6U x 340mm (Size C) Backplanes

Description

The 6U x 340mm (Size C) backplane is a specialized circuit board designed to support and connect various electronic components and subsystems. It serves as a solid foundation for electronic devices, providing mechanical support and stability to ensure the safety and stability of internal components. The backplane features a complex circuitry network that enables electrical connections and communication between different parts of the device.

Working Principle

Backplanes operate by providing a structured platform where multiple electronic components can be interconnected. They are equipped with a variety of connectors and slots that allow for the integration of CPU cards, modules, and other devices. The backplane facilitates high-speed signal transmission, ensuring fast and stable communication between components. It also manages power distribution, ensuring that all components receive a stable and reliable power supply. Additionally, backplanes handle thermal management by dissipating heat to prevent overheating, and they control electromagnetic interference (EMI) and electromagnetic compatibility (EMC) to maintain device stability and reliability.

Applications

Backplanes are used in a wide range of applications, particularly in environments that require robust and reliable electronic systems. Specific examples include industrial control systems, where backplanes integrate multiple communication interfaces and control functions to enable complex control and monitoring capabilities. They are also used in military equipment, where they undergo rigorous testing to ensure stability and reliability in harsh conditions. In server environments, backplanes facilitate high-speed data transmission and processing, supporting the demanding requirements of modern data centers.

Advantages over other Backplanes

Backplanes offer several advantages over other types of circuit boards. They are designed for high-density routing, enabling the transmission and processing of a large number of signals within limited space. This makes them ideal for applications that require high data transmission speeds and processing power. The modular design of backplanes allows for easy maintenance and repair, reducing downtime and maintenance costs. Additionally, the use of high-quality materials and advanced manufacturing techniques ensures their stability and reliability, even in harsh environments.

Limitations

Despite their advantages, backplanes have certain limitations. The complexity of their design can lead to higher initial costs compared to simpler circuit boards. They may also require more space within a device, which can be a constraint in compact electronic systems. Additionally, the need for specialized connectors and slots can increase the overall cost of the system.

Considerations

When selecting a backplane, several factors should be considered. Initial costs can be high due to the complexity and quality of materials used. However, the modular design can reduce operating expenses by facilitating easy maintenance and repair. Durability is a key advantage, as backplanes are designed to withstand harsh environments. Accuracy in signal transmission and power distribution is critical for the proper functioning of connected components. Replacement and maintenance costs can be minimized through the use of standardized interfaces and modular designs, which allow for quick and easy replacement of faulty modules.

15 Results
J1 Monolithic VME64 Backplane -- LA
from SIE Computing Solutions, Inc.

Optimized performance for cost-effective six layer design. 100% Level 3 electrical testing. Superior power distribution. Unique signal routing minimizes crosstalk. 100% press-ft construction for reliability. Option codes specify shrouds or automatic bus grant jumper feature. Bus bar kits available. [See More]

  • Form Factor: 6U x 340 (C-Size)
  • Bus / Standard: VME64
  • Board Function: Active Backplane
  • Power Connectors: AT
J1 Monolithic VME64 Backplane -- LC
from SIE Computing Solutions, Inc.

Optimized performance for cost-effective six layer design. 100% Level 3 electrical testing. Superior power distribution. Unique signal routing minimizes crosstalk. 100% press-ft construction for reliability. Option codes specify shrouds or automatic bus grant jumper feature. Bus bar kits available. [See More]

  • Form Factor: 6U x 340 (C-Size)
  • Bus / Standard: VME64
  • Board Function: Active Backplane
  • Power Connectors: AT
J1 Monolithic VME64 Backplane -- LD
from SIE Computing Solutions, Inc.

Optimized performance for cost-effective six layer design. 100% Level 3 electrical testing. Superior power distribution. Unique signal routing minimizes crosstalk. 100% press-ft construction for reliability. Option codes specify shrouds or automatic bus grant jumper feature. Bus bar kits available. [See More]

  • Form Factor: 6U x 340 (C-Size)
  • Bus / Standard: VME64
  • Board Function: Active Backplane
  • Power Connectors: AT
J1/J2 Monolithic VME64 Backplane -- LF
from SIE Computing Solutions, Inc.

Optimized performance for cost-effective six layer design. 100% Level 3 electrical testing. CG Mupac's proprietary patented trace routing for normalized decoupling of adjacent signal, data, and control lines reduces crosstalk while maintaining the controlled transmission line impedance and short... [See More]

  • Form Factor: 6U x 340 (C-Size)
  • Bus / Standard: VME64
  • Board Function: Active Backplane
  • Power Connectors: AT
J1/J2 Monolithic VME64 Backplane -- LG
from SIE Computing Solutions, Inc.

Optimized performance for cost-effective six layer design. 100% Level 3 electrical testing. CG Mupac's proprietary patented trace routing for normalized decoupling of adjacent signal, data, and control lines reduces crosstalk while maintaining the controlled transmission line impedance and short... [See More]

  • Form Factor: 6U x 340 (C-Size)
  • Bus / Standard: VME64
  • Board Function: Active Backplane
  • Power Connectors: AT
J1/J2 Monolithic VME64 Backplane -- LK
from SIE Computing Solutions, Inc.

