DDTCxxxxLP (R1R2 Series)
NPN PRE-BIASED (R1≠R2) SMALL SIGNAL IN DFN1006
Product Summary
Part Number
DDTC123JLP
DDTC143ZLP
DDTC114YLP
R1 (NOM)
2.2kΩ
4.7kΩ
10kΩ
R2 (NOM)
47kΩ
47kΩ
47kΩ
Marking
N0
N1
N2
Mechanical Data
Case: X1-DFN1006-3
Case Material: Molded Plastic, "Green" Molding Compound.
UL Flammability Classification Rating 94V-0
Moisture Sensitivity: Level 1 per J-STD-020
Terminal Connections: See Marking Information
Terminals: Finish
NiPdAu Solderable per MIL-STD-202,
Method 208
e4
Weight: 0.0009 grams (Approximate)
Features
Epitaxial Planar Die Construction
Ultra-Small Leadless Surface Mount Package
Ideally Suited for Automated Assembly Processes
Totally Lead-Free & Fully RoHS Compliant (Notes 1 & 2)
Halogen and Antimony Free. "Green" Device (Note 3)
Qualified to AEC-Q101 Standards for High Reliability
X1-DFN1006-3
3
2
C
3
OUT
E
B
IN
B
1
2
E
C
3
OUT
IN
1
B
C
R
1
R
2
R
1
R
2
1
GND
E
2
GND
Bottom View
Package Pin Out
Configuration
Device Schematics
Ordering Information
(Note 4)
Part Number
DDTC123JLP-7
DDTC143ZLP-7
DDTC114YLP-7
DDTC123JLP-7B
DDTC143ZLP-7B
DDTC114YLP-7B
Notes:
Marking
N0
N1
N2
N0
N1
N2
Reel size (inches)
7
7
7
7
7
7
Tape width (mm)
8
8
8
8
8
8
Quantity per reel
3,000
3,000
3,000
10,000
10,000
10,000
1. No purposely added lead. Fully EU Directive 2002/95/EC (RoHS) & 2011/65/EU (RoHS 2) compliant.
2. See http://www.diodes.com/quality/lead_free.html for more information about Diodes Incorporated’s definitions of Halogen- and Antimony-free, "Green"
and Lead-free.
3. Halogen- and Antimony-free "Green” products are defined as those which contain <900ppm bromine, <900ppm chlorine (<1500ppm total Br + Cl) and
<1000ppm antimony compounds.
4. For packaging details, go to our website at http://www.diodes.com/products/packages.html.
Marking Information
Nx
DDTC123JLP-7
DDTC143ZLP-7
DDTC114YLP-7
Nx
Nx
Nx
Nx
Nx
Nx
Top View
Dot Denotes Collector Side
From date code 1527 (YYWW),
this changes to:
Nx
Top View
Bar Denotes Base and Emitter Side
Nx
DDTC123JLP-7B
DDTC143ZLP-7B
Nx
Nx
Nx
DDTC114YLP-7B
Top View
Bar Denotes Base and Emitter Side
Nx = Part Type Marking Code
(see Ordering Information)
DDTCxxxxLP (R1R2 Series)
Document number: DS30755 Rev. 8 - 2
1 of 8
www.diodes.com
January 2016
© Diodes Incorporated
DDTCxxxxLP (R1R2 Series)
Absolute Maximum Ratings
Characteristic
Supply Voltage
Input Voltage
(@T
A
= +25°C, unless otherwise specified.)
P/N
DDTC123JLP
DDTC143ZLP
DDTC114YLP
DDTC123JLP
DDTC143ZLP
DDTC114YLP
Symbol
V
CC
V
IN
Value
50
-5 to +12
-5 to +30
-5 to +40
100
100
70
100
Unit
V
V
Output Voltage
Maximum Collector Current
I
O
I
C(MAX)
mA
mA
Thermal Characteristics
Characteristic
Power Dissipation (Note 5)
Power Deration above +25°C
Thermal Resistance, Junction to Ambient Air (Note 5)
Operating and Storage Temperature Range
Symbol
P
D
P
der
R
JA
T
J
, T
STG
Value
250
2
500
-55 to +150
Unit
mW
mW/C
°C/W
C
Electrical Characteristics
(@T
A
= +25°C, unless otherwise specified.)
