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Table 4.7
100-240VAC, L-to-E, Non-Isolated Coupling Circuit Component Values
Comp
Value
Specifications
Vendor / Part Number
C1 0.033µF ±10%,
≥
250VAC, X2 type
(1)
Nissei Denki / Arcotronics
R40333K275XXXX
C2 0.82µF ±5%,
≥
50VDC, metalized polyester
Matsushita Electric / ECQ-V1H824JL
C3
≥
120µF
±20%, 16VDC, aluminum electrolytic,
≤
0.3
Ω
ESR @100kHz
Matsushita Electric / ECA-1CFQ121
C4 0.033µF ±5%,
≥
50VDC
AVX / SR205C333JAA
D1 1A
Reverse
breakdown
≥
50V, surge current
≥
30A for
8.3mS, reverse recovery
≤
200nS
1N4935
F1
6A
250VAC, slow blow
(2)
L1, L3, L4
1.0mH
±10%, Imax
≥
30mA, RDC
≤
50
Ω
TAIYO YUDEN / LAL03NA102K
L2
39µH
±10%, Imax
≥
500mA , RDC
≤
0.3
Ω
TAIYO YUDEN / LAL05TB390K
R1
1M
Ω
±5%, 1/4W, max working volt
≥
360VDC
(4)
R2
82
Ω
-L4RDC
(3)
±5%,
≥
1/16W
PROTECT none
240VAC
240VAC
For indoor branch circuits no component required
For power entry use AC gas discharge tube
(5)
For outdoor use AC gas discharge tube
(5)
n/a
CPClare / AC240L
CPClare / AC240L
Table 4.8
100-120VAC, L-to-E, Non-Isolated Coupling Circuit Component Values
Comp
Value
Specifications
Vendor / Part Number
C1 0.068µF ±10%,
≥
250VAC, X2 type
(1)
Nissei Denki / Arcotronics
R40683K275XXXX
C2 0.82µF ±5%,
≥
50VDC, metalized polyester
Matsushita Electric / ECQ-V1H824JL
C3
≥
120µF
±20%, 16VDC, aluminum electrolytic,
≤
0.3
Ω
ESR @100kHz
Matsushita Electric / ECA-1CFQ121
C4 0.068µF ±5%,
≥
50VDC
AVX / SR205C683JAA
D1 1A
Reverse
breakdown
≥
50V, surge current
≥
30A for
8.3mS, reverse recovery
≤
200nS
1N4935
F1
6A
125VAC, slow blow
(2)
L1, L3, L4
1.0mH
±10%, Imax
≥
30mA, RDC
≤
50
Ω
TAIYO YUDEN / LAL03NA102K
L2
18µH
±10%, Imax
≥
500mA, RDC
≤
0.3
Ω
TAIYO YUDEN / LAL05TB180K
R1
1M
Ω
±5%, 1/4W, max working volt
≥
200VDC
(4)
R2
82
Ω
-L4RDC
(3)
±5%,
≥
1/16W
PROTECT none
120VAC
120VAC
For indoor branch circuits no component required
For power entry use AC gas discharge tube
(5)
For outdoor use AC gas discharge tube
(5)
n/a
CPClare / AC120L
CPClare / AC120L
(1)
An X2-type capacitor is required for adequate surge immunity in branch circuit applications.
(2)
In some applications a fuse may not be required. Consult applicable safety standards.
(3)
The value of R2 should be selected so that the series combination the DC resistance of L4 and R2 is equal to 82
Ω
.
(4)
The working voltage rating of R1 may be achieved by using two 470k
Ω
resistors in series, each with a working voltage rating of at
least half of the value listed above. In addition, the peak power and peak voltage rating of R1 must be chosen to meet the high-
pot testing requirements of the application.
(5) High-pot manufacturing tests must be performed proir to installation of this gas discharge tube. High-pot testing between line
and earth is usually performed at voltages above the gas tube arc-over voltage, and the test will fail if the gas tube arcs during
testing. In addition, a DC high-pot tester must be used to avoid excessive current flow through C1.
L
ON
W
ORKS
PLT-22 Transceiver User’s Guide
4-23
Содержание LONWORKS PLT-22
Страница 6: ...iv Echelon...
Страница 14: ...1 8 Introduction...
Страница 67: ...LONWORKS PLT 22 Transceiver s User Guide 5 7 Figure 5 3 Capacitor Input Power Supply Schematic...
Страница 92: ...6 10 Design and Test for Electromagnetic Compatibility...
Страница 110: ...7 18 Communication Performance Verification...
Страница 114: ...8 4 References...
Страница 118: ...A 4 Appendix A...