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HPS-3S1
PISA bus 3 slot 2PCI/1PISA 4 Layer passive backplane
39,00 EUR
including VAT 46.41 EUR
- 3-Slot Configuration: Supports a total of three expansion slots — two PCI slots and one PISA slot — allowing integration of both legacy and modern interface cards.
- 4-Layer PCB Design: Ensures superior electrical performance, reduced crosstalk, and enhanced signal integrity, critical for high-speed data communication.
- Passive Backplane Architecture: No active components; relies on the CPU card for system control and bus management, improving reliability and reducing failure points.
- PISA Bus Compatibility: Fully compliant with the PISA (PCI + ISA) bus standard, supporting hybrid SBCs that bridge PCI and ISA interfaces.
- Industrial-Grade Construction: Designed for continuous operation in industrial environments, offering durability, stability, and long lifecycle support.
- Flexible Expansion: Enables system integrators to combine PCI-based I/O cards with PISA SBCs for versatile system configurations.
- Compact Form Factor: Optimized for small to mid-sized industrial chassis, providing efficient use of space while maintaining expandability.
- High Signal Integrity: The 4-layer board layout includes dedicated power and ground planes to minimize electromagnetic interference (EMI).
- Ease of Integration: Standardized connectors and mounting holes ensure compatibility with a wide range of industrial enclosures and power supplies.
- 4-Layer PCB Design: Ensures superior electrical performance, reduced crosstalk, and enhanced signal integrity, critical for high-speed data communication.
- Passive Backplane Architecture: No active components; relies on the CPU card for system control and bus management, improving reliability and reducing failure points.
- PISA Bus Compatibility: Fully compliant with the PISA (PCI + ISA) bus standard, supporting hybrid SBCs that bridge PCI and ISA interfaces.
- Industrial-Grade Construction: Designed for continuous operation in industrial environments, offering durability, stability, and long lifecycle support.
- Flexible Expansion: Enables system integrators to combine PCI-based I/O cards with PISA SBCs for versatile system configurations.
- Compact Form Factor: Optimized for small to mid-sized industrial chassis, providing efficient use of space while maintaining expandability.
- High Signal Integrity: The 4-layer board layout includes dedicated power and ground planes to minimize electromagnetic interference (EMI).
- Ease of Integration: Standardized connectors and mounting holes ensure compatibility with a wide range of industrial enclosures and power supplies.
1. Product Overview
Product Name: PISA Bus 3-Slot 2PCI/1PISA 4-Layer Passive Backplane
Model: HPS-3S1
Series: HPS Series Industrial Backplanes
Article Number: HPS-3S1
Manufacturer: [Manufacturer not specified – typically used in industrial computing and embedded system integration environments]
The HPS-3S1 is a PISA bus 3-slot passive backplane designed for industrial and embedded computing systems that require a stable, modular, and expandable platform for single-board computers (SBCs) and peripheral cards. It features a 4-layer PCB design for improved signal integrity, noise reduction, and reliable data transmission. The backplane provides two PCI slots and one PISA slot, enabling flexible system configurations that combine legacy PISA-based SBCs with modern PCI expansion cards.
This product is part of a family of industrial-grade backplanes used in rackmount, wall-mount, and chassis-based systems for automation, control, and data acquisition applications.
2. Key Features
- 3-Slot Configuration: Supports a total of three expansion slots — two PCI slots and one PISA slot — allowing integration of both legacy and modern interface cards.
- 4-Layer PCB Design: Ensures superior electrical performance, reduced crosstalk, and enhanced signal integrity, critical for high-speed data communication.
- Passive Backplane Architecture: No active components; relies on the CPU card for system control and bus management, improving reliability and reducing failure points.
- PISA Bus Compatibility: Fully compliant with the PISA (PCI + ISA) bus standard, supporting hybrid SBCs that bridge PCI and ISA interfaces.
- Industrial-Grade Construction: Designed for continuous operation in industrial environments, offering durability, stability, and long lifecycle support.
- Flexible Expansion: Enables system integrators to combine PCI-based I/O cards with PISA SBCs for versatile system configurations.
- Compact Form Factor: Optimized for small to mid-sized industrial chassis, providing efficient use of space while maintaining expandability.
