Molex Impel Backplane Interconnect System
Molex Impel Backplane Connector System achieves signal integrity, density, and data rates up to 40Gbps while enabling backward and forward compatibility. A compact, compliant-pin backplane connector enables backward and forward compatibility with various high-end architectures. 92Ω nominal impendence minimizes impedance discontinuities and multiple pitch options are available for design flexibility. The connectors deliver superior density and electrical performance, low crosstalk, low insertion loss, and minimal performance variations across all channels and frequencies to 20GHz. Molex Impel applications include telecommunications, data networking, industrial, and military/aerospace.Features
- Compact, compliant-pin backplane and daughtercard connectors with data rates scalable from 25Gbps to 40Gbps
- Impel connector technology with tightly coupled differential-pair structure
- 1.90mm pitch broad-edge-coupled, 2.35mm pitch orthogonal, and 3.00mm pitch quad-route pitch options
- Delivers superior density and electrical performance, low crosstalk, low insertion loss, and minimal performance variations across all channels and frequencies to 20GHz
- 92Ω nominal impedance
- Enhanced 0.36mm plated through-hole diameter
- Skew-less design
- Two compliant-pin attach options and 18 to 72 differential pairs per orthogonal node
- Staggered header-pin interface
- IEEE 10GBASE-KR and Optical Internetworking Forum (OIF) Stat Eye Compliant Channel Performance
- Provides a full-channel solution for all Impel headers and receptacles; provides design flexibility per application specifications
Applications
- Telecommunication
- Hubs, switches, routers
- Central office, cellular infrastructure, and multi-platform service (DSL, cable data)
- Data networking equipment
- Servers
- Storage systems
- Industrial equipment
- Military/aerospace equipment
Specifications
- 150VAC RMS voltage
- 0.75A maximum current
- 100mA, 20mV maximum contact resistance
- 500VAC dielectric withstanding voltage
- 500V insulation resistance
Publicado: 2018-09-25
| Actualizado: 2022-09-12
