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EP2F-B3N1TT

NEC
Part Number EP2F-B3N1TT
Manufacturer NEC
Description HIGH HEAT RESISTIVITY
Published Mar 30, 2005
Detailed Description DATA SHEET AUTOMOTIVE RELAYS EP2F/EP1F SERIES HIGH HEAT RESISTIVITY DESCRIPTION The NEC EP2F / EP1F series are PC-boa...
Datasheet PDF File EP2F-B3N1TT PDF File

EP2F-B3N1TT
EP2F-B3N1TT


Overview
DATA SHEET AUTOMOTIVE RELAYS EP2F/EP1F SERIES HIGH HEAT RESISTIVITY DESCRIPTION The NEC EP2F / EP1F series are PC-board mount type automotive relays suitable for various motor controls and other applications that require a high level of quality and performance.
The operate temperature range for EP2F / EP1F series is –40˚C through +125˚C.
By this high heat resistivity, the contact carrying current of EP2F / EP1F series at 25˚C increases 1.
3 or 1.
4 times compared with that of EP2 / EP1 series.
FEATURES ™ Operating ambient temperature up to +125˚C (EP2 / EP1 : +85˚C) ™ Suitable for motor and solenoid reversible control ™ High performance and productivity by unique structure ™ Flux tight housing APPLICATIONS ™ Power window control ™ Power sunroof ™ Wiper system EP2F SERIES EP1F SERIES Document No.
ER0145EJ1V0DS00 Date Published December 1995 M Printed in Japan © 1995 EP2F / EP1F SERIES SCHEMATIC (BOTTOM VIEW) EP2F SERIES 2 4 1 3 9 4 1 EP1F SERIES 2 3 4 2 1 3 8 5 6 7 10 5 6 7 8 5 [Unit A] [Unit B] [Unit A] [Unit B] [H Bridge Type] [Separate Type] DIMENSIONS mm (inch) EP2F SERIES H Bridge Type Vent hole JAPAN Separate Type Separate type discrimination mark Vent hole JAPAN φ 2(0.
079) Date code Part number Part number EP2F-B3L2 0G3 24 Date code EP2F-B3L2T 0G3 24 23.
8 + – 0.
5 (0.
94) 0.
5(0.
02) 16.
0 + – 0.
5 (0.
63) 16.
2 + – 0.
5 (0.
64) 23.
8 + – 0.
5 (0.
94) 0.
5(0.
02) 16.
0 + – 0.
5 16.
2 + – 0.
5 (0.
64) 3.
5 (0.
14) 3.
5 10.
1 8.
0 5.
45 (0.
21) (0.
21) (0.
4) (0.
31) 3.
5 (0.
14) (0.
32) (0.
32) 10.
1 8.
0 5.
45 (0.
21) (0.
4) (0.
31) 3.
5 (0.
14) 2-0.
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1 (0.
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1(0.
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04) 2.
2 (0.
09) 3.
1 (0.
12) 5.
45 (0.
21) 6.
4 (0.
25) 5.
45 (0.
09) (0.
21) 6.
4 (0.
25) (0.
14) (0.
63) 2.
2 (0.
09) (0.
14) 3.
5 (0.
31) (0.
4) (11.
9) 3.
1 (0.
12) 2.
2 (0.
09) 8.
0 10.
1 (11.
9) 2 -1.
3 ×1.
3(0.
05× 0.
05) 4 - φ 0.
6( φ 0.
22) ∗ for reference (0.
14) 3.
5 (0.
31) (0.
4) (11.
9) 8.
0 10.
1 (11.
9) 2 -1.
3 ×1.
3(0.
05× 0.
05) 4 - φ 0.
6( φ 0.
22) ∗ for reference 2 (0.
32) (0.
32) 8.
1∗ 8.
...



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