AdvancedTCA – Highspeed Connectors and Power Connectors

AdvancedTCA® excels in other applications with the highest requirements on availability, although it was originally specified for telecommunications infrastructure. AdvancedTCA® makes it possible to build modular systems using components from different manufacturers. This technology can offer the possibility of developing flexible and cost-effective setups.
ATCA Titelbild.jpg

Features

  • Meets PICMG requirements
  • con:card+ seal of quality
  • Stamped press-fit zone with Tcom press®
  • Cost-optimized design

Applications

  • Backplane daughter cards
  • Power applications
  • Highspeed board-to-board
Signal

ATCA Signal AMC B+ Part No. 512-22170-453

ATCA Direktstecker Foto
without Peg, 170 contacts, Press-fit, pitch 0.75 mm, data transfer rate 12.5 Gbit/s, according to PICMG specifications
Parallel
Press-fit
Direct Connector
High Speed
ATCA Signal AMC B+ Part No. 512-22170-453 - Technical data

Basics

SpecificationPICMG®AMC.0 R2.0
No. of Contacts170
Termination TechnologyPress-fit
Termination Length2.0 mm
Operating Temperature Range-55°C to +105°C

Material

Insulator MaterialLCP, UL 94 V-0
Contact MaterialCopper alloy
PlatingPdNi + Au flash over Ni

Mechanical

Pitch0.75 mm
Mating Forcemax. 100 N
Separating Forcemax. 65 N
Durability200 mating cycles

Electrical

Operational Current1.52 A @ 70°C max. 30°C temperature rise
Clearance and Creepagemin. 0.1 mm
Insulation Resistance108 Ω
Test Voltage80 V r.m.s
Data Transfer Rate12.5 Gbit/s
Impedance100 Ω± 10%

Approval / Compliance

UL fileE130314
EnvironmentRoHS compliant

ATCA Signal AMC B+ Part No. 512-23170-453

ATCA Direktstecker Foto
with Peg, 170 contacts, Press-fit, pitch 0.75 mm, data transfer rate 12.5 Gbit/s, according to PICMG specifications
Parallel
Press-fit
Direct Connector
High Speed
ATCA Signal AMC B+ Part No. 512-23170-453 - Technical data

Basics

SpecificationPICMG®AMC.0 R2.0
No. of Contacts170
Termination TechnologyPress-fit
Termination Length2.0 mm
Operating Temperature Range-55°C to +105°C

Material

Insulator MaterialLCP, UL 94 V-0
Contact MaterialCopper alloy
PlatingPdNi + Au flash over Ni

Mechanical

Pitch0.75 mm
Mating Forcemax. 100 N
Separating Forcemax. 65 N
Durability200 mating cycles

Electrical

Operational Current1.52 A @ 70°C max. 30°C temperature rise
Clearance and Creepagemin. 0.1 mm
Insulation Resistance108 Ω
Test Voltage80 V r.m.s
Data Transfer Rate12.5 Gbit/s
Impedance100 Ω± 10%

Approval / Compliance

UL fileE130314
EnvironmentRoHS compliant
Power

ATCA Power Part No. 512-50500-163

ATCA Power FL Foto
contacts: 22 signal, 8 power, Press-fit, according to PICMG specifications
Perpendicular
Press-fit
Power
Rugged
ATCA Power Part No. 512-50500-163 - Technical data

Basics

SpecificationPICMG® 3.0 R2.0
No. of Contacts30 (8 Power, 22 Signal)
Termination TechnologyPress-fit
Termination Length4.45 mm
Operating Temperature Range-55°C to +125°C

Material

Insulator MaterialPBT glass filled, UL 94 V-0
Contact MaterialCopper alloy
PlatingAu over Ni

Mechanical

Mating Forcemax. 67 N
Separating Forcemax. 67 N
Durability250 mating cycles

Electrical

Operational CurrentPower contacts: max. 16 A, Signal contacts: max. 1 A
Insulation Resistance≥ 1010 Ω
Test VoltageContact 1 - 16: 1000 V r.m.s; contact 17 - 34: 2000 V r.m.s.

Approval / Compliance

UL fileE130314
EnvironmentRoHS compliant

ATCA Power Part No. 512-50501-163

ATCA Power FL Foto
contacts: 26 signal, 8 power, Press-fit, according to PICMG specifications
Perpendicular
Press-fit
Power
Rugged
ATCA Power Part No. 512-50501-163 - Technical data

Basics

SpecificationPICMG® 3.0 R2.0
No. of Contacts34 (8 Power, 26 Signal)
Termination TechnologyPress-fit
Termination Length4.45 mm
Operating Temperature Range-55°C to +125°C

Material

Insulator MaterialPBT glass filled, UL 94 V-0
Contact MaterialCopper alloy
PlatingAu over Ni

Mechanical

Mating Forcemax. 67 N
Separating Forcemax. 67 N
Durability250 mating cycles

Electrical

Operational CurrentPower contacts: max. 16 A, Signal contacts: max. 1 A
Insulation Resistance≥ 1010 Ω
Test VoltageContact 1 - 16: 1000 V r.m.s; contact 17 - 34: 2000 V r.m.s.

