1, Detailed specification for your inforamtion
Basic size information | |||
Suitable terminals | A2005 series | ||
Suitable wafer | A2005 series | ||
Mating lock | without | ||
Wire Termination Method | Crimping | ||
Circuits | 2 to 15 pins | ||
Wire Insulation Diameter | 1.45mm Max. | ||
Mounting side | Standard on-Board | ||
Terminals material | phosphor bronze; tin-plated finish | ||
Electrical properties | |||
Current Rating | 3A AC, DC | ||
Voltage Rating | 250V AC, DC | ||
Contact Resistance | 30mΩ Max | ||
Insulation Resistance | 1000mΩ min | ||
Withstanding Voltage | 650V AC/minute | ||
Mechanical properties | |||
Operating temperature range | -25℃ to 85 ℃ | ||
Other information please kindly check the following picture. |
2, Related dimension drawing and testing report
Please kindly check the below pictures, wish it can help you a lot to get what you exactly need.
Mechanical Performance
Test Description | Procedure | Requirement | ||
5-1 | Actuator Insertion & Withdrawal Force | Insert and withdraw connectors at the speed rate of 25±3mm / minute. | Refer to paragraph 7-2 | |
5-2 | Crimping Pull Out Force | Fix the crimped terminal, apply axial pull out force on the wire at the speed rat of 25±3mm / minute.(Based upon JIS C5402 6.8) | AWG#22 | 5.0kgf (Min) |
AWG#24 | 3.0kgf (Min) | |||
AWG#26 | 2.0kgf (Min) | |||
AWG#28 | 1.0kgf (Min) | |||
5-3 | Terminal Insertion Force. | Insert the crimped terminal into the housing. | 1.50kgf (Max.) | |
5-4 | Terminal/Housing Retention Force. | Apply axial pull out force at the speed rate of 25±3mm / minute on the terminal assembled in the housing. | 1.50kgf (Min.) | |
5-5 | Pin Retention Force | Apply axial push force at the speed rate of 25±3mm / minute | 1.00kgf (Min.) | |
5-7 | Durability | When mated up to 30 cycles repeatedly by the rate of 10 cycle per minute. | Contact Resistance 40mΩ (Max.) | |
5-8 | Vibration | Amplitude: 1.5mm P-P Sweep time: 10-55-10 Hz in 1 minute Duration: 2 hours in each X.Y.Z. axes. (Based upon MIL-STD-202 Method 201A) | Appearance No Damage. Contact Resistance 40mΩ (Max.) Discontinuity 1 μsec.(Max.) | |
5-9 | Physical Shock | 490m/s²{50G},3 strokes in each X.Y.Z. axes. (Based upon JIS C0041/MIL-STD-202 Method 213B Cond. A) |
Environmental Performance And Others
Test Description | Procedure | Requirement | |
6-1 | Temperature Rise | Carrying rated current load.(Based upon UL 498) | 30℃(Max.) |
6-2 | Heat Resistance | 85±2℃,96 hours (Based upon JIS C0021/MIL-STD-202 Method 108A Cond. A) | Appearance No Damage. Contact Resistance 40mΩ (Max.) |
6-3 | Cold Resistance | -25±3℃,96 hours (Based upon JIS C0020) | |
6-4 | Humidity | Temperature: 40±2℃ Relative Humidity : 90~95% Duration: 96 hours (Based upon JIS C0022/MIL-STD-202 Method 103B Cond. B) | Appearance No Damage. Contact Resistance 40mΩ (Max.) Insulation Resistance 100MΩ (Min.) Dielectric Withstanding Voltage Must meet 4-3 |
6-5 | Temperature Cycling | 5 cycles of: a) -55℃ 30 minutes b) +85℃ 30 minutes (Based upon JIS C0025) | Appearance No Damage. Contact Resistance 40mΩ (Max.) |
6-6 | Salt Spray | Tin-plated 12 hours / Gold- plated 24 hours exposure to a salt spray from the 5±1% solution at 35±2℃. (Based upon JIS C0023/MIL-STD-202 Method 101D Cond. B) | |
6-7 | SO2 Gas | 24 hours exposure to 50±5ppm. SO2 gas at 40±2℃. | |
6-8 | NH3 Gas | 40 minutes exposure to NH3 gas evaporating from 28% Ammonia solution. | |
6-9 | Solderability | Soldering Time: 5±0.5 sec. Solder Temperature: 245±5℃ | Solder Wetting 95% of immersed area must show no voids, pin holes |
3, Our Modes of Delivery & Payment
In order to make you pay money easily, we offer various payment modes, formore, the multiple delivery way can meet your different demands like shipping time, shipping cost.