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- 14 Expansion Slots: Supports up to 14 ISA interface cards, enabling extensive system expansion and peripheral integration.
- 4-Layer PCB Design: Multi-layer construction ensures improved signal integrity, reduced crosstalk, and enhanced electrical performance compared to 2-layer designs.
- Passive Backplane Architecture: No active components; relies on the CPU card or single-board computer (SBC) for system control, ensuring high reliability and minimal failure points.
- ISA Bus Compatibility: Fully compliant with the Industry Standard Architecture (ISA) bus specification, supporting 8-bit and 16-bit ISA cards.
- Industrial-Grade Design: Engineered for continuous operation in demanding environments such as factory automation, process control, and legacy equipment maintenance.
- Compact Dimensions: 310 mm (length) x 174 mm (width) form factor allows integration into mid-sized industrial chassis.
- Stable Power Distribution: Optimized power and ground planes across four layers ensure consistent voltage delivery to all slots.
- High Signal Integrity: The 4-layer PCB layout minimizes electromagnetic interference (EMI) and supports stable data transmission across all slots.
- Legacy System Support: Ideal for maintaining or upgrading existing ISA-based systems without redesigning the entire platform.
- Ease of Integration: Standardized mechanical layout and connector spacing for compatibility with a wide range of industrial enclosures and SBCs.
- 4-Layer PCB Design: Multi-layer construction ensures improved signal integrity, reduced crosstalk, and enhanced electrical performance compared to 2-layer designs.
- Passive Backplane Architecture: No active components; relies on the CPU card or single-board computer (SBC) for system control, ensuring high reliability and minimal failure points.
- ISA Bus Compatibility: Fully compliant with the Industry Standard Architecture (ISA) bus specification, supporting 8-bit and 16-bit ISA cards.
- Industrial-Grade Design: Engineered for continuous operation in demanding environments such as factory automation, process control, and legacy equipment maintenance.
- Compact Dimensions: 310 mm (length) x 174 mm (width) form factor allows integration into mid-sized industrial chassis.
- Stable Power Distribution: Optimized power and ground planes across four layers ensure consistent voltage delivery to all slots.
- High Signal Integrity: The 4-layer PCB layout minimizes electromagnetic interference (EMI) and supports stable data transmission across all slots.
- Legacy System Support: Ideal for maintaining or upgrading existing ISA-based systems without redesigning the entire platform.
- Ease of Integration: Standardized mechanical layout and connector spacing for compatibility with a wide range of industrial enclosures and SBCs.
1. Product Overview
Product Name: 14-Slot 4-Layer Passive Backplane (ISA Bus)
Model: AP-SL14
Series: AP-SL Series – Industrial Passive Backplane Systems
Article Number: AP-SL14
Manufacturer: [Manufacturer not specified – typically used in industrial PC and embedded system integration environments]
The AP-SL14 is a high-performance 14-slot, 4-layer passive backplane designed for ISA bus-based industrial computer systems. It provides a robust and reliable platform for system integrators, OEMs, and industrial automation engineers who require stable, long-life support for legacy ISA expansion cards. With a compact form factor of 310 mm x 174 mm, the AP-SL14 offers a balance between slot density and physical footprint, making it suitable for rackmount, wall-mount, or enclosure-based industrial PC chassis.
2. Key Features
- 14 Expansion Slots: Supports up to 14 ISA interface cards, enabling extensive system expansion and peripheral integration.
- 4-Layer PCB Design: Multi-layer construction ensures improved signal integrity, reduced crosstalk, and enhanced electrical performance compared to 2-layer designs.
- Passive Backplane Architecture: No active components; relies on the CPU card or single-board computer (SBC) for system control, ensuring high reliability and minimal failure points.
- ISA Bus Compatibility: Fully compliant with the Industry Standard Architecture (ISA) bus specification, supporting 8-bit and 16-bit ISA cards.
- Industrial-Grade Design: Engineered for continuous operation in demanding environments such as factory automation, process control, and legacy equipment maintenance.
- Compact Dimensions: 310 mm (length) x 174 mm (width) form factor allows integration into mid-sized industrial chassis.
- Stable Power Distribution: Optimized power and ground planes across four layers ensure consistent voltage delivery to all slots.
