1 SVC Driver
The simplest way to hook up a subwoofer. The total impedance of this system is 4 Ohms. |
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1 DVC Driver Parallel
When using a 4 Ohm Dual Voice Coil (DVC) subwoofer, the total impedance of this system is 2 Ohms. |
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1 DVC Driver Series
When using a 4 Ohm Dual Voice Coil (DVC) subwoofer, the total impedance of this system is 8 Ohms. |
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2 SVC Driver Parallel
These two wiring diagrams are identical, because the "SUB 1" output is paralleled to the "SUB 2" output. If you don't want to crimp the wires together, the extra "SUB 2" output is an excellent way to connect your subwoofers. The total impedance of these systems is 2 Ohms. |
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2 DVC Driver Parallel/Parallel
DO NOT wire 2 DVC drivers in Parallel / Parallel configuration. Polk/MOMO Amps are only stable down to 2 Ohms. The total impedance of this system is 1 Ohms. |
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2 DVC Driver Series/Parallel
When using a 4 Ohm Dual Voice Coil (DVC) subwoofer, the total impedance of this system is 4 Ohms. |
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3 DVC Driver Series/Parallel
When using a 4 Ohm Dual Voice Coil (DVC) subwoofer, the total impedance of this system is 2.67 Ohms. |
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3 & 4 SVC Driver Parallel
DO NOT wire your subwoofers in a parallel configuration with 4 Ohm Single Voice Coil (SVC) Subwoofers if you have more than 2 subwoofers. Polk/MOMO Amps are only stable down to 2 Ohms.
You MUST use 8 Ohm or higher subwoofers if you want to configure 3 or more subwoofers in parallel |
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4 DVC Driver Series/Parallel
When using a 4 Ohm Dual Voice Coil (DVC) subwoofer, the total impedance of this system is 2 Ohms. |
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4 SVC Driver Series/Parallel
Total impedance of this system is 4 Ohms. |
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[이 게시물은 아르고님에 의해 2009-05-25 21:45:04 카오디오 셋팅자료실에서 복사 됨]