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EB4678 Datasheet, PDF (1/8 Pages) Vishay Siliconix – Edgeboard Connectors 200°C Burn-In Connectors, Dual Readout
EB4, EB6, EB7, EB8
Vishay Dale
Edgeboard Connectors
200°C Burn-In Connectors, Dual Readout
ELECTRICAL SPECIFICATIONS
Current Rating: 5 amps.
Test Voltage Between Contacts: At sea level: 1800VRMS.
At 70,000 feet: 450VRMS.
Insulation Resistance: 5000 Megohm minimum at 500VDC
potential.
Contact Resistance: 30 millivolts maximum at rated current.
Humidity: 48 hours at 95% relative humidity at + 90°C,
insulation resistance 5000 Megohm.
Shock: Three 50g shocks in each of 3 mutually perpendicular
planes with no loss of continuity.
FEATURES
• EB4, 0.100" [2.54mm] C-C. EB6, 0.125" [3.17mm] C-C.
EB7 and EB8, 0.156" [3.96mm] C-C.
• Right angle styles included for all models.
• High temperature, glass reinforced PPS connector bodies
- 200°C.
• High reliability copper-nickel-tin alloy contacts.
• Accepts PC board thickness of 0.054" to 0.071" [1.37mm
to 1.80mm].
• High reliability bifurcated bellows contacts.
• Gold plated contacts.
• Card extender style terminals standard.
• Variety of mounting styles available.
• Recognized under the Component Program of
Underwriters Laboratories, Inc. Listed under File
E65524.
APPLICATIONS
High temperature, long life connectors specifically designed
for burn-in oven and automatic temperature testing
applications.
Available in a wide range of sizes. Priced affordably and
competitively.
SPECIAL NOTE:
When operating units at elevated temperatures, solder having
a melting point 50 degrees Centigrade above the operating
temperature should be used. Contact factory for specific
solder information.
MATERIAL SPECIFICATIONS
Body Material:
200°C Connectors: Fiberglass reinforced polyphenylene
sulfide, + 200°C operating temperature, flame retardant
(UL 94V-O).
Contacts: Copper-nickel-tin alloy per ASTM B 740.
Plating: Gold plating (0.00003" [0.000762mm] thick), over
0.00005" [0.00127mm] minimum nickel underplate.
www.vishay.com
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For technical questions, contact Connectors@vishay.com
Document Number 36006
Revision 14-Aug-02