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SI8285 Datasheet, PDF (22/32 Pages) Silicon Laboratories – System Safety Features
4.3 Regulatory Information
Si8285/86 Data Sheet
Electrical Specifications
Table 4.3. Regulatory Information (Pending)1, 2
CSA
The Si828x is certified under CSA Component Acceptance Notice 5A. For more details, see File 232873.
60950-1: Up to 600 VRMS reinforced insulation working voltage; up to 1000 VRMS basic insulation working voltage.
VDE
The Si828x is certified according to VDE0884. For more details, see File 5006301-4880-0001.
VDE 0884-10: Up to 1414 Vpeak for reinforced insulation working voltage.
UL
The Si828x is certified under UL1577 component recognition program. For more details, see File E257455.
Rated up to 5000 VRMS isolation voltage for basic protection.
CQC
The Si828x is certified under GB4943.1-2011.
Rated up to 600 VRMS reinforced insulation working voltage; up to 1000 VRMS basic insulation working voltage.
Note:
1. Regulatory Certifications apply to 5.0 kVRMS rated devices, which are production tested to 6.0 kVRMS for 1 sec.
2. For more information, see 1. Ordering Guide.
Table 4.4. Insulation and Safety-Related Specifications
Parameter
Symbol
Test Condition
Value
Unit
WB SOIC-16
Nominal Air Gap (Clearance)1
L(1O1)
8.0
mm
Nominal External Tracking (Creepage)
L(1O2)
8.0
mm
Minimum Internal Gap (Internal Clearance)
0.016
mm
Tracking Resistance (Proof Tracking Index)
PTI
IEC60112
600
V
Erosion Depth
ED
0.019
mm
Resistance (Input-Output)2
RIO
1012
Ω
Capacitance (Input-Output)2
CIO
f = 1 MHz
1
pF
Note:
1. The values in this table correspond to the nominal creepage and clearance values as detailed in PACKAGE OUTLINE: 16-PIN
WIDE BODY SOIC. VDE certifies the clearance and creepage limits as 8.5 mm minimum for the WB SOIC-16. UL does not im-
pose a clearance and creepage minimum for component level certifications. CSA certifies the clearance and creepage limits as
7.6 mm minimum for the WB SOIC-16 package.
2. To determine resistance and capacitance, the Si828x is converted into a 2-terminal device. Pins 1–8 are shorted together to form
the first terminal, and pins 9–16 are shorted together to form the second terminal. The parameters are then measured between
these two terminals.
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