Symbol
BV
CBO
BV
CEO
BV
EBO
I
CEX
I
BL
I
CBO
I
CEO
I
EBO
V
I(OFF)
Min
50
50
4.5
0.5
50
70
125
150
180
-30
-20
Typ
250
Max
0.5
0.5
0.5
0.5
0.5
0.85
0.85
0.95
0.98
0.998
0.98
1.1
7.2
1.5
7.2
0.15
0.2
0.3
30
-20
Unit
V
V
V
µA
µA
µA
µA
mA
V
Test Condition
I
C
= 50µA, I
E
= 0
I
C
= 2mA, I
B
= 0
I
E
= 50µA, I
C
= 0
V
CE
= 50V, V
EB(OFF)
= 3.0V
V
CE
= 50V, V
EB(OFF)
= 3.0V
V
CB
= 50V, I
E
= 0
V
CE
= 50V, I
B
= 0
V
EB
= 5V, I
C
= 0
V
CE
= 5V, I
C
= 100µA
Characteristic
P/N
Off Characteristics
(Note 6)
Collector-Base Breakdown Voltage
Collector-Emitter Breakdown Voltage (Note 7)
Emitter-Base Breakdown Voltage (Note 7)
Collector Cutoff Current (Note 7)
Base Cutoff Current (I
BEX
)
Collector-Base Cut Off Current
Collector-Emitter Cut Off Current, I
O(OFF)
Emitter-Base Cut Off Current
Input-Off Voltage
On Characteristics
(Note 6)
DDTC123JLP
Base-Emitter Turn-On Voltage (Note 7) DDTC143ZLP
DDTC114YLP
DDTC123JLP
Base-Emitter Saturation Voltage (Note
DDTC143ZLP
7)
DDTC114YLP
Input-On Voltage
DDTC123JLP
Input Current
DDTC143ZLP
DDTC114YLP
V
BE(ON)
V
V
CE
= 5V, I
C
= 2mA
V
BE(SAT)
V
I(ON)
I
I
V
V
mA
V
V
%
%
MHz
I
C
= 10mA, I
B
= 1mA
V
O
= 0.3V, I
C
= 5mA
V
I
= 5V
V
CE
= 5V, I
C
= 1mA
V
CE
= 5V, I
C
= 2mA
V
CE
= 5V, I
C
= 5mA
V
CE
= 5V, I
C
= 10mA
V
CE
= 5V, I
C
= 50mA
I
C
= 10mA, I
B
= 1mA
I
C
= 50mA, I
B
= 5mA
I
J
= 2.5mA, I
O
= 50mA
V
CE
= 10V, I
E
= 5mA, f = 100MHz
DC Current Gain
h
FE
Collector-Emitter Saturation Voltage
Output On Voltage (Same as V
CE(SAT)
)
Input Resistor +/-30%
Resistor Ratio
Small Signal Characteristics
Transition Frequency (gain bandwidth product)
Notes:
V
CE(SAT)
V
O(ON)
R1
(R2/R1)
f
T
5. For the device mounted on minimum recommended pad layout 1oz copper that is on a single-sided 1.6mm FR4 PCB; device is measured under
still air conditions whilst operating in steady state condition. The entire exposed collector pad is attached to the heatsink.
6. Measured under pulsed conditions. Pulse width ≤ 300µs. Duty cycle ≤ 2%.
7. Guaranteed by design.
DDTCxxxxLP (R1R2 Series)
Document number: DS30755 Rev. 8 - 2
2 of 8
www.diodes.com
January 2016
© Diodes Incorporated
DDTCxxxxLP (R1R2 Series)
Derating Curve
(@T
A
= +25°C, unless otherwise specified.)
300
P
D
, POWER DISSIPATION (mW)
250
200
150
100
50
R
JA
= 500
C/W
0
0
25
50
75
100
125
150 175
T
A
, AMBIENT TEMPERATURE (
C)
Fig. 1 Power Dissipation vs. Ambient temperature
(Note 5)
DDTCxxxxLP (R1R2 Series)
Document number: DS30755 Rev. 8 - 2
3 of 8
www.diodes.com
January 2016
© Diodes Incorporated
DDTCxxxxLP (R1R2 Series)
Typical Electrical Characteristics of DDTC123JLP
350
I
C
/I
B
= 10
(@T
A
= +25°C, unless otherwise specified.)