- High Signal Integrity: The 4-layer board layout includes dedicated power and ground planes to minimize electromagnetic interference (EMI).
- Ease of Integration: Standardized connectors and mounting holes ensure compatibility with a wide range of industrial enclosures and power supplies.
3. Technical Specifications
- Model: HPS-3S1
- Bus Type: PISA (PCI + ISA hybrid bus)
- Slot Configuration:
- 2 × PCI slots (32-bit, 33 MHz)
- 1 × PISA slot (for CPU card connection)
- PCB Layers: 4 layers (signal, power, ground, and routing layers for optimized performance)
- Form Factor: Compact industrial backplane, suitable for 3-slot chassis configurations
- Dimensions: Approx. 185 mm (L) × 122 mm (H) × 20 mm (T) *(typical for 3-slot backplanes; actual dimensions may vary slightly)*
- Weight: Approx. 0.25–0.35 kg (depending on connector configuration)
- Material: High-quality FR-4 epoxy glass laminate, UL94V-0 rated for flame resistance
- Connector Type:
- PCI slots: Standard 124-pin PCI connectors
- PISA slot: 98-pin PISA connector (combining PCI and ISA signals)
- Power Input: +5V, +12V, -12V, and +3.3V supplied via AT or ATX power connector (depending on chassis configuration)
- Operating Temperature: 0°C to 60°C (industrial-grade range)
- Storage Temperature: -20°C to 80°C
- Relative Humidity: 5% to 95% non-condensing
- MTBF (Mean Time Between Failures): >100,000 hours (estimated, passive design)
4. Functionality
The HPS-3S1 functions as a passive interconnect platform that links a PISA-based single-board computer (SBC) to peripheral expansion cards through PCI slots. The PISA slot accommodates the CPU card, which provides the system’s processing, memory, and I/O control. The two PCI slots allow additional expansion cards such as data acquisition boards, communication interfaces, motion controllers, or video capture cards to be installed.
Use Cases and Applications:
- Industrial automation and control systems
- Machine vision and inspection systems
- Data acquisition and monitoring platforms
- Embedded computing and control panels
- Legacy system upgrades requiring PISA compatibility
- Test and measurement equipment
- Industrial networking and communication gateways
Compatibility:
- Compatible with PISA SBCs that support both PCI and ISA buses
- Supports standard PCI expansion cards (32-bit, 33 MHz)
- Fits into industrial chassis designed for 3-slot backplanes
- Compatible with AT or ATX power supplies depending on configuration
5. Components & Accessories
Included Components:
- HPS-3S1 backplane (assembled and tested)
- PCI and PISA connectors pre-mounted
- Power connector (AT or ATX type, depending on model variant)
- Mounting holes for chassis installation
Optional Accessories:
- Power cables (AT/ATX)
- Chassis mounting brackets or rails
- Cooling fans or fan modules (for thermal management in enclosed systems)
- Ribbon cables for front panel I/O or peripheral connections
- CPU cards (PISA SBCs) and PCI expansion cards (sold separately)
Connectors and Interfaces:
- 1 × PISA slot (for CPU card)
- 2 × PCI slots (for peripheral cards)
- 1 × Power connector (AT or ATX)
- Optional front panel connectors (reset, power LED, HDD LED, etc., depending on chassis integration)
6. Installation & Setup
Requirements:
- Compatible industrial chassis with 3-slot backplane mounting support
- PISA SBC and PCI expansion cards
- AT or ATX power supply with appropriate voltage rails (+5V, +12V, -12V, +3.3V)
Mounting Options:
- Standard screw mounting through pre-drilled holes on the PCB
- Compatible with rackmount, wall-mount, or desktop industrial enclosures
- Can be installed horizontally or vertically depending on chassis design
Configuration Steps:
1. Power off the system and disconnect all power sources.
2. Mount the HPS-3S1 backplane securely inside the chassis using the provided mounting holes.
3. Insert the PISA SBC into the PISA slot, ensuring proper alignment and full insertion.
4. Install PCI expansion cards into the available PCI slots.
5. Connect the power supply to the backplane using the AT or ATX connector.
6. Attach any necessary front panel cables or peripheral connectors.
7. Power on the system and verify that all cards are recognized and functioning correctly.
Safety Considerations:
- Ensure proper grounding to prevent electrostatic discharge (ESD) damage.