- High Signal Integrity: The 4-layer PCB layout minimizes electromagnetic interference (EMI) and supports stable data transmission across all slots.
- Legacy System Support: Ideal for maintaining or upgrading existing ISA-based systems without redesigning the entire platform.
- Ease of Integration: Standardized mechanical layout and connector spacing for compatibility with a wide range of industrial enclosures and SBCs.
3. Technical Specifications
- Model: AP-SL14
- Bus Type: ISA (Industry Standard Architecture)
- Number of Slots: 14 total ISA slots
- PCB Layers: 4-layer printed circuit board
- Dimensions: 310 mm (L) × 174 mm (W)
- Material: High-quality FR-4 industrial-grade PCB substrate
- Connector Type: Standard ISA edge connectors (gold-plated contacts for durability and conductivity)
- Power Distribution: Integrated power and ground planes for stable voltage delivery
- Operating Voltage: Typically +5V, ±12V, -5V (supplied via power connector from PSU or SBC)
- Signal Integrity: Controlled impedance routing for ISA signal lines
- Mounting Holes: Pre-drilled mounting holes for chassis or rack installation
- Weight: Approx. 0.5–0.8 kg (depending on connector configuration and PCB thickness)
- PCB Thickness: Typically 1.6 mm (standard industrial PCB thickness)
- Operating Temperature Range: 0°C to 60°C (typical industrial range)
- Storage Temperature Range: -20°C to 85°C
- Humidity Tolerance: 5%–95% non-condensing
- Color: Green solder mask with white silkscreen labeling
- Compliance: RoHS-compliant materials and lead-free soldering processes
4. Functionality
The AP-SL14 functions as a passive interconnect platform for ISA-based industrial computer systems. It provides the physical and electrical interface between the CPU card (SBC) and multiple ISA expansion cards such as data acquisition boards, motion controllers, communication interfaces, and industrial I/O modules.
How It Works:
- The CPU card or SBC plugs into one of the ISA slots (typically a system slot with a dedicated connector).
- The backplane distributes the ISA bus signals, power, and ground lines to all other slots.
- Each slot can host an ISA peripheral card, which communicates with the CPU card through the shared bus.
- The passive design means there are no active components (e.g., chipsets or controllers) on the backplane; all logic and control are handled by the CPU card.
Use Cases and Applications:
- Industrial automation systems requiring multiple ISA expansion cards
- Legacy equipment maintenance and modernization
- Data acquisition and control systems
- Machine vision and motion control platforms
- Embedded systems with ISA-based I/O modules
- Laboratory instrumentation and test equipment
- Custom-built industrial PCs for process control
Compatibility:
- Compatible with standard ISA SBCs and CPU cards
- Supports both 8-bit and 16-bit ISA cards
- Fits standard industrial PC chassis designed for passive backplanes
- Compatible with AT or ATX power supplies (depending on chassis configuration)
5. Components & Accessories
Included Items:
- AP-SL14 14-slot passive backplane (main unit)
- Mounting screws or standoffs (depending on packaging)
- Product documentation or installation guide (if provided by manufacturer)
Optional Add-ons and Accessories:
- Industrial chassis compatible with 310 mm x 174 mm backplane form factor
- Power supply units (AT or ATX type)
- CPU cards or single-board computers (ISA interface)
- Ribbon cables or extender cards for diagnostics
- Cooling fans or airflow management accessories for enclosure integration
Connectors and Interfaces:
- 14 × ISA edge connectors (gold-plated)
- Power input connector (typically AT-style or terminal block)
- Grounding points for chassis connection
- Optional front-panel connectors depending on chassis integration
6. Installation & Setup
Requirements:
- Compatible industrial chassis with mounting points for 310 mm × 174 mm backplane
- Appropriate power supply (AT or ATX) providing +5V, ±12V, and -5V rails
- CPU card or SBC with ISA interface
- ISA expansion cards as required by the application
Mounting Options:
- Horizontal or vertical mounting within industrial PC chassis
- Secured using pre-drilled mounting holes and standoffs
- Ensure adequate airflow and cooling within the enclosure
Configuration Steps:
1. Power off the system and disconnect all power sources.
2. Mount the AP-SL14 backplane securely inside the chassis.
3. Connect the power supply to the backplane’s power connector.
4. Insert the CPU card into the designated system slot.
5. Install ISA expansion cards into the remaining slots.
6. Verify proper seating of all connectors and cards.
7. Reconnect power and perform system testing.
Safety Considerations:
- Handle the backplane using ESD protection (anti-static wrist strap).
