3-2165088 ext.7706  **Visual Elements:** *   On the right, there is a 3D graphic of a server chassis labeled 'ADLINK'. *   Above the server are floating translucent blocks representing software layers:     *   Top red block: **RTOS**     *   Middle layer blocks: **DAQ** (green), **VISION** (blue), **HYPERVISOR** (cyan)     *   Bottom layer blocks: **Windows** (appears twice) *   Text label next to the blocks: **SuperCAT**  **Footer:** *   Bottom Left: **ADLINK   Leading Edge AI Computing** *   Bottom Right: 23](.apc-series-sales-deck-0410/slide-017.jpg)

## Slide 18

![This slide features a large red rectangular area. In the upper left corner, white text reads 'Thank you.' Below this is a repeating geometric pattern of white triangles.  At the bottom left of the red area, white text displays: 'ADLINK Technology,' 'Inc.' 'No. 66, Huaya 1st Rd., Guishan Dist.,' 'Taoyuan City 333411, Taiwan'  To the right of the address, contact information is listed: 'Tel: +886-3-216-5088' 'Fax: +886-3-328-5706'  On the bottom right, social media icons (Twitter, Facebook, YouTube, LinkedIn) appear next to the website 'www.adlinktech.com'.  Outside the red box at the very bottom left, grey text reads: 'ADLINK   Leading Edge AI Computing'](.apc-series-sales-deck-0410/slide-018.jpg)

## Slide 19

![The slide features a solid grey background. In the center, there is a red parallelogram followed by the white text 'Function Highlights'. In the bottom-left corner, the text reads 'ADLINK   Leading Edge AI Computing'.](.apc-series-sales-deck-0410/slide-019.jpg)

## Slide 20

![The slide is titled 'Open Real-Time RTOS: Stable Architecture for Production'.  **Left Column:** *   **Red Box:** 'Prevent Windows Interruption' and 'Improve Execution Stability' (with checkmarks). *   **Pain Point:** 'Windows latency limits high-speed precision' *   **How It Works:**     *   'Open RTOS Core: Dedicated cores for custom logic'     *   'Flexible Hardware: Direct assignment (LAN, COM, PCIe)'     *   'Cross-OS Sync: Shared Memory & 256 Event Triggers'     *   'Native Dev Environment: Visual Studio GDB support'  **Right Column:** *   **Top Screenshot:** Displays 'SuperCAT RTOS 1.3.11' with tabs for 'CPU Assignment', 'NIC Assignment', 'Device Assignment', 'Share Memory Assignment', 'RT-Linux System Monitor', 'Advanced Settings', and 'Jitter'. A red box highlights the 'RTOS Device' list: 'Realtime OS Devices', 'RTOS Ethernet Controller #1', 'RTOS Serial port (COM1)', 'SuperCAT RTOS EtherCAT Controller #1', and 'RTOS PCI(e) Controller #1'. *   **Middle Graphics:** Icons representing a HMI screen and industrial hardware. *   **Bottom Diagram:** Shows the architecture split between 'WINDOWS' and 'RTOS'.     *   **WINDOWS:** Green block 'USER Application' (CPU #N-1..M).     *   **RTOS:** Red block 'SuperCAT' (CPU #0) and 'RTOS Service', Green block 'USER RTOS Application' (CPU #1..N).     *   **Connections:** 'APS SDK' and 'Data File Event' arrows connect the OS blocks.     *   **Outputs:** 'EtherCAT' leads to 'Servo Motors / IOs'. 'COM NIC PCI(e)' leads to 'Related Devices'.     *   **Legend:** 'By User' (Green) and 'By ADLINK' (Red).  **Footer:** 'ADLINK   Leading Edge AI Computing'](.apc-series-sales-deck-0410/slide-020.jpg)

## Slide 21

![**Slide Title:** Dynamic Error Compensation: High-Precision 3D Motion Correction  **Left Column Content:** *   **Red Banner:**     *   Exclusive 3D Correction     *   Stackable Compensation Modes *   **Pain Point:** Mechanical errors and multi-axis coupling bottleneck sub-3μm *   **How It Works:**     *   Spatial Compensation: Full 1D/2D/3D error correction     *   Orthogonal Compensation: Resolve multi-axis alignment errors     *   High-Res Mapping: Up to 100 compensation points per dimension     *   Advanced Smoothing: Eliminate velocity changes and vibrations  **Right Column Content (Table & Diagram):** *   **Table Headers:** Type/Index, Error CompType, Align CompType, Slot, Axis Array, Error Enable, Align *   **Table Data Rows:** 3D, 2D, 1D (with associated numerical values and arrays like (-99, -99, -99)) *   **Diagram Labels:**     *   Feedback of Y axis, Feedback of X axis, Correction table for X axis     *   Feedback of Y axis, Feedback of X axis, Correction table for Y axis     *   Y axis, X axis     *   End position B, Start position A     *   Before correction, After correction     *   Mechanical errors of the two axes as mapped by an external device (-1,+2) (-2,+4) (2,+3)  **Footer:** ADLINK   Leading Edge AI Computing](.apc-series-sales-deck-0410/slide-021.jpg)

