02 05 000 0003 HARTING, 02 05 000 0003 Datasheet - Page 17
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02 05 000 0003
Manufacturer Part Number
02 05 000 0003
Description
Hard Metric Connectors 160P FEMALE CBL MNT NO CONTACTS
Manufacturer
HARTING
Series
har-bus 64 Seriesr
Datasheet
1.02_02_160_2202.pdf
(20 pages)
Specifications of 02 05 000 0003
Product Type
Female
Number Of Positions / Contacts
160
Mounting Angle
Straight
Termination Style
Crimp
Contact Material
Copper Alloy
Contact Plating
Gold over Nickel
Mounting Style
Free Hanging
Number Of Rows
5
Pitch
2.54 mm
Pitch Spacing
2.54mm
No. Of Contacts
160
Gender
Receptacle
No. Of Rows
5
Rows Loaded
A + B + C + D + E
Connector Type
DIN 41612
Features
Type C
Rohs Compliant
Yes
Contact Termination
Crimp
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
System description
Backward compatible system upgrade with inverse connectors
The inverse types of DIN 41 612 connectors,
e.g. 3 row type R connectors, have a strong
position in telecoms. However, the trend is for
increasing data transfer rates and the demand
for additional signal pins.
that supplies additional rows d and z to type R
connectors according to DIN 41 612.
Due to the special design of the moulding the
male connectors are backwards compatible to
3 row type R female connectors. An internal
coding system prevents the mismating of
female connectors.
The male connector is fully compatible with all
3 row type R female connectors and the 5 row
angled
inverse is a 5 row 160 pin connector
female connector.
inverse
The 5 row inverse connector system allows a
gradual enhancement of existing systems. The
5 row male connector is mateable with both
daughter cards with 3 row female connectors
and with innovative high-speed boards with 5
row female connectors.
The additional contact rows d and z of
inverse offer following advantages to the user:
●
●
●
●
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Additional contacts for I/O or new functions
yet to be defined
Improved signal/ground ratio for reliable
data transfer at rates up to 320 MByte/s
Backward compatibility i.e. daughter cards
with 3 row connectors can be upgraded
without function loss
Secure mating due to internal coding
Gradual system enhancement on demand
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