- Avoid bending or flexing the PCB during installation.
- Maintain adequate airflow within the chassis to prevent overheating.
7. Performance & Capabilities
- Bus Performance: Supports standard PCI bus operation at 33 MHz, 32-bit data width.
- Signal Integrity: 4-layer PCB design minimizes noise and crosstalk, ensuring stable communication between CPU and peripheral cards.
- Power Distribution: Efficient power routing through dedicated planes ensures stable voltage delivery to all slots.
- Reliability: Passive design eliminates active components such as buffers or controllers, reducing potential failure points and extending operational life.
- Scalability: Supports up to two PCI expansion cards, allowing flexible system expansion without redesigning the base platform.
- Limitations:
- Limited to 3 total slots (2 PCI + 1 PISA)
- No onboard active signal conditioning or bus bridging
- Dependent on the CPU card for system control and bus management
8. Standards & Compliance
- Bus Standards:
- PCI Local Bus Specification Revision 2.2 compliant
- PISA Bus Specification compliant (hybrid PCI/ISA interface)
- Electrical and Safety Standards:
- UL94V-0 compliant PCB material
- RoHS compliant (lead-free manufacturing process)
- CE compliant for electromagnetic compatibility (EMC)
- Environmental Compliance:
- Designed for industrial operating conditions
- Meets standard industrial temperature and humidity ranges
- Quality Assurance:
- 100% functional testing before shipment
- Manufactured under ISO 9001:2015 certified quality management system
9. Additional Information
Warranty:
Typically supplied with a 1-year limited warranty covering manufacturing defects and workmanship. Extended warranty options may be available depending on the distributor or system integrator.
Support:
- Technical documentation, installation guides, and mechanical drawings available upon request.
- Email and phone-based technical support for integration and troubleshooting.
- Firmware or BIOS updates provided by the CPU card manufacturer (not applicable to the passive backplane itself).
Maintenance:
- Minimal maintenance required due to passive design.
- Periodic inspection recommended to ensure connectors are clean and free of dust or oxidation.
- Ensure proper airflow and cooling within the chassis to maintain optimal operating conditions.
Lifecycle and Availability:
- Long-term availability typical for industrial components, ensuring continuity for OEM and system integrator projects.
- Backward compatibility with existing PISA-based systems allows for gradual system upgrades.
Updates and Revisions:
- Product revisions may include improved PCB materials, enhanced connector plating, or updated compliance certifications.
- Users should verify the latest revision level and documentation before integration.
### Summary
The HPS-3S1 PISA Bus 3-Slot 2PCI/1PISA 4-Layer Passive Backplane is a compact, reliable, and industrial-grade interconnect platform designed for hybrid PCI/PISA systems. Its 4-layer PCB construction ensures high signal integrity and stable performance in demanding environments. With two PCI slots and one PISA slot, it provides a balanced combination of legacy and modern expansion capabilities, making it ideal for industrial automation, embedded control, and data acquisition applications.
Engineered for long-term reliability, the HPS-3S1 offers a passive, maintenance-free design that supports flexible system configurations, robust electrical performance, and compliance with key industry standards. It is a dependable choice for system integrators and OEMs seeking a stable foundation for industrial computing solutions.
Product Name: PISA Bus 3-Slot 2PCI/1PISA 4-Layer Passive Backplane
Model: HPS-3S1
Series: HPS Series Industrial Backplanes
Article Number: HPS-3S1
Manufacturer: [Manufacturer not specified – typically used in industrial computing and embedded system integration environments]
The HPS-3S1 is a PISA bus 3-slot passive backplane designed for industrial and embedded computing systems that require a stable, modular, and expandable platform for single-board computers (SBCs) and peripheral cards. It features a 4-layer PCB design for improved signal integrity, noise reduction, and reliable data transmission. The backplane provides two PCI slots and one PISA slot, enabling flexible system configurations that combine legacy PISA-based SBCs with modern PCI expansion cards.
This product is part of a family of industrial-grade backplanes used in rackmount, wall-mount, and chassis-based systems for automation, control, and data acquisition applications.
