EX60T-C65P [HRS]
Telecom and Datacom Connector, 65 Contact(s), Male, Surface Mount Terminal, Receptacle;型号: | EX60T-C65P |
厂家: | HRS |
描述: | Telecom and Datacom Connector, 65 Contact(s), Male, Surface Mount Terminal, Receptacle 连接器 |
文件: | 总11页 (文件大小:371K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
The product information in this catalog is for reference only. Please request the Engineering Drawing for the most current and accurate design information.
All non-RoHS products have been discontinued, or will be discontinued soon. Please check the products status on the Hirose website RoHS search at www.hirose-connectors.com, or contact your Hirose sales representative.
High-Speed Differential Signal Connectors
EXT Series
1 Gbps Eye Pattern Waveform
(One End of Connector: 2 m of AWG #28 Twinax Cable)
Differential impedance
between adjacent
contacts is 100 ohms
■Features
01. High-Speed Differential Signals
The construction supports high-speed differential signals
such as LVDS, IEEE 1394, and USB 2.0. Use of twisted pair
cable or twinax cable permits transmission speeds up to
several hundred Mbps and higher per twisted pair.
(A) Impedance Matching
The connector is designed to minimize reflections with a
differential impedance of 100 ohms between adjacent contacts.
(B) Low Skew Construction
An equivalent electrical length is maintained between
Adjacent contacts
adjacent contacts while the equivalent electrical length
between opposing terminals is approximately zero.
Consequently the skew within differential pairs as well as
between differential pairs is approximately zero.
However, a low skew between differential pairs is permitted
by going through another layer of the board.
(C) Low Crosstalk
The design features a staggered arrangement between
opposing contacts for low crosstalk effects between opposing
pairs even though these are low-profile connectors.
02. Batch Wiring of Cables Using Solder Paste
Soldered wiring has been used as the wiring method for the
plug side composite cable, thin cable, and drain wires;
however, paste soldering permits the batch wiring of
prepared cables. (Existing soldering methods can also be
used to wire the connectors.)
03. No Shrink Tubing Required
The wiring portion of the plug side is secured by the
molding which prevents short circuits without the use of
shrink tubing. Since shrink tubing is not used, this
allows the twist back length of the twisted pair cable or
the twinax cable to be shortened, thereby permitting the
impedance of the wiring section to be kept in check.
04. Power and Signal Contacts
The 65 position connector is designed with 59 signal contacts and 6 power contacts. Each power contact is
rated for 2 Amps. The 71 position connector is supplied with signal contacts only.
05. Low-Profile Design
With the trend toward lower profiles, the receptacle is made to drop into the board, which results in a height
dimension, including the board, of 5.6mm.
2006.3
1
The product information in this catalog is for reference only. Please request the Engineering Drawing for the most current and accurate design information.
All non-RoHS products have been discontinued, or will be discontinued soon. Please check the products status on the Hirose website RoHS search at www.hirose-connectors.com, or contact your Hirose sales representative.
■Product Specification
Operation temperature range
Voltage
–55ç to +85ç
125 V AC
Ratings
0.5A
2A
Signal contacts
Power supply contacts
Current
Item
Standard
Condition
Signal contacts: 40 mø max.
Power supply contacts: 16 mø max.
1. Contact resistance
100 mA
2. Insulation resistance
250 V DC
500 Mø max.
3. Withstanding voltage No flashover or insulation breakdown
Contact resistance
350 V AC / one minute
4. Durability
Signal contacts: 60 mø max.
3,000 cycles
Power supply contacts: 24 mø max.
No damage, cracks, or parts dislocation.
(mating / unmating)
5. Vibration
6. Shock
Frequency: 10 to 55 Hz (5 minutes per cycle)
Total amplitude: Test at 1.5 mm in 3 directions, 2 hours each
No electrical discontinuity of 1µs or more.
Contact resistance
Signal contacts: 60 mø max.
