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CONTACT RESISTANCE
CONTACT SIZE WIRE GUAGE
AWG(mm2)
TEST CURRENT
(AMPS)
RESISTANCE
SOLIDS
RESISTANCE
STAMPED & FORMED
#12 12 25 60 µV 100 µV
WIRE SEALING RANGE
CONTACT SIZE
RECOMMENDED WIRE INSULATION O.D.
STANDARD (S-Seal) THIN WALL (RD-Seal)
#12 .134 - .170 (3.40 - 4.32) .097 - .158 (2.46 - 4.01)
DTP MATERIAL SPECIFICATIONS
Plug/Receptacle Contacts
Shell: Thermoplastic Pin: Copper Alloy
Wedge: Thermoplastic Socket: Copper Alloy
Seals: Silicone Elastomer Finish: Nickel-plated (optional Gold)
DTP GENERAL SPECIFICATIONS
Dielectric Withstanding Voltage Insulation Resistance
Current leak less than 2 milliamps at 1500
VAC
1000 megohms minimum 25°C
Current Ratings (Contact current rating at 125°C continuous)
Size 12 contact: 25 amps
Corrosion Resistance
Connectors show no evidence of corrosion after exposure to 48 hours of salt spray per
MIL - STD 1344, method 1001.
Submersion Fluid Resistance
IP67. Wired and mated connection will
withstand immersion under three feet of
water without loss of electronic qualities
or leakage.
Connectors show no damage when
exposed to most uids used in industrial
application.
Vibration Temperature
Maintains continuity and exhibits no
mechanical or physical damage after
vibration levels of 20 G’s at 10-2000 Hz.
Operative at temperatures from -55°C to
+125°C. Continuous at rated current.
Contact Retention Contacts withstand a minimum load of:
70lbs. for Size 12 contacts.
Thermal Cycle Durability
No cracking, chipping or leaking after 20
test cycles from -55°C to +125°C.
No electrical or mechanical defects
after 100 cycles of engagement and
disengagement.
Physical Shock Contact Millivolt Drop
No unlocking, unmating or other unsat-
isfactory results during or after 50 G’s
in each of three usually perpendicular
planes. No electrical discontinuities longer
than 1 microsecond. MIL-STD 202. Method
213, Condition “C”.
No. 16 contacts - 60 millivolt drop using 16
AWG wire (less drop through wire). Test
current 13 amps.
ATP SERIES™ MATERIAL SPECIFICATIONS
Plug/Receptacle Contacts
Shell: Thermoplastic Pin: Copper Alloy
Wedge: Thermoplastic Socket: Copper Alloy
Seals: Silicone Elastomer Finish: Nickel-plated (optional Gold)
ATP SERIES™ GENERAL SPECIFICATIONS
Dielectric Withstanding Voltage Insulation Resistance
Current leak less than 2 milliamps at 1500
VAC
1000 megohms minimum 25°C
Current Ratings (Contact current rating at 125°C continuous)
Size 12 contact: 25 amps
Corrosion Resistance
Connectors show no evidence of corrosion after exposure to 48 hours of salt spray per
MIL - STD 1344, method 1001.
Submersion Fluid Resistance
IP67. Wired and mated connection will
withstand immersion under three feet of
water without loss of electronic qualities
or leakage.
Connectors show no damage when
exposed to most uids used in industrial
application.
Vibration Temperature
Maintains continuity and exhibits no
mechanical or physical damage after
vibration levels of 20 G’s at 10-2000 Hz.
Operative at temperatures from -55°C to
+125°C. Continuous at rated current.
Contact Retention Contacts withstand a minimum load of:
70lbs. for Size 12 contacts.
Thermal Cycle Durability
No cracking, chipping or leaking after 20
test cycles from -55°C to +125°C.
No electrical or mechanical defects
after 100 cycles of engagement and
disengagement.
Physical Shock Contact Millivolt Drop
No unlocking, unmating or other unsat-
isfactory results during or after 50 G’s
in each of three usually perpendicular
planes. No electrical discontinuities longer
than 1 microsecond. MIL-STD 202. Method
213, Condition “C”.
No. 16 contacts - 60 millivolt drop using 16
AWG wire (less drop through wire). Test
current 13 amps.
CONTACT RESISTANCE
CONTACT SIZE WIRE GUAGE
AWG(mm2)
TEST CURRENT
(AMPS)
RESISTANCE
SOLIDS
RESISTANCE
STAMPED & FORMED
#12 12 25 60 µV 100 µV
WIRE SEALING RANGE
CONTACT SIZE
RECOMMENDED WIRE INSULATION O.D.
STANDARD THIN WALL (E-Seal)
#12 .134 - .170 (3.40 - 4.32) .097 - .158 (2.46 - 4.01)
vs.
ATP Series
Connectors
© 2011 Amphenol Sine Systems Corporation. Ever y effort has been made to ensure that the information contained in this document is accurate at the time of publication. Specications
or information stated in this document are subject to change without notice.
DTP Series