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PDF DTC124 Data sheet ( Hoja de datos )

Número de pieza DTC124
Descripción Bias Resistor Transistor
Fabricantes First Silicon 
Logotipo First Silicon Logotipo



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No Preview Available ! DTC124 Hoja de datos, Descripción, Manual

SEMICONDUCTOR
TECHNICAL DATA
DTC 101 ~ 108
DTC 110 ~ 112 / 114 /117
DTC 123 / 124
Bias Resistor Transistor
NPN Silicon Surface Mount Transistor
with Monolithic Bias Resistor Network
This new series of digital transistors is designed to replace a single
device and its external resistor bias network. The BRT (Bias Resistor
Transistor) contains a single transistor with a monolithic bias network
resistor. The BRT eliminates these individual components by
integrating them into a single device. The use of a BRT can reduce
both system cost and board space. The device is housed in the SOT-23
package which is designed for low power surface mount applications.
Simplifies Circuit Design
Reduces Board Space and Component Count
The SOT-23 package can be soldered using wave or reflow. The
modified gull-winged leads absorb thermal stress during soldering
eliminating the possibility of damage to the die.
MAXIMUM RATINGS (TA = 25 C unless otherwise noted)
Rating
Symbol Value
Collector-Base Voltage
VCBO
50
Collector-Emitter Voltage
VCEO
50
Collector Current
IC 100
Total Power Dissipation @ TA = 25 C
(Note 1.) Derate above 25 C
PD 246
1.5
Unit
Vdc
Vdc
mAdc
mW
C/W
3
2
1
SOT–23 (TO–236AB)
PIN 1
BASE
(INPUT)
R
1
R2
PIN 3
COLLECTOR
(OUTPUT)
PIN 2
EMITTER
(GROUND)
DEVICE MARKING AND RESISTOR VALUES
DTC101
Device
Marking
A8J
R1(K)
4.7
R2(K)
4.7
DTC102
A8A 10 10
DTC103
A8B 22 22
DTC104
A8C 47 47
DTC105
A8M 2.2 47
DTC106
A8K 4.7 47
DTC107
A8D 10 47
DTC108
A8L 22 47
DTC110
A8F 4.7
DTC111
A8E 10
DTC112
DTC114
A8U 100
A8T 47
DTC117
A8H 2.2 2.2
DTC123
A8G 1.0 1.0
DTC124
A8R 2.2
1. Device mounted on a FR-4 glass epoxy printed circuit board using the
minimum recommended footprint.
Shipping
3000/Tape & Reel
3000/Tape & Reel
3000/Tape & Reel
3000/Tape & Reel
3000/Tape & Reel
3000/Tape & Reel
3000/Tape & Reel
3000/Tape & Reel
3000/Tape & Reel
3000/Tape & Reel
3000/Tape & Reel
3000/Tape & Reel
3000/Tape & Reel
3000/Tape & Reel
3000/Tape & Reel
2008. 8. 28
Revision No : 1
1/16

1 page




DTC124 pdf
DTC 101 ~ 108, DTC 110 ~ 112 / 114 /117, DTC 123 / 124
250
200
150
100
50
0
–50
1000
100
TYPICAL ELECTRICAL CHARACTERISTICS
DTC102
1
IC/IB = 10
0.1
TA = –25 C
25 C
75 C
RθJA= 625 C/W
0.01
0 50 100
TA, AMBIENT TEMPERATURE (5 C)
Figure 1. Derating Curve
150
VCE = 10 V
TA = 75 C
25 C
–25 C
0.001 0
4
3
2
20 40 60
IC, COLLECTOR CURRENT (mA)
Figure 2. VCE(sat) vs. IC
80
f = 1 MHz
lE = 0 A
TA = 25 C
1
10
1 10
IC, COLLECTOR CURRENT (mA)
Figure 3. DC Current Gain
100
75 C
10
25 C
TA = –25 C
100
1
0.1
0.01
0.001 0
VO = 5V
1234 56789
VIN, INPUT VOLTAGE (VOLTS)
Figure 5. Output Current vs. Input Voltage
10
0 0 10 20 30 40 50
VR, REVERSE BIAS VOLTAGE (VOLTS)
Figure 4. Output Capcitance
10
VO = 0.2 V
TA = –25 C
25 C
75 C
1
0.1
0 10 20 30 40 50
IC, COLLECTOR CURRENT (mA)
Figure 6. Input Voltage vs. Output Current
2008. 8. 28
Revision No : 1
5/16

5 Page





DTC124 arduino
DTC 101 ~ 108, DTC 110 ~ 112 /114 /117, DTC 123 / 124
TYPICAL ELECTRICAL CHARACTERISTICS
DTC111
1
IC/IB = 10
0.1
0.01
-25°C
75°C
25°C
1000
100 TA = -25°C
10
75°C
VCE = 10 V
25°C
0.001
0
10 20 30 40
IC, COLLECTOR CURRENT (mA)
Figure 22. VCE(sat) versus I C
1
50 1
10
IC, COLLECTOR CURRENT (mA)
Figure 23. DC Current Gain
100
4.5
4
3.5
3
2.5
2
1.5
1
0.5
0
0
f = 1 MHz
IE = 0 V
TA = 25°C
5 10 15 20 25 30 35 40
VR, REVERSE BIAS VOLTAGE (VOLTS)
Figure 24. Output Capacitance
45
50
100
75°C
10
25°C
1
TA = -25°C
0.1
0.01
VO = 5 V
0.001
0 1 2 3 4 5 6 7 8 9 10
Vin, INPUT VOLTAGE (VOLTS)
Figure 25. Output Current versus Input Voltage
10
2008. 8. 28
TA = -25°C
1
25°C
75°C
VO = 0.2 V
0.1
0
10 20 30 40
IC, COLLECTOR CURRENT (mA)
50
Figure 26. Input Voltage versus Output Current
Revision No : 1
11/16

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