- Avoid bending or flexing the PCB during installation.
- Ensure correct power polarity and voltage levels before powering on.
7. Performance & Capabilities
Bus Performance:
- Supports standard ISA bus data rates (8 MHz nominal clock frequency).
- 8-bit and 16-bit data transfer compatibility.
- Reliable signal propagation across all 14 slots due to 4-layer PCB design.
Capacity:
- Accommodates up to 14 ISA expansion cards simultaneously.
- Supports mixed configurations of I/O, communication, and control cards.
Efficiency:
- Passive design ensures zero power consumption by the backplane itself.
- Optimized trace routing minimizes signal degradation and noise.
- Stable power distribution reduces voltage drop across slots.
Limitations:
- Limited to ISA bus bandwidth and signaling standards.
- Not compatible with PCI, PCIe, or modern high-speed buses.
- Dependent on CPU card capabilities for overall system performance.
Reliability:
- Passive architecture minimizes failure points.
- Industrial-grade materials ensure long operational life.
- Suitable for 24/7 operation in controlled environments.
8. Standards & Compliance
- Bus Standard: Fully compliant with ISA (Industry Standard Architecture) specifications.
- Electrical Compliance: Meets standard ISA voltage and signal level requirements.
- Environmental Compliance: RoHS-compliant, lead-free manufacturing process.
- Quality Standards: Manufactured under ISO 9001 quality management systems (typical for industrial PCB production).
- Safety Compliance: Designed to meet CE and FCC Class A requirements for industrial equipment (depending on final system integration).
- Industry Standards: Compatible with PICMG passive backplane mechanical guidelines for ISA-based systems.
9. Additional Information
Warranty:
- Standard manufacturer warranty (typically 1–3 years depending on supplier).
- Covers defects in materials and workmanship under normal operating conditions.
Support:
- Technical documentation and integration guides available from manufacturer or distributor.
- Engineering support for system configuration and compatibility inquiries.
Maintenance:
- Minimal maintenance required due to passive design.
- Periodic inspection recommended to ensure connectors remain clean and free of oxidation.
- Avoid exposure to excessive dust, moisture, or vibration.
Updates and Lifecycle:
- Designed for long-term availability to support legacy ISA systems.
- Stable product lifecycle ensures consistent supply for industrial customers.
- No firmware or software updates required (hardware-only component).
Summary:
The AP-SL14 14-Slot 4-Layer Passive Backplane (ISA Bus) is a robust, industrial-grade interconnect platform engineered for legacy and embedded computing environments. Its 4-layer PCB design enhances signal integrity and power stability, while the 14-slot configuration provides extensive expansion capability for ISA-based systems. With compact dimensions (310 mm × 174 mm), durable FR-4 construction, and full ISA compliance, the AP-SL14 is ideal for system integrators maintaining or upgrading industrial PCs, automation controllers, and specialized instrumentation platforms. Its passive architecture ensures long-term reliability, minimal maintenance, and seamless compatibility with standard ISA CPU cards and expansion modules.
Product Name: 14-Slot 4-Layer Passive Backplane (ISA Bus)
Model: AP-SL14
Series: AP-SL Series – Industrial Passive Backplane Systems
Article Number: AP-SL14
Manufacturer: [Manufacturer not specified – typically used in industrial PC and embedded system integration environments]
The AP-SL14 is a high-performance 14-slot, 4-layer passive backplane designed for ISA bus-based industrial computer systems. It provides a robust and reliable platform for system integrators, OEMs, and industrial automation engineers who require stable, long-life support for legacy ISA expansion cards. With a compact form factor of 310 mm x 174 mm, the AP-SL14 offers a balance between slot density and physical footprint, making it suitable for rackmount, wall-mount, or enclosure-based industrial PC chassis.
2. Key Features
- 14 Expansion Slots: Supports up to 14 ISA interface cards, enabling extensive system expansion and peripheral integration.