Power supply contacts: 24 mø max.
No damage, cracks, or parts dislocation.
2
Acceleration of 490 m/s , 11 ms duration,
sine halfwave waveform, 3 cycles in each of the 3 axis.
7. Temperature cycle
Temperature : –55■ +15 to +35■ +85■ +15 to +35ç
Contact resistance
Signal contacts: 60 mø max.
Power supply contacts: 24 mø max.
Insulation resistance: 500 Mø max.
No damage, cracks, or parts dislocation.
Time
: –30■ +10 to +15■ +30■■10 to 15(Minutes)
5 cycles
8. Steady-state
8. humidity resistance
Temperature of 40ç 2ç and humidity of 90% to 95%
for 96 hours
9. Salt spray
No corrosion
5% concentration of salt water for 48 hours
■Materials
■Receptacle
Part
Contacts
Insulator
Body
Material
Copper alloy
LCP
Finish
Gold plating
UL94V-0
Steel
Nickel plating
Tin plating
Metal Fitting
Stainless steel
■Plug
Part
Contacts
Insulator
Body
Material
Copper alloy
LCP
Finish
Selective gold plating
UL94V-0
Steel
Nickel plating
UL94V-0
Strain relief
Polycarbonate
■Cover
Part
Material
Polycarbonate
Stainless steel
Stainless steel
Polycarbonate
Brass
Finish
UL94HB
-----
Cover
Shield
Lock
-----
Push button
Clamp
UL94HB
-----
Metal hold down
screw
Steel
Black nickel plating
Black chromate
Steel
2
The product information in this catalog is for reference only. Please request the Engineering Drawing for the most current and accurate design information.
All non-RoHS products have been discontinued, or will be discontinued soon. Please check the products status on the Hirose website RoHS search at www.hirose-connectors.com, or contact your Hirose sales representative.
■Ordering Information
■Receptacles
1
2
Series name : EX*T
Wiring type : 40 : Cable soldering type
: 60 : Right angle SMT type
Body size
( )
71 P 5 0
-
E X 6 0 T C
1
2
1
3
4
5
8
3
■Plugs
Number of contacts
4
5
Contact type : P : Male contact
: S : Female contact
( )
71 P R 5 0
-
E X 4 0 T C
1
2
1
3
4
5
6
8
6
7
8
Connector mating direction Brank : Standard type
■Cover
R
Cover type : CT : Straight type
: CV : Angled type
: Reverse type
( )
CT 5 0
-
E X 4 0 T C
1
2
1
3
7
8
Plating
: Termination : Gold plating
: Metal fitting : Tin plating
■Connector Mounting Reference Diagram
Using a standard type plug (EX40T-C71S)
Using a reverse type plug (EX40T-C71SR)
EX40T-CCT
EX40T-CCT
Cover screw surface
Cover screw surface
EX60T-C71P
( 4.5 )
( 5.5 )
( 4.3 )
( 5.3 )
EX60T-C71P
( 4.3 )
( 5.3 )
( 4.5 )
( 5.5 )
PCB mounting surface
PCB mounting surface
3
The product information in this catalog is for reference only. Please request the Engineering Drawing for the most current and accurate design information.
All non-RoHS products have been discontinued, or will be discontinued soon. Please check the products status on the Hirose website RoHS search at www.hirose-connectors.com, or contact your Hirose sales representative.
■Receptacle
■71 contact (Signal contacts only)
(
)
EX60T–C71P 50
Part number
CL No.
RoHS
EX60T-C71P(50)
232-0584-4-50
YES
39.2
36
1.5
P= 0.5
A
50.6
54.6
56.2
Board SMT surface
BBoard Mounting Diagram (for Reference)
Establishing the discardable portion of the board indicated by the shaded area of the diagram below, serves to prevent the
board from falling forward at the time of reflow. Making a V-shaped cut in the discardable portion of the board allows access to
the connector by bending and breaking off this portion after reflow.
Ø1.25 (Hole)
45.2
40.6
4-1.7x1.7
1.65x1.25 (Elliptical hole)
Ø3 (Hole)
36
P= 0.5
0.35
20.3
V-shape cut
44.8
50.6
55.4
57
4
The product information in this catalog is for reference only. Please request the Engineering Drawing for the most current and accurate design information.
All non-RoHS products have been discontinued, or will be discontinued soon. Please check the products status on the Hirose website RoHS search at www.hirose-connectors.com, or contact your Hirose sales representative.
■Receptacle
■65 contact (59 signal contacts, 6 power supply contacts)
( )
50
EX60T-C65P
Part number
CL No.
RoHS
EX60T-C65P(50)
232-0588-5-50
YES
39.2
36
1.5
P= 0.5
A
50.6
54.6
56.2
Board SMT surface
Power supply contacts (six)
BBoard Mounting Diagram (for Reference)
Establishing the discardable portion of the board indicated by the shaded area of the diagram below, serves to prevent the
board from falling forward at the time of reflow. Making a V-shaped cut in the discardable portion of the board allows access to
the connector by bending and breaking off this portion after reflow.
Ø1.25 (Hole)
45.2
40.6
4-1.7x1.7
1.65x1.25 (Elliptical hole)
Ø3 (Hole)
36
P= 0.5
0.35
20.3
V-shape cut
44.8
50.6
55.4
57
5
The product information in this catalog is for reference only. Please request the Engineering Drawing for the most current and accurate design information.
All non-RoHS products have been discontinued, or will be discontinued soon. Please check the products status on the Hirose website RoHS search at www.hirose-connectors.com, or contact your Hirose sales representative.
■Plug (Standard type)
■71 contact (Signal contacts only)
Part number
CL No.
RoHS
(
)
EX40T-C71S 50
EX40T-C71S(50)
232-0583-1-50
YES
35
P= 1
40.5
43
4.1
5.6
43.8
■65 contact (59 signal contacts, 6 power supply contacts)
(
)
EX40T-C65S 50
Part number
CL No.
RoHS
EX40T-C65S(50)
232-0589-8-50
YES
35
P= 1
40.5
43
4.1
5.6
43.8
Power supply contacts
6
The product information in this catalog is for reference only. Please request the Engineering Drawing for the most current and accurate design information.
All non-RoHS products have been discontinued, or will be discontinued soon. Please check the products status on the Hirose website RoHS search at www.hirose-connectors.com, or contact your Hirose sales representative.
■Plug (Reverse type)
■71 contact (Signal contacts only)
Part number
CL No.
RoHS
(
)
EX40T-C71SR 50
EX40T-C71SR(50)
232-0587-2-50
YES
35
P= 1
40.5
43
4.1
5.6
43.8
■65 contact (59 signal contacts, 6 power supply contacts)
(
)
EX40T-C65SR 50
Part number
CL No.
RoHS
EX40T-C65SR(50)
232-0594-8-50
YES
17
17.5
P=2
P=1
40.5
43
4.1
5.6
43.8
Power supply contacts
7
The product information in this catalog is for reference only. Please request the Engineering Drawing for the most current and accurate design information.
All non-RoHS products have been discontinued, or will be discontinued soon. Please check the products status on the Hirose website RoHS search at www.hirose-connectors.com, or contact your Hirose sales representative.
■Cover
■Straight cover
Part number
CL No.
RoHS
(
)
EX40T-CCT 50
EX40T-CCT(50)
232-0586-0-50
YES
8.2
42
10.8
5
52
8.8
■Angled cover
(
)
EX40T-CCV 50
Part number
CL No.
RoHS
EX40T-CCV(50)
232-0591-0-50
YES
11.4
42
6
5
52
8.8
8
The product information in this catalog is for reference only. Please request the Engineering Drawing for the most current and accurate design information.
