Contact Specifications (Typical Contacts)
CONTACT TYPE FILTER POWER
Pintail Termination
(See Page 3) 481-92 481-63
481-57
481-65
481-67 481-61
481-66 481-68
Solder Bucket Termination 481-55 481-8 481-26
481-15 481-16 481-20
Contact Part Number
Circuit Type P1 P1 C LRC CLR NA
Pass Band
dc to 3dB cut off Frequency Fca = 15MHz 4.5MHz 200KHz NA
(-0) Capacitance (Picofarads) @25oC
- minimum at 1 KHz (+100%)
500 1750 50000 NA
dc 200 200 100 500
at 85oC ac (rms) 125 125 50 300
dc 150 150 100 500
Working Voltage
Sea Level
(50mA max. charging current) at 125oC ac (rms) 125 125 50 300
Dielectric Withstanding Voltage (dc) @ 25oC
(50mA max. charging current) 500 500 300 1000
Insulation Resistance (gigahoms) –25oC
- Minimum 5 5 10
Current Rating (amperes)
- maximum ** dc and low frequencies 3 3 7.5
Filter rf Current (amperes)
- minimum ** at any frequency 0.25 NA
Operating Temperature ** (oC) -55 to +150
0.1 MHz
- - -
1 MHz
- - 15
10 MHz
- 5 33
100 MHz
20 40 45
Insertion Loss (decibels) @ 25oC
- minimum per MIL STD-220 (No Load) at
(Performance in Mated Connectors)
For Typical Insertion Loss
See below (results will vary with
temp. source and load impedance) 1000MHz
35 55 50
Same performance
as for ‘C’ version
under Mil-Std-220
but improved filter-
filtering offered for
other Zs & Z1 values
NA
Crosstalk Attenuation (decibels)
(coupling between contacts)
- minimum at 100MHz
Power to Filter
Filter to Filter 30
60
* Consult AMPHENOL FACTORY if your filter needs are not reflected in this catalogue.
** Upper limit is the maximum allowable internal hot spot temperature resulting from any combination of electrical and load ambient.
Typical Insertion Loss
Tests performed in strict accordance with MIL-STD-220* (No-Load) on Contacts in a 481 Series connector mated with a
Standard Non-Filter connector.
CAUTION – Comparison with other filter connector manufacturers data may be misleading unless the following factors are
taken into account:
(1) is official (unmodified) MIL-STD-220 test method ultilised as basis for performance depicted? Modification will result in
an apparent (ficticious) higher response!
(2) is performance shown for filter contacts installed in connectors? If performance is based on discrete (single) contacts
tested to MIL-STD-220, higher levels of I.L. will be indicated due to grounding limitations inherent in any connector
design.
80
60
40
20
00.1 1 10 100 1000
FREQUENCY (MHz)
CAPACITANCE VALUES
1750pF
500pF
50000pF
481.15, - 16, - 26 481-8
481-55