AN93
Rev. 1.4
267
10.4.2. Safety
Designs using the ISOmodem pass all overcurrent and overvoltage tests for UL1950 3rd Edition with the addition
of a 1.25 A Fuse or PTC, as shown in Figure 50. In a cost-optimized design, compliance to UL1950 does not
always require overvoltage tests. In the design cycle, it is important to plan ahead and know which overvoltage
tests will apply. System-level elements in the construction, such as fire enclosure or spacing requirements, need to
be considered during the design stages. Consult with a testing agency during product design to determine which
tests will apply.
Figure 50. Circuits that Pass All UL1950 Overvoltage Tests
10.4.3. Surges
Use the reference design described in "4. Hardware Design Reference" on page 46 with through-hole Y1
capacitors for C1, C2, C8, and C9. Use spacing between the capacitor leads, between any line-side (high voltage)
component or trace and system side (low voltage) component or trace greater than 8 mm. Also, the spacing
between any line-side component or trace (or through-hole lead extending through the PCB) and the chassis (or
anything connected to the chassis or low voltage circuitry) must be greater than 8 mm or protected with insulating
material capable of withstanding a voltage greater than 8 kV. Additionally, slots cut through the PCB are
recommended between the leads of C1, C2, C8, and C9 for increased creepage. The PCB and components should
be clean and free of contamination, such as solder flux or other residue. The design engineer must verify the
spacing indicated above meets or exceeds any specifications with which they wish to comply. The ISOmodem,
used with the components and techniques described above, offers the highest reliability and lowest cost of any
available solution. The use of supplemental surge-suppression components is not recommended.
C8
FB1
FB2
C9
RV1
Fuse/PTC
TIP
RING
1.25 A
1000
@ 100 MHz, 200 mA
1000
@ 100 MHz, 200 mA
Содержание Si2404
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