All non-RoHS products have been discontinued, or will be discontinued soon. Please check the products status on the Hirose website RoHS search at www.hirose-connectors.com, or contact your Hirose sales representative.
■Technical Notes 1
■Eye Pattern Waveforms
These eye pattern waveforms are from connectors harnessed with 2 m of twinax cable for high-speed
differential signal applications.
Input Waveform
Output Waveform
■Impedance Characteristics
These differential impedance characteristics have been measured with 45 ps rise time pulses.
The impedance drops slightly in the vicinity of the connector coupling portion.
200
180
160
140
120
100
Upper contacts
Lower contacts
80
60
40
20
0
0
100 200 300 400 500 600 700 800
ps
Time (
)
■Crosstalk Characteristics
Crosstalk characteristics between opposing differential pairs.
0
-10
-20
-30
-40
-50
-60
-70
-80
-90
0
100
200
300
400
500
Frequency (MHz)
9
The product information in this catalog is for reference only. Please request the Engineering Drawing for the most current and accurate design information.
All non-RoHS products have been discontinued, or will be discontinued soon. Please check the products status on the Hirose website RoHS search at www.hirose-connectors.com, or contact your Hirose sales representative.
■Technical Notes 2
■Connection Pattern of Differential Signals
Differential signals should be arranged between adjacent contacts as illustrated in the diagram below for the
purpose of impedance matching and equivalent electrical length. Furthermore, the establishment of a ground will be
effective in reducing the crosstalk between adjacent differential pairs.
Note also that for faster high-speed differential signals, gathering them to the center portion will permit control of the
electrical length at the time of harnessing.
GND
DATA2
DATA2
GND
DATA1
DATA1
■Low Skew Between Opposing Differential Pairs
The electrical length between adjacent contacts is equal, but the electrical length between opposing contacts differs
by approximately 1.2 mm.
As illustrated in the diagram to the right, the differential pair of contacts having a short electrical length on the upper
side of the board can be given an electrical length equivalent to that between the opposing differential pair by
adjusting the electrical length using such methods as through holes in the board.
The crosstalk on the board between differential pairs is also reduced.
Differential pair (2)
Differential pair (1)
Upper-side contact
Electrical length adjustment portion
Lower-side contact
Difference between contact electrical lengths
■Power Supply Contacts Configuration Diagram
The 65-contact type is configured with 6 power supply contacts.
The power supply contacts are divided into 2 leads within the receptacle-side connector (EX60T-C65P) which
results in differing numbers of coupling surface-side contacts and board-side lead portion contacts.
EX60T-C71P
EX60T-C65P
Power supply contacts (6)
10
The product information in this catalog is for reference only. Please request the Engineering Drawing for the most current and accurate design information.
All non-RoHS products have been discontinued, or will be discontinued soon. Please check the products status on the Hirose website RoHS search at www.hirose-connectors.com, or contact your Hirose sales representative.
■Anchoring to the Case
Mounting of the receptacle connectors makes use of screws to fasten the connectors to the case as illustrated in the
diagram below. This contributes to a structure that is resistant to twisting.
Embedded nut
Case
EX60T-71P
M2 countersunk screw
PCB
■A Design that Doesn't Use Heat-Shrink Tubing
The soldered wiring portion of the plug connector is secured to the molding which serves as a measure against the
short-circuiting of adjacent contacts. This eliminates the need to attach heat-shrink tubing.
The plug connector has been furnished with a retaining plate made of resin material for the purpose of preventing
short circuits with the metal portions of the cover case.
Insulating retaining plate
Molding
Contact
■Batch Wiring of Plug Connectors
These connectors permit the batch soldered wiring of cables prepared with paste solder and partial reflow.
(Regularly soldered wiring is used for power supply contacts.)
Please contact our Technical Department about harness details for the purpose of satisfying harness qualities and
high-speed transmission characteristics.
11
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