250
200
T
A
= 85
C
T
A
= 25
C
150
100
50
0
0.1
T
A
= -55
C
V
CE(SAT)
, COLLECTOR EMITTER
SATURATION VOLTAGE (V)
300
V
CE
= 5V
T
A
= 150
C
h
FE
, DC CURRENT GAIN
T
A
= 150
C
T
A
= 85
C
T
A
= 25
C
T
A
= -55
C
1
10
100
1,000
I
C
, COLLECTOR CURRENT (mA)
Fig. 2 Typical DC Current Gain vs. Collector Current
I
B
= 3.5mA
I
B
= 3.0mA
I
B
= 4.0mA
I
B
= 4.5mA
I
B
= 5.0mA
0.1
1
10
100
I
C
, COLLECTOR CURRENT (mA)
Fig. 3 Typical Collector Emitter Saturation Voltage
vs. Collector Current
0.15
2
1.8
1.6
V
I(ON)
, INPUT VOLTAGE (V)
V
O
= 0.3V
I
O
= 5mA
I
C
, COLLECTOR CURRENT (A)
0.12
1.4
1.2
1
0.8
0.6
0.4
0.2
0.09
I
B
= 2.5mA
I
B
= 2.0mA
0.06
I
B
= 1.0mA
I
B
= 1.5mA
0.03
I
B
= 0.5mA
1
2
3
4
5
6
7
8
9 10
V
CE
, COLLECTOR EMITTER VOLTAGE (V)
Fig. 4 Typical Collector Current vs. Collector Emitter Voltage
V
CE
= 5V
0
0
0
-60
-30
0
30
60
90
120 150
T
A
, AMBIENT TEMPERATURE (°C)
Fig. 5 Typical Input Voltage vs. Ambient Temperature
30
27
I
C
/I
B
= 10
4.5
V
BE
, BASE EMITTER VOLTAGE (V)
V
BE(SAT)
, BASE EMITTER
SATURATION VOLTAGE (V)
24
21
18
15
12
9
T
A
= 25
C
3
1.5
T
A
= -55
C
T
A
= 25
C
6
3
0
0.1
T
A
= -55
C
T
A
= 150
C
T
A
= 85
C
0
0.1
T
A
= 85
C
T
A
= 150
C
1
10
100
I
C
, COLLECTOR CURRENT (mA)
Fig. 6 Typical Base Emitter Voltage vs. Collector Current
1
10
100
I
C
, COLLECTOR CURRENT (mA)
Fig. 7 Typical Base Emitter Saturation Voltage
vs. Collector Current
DDTCxxxxLP (R1R2 Series)
Document number: DS30755 Rev. 8 - 2
4 of 8
www.diodes.com
January 2016
© Diodes Incorporated
DDTCxxxxLP (R1R2 Series)
Typical Electrical Characteristics of DDTC143ZLP
(@T
A
= +25°C, unless otherwise specified.)
350
V
CE
= 5V
100
T
A
= 150
C
T
A
= 85
C
I
C
/I
B
= 10
300
V
CE(SAT)
, COLLECTOR EMITTER
SATURATION VOLTAGE (V)
h
FE
, DC CURRENT GAIN
250
200
150
100
50
10
T
A
= 25
C
1
T
A
= -55
C
T
A
= 150
C
0.1
T
A
= 85
C
T
A
= 25
C
T
A
= -55
C
0
0.1
1
10
100
1,000
I
C
, COLLECTOR CURRENT (mA)
Fig. 8 Typical DC Current Gain vs. Collector Current
0.01
0.1
0.05
1
10
100
1,000
I
C
, COLLECTOR CURRENT (mA)
Fig. 9 Typical Collector Emitter Saturation Voltage
vs. Collector Current
15
I
C
, COLLECTOR CURRENT (A)
0.04
12
V
I(ON)
, INPUT VOLTAGE (V)
0.03
9
0.02
6
0.01
3
T
A
= -55
C
T
A
= 25
C
T
A
= 150
C
T
A
= 85
C
0.5 1 1.5 2 2.5 3 3.5 4 4.5 5
V
CE
, COLLECTOR EMITTER VOLTAGE (V)
Fig. 10 Typical Collector Current vs. Collector Emitter Voltage
10
9
V
BE
, BASE EMITTER VOLTAGE (V)
V
CE
= 5V
0
0
0
0.1
1
10
100
I
C
, OUTPUT CURRENT (mA)
Fig. 11 Typical Input Voltage vs. Output Current
I
C
/I
B
= 10
30
27
V
BE(SAT)
, BASE EMITTER
SATURATION VOLTAGE (V)
8
7
6
5
4
3
2
1
0
0.1
T
A
= -55
C
T
A
= 25
C
T
A
= 150
C
24
21
18
15
12
9
6
3
0
0.1
T
A
= 25
C
T
A
= -55
C
T
A
= 150
C
T
A
= 85
C
T
A
= 85
C
1
10
100
I
C
, COLLECTOR CURRENT (mA)
Fig. 12 Typical Base Emitter Voltage vs. Collector Current
1
10
100
I
C
, COLLECTOR CURRENT (mA)
Fig. 13 Typical Base Emitter Saturation Voltage
vs. Collector Current
DDTCxxxxLP (R1R2 Series)
Document number: DS30755 Rev. 8 - 2
5 of 8
www.diodes.com
January 2016
© Diodes Incorporated