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1 2 3 4 5 6 A A P0R5901 P0E701 P0R1802 P0E702 P0R1801 P0R1502 P0R1501 P0E901 P0R2002 P0E902 2 P0R5902 C7 0.1μF R22 +5V 14 P0U104 DTC P0U105 CT P0U106 RT OC 13 P0U1013 +12v 12 P0U1012 VCC C2 11 P0U1011 P0C802 P0C801 C5 0.1μF P0U107 GND E2 P0N101 10 N2 P0N201 S8050 S8050 P0U1010 C P0Rn201 E1 9 P0U109 P0P102 C1 Rn1 0 P0R3301 P0P202 P0U108 P1 +12V R8 1K P2 P0P201 S8550 P0R702 P0P101 R7 1K P0P203 8 P0R802 P0Rn101 P0R5802 C8 0.1μF N1 Rn2 R33 S8550 P0R3302 4.7K 8 P0J2010 P0J209 9 10 J2 D Title IFB 7 G2 6 G1 P0J207 5 +12V P0J206 P0J204 4 GND1 3 +12V 2 P0J203 +12V P0J202 P0J201 P0U1014 VREF 470Ω P0P303 1 P0R2202 6 7 R58 P0P301 S8550 5 4.7nF 10K P0R5801 COMP P0N203 C6 P0C601 P0C602 R23 100K P0Rn202 P0D502 P0U103 2.7K S8050 R13 470Ω D5 1N4148 P3 3 P0N202 P0C701 P0C702 P0R2101 R21 2.7K P0J208 2K C11 1.3μF P0P302 D P0R2102 P0D602 P0R2302 P0R1001 P0N301 P0D501 +12V D6 P0R2201 P0Rn102 S8050 D1 P0R2301 100K P0R1002 P0R1302 P0N303 8 P0U208 P0E801 4 1N4148 N3 E8 P0R701 9 7 P0U207 R14 1K P0D102 P0E2102 E21 22μF P0U209 R10 15 P0U1015 IN2- 22μF P0D601 P0R1401 P0R1402 10 P0E802 P0D101 P0U2010 R12 1M P0E2101 5 P0U205 P0R1201 11 P0R1202 P0U2011 IN1- 4.7K 1N4148 12 4 P0U204 P0U102 P0N103 4.7μF P0D402 16 P0U1016 IN2+ B R59 P0D401 IN1+ P0N102 P0R1101 P0C901P0C902 D4 P0U101 1N4148 P0U2012 P0N401 P0N402 1 P0D202 P0P103 P0R1102 P0D201 KA7500 P0R801 C9 R11 U1 P0C502P0C501 13 P0U2013 P0D302 P0R1301 N4 P0R4302 E9 47μF D2 1N4148 P0N302 P0R3902 P0N403 P0R3901 C10 R43 1.3μF P0R4301 P0R2001 P0R1601 P0R1602 P0R1702 P0R1901 P0R1701 P0R901 P0R902 P0R2501 + - P0C1101 P0C1102 P0R3501 R36 10K P0R3701 P0C1001 P0C1002 P0R3402 - + 6 P0U206 R39 68K 100K E7 47μF R15 10K R20 10K P0R2402 P0D301 470K P0R3502 P0R3401 R37 P0R3702 P0R2401 14 3 P0U203 R34 10K +6.14V R24 R19 1K R18 4.7K P0U2014 4.7K E10 22μF +5.86V P0R3601 P0R2502 1 P0U201 2 P0U202 R35 470Ω P0R3602 R17 2K D3 +12V C R9 1K +0.048V LM324 + - P0E1002 R42 10K U2 R25 4.7K + - P0E1001 B R41 2K +0.049V +0.145V P0J205 S8050 R38 1K +4.995V R40 1M R16 100K VFB P0N502 P0N501 +5V P0R1902 P0R4201 P0R4102 N5 P0R4202 P0N503 +0.059V P0R4101 P0R4002 P0R4001 P0R3802 P0R3801 +5V Size Number Revision A3 Date: File: 1 2 3 4 5 2011-11-28 \\..\KA7500.SchDoc Sheet of Drawn By: 6
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4. Jaký proud musí dodat zdroj v příkladu 3, když každá žárovka má příkon 0,5 W? Jak se proud
změní, když praskne jedna žárovka? Když prasknou dvě :-)?
M - vaeprosys.cz
IEC / EN 60898, IEC / EN 60947-2, VDE 0641 Part 11, UL 1077 , CSA 22.2 No. 235
0.5 ≤ In ≤ 63
0.2 ≤ In ≤ 63
0.5 ≤ In ≤ 25
32 ≤ In ≤ 40
50 ≤ In ≤ 63
1P, 1P+N, 2P, 3P, 3P+N, 4P
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