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 BC1 ¸±·¹ÀÌ
¡Ü ÃʼÒÇü PCB °ø°£¸¸ »ç¿ë
¡Ü Surge ÀúÇ× Àü¾Ð 2500V (FCC Part 68 ºÎÇÕ)
¡Ü EN60950/EN41003 ºÎÇÕ
¡Ü J-legs SMT, SMT ¿Í DIP Çü °¡´É
¡Ü°í¿ë·® Á¢Á¡ : 2A 30VDC
¡ÜÀýÀüÇü
¡ÜÀϹÝÇü ¹× ·¡ÄªÇü °¡´É
¡Üȯ°æ ģȭÀû Á¦Ç° (RoHS compliant)
¡Ü¿Ü°ü Ä¡¼ö : (10. 0 x6.5 x5.4) mm

Á¢Á¡ »ç¾ç

Á¢Á¡ ±¸Á¶ 2C
Á¢ÃË ÀúÇ× 100m¥Ø max. (at 10Ma 30mVDC)
Á¢Á¡ ÀçÁú    Silver alloy, Gold clad
Á¢Á¡ ¿ë·®(ÀúÇ× ºÎÇÏ) 1A 30VDC, 0.3A 125VAC
ÃÖ´ë °³Æó Àü¾Ð 220VDC/250VAC
ÃÖ´ë °³Æó Àü·ù 2A
ÃÖ´ë °³Æó·Â  60W/62.5VA
ÃÖ¼Ò °¡¿ë Àü¾Ð 10mV 10µA
±â°èÀû ¼ö¸í 1 x108ops
Àü±âÀû ¼ö¸í

1X105 ȸ (AgNi+Au plated, 0.3A 125VAC, Resistive load, at 85¡É, 1s on 9s off)(at 2A 30VDC)

Notes: 1) The data shown above are initial values.

2) Min. applicable load is reference value. Please perform the confirmation test with the actual load before production since reference value may change according to switching frequencies, environmental conditions and expected contact resistance and reliability.

3) Electric endurance data are collected in the NO or NC contact test.

ÀÏ¹Ý Æ¯¼º

Àý¿¬ ÀúÇ× 1000M¥Ø, Min. at 500VDC
³» Àü ¾Ð Á¢Á¡ ÄÚÀϰ£ 1600VAC (ÀϺа£)
Á¢Á¡°£ 1000VAC(ÀϺа£)      
Á¢Á¡Á¶°£ 18000VAC(ÀϺа£)
µ¿ÀÛ ½Ã°£() 3ms max
Surge ÀúÇ× Àü¾Ð
Á¢Á¡°£  (10 x160µs)
Á¢Á¡ ÄÚÀϰ£ (2 x10µs)
1500VAC (FCC part 68)
2500VAC(Telecordia)
º¹±Í Àü¾Ð (Á¤°ÝÀü¾Ð¿¡¼­) 3ms
ÁÖÀ§ ¿Âµµ -40¡É to +85¡É
Ãæ°Ý ÀúÇ× ±â´ÉÀû 735m/s2
ÆÄ±«Àû 980 m/s2

Áøµ¿ ÀúÇ×  

10Hz to 55Hz 3.3mm DA  

½À   µµ 5%~98% RH, 40¡É
´Ü   ÀÚ DIP.SMT
´ÜÀ§ Áß·® Approx .0.8g
±¸   Á¶ Wash tight, Flux proofed
¿Âµµ »ó½Â

50K max.(At 1A load, 85¡É environment)

¼Òºñ Àü·ù

Single side stable

140mW

1 coil latching

100mW

ÁÖ±â: »ó±âÀÚ·á´Â ÃÊ±â Æ¯¼º ÀÚ·áÀÓ

ÄÚÀÏ »ç¾ç ÀÏ¹Ý ÄÚÀÏ

Çü  ¸í Á¤°ÝÀü¾Ð(VDC) µ¿ÀÛÀü¾Ð(VDC) º¹±ÍÀü(VDC) ÄÚÀÏÀúÇ×(¥Ø) ¼ÒºñÀü·ù(mW) ÃÖ´ë°¡¿ëÀü¾Ð(VDC)
BC1-1.5 1.5 1.13 0.15 16x(1±10%) 140 3.0
BC1-3 2.4 1.8 0.24 41x(1±10%) 140 4.8
BC1-3 3 2.25 0.3 64.3x(1±10%) 140 6.0
BC1-4.5 4.5 3.38 0.45 145x(1±10%) 140 9.0
BC1-5 5 3.75 0.5 178x(1±10%) 140 10
BC1-6 6 4.5 0.6 257x(1±10%) 140 12
BC1-9 9 6.75 0.9 579x(1±10%) 140 18
BC1-12 12 9 1.2 1028x(1±10%) 140 24
BC1-24 24 18 2.4 2880x(1±10%) 200 48

·¡Äª ÄÚÀÏ
Çü  ¸í Á¤°ÝÀü¾Ð(VDC) µ¿ÀÛÀü¾Ð(VDC) º¹±ÍÀü¾Ð(VDC) ÄÚÀÏÀúÇ×( ¥Ø) ¼ÒºñÀü·ù(mW) ÃÖ´ë°¡¿ëÀü¾Ð(VDC)
BC1-1.5-L1 1.5 1.13 0.13 22.5x(1±10%) 100 3.0
BC1-2.4-L1 2.4 1.8 1.8 58x(1±10%) 100 4.8
BC1-3-L1 3 2.25 2.25 90x(1±10%) 100 6.0
BC1-4.5-L1 4.5 3.38 3.38 203x(1±10%) 100 9.0
BC1-5-L1 5 3.75 3.75 250x(1±10%) 100 10.0
BC1-6-L1 6 4.5 4.5 360x(1±10%) 100 12.0
BC1-9-L1 9 6.75 6.75 810x(1±10%) 100 18.0
BC1-12-L1 12 9 9 1440x(1±10%) 100 24.0
BC1-24-L1 24 18 18 2880x(1±10%) 200 36.0

Notes (1) Energizing coil with rated voltage is basic for normal operation of a relay. Please make sure the energized voltage to relay coil have reached the rated voltage. (2) In case 5V of transistor drive circuit, it is recommended to use 4.5V type relay, and 3V to use 2.4V type relay. (3) For monostable relays, if you need to drop down voltage and hold mode after reliably operating, make sure that the effective value of holding voltage is not less than 60% of the rated voltage.(4) Maximum voltage refers to the maximum voltage which relay coil could endure in a short period of time. (5) When uer¡¯s requirements can¡¯t be found in above table, special order allowed.

ÁÖ¹® ÄÚµå

BC1-1.jpg

 

¿Ü°üÄ¡¼ö ¹× ȸ·Îµµ                            Unit:mm

BC1-2.jpg

ÁÖ±â     1). »ó±â ¿Ü°üÄ¡¼öÀÇ °øÂ÷´Â 1mm ÀÌÇÏÀÎ °æ¿ì °øÂ÷´Â ±0.2mm;  1mm ÀÌ»ó 5mm ÀÌÇÏÀÎ °æ¿ì´Â ±0.3mmÀ̸ç;  5mm ÀÌ»óÀº±0.4mmÀÓ,  
         2).PCB LAYOUT °øÂ÷ : ±0.1mm

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