Approval / Compliance

UL fileE130314
EnvironmentRoHS compliant

ATCA Power Part No. 511-50500-193

ATCA Power ML Foto
contacts: 22 signal, 8 power, Press-fit, according to PICMG specifications
Perpendicular
Press-fit
Power
Rugged
ATCA Power Part No. 511-50500-193 - Technical data

Basics

SpecificationPICMG® 3.0 R2.0
No. of Contacts30 (8 Power, 22 Signal)
Termination TechnologyPress-fit
Termination Length4.1 mm
Operating Temperature Range-55°C to +125°C

Material

Insulator MaterialPBT glass filled, UL 94 V-0
Contact MaterialCopper alloy
PlatingAu over Ni

Mechanical

Mating Forcemax. 67 N
Separating Forcemax. 67 N
Durability250 mating cycles

Electrical

Operational CurrentPower contacts: max. 16 A, Signal contacts: max. 1 A
Insulation Resistance≥ 1010 Ω
Test VoltageContact 1 - 16: 1000 V r.m.s; contact 17 - 34: 2000 V r.m.s.

Approval / Compliance

UL fileE130314
EnvironmentRoHS compliant

ATCA Power Part No. 511-50501-193

ATCA Power ML Foto
contacts: 26 signal, 8 power, Press-fit, according to PICMG specifications
Perpendicular
Press-fit
Power
Rugged
ATCA Power Part No. 511-50501-193 - Technical data

Basics

SpecificationPICMG® 3.0 R2.0
No. of Contacts34 (8 Power, 26 Signal)
Termination TechnologyPress-fit
Termination Length4.1 mm
Operating Temperature Range-55°C to +125°C

Material

Insulator MaterialPBT glass filled, UL 94 V-0
Contact MaterialCopper alloy
PlatingAu over Ni

Mechanical

Mating Forcemax. 67 N
Separating Forcemax. 67 N
Durability250 mating cycles

Electrical

Operational CurrentPower contacts: max. 16 A, Signal contacts: max. 1 A
Insulation Resistance≥ 1010 Ω
Test VoltageContact 1 - 16: 1000 V r.m.s; contact 17 - 34: 2000 V r.m.s.

Approval / Compliance

UL fileE130314
EnvironmentRoHS compliant
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Features

ept AdvancedTCA
The MicroTCA and AdvancedTCA connectors in press-fit technology enable high data transfer rates. The flat plate press-fitting technique enables efficient press-fitting. The µTCA system uses a straight connector located directly on the backplane, whereas the ATCA system uses the angled AMC connector on the daughter card.
ATCA Power Federleiste
ATCA Power Female connector

detail overview

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stamped spring contact
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guiding hole for Guide Pin
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power contacts max. 16 A
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signal contacts max. 1 A
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press-fit zone Tcom press®
image
PBT
ATCA Signal AMC
Signal AMC B+

detail overview

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Guide Spring
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LCP
image
0.75 mm pitch
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press-fit zone needle eye
image
with or without Peg (Pre-centering)

AdvancedTCA® and MicroTCA® – PICMG Specifications:

ATCA Logo 330px
AdvancedTCA® and MicroTCA® are specifications developed by PICMG® with the aim of enabling standardized hardware solutions to handle the increased data traffic as well as meeting the needs of new communication solutions.
AdvancedTCA® was specified for the highest requirements on availability in the field of telecommunications system infrastructure. AdvancedTCA® makes it possible to build modular systems using components from different manufacturers. This technology can offer the possibility of efficiently developing flexible and cost-effective setups.

The concept of AdvancedTCA® is based on a scalable, high-performance architecture. AdvancedTCA® is characterized by its high functional density, availability, and future-proofing. It offers a platform for many future-oriented applications. Scalable data transfer rates of several terabits per second, multi-protocol support, the integrability of new services, and the convergence of access, core and optical networks are just as much a part of this as the integration of data center functions. The high flexibility of the AdvancedTCA® architecture is evident in its support of interconnects with Gigabit Ethernet, Fibre Channel, Infiniband, StarFabric, PCI Express, and RapidIO. Another core element of the systems is the high availability of 99.999%.

PICMG® has developed the AdvancedMC™ (Advanced Mezzanine Card) standard to make the AdvancedTCA® system even more cost-effective. The AdvancedMC™ modules are small cards that plug into a carrier board (in the form of an AdvancedTCA® daughter card) in parallel as a mezzanine application. The actual application is realized via the AdvancedMC™ modules, whereas the carrier board contains only management functions.

MicroTCA® is now based on the approach of plugging AdvancedMC™ modules directly into the backplane. The aim is to build smaller and more flexible systems independent of carrier boards and AdvancedTCA®. MicroTCA® meets the demands of cost-conscious applications that place greater emphasis on space requirements and investment than on computing power. It opens up further areas of application in the mid- and low-end range, such as in image processing, medical technology, or automation technology.

Developer view:

ept is equipped with the proven ept Tcom press® press-fit zone, which is characterized by its very good current conductivity and high retention forces. ept guarantees full cross-compatibility with all AdvancedTCA power connectors on the market that have been specified according to PICMG 3.0 ATCA R2.0.

FAQ: