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 DTC114EM Series Bias Resistor Transistor NPN Silicon
P b Lead(Pb)-Free
1 BASE
R1 R2
COLLECTOR 3
3 1 2
2 EMITTER
SOT-723
Maximum Ratings (TA=25C unless otherwise noted)
Rating
Collector-Base Voltage Collector-Emitter Voltage Collector Current-Continuous
Symbol VCBO VCEO IC
Value 50 50 100
Unit V V mA
Thermal Characteristics
Characteristics Total Device Dissipation FR-5 Board FR-4 Board(1) TA=25C Derate above 25C Thermal Resistance, Junction to Ambient(1) Total Device Dissipation FR-5 Board FR-4 Board(2) TA=25C Derate above 25C Thermal Resistance, Junction to Ambient(2) Junction Temperature Range Storage Temperature Range
1. FR-4 @ Minimum pad 2. FR-4 @1.0 x 1.0 Inch pad
Symbol PD RJA PD RJA TJ Tstg
Max 260 2.0 480 600 4.8 205 +150 -55 to +150
Unit mW mW/C C/W mW mW/C C/W C C
Device Marking and Resistor Values
Device
DTC114EM DTC124EM DTC144EM DTC114YM DTC114TM DTC143TM DTC123EM
Marking
8A 8B 8C 8D 94 8F 8H
R1(K)
10 22 47 10 10 4.7 2.2
R2(K)
10 22 47 47 2.2
Device
DTC143EM DTC143ZM DTC124XM DTC123JM DTC115EM DTC144WM DTC144TM
Marking
8J 8K 8L 8M 8N 8P 8T
R1(K)
4.7 4.7 22 2.2 100 47 47
R2(K)
4.7 47 47 47 100 22
W E IT R O N
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1/10
11-Apr-07
DTC114EM Series
Electrical Characteristics (TA=25C Unless Otherwise noted)
Characteristics Symbol Min Typ
WEITRON
Max Unit
Off Characteristics
Collector-Emitter Breakdown Voltage(1) IC=2.0mA, IB=0 Collector-Base Breakdown Voltage IC=10A, IE=0 Collector-Base Cutoff Voltage VCB=50V, IE=0 Collector-Emitter Cutoff Current VCE=50V, IB=0 Emitter-Base Cutoff Current VEB=6.0V, IC=0 DTC114EM DTC124EM DTC144EM DTC114YM DTC114TM DTC143TM DTC123EM DTC143EM DTC143ZM DTC124XM DTC123JM DTC115EM DTC144WM DTC144TM
V(BR)CEO V(BR)CBO ICBO ICEO
50 50 -
-
100 500 0.5 0.2 0.1 0.2 0.9 1.9 2.3 1.5 0.18 0.13 0.2 0.05 0.13 0.2
V V nA nA
IEBO
mA
3. Pulse Test: Pulse Width < 300us, Duty Cycle < 2.0%
WEITRON
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11-Apr-07
DTC114EM Series
Electrical Characteristics (TA=25C Unless Otherwise noted)
Characteristics Symbol Min Typ
WEITRON
Max Unit
On Characteristics(3)
DC Current Gain VCE=10V, I C=5.0mA DTC114EM DTC124EM DTC144EM DTC114YM DTC114TM DTC143TM DTC123EM DTC143EM DTC143ZM DTC124XM DTC123JM DTC115EM DTC144WM DTC144TM 35 60 80 80 160 160 8.0 15 80 80 80 80 80 160 60 100 140 140 250 250 15 27 140 130 140 150 140 350
-
hFE
-
Collector-Emitter Saturation Voltage IC=10mA, IB=0.3mA DTC123EM IC=10mA, IB=5.0mA DTC143TM / DTC114TM IC=10mA, IB=1.0mA DTC143EM / DTC143ZM DTC124XM / DTC144TM Output Voltage(on) VCC=5.0V, VB=2.5V RL=1.0K DTC114EM DTC124EM DTC114YM DTC114TM DTC143TM DTC123EM DTC143EM DTC143ZM DTC124XM DTC123JM DTC144EM DTC144TM DTC115EM DTC144WM
VCE(sat)
-
-
0.25
-
VOL
-
-
0.2
V
