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ZTX600BZ View Datasheet(PDF) - Diodes Incorporated.

Part Name
Description
View to exact match
ZTX600BZ Datasheet PDF : 3 Pages
1 2 3
OBSOLETE
ZTX600
ZTX601
ELECTRICAL CHARACTERISTICS (at Tamb = 25°C unless otherwise stated).
PARAMETER
SYMBOL
ZTX600
ZTX601
UNIT CONDITIONS.
MIN. TYP. MAX. MIN. TYP. MAX.
Static Forward
hFE
Current Transfer
Ratio
Group A
Group B
1K
1K
2K
100K 2K
100K
1K
1K
1K 2K
1K 2K
2K 5K 20K 2K 5K 20K
1K 3K
1K 3K
5K 10K
5K 10K
10K 20K 100K 10K 20K 100K
5K 10K
5K 10K
IC=50mA, VCE=10V*
IC=0.5A, VCE=10V*
IC=1A, VCE=10V*
IC=50mA, VCE=10V*
IC=0.5A, VCE=10V*
IC=1A, VCE=10V*
IC=50mA, VCE=10V*
IC=0.5A, VCE=10V*
IC=1A, VCE=10V*
Transition
fT
150 250
150 250
MHz IC=100mA,
Frequency
VCE=10V f=20MHz
Input Capacitance Cibo
60 90
60 90 pF VEB=0.5V, f=1MHz
Output
Cobo
Capacitance
10 15
10 15 pF VCE=10V, f=1MHz
Switching Times ton
0.75
0.75
µs
toff
2.2
2.2
µs
*Measured under pulsed conditions. Pulse width=300µs. Duty cycle 2%
IC=0.5A, VCE=10V
IB1=IB2=0.5mA
R5 = 50KR5 = 5K
1.0
0.8 R5 = 1M
R5 =
0.6
DC Conditions
0.4
0.2
0
1
10
100
200
VCE - Collector-Emitter Voltage (Volts)
Voltage Derating Graph
The maximum permissible operational temperature can be obtained from this graph using the
following equation
Tamb (max )
=
Power (max ) − Power (act)
0.0057
+25° C
Tamb(max)= Maximum operating ambient temperature
Power(max) = Maximum power dissipation figure, obtained from the above graph for a given VCE
and source resistance (RS)
Power(actual)= Actual power dissipation in users circuit
3-207
 

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