- 4-Layer PCB Design: Multi-layer construction ensures improved signal integrity, reduced crosstalk, and enhanced electrical performance compared to 2-layer designs.
- Passive Backplane Architecture: No active components; relies on the CPU card or single-board computer (SBC) for system control, ensuring high reliability and minimal failure points.
- ISA Bus Compatibility: Fully compliant with the Industry Standard Architecture (ISA) bus specification, supporting 8-bit and 16-bit ISA cards.
- Industrial-Grade Design: Engineered for continuous operation in demanding environments such as factory automation, process control, and legacy equipment maintenance.
- Compact Dimensions: 310 mm (length) x 174 mm (width) form factor allows integration into mid-sized industrial chassis.
- Stable Power Distribution: Optimized power and ground planes across four layers ensure consistent voltage delivery to all slots.
- High Signal Integrity: The 4-layer PCB layout minimizes electromagnetic interference (EMI) and supports stable data transmission across all slots.
- Legacy System Support: Ideal for maintaining or upgrading existing ISA-based systems without redesigning the entire platform.
- Ease of Integration: Standardized mechanical layout and connector spacing for compatibility with a wide range of industrial enclosures and SBCs.
3. Technical Specifications
- Model: AP-SL14
- Bus Type: ISA (Industry Standard Architecture)
- Number of Slots: 14 total ISA slots
- PCB Layers: 4-layer printed circuit board
- Dimensions: 310 mm (L) × 174 mm (W)
- Material: High-quality FR-4 industrial-grade PCB substrate
- Connector Type: Standard ISA edge connectors (gold-plated contacts for durability and conductivity)
- Power Distribution: Integrated power and ground planes for stable voltage delivery
- Operating Voltage: Typically +5V, ±12V, -5V (supplied via power connector from PSU or SBC)
- Signal Integrity: Controlled impedance routing for ISA signal lines
- Mounting Holes: Pre-drilled mounting holes for chassis or rack installation
- Weight: Approx. 0.5–0.8 kg (depending on connector configuration and PCB thickness)
- PCB Thickness: Typically 1.6 mm (standard industrial PCB thickness)
- Operating Temperature Range: 0°C to 60°C (typical industrial range)
- Storage Temperature Range: -20°C to 85°C
- Humidity Tolerance: 5%–95% non-condensing
- Color: Green solder mask with white silkscreen labeling
- Compliance: RoHS-compliant materials and lead-free soldering processes
4. Functionality
The AP-SL14 functions as a passive interconnect platform for ISA-based industrial computer systems. It provides the physical and electrical interface between the CPU card (SBC) and multiple ISA expansion cards such as data acquisition boards, motion controllers, communication interfaces, and industrial I/O modules.
How It Works:
- The CPU card or SBC plugs into one of the ISA slots (typically a system slot with a dedicated connector).
- The backplane distributes the ISA bus signals, power, and ground lines to all other slots.
- Each slot can host an ISA peripheral card, which communicates with the CPU card through the shared bus.
- The passive design means there are no active components (e.g., chipsets or controllers) on the backplane; all logic and control are handled by the CPU card.
Use Cases and Applications:
- Industrial automation systems requiring multiple ISA expansion cards
- Legacy equipment maintenance and modernization
- Data acquisition and control systems
- Machine vision and motion control platforms
- Embedded systems with ISA-based I/O modules
- Laboratory instrumentation and test equipment
- Custom-built industrial PCs for process control
Compatibility:
- Compatible with standard ISA SBCs and CPU cards
- Supports both 8-bit and 16-bit ISA cards
- Fits standard industrial PC chassis designed for passive backplanes
- Compatible with AT or ATX power supplies (depending on chassis configuration)
5. Components & Accessories
Included Items:
- AP-SL14 14-slot passive backplane (main unit)
- Mounting screws or standoffs (depending on packaging)
- Product documentation or installation guide (if provided by manufacturer)
Optional Add-ons and Accessories:
- Industrial chassis compatible with 310 mm x 174 mm backplane form factor
- Power supply units (AT or ATX type)
- CPU cards or single-board computers (ISA interface)
- Ribbon cables or extender cards for diagnostics
- Cooling fans or airflow management accessories for enclosure integration
Connectors and Interfaces:
- 14 × ISA edge connectors (gold-plated)
- Power input connector (typically AT-style or terminal block)
- Grounding points for chassis connection
- Optional front-panel connectors depending on chassis integration
6. Installation & Setup
Requirements:
- Compatible industrial chassis with mounting points for 310 mm × 174 mm backplane
- Appropriate power supply (AT or ATX) providing +5V, ±12V, and -5V rails
- CPU card or SBC with ISA interface
- ISA expansion cards as required by the application
Mounting Options:
- Horizontal or vertical mounting within industrial PC chassis
- Secured using pre-drilled mounting holes and standoffs
- Ensure adequate airflow and cooling within the enclosure
Configuration Steps:
