BTA16-600CRG STMicroelectronics, BTA16-600CRG Datasheet - Page 4

TRIAC STD 600V 16A 25MA TO-220AB

BTA16-600CRG

Manufacturer Part Number
BTA16-600CRG
Description
TRIAC STD 600V 16A 25MA TO-220AB
Manufacturer
STMicroelectronics
Type
TRIACr
Datasheet

Specifications of BTA16-600CRG

Triac Type
Standard
Mounting Type
Through Hole
Configuration
Single
Current - Hold (ih) (max)
25mA
Voltage - Off State
600V
Current - Gate Trigger (igt) (max)
25mA
Current - Non Rep. Surge 50, 60hz (itsm)
160A, 168A
Current - On State (it (rms)) (max)
16A
Voltage - Gate Trigger (vgt) (max)
1.3V
Package / Case
TO-220-3
Current - On State (it (rms) (max)
16A
Repetitive Peak Off-state Volt
600V
Off-state Voltage
600V
Hold Current
25mA
Gate Trigger Current (max)
50mA
Gate Trigger Voltage (max)
1.3V
Package Type
TO-220AB Insulated
Peak Repeat Off Current
5uA
Peak Surge On-state Current (max)
168A
On State Voltage(max)
1.55@22.5AV
Mounting
Through Hole
Pin Count
3 +Tab
Operating Temp Range
-40C to 125C
Operating Temperature Classification
Automotive
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
497-3388-5

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
BTA16-600CRG
Manufacturer:
SIEMENS
Quantity:
120
Part Number:
BTA16-600CRG
Manufacturer:
ST
Quantity:
120
Part Number:
BTA16-600CRG,BTA16-800BWRG,BTA16-800BW,BTA16-600C
Manufacturer:
ST
0
Characteristics
4/10
Figure 1.
Figure 3.
Figure 5.
20
18
16
14
10
200
100
12
4.0
3.5
3.0
2.5
2.0
1.5
1.0
0.5
0.0
8
6
4
0
10
2
1
0
P(W)
0.5
I
0
T(RMS)
I
printed circuit board FR4, copper thickness: 35 µm
TM
R = 25 m
V = 0.85V
T =
to
d
j
(A)
T max.
j
T max.
j
1.0
2
(A)
Ω
25
Maximum power dissipation versus
on-state rms current (full cycle)
On-state rms current versus
ambient temperature (full cycle)
On-state characteristics
(maximum values)
1.5
4
2.0
T = 25°C
j
6
50
I
.
T(RMS)
2.5
T (°C)
V
C
TM
8
(V)
(A)
3.0
75
10
3.5
12
4.0
100
14
(S=1cm )
Doc ID 7471 Rev 9
4.5
D PAK
2
2
125
5.0
16
Figure 2.
Figure 4.
Figure 6.
18
16
14
12
10
1E+0
180
160
140
120
100
1E-2
1E-1
8
6
4
2
0
80
60
40
20
0
I
0
T(RMS)
1E-3
I
1
TSM
K=[Z /R
(A)
Repetitive
T =85°C
(A)
C
th
Z
th(j-c)
1E-2
25
On-state rms current versus case
temperature (full cycle)
Relative variation of thermal
impedance versus pulse duration
Surge peak on-state current versus
number of cycles
th
]
Non repetitive
T initial=25°C
j
10
1E-1
BTA16, BTB16, T1610, T1635
Number of cycles
50
T (°C)
C
t (s)
p
1E+0
75
Z
th(j-a)
100
BTA
1E+1
100
t=20ms
One cycle
1E+2
BTB / T16
5E+2
1000
125

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