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TMCS1100 bảng dữ liệu(PDF) 6 Page - Texas Instruments

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Giải thích chi tiết về linh kiện  TMCS1100 1% High-Precision, Basic Isolation Hall-Effect Current Sensor With 짹600-V Working Voltage
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TMCS1100 bảng dữ liệu(HTML) 6 Page - Texas Instruments

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TMCS1100
SBOS820A – SEPTEMBER 2019 – REVISED JUNE 2020
www.ti.com
Product Folder Links: TMCS1100
Submit Documentation Feedback
Copyright © 2019–2020, Texas Instruments Incorporated
(1)
Apply creepage and clearance requirements according to the specific equipment isolation standards of an application. Take care to
maintain the creepage and clearance distance of the board design to make sure that the mounting pads of the isolator on the printed-
circuit board do not reduce this distance. Creepage and clearance on a printed-circuit board become equal in certain cases. Techniques
such as inserting grooves, ribs, or both on a printed circuit board are used to help increase these specifications.
(2)
Testing is carried out in air or oil to determine the intrinsic surge immunity of the isolation barrier.
(3)
Apparent charge is electrical discharge caused by a partial discharge (pd).
(4)
All pins on each side of the barrier tied together creating a two-terminal device
7.6 Insulation Specifications
PARAMETER
TEST CONDITIONS
VALUE
UNIT
GENERAL
CLR
External clearance(1)
Shortest terminal-to-terminal distance through air
4
mm
CPG
External creepage(1)
Shortest terminal-to-terminal distance across the package
surface
4
mm
DTI
Distance through the insulation
Minimum internal gap (internal clearance)
60
µm
CTI
Comparative tracking index
DIN EN 60112; IEC 60112
>400
V
Material group
II
Overvoltage category
Rated mains voltage
≤ 150 VRMS
I-IV
Rated mains voltage
≤ 300 VRMS
I-III
VIORM
Maximum repetitive peak isolation voltage
AC voltage (bipolar)
600
VPK
VIOWM
Maximum working isolation voltage
AC voltage (sine wave); Time Dependent Dielectric
Breakdown test, see Figure 35
424
VRMS
DC voltage
600
VDC
VIOTM
Maximum transient isolation voltage
VTEST = VIOTM = 4242VPK, t = 60 s (qualification);
VTEST = 1.2 × VIOTM = 5090VPK, t = 1 s (100% production)
4242
VPK
VIOSM
Maximum surge isolation voltage(2)
Test method per IEC 62368-1, 1.2/50 µs waveform,
VTEST = 1.3 × VIOSM = 7800VPK (qualification)
6000
VPK
qpd
Apparent charge(3)
Method a: After I/O safety test subgroup 2/3,
Vini = VIOTM = 4242VPK, tini = 60 s;
Vpd(m) = 1.2 × VIORM = 700VPK, tm = 10 s
≤5
pC
Method a: After environmental tests subgroup 1,
Vini = VIOTM = 4242VPK, tini = 60 s;
Vpd(m) = 1.2 × VIORM = 700VPK, tm = 10 s
≤5
Method b3: At routine test (100% production) and
preconditioning (type test)
Vini = 1.2 × VIOTM = 5090VPK, tini = 1 s;
Vpd(m) = 1.2 × VIOTM = 5090VPK, tm = 1 s
≤5
CIO
Barrier capacitance, input to output(4)
VIO = 0.4 sin (2πft), f = 1 MHz
0.6
pF
RIO
Isolation resistance, input to output(4)
VIO = 500 V, TA = 25°C
>1012
VIO = 500 V, 100°C ≤ TA ≤ 125°C
>1011
VIO = 500 V at TS = 150°C
>109
Pollution degree
2
UL 1577
VISO
Withstand isolation voltage
VTEST = VISO, t = 60 s (qualification); VTEST = 1.2 × VISO,
t = 1 s (100% production)
3000
VRMS
7.7 Safety-Related Certifications
UL
Pending recognition under UL 1577 Component Recognition
Program
Pending certification according to IEC 62368-1 CB
File number: Pending
Client ID number: Pending


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