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BTA204W-500B Datenblatt(PDF) 1 Page - NXP Semiconductors

Teilenummer BTA204W-500B
Bauteilbeschribung  Three quadrant triacs high commutation
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Hersteller  PHILIPS [NXP Semiconductors]
Direct Link  http://www.nxp.com
Logo PHILIPS - NXP Semiconductors

BTA204W-500B Datenblatt(HTML) 1 Page - NXP Semiconductors

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Philips Semiconductors
Product specification
Three quadrant triacs
BTA204W series B and C
high commutation
GENERAL DESCRIPTION
QUICK REFERENCE DATA
Passivated high commutation triacs in
SYMBOL
PARAMETER
MAX.
MAX.
MAX. UNIT
a plastic envelope suitable for surface
mounting intended for use in circuits
BTA204W- 500B
600B
800B
where high static and dynamic dV/dt
BTA204W- 500C
600C
800C
and high dI/dt can occur. These
V
DRM
Repetitive peak
500
600
800
V
devices will commutate the full rated
off-state voltages
rms current at the maximum rated
I
T(RMS)
RMS on-state current
1
1
1
A
junction temperature without the aid of
I
TSM
Non-repetitive peak on-state
10
10
10
A
a snubber.
current
PINNING - SOT223
PIN CONFIGURATION
SYMBOL
PIN
DESCRIPTION
1
main terminal 1
2
main terminal 2
3
gate
tab
main terminal 2
LIMITING VALUES
Limiting values in accordance with the Absolute Maximum System (IEC 134).
SYMBOL
PARAMETER
CONDITIONS
MIN.
MAX.
UNIT
-500
-600
-800
V
DRM
Repetitive peak off-state
-
500
1
600
1
800
V
voltages
I
T(RMS)
RMS on-state current
full sine wave;
-
1
A
T
sp ≤ 108 ˚C
I
TSM
Non-repetitive peak
full sine wave;
on-state current
T
j = 25 ˚C prior to
surge
t = 20 ms
-
10
A
t = 16.7 ms
-
11
A
I
2tI2t for fusing
t = 10 ms
-
0.5
A
2s
dI
T/dt
Repetitive rate of rise of
I
TM = 1.5 A;
100
A/
µs
on-state current after
I
G = 0.2 A;
triggering
dI
G/dt = 0.2 A/µs
I
GM
Peak gate current
-
2
A
V
GM
Peak gate voltage
-
5
V
P
GM
Peak gate power
-
5
W
P
G(AV)
Average gate power
over any 20 ms
-
0.5
W
period
T
stg
Storage temperature
-40
150
˚C
T
j
Operating junction
-
125
˚C
temperature
T1
T2
G
4
1
23
1 Although not recommended, off-state voltages up to 800V may be applied without damage, but the triac may
switch to the on-state. The rate of rise of current should not exceed 6 A/
µs.
December 1998
1
Rev 1.000


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