## Slide 22

![**Dual Master Architecture: Split Workloads for Maximum UPH and Cost Efficiency**  **(Red Box)** *   Boost Machine UPH *   Optimize Hardware Costs *   Unify System Control  **(Left Column Text)** **Pain Point** Single-master bandwidth limits severely restrict machine UPH  **How It Works** *   **Functional Separation:** Segregate critical processes from routine tasks *   **High performance Master:** Drive real-time algorithms and high-speed motion *   **Standard Master:** Handle general I/O, material loading, and data reporting *   **Single Application Control:** Manage both networks via single application  **(Right Column Diagram & Labels)** *   High-Performance Master *   Standard Master *   Critical Processes Real-Time Algorithms *   Routine Handling Data Reporting *   Dual Master *   Soft-landing *   Load & Unload  **(Footer)** ADLINK   Leading Edge AI Computing](.apc-series-sales-deck-0410/slide-022.jpg)

## Slide 23

![**Title:** Soft Landing: Precision Position & Force Control for Pick & Place  **Red Banner:** *   No Supply Chain Issue *   Maximize Yield Rate *   Stable Low-Force Control  **Left Column:** *   **Pain Point**     Traditional systems fail to integrate position and force control, risking workpiece damage or increasing hardware costs *   **How It Works**     *   **Real-Time Mode Switching:** Dynamically switch control modes within a single program     *   **Ultra-Low Jitter Execution:** Execute tasks with ( 20 µs jitter to eliminate delay impacts     *   **Program-Ready Profiles:** Easily define custom 3-stage motion profiles  **Right Column (Graph/Diagram):** *   Chart #1 *   Customer Case: CoWoS Bonding *   Quick Movement *   A *   B *   C *   Quick Movement *   Soft-landing *   Press & Hold  **Footer:** ADLINK   Leading Edge AI Computing](.apc-series-sales-deck-0410/slide-023.jpg)

## Slide 24

![**Title:** IO Address Mapping: Change Hardware Without Rewriting Code  **Red Section (Left):** *   Simplified Coding *   Third-Party Integration  **Pain Point (Grey Box):** *   Hardware topology changes traditionally force engineers to rewrite software code, greatly increasing development costs  **How It Works (Grey Box):** *   **User-Defined Mapping:** Insert a virtual mapping layer between physical IOs and software logic *   **Massive IO Capacity:** Independently process up to 65,536 points for both input and output *   **Read/Write All at Once:** Process all IO data together to increase access speed  **Diagram (Right Side):** *   **Top Diagram:** Shows 'Master' connected to three boxes:     *   **Slave 0 (servo motor):** Lists addresses like 'TargetPos: 607Ah 32bit', 'ActualPos: 0x6064 32bit', 'MotionOutput: 60FEh 32bit', 'MotionInput: 60F0h 32bit', 'ModeOperation: 6060h 8bit', 'modeDisp: 6061h 8bit', 'TouchProbefunc: 60B8h 16bit', 'TouchProbePos: 60B9h 16bit', 'EnCode: 603Fh 16bit'.     *   **Slave 1 (DIO):** Lists 'DIO15: 7002h:01 16bit', 'DIO16: 6002h:01 16bit'.     *   **Slave 2 (A/16AO2):** Lists addresses like 'AICH0: 7003h:01 16bit', 'AICH1: 5003h:01 16bit', up to 'AICH15: 5003h:16 16bit'. *   **Middle Diagram:** Shows 'Input Address space' and 'Output Address space' with 'Slave0', 'Slave1', 'Slave2', 'Slave3'.     *   **Input Address space:** Slave0 MotionInput: 60F0h 32bit, Slave1 DIO15: 6002h:01 16bit, Slave2 AICH0: 5003h:01 16bit, Slave3 MotionOutput: 60FEh 32bit.     *   **Output Address space:** Slave0 MotionOutput: 60FEh 32bit, Slave1 DIO15: 7002h:01 16bit, Slave2 AICH0: 5003h:01 16bit, Slave3 MotionInput: 60F0h 32bit. *   **Bottom Screenshot:** Title 'Address Mapping EM-FA00 SuperCAT No 1'. Button 'Control'. Radio buttons 'Display and Configuration Mode' with 'Decimal' selected.     *   **Table Headers:** Address (Byte), Slave ID, Device Name, Bit Length, OD Index, OD Sub-index.     *   **Table Rows:**         *   0, 0, Inputs_Axis0.MotionInput0, 32, 0x60FD, 0         *   4, 0, Inputs_Axis1.MotionInput1, 32, 0x68FD, 0         *   8, 0, Inputs_Axis2.MotionInput2, 32, 0x70FD, 0         *   12, 0, Inputs_Axis3.MotionInput3, 32, 0x78FD, 0  **Footer:** ADLINK   Leading Edge AI Computing](.apc-series-sales-deck-0410/slide-024.jpg)

## Slide 25

![**Title:** APS Log & Viewer: Built-in Motion History for Rapid Troubleshooting  **Red Box:** *   Easy Diagnosis *   Quick Troubleshooting *   Auto Data Management  **Pain Point** Without historical execution trails, engineers waste countless hours blindly guessing root causes when a machine fails  **How It Works** *   **Built-in Command Logging:** Automatically record motion conditions and axis parameters *   **Smart Data Filtering:** Filter logs by specific applications and axes to isolate events *   **Automated Log Management:** Auto-retain recent data and delete old logs to optimize storage  **Footer:** ADLINK   Leading Edge AI Computing](.apc-series-sales-deck-0410/slide-025.jpg)

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