Philips PDTA114YT Datasheet

DISCRETE SEMICONDUCTORS
DATA SH EET
M3D088
PDTA114YT
PNP resistor-equipped transistor
Product specification
1999 Apr 20
Philips Semiconductors Product specification
PNP resistor-equipped transistor PDTA114YT
FEATURES
Built-in bias resistors R1 and R2 (typ. 10 k and 47 k respectively)
Simplification of circuit design
Reduces number of components
and board space.
APPLICATIONS
Especially suitable for space reduction in interface and driver circuits
Inverter circuit configurations without use of external resistors.
DESCRIPTION
PNP resistor-equipped transistor in a SOT23 plastic package.
PINNING
PIN DESCRIPTION
1 base/input 2 emitter/ground (+) 3 collector/output
handbook, 4 columns
Top view
Fig.1 Simplified outline (SOT23) and symbol.
1
2
MGA893 - 1
Fig.2 Equivalent inverter
symbol.
3
3
R1
1
R2
2
21
MAM100
MARKING
TYPE
3
NUMBER
MARKING
(1)
CODE
PDTA114YT 29
Note
1. = p: Made in Hong Kong.= t: Made in Malaysia.
LIMITING VALUES
In accordance with the Absolute Maximum Rating System (IEC 134).
SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT
V V V V
CBO CEO EBO I
collector-base voltage open emitter −−50 V collector-emitter voltage open base −−50 V emitter-base voltage open collector −−10 V input voltage
positive 6V
negative −−40 V I I P T T T
O CM
tot stg j amb
output current (DC) −−100 mA peak collector current −−100 mA total power dissipation T
25 °C; note 1 250 mW
amb
storage temperature 65 +150 °C junction temperature 150 °C operating ambient temperature 65 +150 °C
Note
1. Refer to SOT23 standard mounting conditions.
1999 Apr 20 2
Philips Semiconductors Product specification
PNP resistor-equipped transistor PDTA114YT
THERMAL CHARACTERISTICS
SYMBOL PARAMETER CONDITIONS VALUE UNIT
R
th j-a
Note
1. Refer to SOT23 standard mounting conditions.
CHARACTERISTICS
=25°C unless otherwise specified.
T
amb
SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT
I
CBO
I
CEO
I
EBO
h
FE
V
CEsat
V
i(off)
V
i(on)
R1 input resistor 7 10 13 k
R2
------- ­R1
C
c
thermal resistance from junction to ambient note 1 500 K/W
collector cut-off current IE= 0; VCB= 50 V −−−100 nA collector cut-off current IB= 0; VCE= 30 V −−−1µA
I
= 0; VCE= 30 V; Tj= 150 °C −−−50 µA
B
emitter cut-off current IC= 0; VEB= 5V −−−150 µA DC current gain IC= 5 mA; VCE= 5 V 100 −− collector-emitter saturation voltage IC= 5 mA; IB= 0.25 mA −−−100 mV input-off voltage IC= 100 µA; VCE= 5V −−0.7 0.5 V input-on voltage IC= 1 mA; VCE= 0.3 V 1.4 0.8 V
resistor ratio 3.7 4.7 5.7 collector capacitance IE=ie= 0; VCB= 10 V; f = 1 MHz −−3pF
1999 Apr 20 3
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