Optimized performance for cost-effective six layer design. 100% Level 3 electrical testing. CG Mupac's proprietary patented trace routing for normalized decoupling of adjacent signal, data, and control lines reduces crosstalk while maintaining the controlled transmission line impedance and short... [See More]

  • Form Factor: 6U x 340 (C-Size)
  • Bus / Standard: VME64
  • Board Function: Active Backplane
  • Power Connectors: AT
J1/J2 Monolithic VME64 Backplane -- LL
from SIE Computing Solutions, Inc.

Optimized performance for cost-effective six layer design. 100% Level 3 electrical testing. CG Mupac's proprietary patented trace routing for normalized decoupling of adjacent signal, data, and control lines reduces crosstalk while maintaining the controlled transmission line impedance and short... [See More]

  • Form Factor: 6U x 340 (C-Size)
  • Bus / Standard: VME64
  • Board Function: Active Backplane
  • Power Connectors: AT
J1/J2 Monolithic VME64 Backplane -- LN
from SIE Computing Solutions, Inc.

Optimized performance for cost-effective six layer design. 100% Level 3 electrical testing. CG Mupac's proprietary patented trace routing for normalized decoupling of adjacent signal, data, and control lines reduces crosstalk while maintaining the controlled transmission line impedance and short... [See More]

  • Form Factor: 6U x 340 (C-Size)
  • Bus / Standard: VME64
  • Board Function: Active Backplane
  • Power Connectors: AT
J1/J2 Monolithic VME64 Backplane -- LR
from SIE Computing Solutions, Inc.

Optimized performance for cost-effective six layer design. 100% Level 3 electrical testing. CG Mupac's proprietary patented trace routing for normalized decoupling of adjacent signal, data, and control lines reduces crosstalk while maintaining the controlled transmission line impedance and short... [See More]

  • Form Factor: 6U x 340 (C-Size)
  • Bus / Standard: VME64
  • Board Function: Active Backplane
  • Power Connectors: AT
J2 Monolithic VME64 Backplane -- LW
from SIE Computing Solutions, Inc.

Optimized performance for cost-effective six layer design. 100% Level 3 electrical testing. CG Mupac's proprietary patented trace routing for normalized decoupling of adjacent signal, data, and control lines reduces crosstalk while maintaining the controlled transmission line impedance and short... [See More]

  • Form Factor: 6U x 340 (C-Size)
  • Bus / Standard: VME64
  • Board Function: Active Backplane
  • Power Connectors: AT
VME64 Extension Backplane -- NF
from SIE Computing Solutions, Inc.

100% SMT of all electronic components. All press-fit connectors. 160 pin DIN connector. The pre-mate pin lengths to support the live insertion ETL (Enhanced Transceiver Logic) devices. 3.3 Volt power pins. +V and -V power pins. 35 more signal ground return pins. 46 more user defined I/O pins. Two... [See More]

  • Form Factor: 6U x 340 (C-Size)
  • Bus / Standard: VME64x
  • Board Function: Active Backplane
  • Power Connectors: 3.3 volts
VME64 Extension Backplane -- NG
from SIE Computing Solutions, Inc.

100% SMT of all electronic components. All press-fit connectors. 160 pin DIN connector. The pre-mate pin lengths to support the live insertion ETL (Enhanced Transceiver Logic) devices. 3.3 Volt power pins. +V and -V power pins. 35 more signal ground return pins. 46 more user defined I/O pins. Two... [See More]

  • Form Factor: 6U x 340 (C-Size)
  • Bus / Standard: VME64x
  • Board Function: Active Backplane
  • Power Connectors: 3.3 volts
VME64 Extension Backplane -- NK
from SIE Computing Solutions, Inc.

100% SMT of all electronic components. All press-fit connectors. 160 pin DIN connector. The pre-mate pin lengths to support the live insertion ETL (Enhanced Transceiver Logic) devices. 3.3 Volt power pins. +V and -V power pins. 35 more signal ground return pins. 46 more user defined I/O pins. Two... [See More]

  • Form Factor: 6U x 340 (C-Size)
  • Bus / Standard: VME64x
  • Board Function: Active Backplane
  • Power Connectors: 3.3 volts
VME64 Extension Backplane -- NL
from SIE Computing Solutions, Inc.

100% SMT of all electronic components. All press-fit connectors. 160 pin DIN connector. The pre-mate pin lengths to support the live insertion ETL (Enhanced Transceiver Logic) devices. 3.3 Volt power pins. +V and -V power pins. 35 more signal ground return pins. 46 more user defined I/O pins. Two... [See More]

  • Form Factor: 6U x 340 (C-Size)
  • Bus / Standard: VME64x
  • Board Function: Active Backplane
  • Power Connectors: 3.3 volts
VME64 J1 Monolithic Backplane -- LT
from SIE Computing Solutions, Inc.

Optimized performance for cost-effective six layer design. 100% Level 3 electrical testing. Superior power distribution. Unique signal routing minimizes crosstalk. 100% press-ft construction for reliability. Option codes specify shrouds or automatic bus grant jumper feature. Bus bar kits available. [See More]

  • Form Factor: 6U x 340 (C-Size)
  • Bus / Standard: VME64
  • Board Function: Active Backplane
  • Power Connectors: AT