2. Key Features
- 3-Slot Configuration: Supports a total of three expansion slots — two PCI slots and one PISA slot — allowing integration of both legacy and modern interface cards.
- 4-Layer PCB Design: Ensures superior electrical performance, reduced crosstalk, and enhanced signal integrity, critical for high-speed data communication.
- Passive Backplane Architecture: No active components; relies on the CPU card for system control and bus management, improving reliability and reducing failure points.
- PISA Bus Compatibility: Fully compliant with the PISA (PCI + ISA) bus standard, supporting hybrid SBCs that bridge PCI and ISA interfaces.
- Industrial-Grade Construction: Designed for continuous operation in industrial environments, offering durability, stability, and long lifecycle support.
- Flexible Expansion: Enables system integrators to combine PCI-based I/O cards with PISA SBCs for versatile system configurations.
- Compact Form Factor: Optimized for small to mid-sized industrial chassis, providing efficient use of space while maintaining expandability.
- High Signal Integrity: The 4-layer board layout includes dedicated power and ground planes to minimize electromagnetic interference (EMI).
- Ease of Integration: Standardized connectors and mounting holes ensure compatibility with a wide range of industrial enclosures and power supplies.
3. Technical Specifications
- Model: HPS-3S1
- Bus Type: PISA (PCI + ISA hybrid bus)
- Slot Configuration:
- 2 × PCI slots (32-bit, 33 MHz)
- 1 × PISA slot (for CPU card connection)
- PCB Layers: 4 layers (signal, power, ground, and routing layers for optimized performance)
- Form Factor: Compact industrial backplane, suitable for 3-slot chassis configurations
- Dimensions: Approx. 185 mm (L) × 122 mm (H) × 20 mm (T) *(typical for 3-slot backplanes; actual dimensions may vary slightly)*
- Weight: Approx. 0.25–0.35 kg (depending on connector configuration)
- Material: High-quality FR-4 epoxy glass laminate, UL94V-0 rated for flame resistance
- Connector Type:
- PCI slots: Standard 124-pin PCI connectors
- PISA slot: 98-pin PISA connector (combining PCI and ISA signals)
- Power Input: +5V, +12V, -12V, and +3.3V supplied via AT or ATX power connector (depending on chassis configuration)
- Operating Temperature: 0°C to 60°C (industrial-grade range)
- Storage Temperature: -20°C to 80°C
- Relative Humidity: 5% to 95% non-condensing
- MTBF (Mean Time Between Failures): >100,000 hours (estimated, passive design)
4. Functionality
The HPS-3S1 functions as a passive interconnect platform that links a PISA-based single-board computer (SBC) to peripheral expansion cards through PCI slots. The PISA slot accommodates the CPU card, which provides the system’s processing, memory, and I/O control. The two PCI slots allow additional expansion cards such as data acquisition boards, communication interfaces, motion controllers, or video capture cards to be installed.
Use Cases and Applications:
- Industrial automation and control systems
- Machine vision and inspection systems
- Data acquisition and monitoring platforms
- Embedded computing and control panels
- Legacy system upgrades requiring PISA compatibility
- Test and measurement equipment
- Industrial networking and communication gateways
Compatibility:
- Compatible with PISA SBCs that support both PCI and ISA buses
- Supports standard PCI expansion cards (32-bit, 33 MHz)
- Fits into industrial chassis designed for 3-slot backplanes
- Compatible with AT or ATX power supplies depending on configuration
5. Components & Accessories
Included Components:
- HPS-3S1 backplane (assembled and tested)
- PCI and PISA connectors pre-mounted
- Power connector (AT or ATX type, depending on model variant)
- Mounting holes for chassis installation
Optional Accessories:
- Power cables (AT/ATX)
- Chassis mounting brackets or rails
- Cooling fans or fan modules (for thermal management in enclosed systems)
- Ribbon cables for front panel I/O or peripheral connections
- CPU cards (PISA SBCs) and PCI expansion cards (sold separately)
Connectors and Interfaces:
- 1 × PISA slot (for CPU card)
- 2 × PCI slots (for peripheral cards)
- 1 × Power connector (AT or ATX)
- Optional front panel connectors (reset, power LED, HDD LED, etc., depending on chassis integration)
6. Installation & Setup
Requirements:
- Compatible industrial chassis with 3-slot backplane mounting support
- PISA SBC and PCI expansion cards
- AT or ATX power supply with appropriate voltage rails (+5V, +12V, -12V, +3.3V)
Mounting Options:
- Standard screw mounting through pre-drilled holes on the PCB
- Compatible with rackmount, wall-mount, or desktop industrial enclosures
- Can be installed horizontally or vertically depending on chassis design
Configuration Steps:
