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关键词
compared
标准
为您共找出
"18"
个相关器件
图片
型号
厂商
标准
分类
描述
SGB02N60_06
Infineon Technologies
fast
igbt
in
npt
-
technology
75%
lower
eoff
compared
to
previous
generation
SGP02N60_07
Infineon Technologies
fast
igbt
in
npt
-
technology
75%
lower
eoff
compared
to
previous
generation
SGB04N60_06
Infineon Technologies
fast
igbt
in
npt
-
technology
75%
lower
eoff
compared
to
previous
generation
SGW25N120_09
Infineon Technologies
fast
igbt
in
npt
-
technology
40%
lower
eoff
compared
to
previous
generation
SGP15N60_08
Infineon Technologies
fast
igbt
in
npt
-
technology
75%
lower
eoff
compared
to
previous
generation
SKB15N60HS_07
Infineon Technologies
high
speed
igbt
in
npt
-
technology
30%
lower
eoff
compared
to
previous
generation
SGP15N120_09
Infineon Technologies
fast
igbt
in
npt
-
technology
40%
lower
eoff
compared
to
previous
generation
C1210C334J3JACTU
Kemet
无源元器件
电容器
u2j
is
not
sensitive
to DC
bias
as
compared
to
class
II
dielectric
materials
and
retains
over
99% of
nominal
capacitance
at
full
rated
voltage
.
C1206C224J3JACTU
Kemet
无源元器件
电容器
u2j
is
not
sensitive
to DC
bias
as
compared
to
class
II
dielectric
materials
and
retains
over
99% of
nominal
capacitance
at
full
rated
voltage
.
kemet
automotive
grade
series
capacitors
meet
the
dem
and
ing
automotive
electronics
council
's
aec
–
q200
qualification
requirements
.
capacitance
change
is
limited
to −
750
±
120
ppm
/°C
from
−55°C to +
125
°C
387000176
Laird Technologies
热量管理
热电
the
tunnel
series
teas
are
designed
with
a
patented
,
high
-
performance
cross
flow
technology
that
maximizes
heat
transfer
when
pulling
air
through
a
heat
exchanger
.
the
number
of
air
flow
paths
required
to
operate
is
reduced
when
comp
are
d to
traditional
impingement
flow
teas
387000840
Laird Technologies
热量管理
热电
the
tunnel
series
teas
are
designed
with
a
patented
,
high
-
performance
cross
flow
technology
that
maximizes
heat
transfer
when
pulling
air
through
a
heat
exchanger
.
the
number
of
air
flow
paths
required
to
operate
is
reduced
when
comp
are
d to
traditional
impingement
flow
teas
.
this
product
series
is
offered
in
two
heat
transfer
mechanism
configurations
:
387000872
Laird Technologies
热量管理
热电
the
tunnel
series
teas
are
designed
with
a
patented
,
high
-
performance
cross
flow
technology
that
maximizes
heat
transfer
when
pulling
air
through
a
heat
exchanger
.
the
number
of
air
flow
paths
required
to
operate
is
reduced
when
comp
are
d to
traditional
impingement
flow
teas
.
387000873
Laird Technologies
热量管理
热电
the
tunnel
series
teas
are
designed
with
a
patented
,
high
-
performance
cross
flow
technology
that
maximizes
heat
transfer
when
pulling
air
through
a
heat
exchanger
.
the
number
of
air
flow
paths
required
to
operate
is
reduced
when
comp
are
d to
traditional
impingement
flow
teas
387000910
Laird Technologies
热量管理
热电
the
tunnel
series
teas
are
designed
with
a
patented
,
high
-
performance
cross
flow
technology
that
maximizes
heat
transfer
when
pulling
air
through
a
heat
exchanger
.
the
number
of
air
flow
paths
required
to
operate
is
reduced
when
comp
are
d to
traditional
impingement
flow
teas
387000866
Laird Technologies
热量管理
热电
the
tunnel
series
teas
are
designed
with
a
patented
,
high
-
performance
cross
flow
technology
that
maximizes
heat
transfer
when
pulling
air
through
a
heat
exchanger
.
the
number
of
air
flow
paths
required
to
operate
is
reduced
when
comp
are
d to
traditional
impingement
flow
teas
.
387000848
Laird Technologies
热量管理
热电
the
tunnel
series
teas
are
designed
with
a
patented
,
high
-
performance
cross
flow
technology
that
maximizes
heat
transfer
when
pulling
air
through
a
heat
exchanger
.
the
number
of
air
flow
paths
required
to
operate
is
reduced
when
comp
are
d to
traditional
impingement
flow
teas
.
387000913
Laird Technologies
热量管理
热电
the
tunnel
series
teas
are
designed
with
a
patented
,
high
-
performance
cross
flow
technology
that
maximizes
heat
transfer
when
pulling
air
through
a
heat
exchanger
.
the
number
of
air
flow
paths
required
to
operate
is
reduced
when
comp
are
d to
traditional
impingement
flow
teas
.
387000918
Laird Technologies
热量管理
热电
the
tunnel
series
teas
are
designed
with
a
patented
,
high
-
performance
cross
flow
technology
that
maximizes
heat
transfer
when
pulling
air
through
a
heat
exchanger
.
the
number
of
air
flow
paths
required
to
operate
is
reduced
when
comp
are
d to
traditional
impingement
flow
teas
.
5573176
5573180
5708312
5775632
5789388
5796368
6572702
8073737
8073754
8073848
8073849
8073851
8073853
8073854
8073855
8073856
8073857
8073858