2N2916DCSM
MECHANICAL DATA Dimensions in mm (inches)
2 .2 9 ± 0 .2 0 (0 .0 9 ± 0 .0 0 8 )
1 .6 5 ± 0 .1 3 (0 .0 6 5 ± 0 .0 0 5 ) 0 .6 4 ± 0 .0 6 (0 .0 2 5 ± 0 .0 0 3 )
1 .4 0 ± 0 .1 5 (0 .0 5 5 ± 0 .0 0 6 )
DUAL NPN PLANAR TRANSISTORS IN A HERMETICALLY SEALED CERAMIC SURFACE MOUNT PACKAGE FOR HIGH RELIABILITY APPLICATIONS
4 .3 2 ± 0 .1 3 (0 .1 7 0 ± 0 .0 0 5 )
!
2 .5 4 ± 0 .1 3 (0 .1 0 ± 0 .0 0 5 )
"
A
$ #
0 .2 3 ra d . (0 .0 0 9 ) A= 1 .2 7 ± 0 .1 3 (0 .0 5 ± 0 .0 0 5 )
FEATURES
• Hermetic Ceramic Surface Mount Package • CECC Screening Options • Space Quality Levels Options
6 .2 2 ± 0 .1 3 (0 .2 4 5 ± 0 .0 0 5 )
LCC2 PACKAGE
Underside View
PAD 1 – Collector 1 PAD 2 – Base 1 PAD 3 – Base 2 PAD 4 – Collector 2 PAD 5 – Emitter 2 PAD 6 – Emitter 1
ABSOLUTE MAXIMUM RATINGS
(Tamb = 25°C unless otherwise stated)
VCBO VCEO VEBO IC PD TSTG TL NOTES
1. Base – Emitter Diode Open Circuited.
Semelab Plc reserves the right to change test conditions, parameter limits and package dimensions without notice. Information furnished by Semelab is believed to be both accurate and reliable at the time of going to press. However Semelab assumes no responsibility for any errors or omissions discovered in its use. Semelab encourages customers to verify that datasheets are current before placing orders.
Collector – Base Voltage Collector – Emitter Voltage 1 Emitter – Base Voltage Continuous Collector Current Total Device Dissipation
TAMB = 25°C Derate above 25°C
Storage Temperature Range Lead temperature (Soldering, 10 sec.)
EACH SIDE TOTAL DEVICE 45V 45V 6V 30 300mW 500mW 1.72mW / °C 2.86W / °C –65 to 200°C 300°C
Semelab plc.
Telephone +44(0)1455 556565. Fax +44(0)1455 552612. E-mail: sales@semelab.co.uk Website: http://www.semelab.co.uk
Document Number 2747 Issue 1
2N2916DCSM
ELECTRICAL CHARACTERISTICS (Tamb = 25°C unless otherwise stated)
Parameter Test Conditions 1 IE = 0 IB = 0 IC = 0 IE = 0 TA = 150°C VCE = 5V VEB = 5V VCE = 5V hFE DC Current Gain VCE = 5V VCE = 5V VBE VCE(sat) hib hob |hfe| Cobo Base – Emitter Voltage Collector – Emitter Saturation Voltage Small Signal Common – Base Input Impedance Small Signal Common – Base Output Admittance Small Signal Common – Base Current Gain Common – Base Open Circuit Output Capacitance VCE = 5V IB = 100mA VCB = 5V f = 1kHz VCB = 5V f = 1kHz VCE = 5V f = 20MHz VCB = 5V IE = 0 f = 140kHz to 1MHz IC = 100mA IC = 100mA IC = 100mA IC = 100mA IC = 500mA 3 6 IC = 1mA IB = 0 IC = 0 IC = 10mA TA = –55°C IC = 100mA IC = 1mA IC = 100mA IC = 1mA IC = 1mA 25 150 30 225 300 0.70 0.35 32 1 V Min. 45 45 6 10 10 2 2 600 — V nA Typ. Max. Unit
INDIVIDUAL TRANSISTOR CHARACTERISTICS IC = 10mA V(BR)CBO Collector – Base Breakdown Voltage
V(BR)CEO* Collector – Emitter Breakdown Voltage IC = 10mA V(BR)EBO ICBO ICEO IEBO Emitter – Base Breakdown Voltage Collector Cut-off Current Collector Cut-off Current Emitter Cut-off Current IE = 10mA VCB = 45V
mA
nA
W mmho
— pF
TRANSISTOR MATCHING CHARACTERISTICS VCE = 5V hFE1 Static Forward Current Gain Balance
hFE2 Ratio Base – Emitter Voltage Differential |D(VBE1 – VBE2)DTA| Base – Emitter Voltage Differential Change With Temperature * Pulse Test: tp = 300ms , d £ 1%. See Note 2. VCE = 5V VCE = 5V TA1 = 25°C VCE = 5V TA1 = 25°C |VBE1 – VBE2|
0.9
1 3 5 0.8
— mV
VCE = 5V IC = 10mA to 1mA TA2 = –55°C TA2 = 125°C
mV 1
NOTES 1) Terminals not under test are open circuited under all test conditions. 2) The lower of the two readings is taken as hFE1.
Semelab Plc reserves the right to change test conditions, parameter limits and package dimensions without notice. Information furnished by Semelab is believed to be both accurate and reliable at the time of going to press. However Semelab assumes no responsibility for any errors or omissions discovered in its use. Semelab encourages customers to verify that datasheets are current before placing orders.
Semelab plc.
Telephone +44(0)1455 556565. Fax +44(0)1455 552612. E-mail: sales@semelab.co.uk Website: http://www.semelab.co.uk
Document Number 2747 Issue 1
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