VCC=5.0V, VB=3.5V RL=1.0K VCC=5.0V, VB=5.5V RL=1.0K VCC=5.0V, VB=4.0V RL=1.0K
3. Pulse Test: Pulse Width < 300us, Duty Cycle < 2.0%
WEITRON
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3/10
11-Apr-07
DTC114EM Series
ElectricalCharacteristics (TA=25C Unless Otherwise noted)
Characteristics Symbol Min Typ
WEITRON
Max Unit
On Characteristics(4)
Output Voltage(off) VCC=5.0V, VB=0.5V RL=1.0K VCC=5.0V, VB=0.25V RL=1.0K DTC143TM DTC143ZM DTC114TM DTC144TM DTC114EM DTC124EM DTC144EM DTC114YM DTC114TM DTC143TM DTC123EM DTC143EM DTC143ZM DTC124XM DTC123JM DTC115EM DTC144WM DTC144TM DTC114EM / DTC124EM DTC144EM / DTC115EM DTC114YM DTC143TM / DTC114TM / DTC144TM DTC123EM / DTC143EM DTC143ZM DTC124XM DTC123JM DTC144WM
VOH
4.9
-
-
V
Input Resistor
R1
7.0 15.4 32.9 7.0 7.0 3.3 1.5 3.3 3.3 15.4 15.4 70 32.9 32.9 0.8 0.17 0.8 0.055 0.38 0.038 1.7
10 22 47 10 10 4.7 2.2 4.7 4.7 22 2.2 100 47 47 1.0 0.21 1.0 0.1 0.47 0.047 2.1
13 28.6 61.1 13 13 6.1 2.9 6.1 6.1 28.6 2.86 130 61.1 61.1 1.2 0.25 1.2 0.185 0.56 0.056 2.6
k
Resistor Ratio
R1/R2
-
4. PulseTest: Pulse Width < 300us, Duty Cycle < 2.0%
300
POWER DISSIPATION, PD
250 200 150 100 50 0 R JA = 480C/W
TA , AMBIENT TEMPERATURE ( C)
Figure.1 Derating Curve
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WEITRON
4/10
11-Apr-07
DTC114EM Series
TYPICAL ELECTRICAL CHARACTERISTICS - DTC114EM Series
WEITRON
VCE(sat) , MAXIMUM COLLECTOR VOLTAGE (V)
1 IC/I B = 10 TA C 25C 0.1 75C
0.01
0.001
0
20 40 IC, COLLECTOR CURRENT (mA)
50
Figure.2 VCE(sat) vs I C
h FE, DC CURRENT GAIN (NORMALIZED) 1000 Cob , CAPACITANCE (pF) VCE = 10 V TA C 25C -25C 4 f = 1 MHz IE = 0 V TA = 25C
3
100
2
1
10
1
10 IC, COLLECTOR CURRENT (mA)
100
0
0
10 20 30 40 VR , REVERSE BIAS VOLTAGE (V)
50
Figure.3 DC Current Gain
Figure.4 Output Capacitance
100
IC, COLLECTOR CURRENT (mA)
75C 10 1 0.1 0.01
25C TA C
10 VO = 0.2 V V in, INPUT VOLTAGE (V) TA C 25C 75C 1
VO = 5 V 0.001 0 1 2 3 4 5 6 7 8 9 10 0.1 0 10 20 30 40 50
Vin , INPUT VOLTAGE (VOLTS)
I C , COLLECTOR CURRENT (mA)
Figure.5 Output Current vs Input Voltage
Figure.6 Input Voltage vs Output Current
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WEITRON
5/10
11-Apr-07
DTC114EM Series
TYPICAL ELECTRICAL CHARACTERISTICS - DTC124EM
VCE(sat) , MAXIMUM COLLECTOR VOLTAGE (V) 1 IC/IB = 10 TA C 25C 75C
WE IT R ON
0.1
0.01
0.001
0
20 40 I C, COLLECTOR CURRENT (mA)
50
Figure.7 VCE(sat) vs I C
hFE , DC CURRENT GAIN (NORMALIZED)
1000
VCE = 10 V Cob, CAPACITANCE (pF) TA C 25C
4 f = 1 MHz IE = 0 V TA = 25C
3
-25C 100
2
1
10
1
10 IC, COLLECTOR CURRENT (mA)
100
0
0
10
20
30
40
50
Figure 8. DC Current Gain
VR , REVERSE BIAS VOLTAGE (V)
Figure.9 Output Capacitance
100 IC ,COLLECTOR CURRENT (mA) 10 1 0.1 0.01 0.001
75C
25C TA C
100 VO = 0.2 V Vin, INPUT VOLTAGE (V) TA 10 75C C 25C
1
VO = 5 V 0 2 4 6 8 10
0.1
0
10
20
30
40
50