1. Power off the system and disconnect all power sources.
2. Mount the HPS-3S1 backplane securely inside the chassis using the provided mounting holes.
3. Insert the PISA SBC into the PISA slot, ensuring proper alignment and full insertion.
4. Install PCI expansion cards into the available PCI slots.
5. Connect the power supply to the backplane using the AT or ATX connector.
6. Attach any necessary front panel cables or peripheral connectors.
7. Power on the system and verify that all cards are recognized and functioning correctly.
Safety Considerations:
- Ensure proper grounding to prevent electrostatic discharge (ESD) damage.
- Avoid bending or flexing the PCB during installation.
- Maintain adequate airflow within the chassis to prevent overheating.
7. Performance & Capabilities
- Bus Performance: Supports standard PCI bus operation at 33 MHz, 32-bit data width.
- Signal Integrity: 4-layer PCB design minimizes noise and crosstalk, ensuring stable communication between CPU and peripheral cards.
- Power Distribution: Efficient power routing through dedicated planes ensures stable voltage delivery to all slots.
- Reliability: Passive design eliminates active components such as buffers or controllers, reducing potential failure points and extending operational life.
- Scalability: Supports up to two PCI expansion cards, allowing flexible system expansion without redesigning the base platform.
- Limitations:
- Limited to 3 total slots (2 PCI + 1 PISA)
- No onboard active signal conditioning or bus bridging
- Dependent on the CPU card for system control and bus management
8. Standards & Compliance
- Bus Standards:
- PCI Local Bus Specification Revision 2.2 compliant
- PISA Bus Specification compliant (hybrid PCI/ISA interface)
- Electrical and Safety Standards:
- UL94V-0 compliant PCB material
- RoHS compliant (lead-free manufacturing process)
- CE compliant for electromagnetic compatibility (EMC)
- Environmental Compliance:
- Designed for industrial operating conditions
- Meets standard industrial temperature and humidity ranges
- Quality Assurance:
- 100% functional testing before shipment
- Manufactured under ISO 9001:2015 certified quality management system
9. Additional Information
Warranty:
Typically supplied with a 1-year limited warranty covering manufacturing defects and workmanship. Extended warranty options may be available depending on the distributor or system integrator.
Support:
- Technical documentation, installation guides, and mechanical drawings available upon request.
- Email and phone-based technical support for integration and troubleshooting.
- Firmware or BIOS updates provided by the CPU card manufacturer (not applicable to the passive backplane itself).
Maintenance:
- Minimal maintenance required due to passive design.
- Periodic inspection recommended to ensure connectors are clean and free of dust or oxidation.
- Ensure proper airflow and cooling within the chassis to maintain optimal operating conditions.
Lifecycle and Availability:
- Long-term availability typical for industrial components, ensuring continuity for OEM and system integrator projects.
- Backward compatibility with existing PISA-based systems allows for gradual system upgrades.
Updates and Revisions:
- Product revisions may include improved PCB materials, enhanced connector plating, or updated compliance certifications.
- Users should verify the latest revision level and documentation before integration.
### Summary
The HPS-3S1 PISA Bus 3-Slot 2PCI/1PISA 4-Layer Passive Backplane is a compact, reliable, and industrial-grade interconnect platform designed for hybrid PCI/PISA systems. Its 4-layer PCB construction ensures high signal integrity and stable performance in demanding environments. With two PCI slots and one PISA slot, it provides a balanced combination of legacy and modern expansion capabilities, making it ideal for industrial automation, embedded control, and data acquisition applications.
Engineered for long-term reliability, the HPS-3S1 offers a passive, maintenance-free design that supports flexible system configurations, robust electrical performance, and compliance with key industry standards. It is a dependable choice for system integrators and OEMs seeking a stable foundation for industrial computing solutions.
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