PDTC144EEF
PDTC144EEF is NPN resistor-equipped transistor manufactured by NXP Semiconductors.
FEATURES
- Built-in bias resistors R1 and R2 (typ. 47 kΩ each)
- Simplification of circuit design
- Reduces number of ponents and board space. APPLICATIONS
- Especially suitable for space reduction in interface and driver circuits
- Inverter circuit configurations without use of external resistors. DESCRIPTION
NPN resistor-equipped transistor in an SC-89 (SOT490) plastic package. PINNING
MGA893
- 1
PDTC144EEF handbook, halfpage
3 R1 1 R2
1 Top view
MAM412
Fig.1 Simplified outline (SC-89; SOT490) and symbol.
MARKING TYPE NUMBER PDTC144EEF
MARKING CODE 08
PIN 1 2 3
DESCRIPTION base/input emitter/ground collector/output Fig.2 Equivalent inverter symbol.
LIMITING VALUES In accordance with the Absolute Maximum Rating System (IEC 134). SYMBOL VCBO VCEO VEBO VI PARAMETER collector-base voltage collector-emitter voltage emitter-base voltage input voltage positive negative IO ICM Ptot Tstg Tj Tamb Note 1. Refer to SC-89 (SOT490) standard mounting conditions. output current (DC) peak collector current total power dissipation storage temperature junction temperature operating ambient temperature Tamb ≤ 25 °C; note 1
- -
- -
- - 65
- - 65 +40
- 10 100 100 250 +150 150 +150 V V m A m A m W °C °C °C CONDITIONS open emitter open base open collector
- -
- MIN. MAX. 50 50 10 V V V UNIT
1999 May 27
Philips Semiconductors
Preliminary specification
NPN resistor-equipped transistor
THERMAL CHARACTERISTICS SYMBOL Rth j-a Note 1. Refer to SC-89 (SOT490) standard mounting conditions. CHARACTERISTICS Tamb = 25 °C unless otherwise specified. SYMBOL ICBO ICEO IEBO h FE VCEsat Vi(off) Vi(on) R1 R2 ------R1 Cc PARAMETER collector cut-off current collector cut-off current emitter cut-off current DC current gain collector-emitter saturation voltage input-off voltage input-on voltage input resistor resistor ratio collector capacitance IE = ie = 0; VCB = 10 V; f = 1 MHz CONDITIONS IE = 0; VCB = 50 V IB = 0; VCE = 30 V IB = 0; VCE = 30 V; Tj = 150 °C IC = 0; VEB = 5 V IC =...