Vin , INPUT VOLTAGE (V)
IC , COLLECTOR CURRENT (mA)
Figure.10 Output Current vs Input Voltage
Figure.11 Input Voltage versus Output Current
WEITRON
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6/10
11-Apr-07
DTC114EM Series
TYPICAL ELECTRICAL CHARACTERISTICS - DTC144EM
WEITRON
VCE(sat) , MAXIMUM COLLECTOR VOLTAGE (V)
10 IC/IB = 10
1 TA 0.1 C 25C 75C
0.01
0
20
40
50
IC, COLLECTOR CURRENT (mA)
Figure.12 VCE(sat) vs I C
hFE , DC CURRENT GAIN (NORMALIZED)
1000
VCE= 10 V Cob , CAPACITANCE (pF) TA C 25C -25C
1 0.8 0.6 0.4 0.2 0
f = 1 MHz IE = 0 V TA = 25C
100
10
1
10 IC, COLLECTOR CURRENT (mA)
100
0
10
20
30
40
50
VR, REVERSE BIAS VOLTAGE (V)
Figure.13 DC Current Gain
Figure 14. Output Capacitance
100 IC, COLLECTOR CURRENT(mA) 75C 10 1 0.1
25C TA C
100 VO = 0.2 V Vin, INPUT VOLTAGE (V) TA 10 C 25C 75C
1
0.01 VO = 5 V 0 2 4 6 8 10
0.001
0.1
0
10
20
30
40
50
Vin , INPUT VOLTAGE (V)
IC, COLLECTOR CURRENT (mA)
Figure.15 Output Current vs Input Voltage
Figure.16 Input Voltage vs Output Current
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WEITRON
7/10
11-Apr-07
DTC114EM Series
TYPICAL ELECTRICAL CHARACTERISTICS - DTC114YM
VCE(sat) , MAXIMUM COLLECTOR VOLTAGE (V)
WEITRON
hFE , DC CURRENT GAIN (NORMALIZED)
1 IC/IB = 10 TA C 25 C 75 C
300 250 200 150 100 50 0 1 2 4 6 8 10 15 20 40 50 60 70 80 90 100 I C , COLLECTOR CURRENT (mA) VCE = 10 TA C 25C -25C
0.1
0.01
0.001
0
20
40
60
80
IC , COLLECTOR CURRENT (mA)
Figure.17 VCE(sat) vs I C
4 3.5 C ob, CAPACITANCE (pF) 3 2.5 2 1.5 1 0.5 0 0 2 4 6 8 10 15 20 25 30 35 40 45 50 f = 1 MHz lE = 0 V TA = 25C I C, COLLECTOR CURRENT (mA) 100 TA C
Figure.18 DC Current Gain
25C -25C
10
VO = 5 V 1 0 2 4 6 8 10
VR , REVERSE BIAS VOLTAGE (V)
Vin , INPUT VOLTAGE (V)
Figure.19 Output Capacitance
Figure.20 Output Current vs Input Voltage
10 VO = 0.2 V Vin , INPUT VOLTAGE (V) TA C 25C 75C
1
0.1 0
10
20 30 40 IC , COLLECTOR CURRENT (mA)
50
Figure.21 Input Voltage vs Output Current
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WEITRON
8/10
11-Apr-07
DTC114EM Series
TYPICAL APPLICATIONS FOR NPN BRTs
WEITRON
+12 V
ISOLATED LOAD
FROM P OR OTHER LOGIC
Figure.22 Level Shifter: Connects 12 or 24 Volt Circuits to Logic
+12 V
VCC
OUT IN
LOAD
Figure.23 Open Collector Inverter: Inverts the Input Signal
Figure.24 Inexpensive, Unregulated Current Source
http://www.weitron.com.tw
WEITRON
9/10
11-Apr-07
DTC114EM Series SOT-723 Outline Demensions
b1
Unit:mm
3 TOP VIEW 2 1
e b E L HE A C
SOT-723
Dim A b b1 C D E e HE L Min 0.45 0.15 0.25 0.07 1.15 0.75 1.15 0.15 Nom 0.50 0.20 0.3 0.12 1.20 0.80 0.40 BSC 1.20 0.20 Max 0.55 0.27 0.35 0.17 1.25 0.85 1.25 0.25
D
SOLDERING FOOTPRINT
0.40 0.40 1.0 0.40
Unit:mm
0.40
0.40
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WEITRON
10/10
11-Apr-07


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