1. Power off the system and disconnect all power sources.
2. Mount the AP-SL14 backplane securely inside the chassis.
3. Connect the power supply to the backplane’s power connector.
4. Insert the CPU card into the designated system slot.
5. Install ISA expansion cards into the remaining slots.
6. Verify proper seating of all connectors and cards.
7. Reconnect power and perform system testing.
Safety Considerations:
- Handle the backplane using ESD protection (anti-static wrist strap).
- Avoid bending or flexing the PCB during installation.
- Ensure correct power polarity and voltage levels before powering on.
7. Performance & Capabilities
Bus Performance:
- Supports standard ISA bus data rates (8 MHz nominal clock frequency).
- 8-bit and 16-bit data transfer compatibility.
- Reliable signal propagation across all 14 slots due to 4-layer PCB design.
Capacity:
- Accommodates up to 14 ISA expansion cards simultaneously.
- Supports mixed configurations of I/O, communication, and control cards.
Efficiency:
- Passive design ensures zero power consumption by the backplane itself.
- Optimized trace routing minimizes signal degradation and noise.
- Stable power distribution reduces voltage drop across slots.
Limitations:
- Limited to ISA bus bandwidth and signaling standards.
- Not compatible with PCI, PCIe, or modern high-speed buses.
- Dependent on CPU card capabilities for overall system performance.
Reliability:
- Passive architecture minimizes failure points.
- Industrial-grade materials ensure long operational life.
- Suitable for 24/7 operation in controlled environments.
8. Standards & Compliance
- Bus Standard: Fully compliant with ISA (Industry Standard Architecture) specifications.
- Electrical Compliance: Meets standard ISA voltage and signal level requirements.
- Environmental Compliance: RoHS-compliant, lead-free manufacturing process.
- Quality Standards: Manufactured under ISO 9001 quality management systems (typical for industrial PCB production).
- Safety Compliance: Designed to meet CE and FCC Class A requirements for industrial equipment (depending on final system integration).
- Industry Standards: Compatible with PICMG passive backplane mechanical guidelines for ISA-based systems.
9. Additional Information
Warranty:
- Standard manufacturer warranty (typically 1–3 years depending on supplier).
- Covers defects in materials and workmanship under normal operating conditions.
Support:
- Technical documentation and integration guides available from manufacturer or distributor.
- Engineering support for system configuration and compatibility inquiries.
Maintenance:
- Minimal maintenance required due to passive design.
- Periodic inspection recommended to ensure connectors remain clean and free of oxidation.
- Avoid exposure to excessive dust, moisture, or vibration.
Updates and Lifecycle:
- Designed for long-term availability to support legacy ISA systems.
- Stable product lifecycle ensures consistent supply for industrial customers.
- No firmware or software updates required (hardware-only component).
Summary:
The AP-SL14 14-Slot 4-Layer Passive Backplane (ISA Bus) is a robust, industrial-grade interconnect platform engineered for legacy and embedded computing environments. Its 4-layer PCB design enhances signal integrity and power stability, while the 14-slot configuration provides extensive expansion capability for ISA-based systems. With compact dimensions (310 mm × 174 mm), durable FR-4 construction, and full ISA compliance, the AP-SL14 is ideal for system integrators maintaining or upgrading industrial PCs, automation controllers, and specialized instrumentation platforms. Its passive architecture ensures long-term reliability, minimal maintenance, and seamless compatibility with standard ISA CPU cards and expansion modules.
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