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PDTC143ZENXPN/a3000avaiNPN resistor-equipped transistors; R1 = 4.7 k惟, R2 = 47 k惟
PDTC143ZT |PDTC143ZTNXPN/a2800avaiNPN resistor-equipped transistors; R1 = 4.7 k惟, R2 = 47 k惟
PDTC143ZTNXP/PHILIPSN/a3000avaiNPN resistor-equipped transistors; R1 = 4.7 k惟, R2 = 47 k惟
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PDTC143ZE ,NPN resistor-equipped transistors; R1 = 4.7 k惟, R2 = 47 k惟Features and benefits  100 mA output current capability Reduces component count Built-in bias re ..
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PDTC143ZT ,NPN resistor-equipped transistors; R1 = 4.7 k惟, R2 = 47 k惟applications Control of IC inputs Switching loads1.4 Quick reference data Table 2. Quick referenc ..
PDTC143ZT ,NPN resistor-equipped transistors; R1 = 4.7 k惟, R2 = 47 k惟 PDTC143Z seriesNPN resistor-equipped transistors;R1 = 4.7 k, R2 = 47 kRev. 8 — 5 December 2011 P ..
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PDTC143ZE-PDTC143ZT -PDTC143ZU
NPN resistor-equipped transistors; R1 = 4.7 k惟, R2 = 47 k惟
1. Product profile
1.1 General description

NPN Resistor-Equipped Transistor (RET) family in Surface-Mounted Device (SMD)
plastic packages.
1.2 Features and benefits

1.3 Applications

1.4 Quick reference data

PDTC143Z series
NPN resistor-equipped transistors;
R1 = 4.7 k, R2 = 47 k
Rev. 8 — 5 December 2011 Product data sheet
Table 1. Product overview

PDTC143ZE SOT416 SC-75 - PDTA143ZE ultra small
PDTC143ZM SOT883 SC-101 - PDTA143ZM leadless ultra small
PDTC143ZT SOT23 - TO-236AB PDTA143ZT small
PDTC143ZU SOT323 SC-70 - PDTA143ZU very small 100 mA output current capability  Reduces component count Built-in bias resistors  Reduces pick and place costs Simplifies circuit design  AEC-Q101 qualified Digital applications in automotive and
industrial segments Cost-saving alternative for BC847/857
series in digital applications Control of IC inputs  Switching loads
Table 2. Quick reference data

VCEO collector-emitter voltage open base - - 50 V output current - - 100 mA bias resistor 1 (input) 3.3 4.7 6.1 k
R2/R1 bias resistor ratio 8 10 12
NXP Semiconductors PDTC143Z series
NPN resistor-equipped transistors; R1 = 4.7 k, R2 = 47 k
2. Pinning information

3. Ordering information

4. Marking

[1] * = placeholder for manufacturing site code
Table 3. Pinning
SOT23; SOT323; SOT416
SOT883
Table 4. Ordering information

PDTC143ZE SC-75 plastic surface-mounted package; 3 leads SOT416
PDTC143ZM SC-101 leadless ultra small plastic package; 3 solder lands;
body 1.0 0.6 0.5 mm
SOT883
PDTC143ZT - plastic surface-mounted package; 3 leads SOT23
PDTC143ZU SC-70 plastic surface-mounted package; 3 leads SOT323
Table 5. Marking codes

PDTC143ZE 38
PDTC143ZM E3
PDTC143ZT *18
PDTC143ZU *54
NXP Semiconductors PDTC143Z series
NPN resistor-equipped transistors; R1 = 4.7 k, R2 = 47 k
5. Limiting values

[1] Device mounted on an FR4 Printed-Circuit Board (PCB), single-sided copper, tin-plated and standard
footprint.
[2] Reflow soldering is the only recommended soldering method.
[3] Device mounted on an FR4 PCB with 70 m copper strip line, standard footprint.
Table 6. Limiting values

In accordance with the Absolute Maximum Rating System (IEC 60134).
VCBO collector-base voltage open emitter - 50 V
VCEO collector-emitter voltage open base - 50 V
VEBO emitter-base voltage open collector - 5 V input voltage
positive - +30 V
negative - 5V output current - 100 mA
ICM peak collector current single pulse;  1ms
-100 mA
Ptot total power dissipation Tamb25C
PDTC143ZE (SOT416) [1][2] -150 mW
PDTC143ZM (SOT883) [2][3] -250 mW
PDTC143ZT (SOT23) [1] -250 mW
PDTC143ZU (SOT323) [1] -200 mW junction temperature - 150 C
Tamb ambient temperature 65 +150 C
Tstg storage temperature 65 +150 C
NXP Semiconductors PDTC143Z series
NPN resistor-equipped transistors; R1 = 4.7 k, R2 = 47 k

6. Thermal characteristics

[1] Device mounted on an FR4 PCB, single-sided copper, tin-plated and standard footprint.
[2] Reflow soldering is the only recommended soldering method.
[3] Device mounted on an FR4 PCB with 70 m copper strip line, standard footprint.
Table 7. Thermal characteristics

Rth(j-a) thermal resistance from junction
to ambient
in free air
PDTC143ZE (SOT416) [1][2] -- 830 K/W
PDTC143ZM (SOT883) [2][3] -- 500 K/W
PDTC143ZT (SOT23) [1] -- 500 K/W
PDTC143ZU (SOT323) [1] -- 625 K/W
NXP Semiconductors PDTC143Z series
NPN resistor-equipped transistors; R1 = 4.7 k, R2 = 47 k

NXP Semiconductors PDTC143Z series
NPN resistor-equipped transistors; R1 = 4.7 k, R2 = 47 k
NXP Semiconductors PDTC143Z series
NPN resistor-equipped transistors; R1 = 4.7 k, R2 = 47 k
7. Characteristics

[1] Characteristics of built-in transistor
Table 8. Characteristics

Tamb =25 C unless otherwise specified.
ICBO collector-base cut-off
current
VCB =50V; IE=0A - - 100 nA
ICEO collector-emitter
cut-off current
VCE =30V; IB =0A - - 1 A
VCE =30V; IB =0A; = 150C 5 A
IEBO emitter-base cut-off
current
VEB =5V; IC =0A - - 170 A
hFE DC current gain VCE =5V; IC=10 mA 100 - -
VCEsat collector-emitter
saturation voltage =5mA; IB =0.25mA - - 100 mV
VI(off) off-state input voltage VCE =5V; IC =100 A- 0.6 0.5 V
VI(on) on-state input voltage VCE= 0.3 V; IC =5mA 1.3 0.9 - V bias resistor 1 (input) 3.3 4.7 6.1 k
R2/R1 bias resistor ratio 8 10 12 collector capacitance VCB =10V; IE =ie =0A; 1MHz 2.5 pF transition frequency VCE =5V; IC =10 mA; = 100 MHz
[1] -230 -MHz
NXP Semiconductors PDTC143Z series
NPN resistor-equipped transistors; R1 = 4.7 k, R2 = 47 k

NXP Semiconductors PDTC143Z series
NPN resistor-equipped transistors; R1 = 4.7 k, R2 = 47 k
8. Test information
8.1 Quality information

This product has been qualified in accordance with the Automotive Electronics Council
(AEC) standard Q101 - Stress test qualification for discrete semiconductors, and is
suitable for use in automotive applications.
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