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 MJD350
HIGH VOLTAGE PNP SURFACE MOUNT TRANSISTOR
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Features
* * * * * * Epitaxial Planar Die Construction High Collector-EmitterVoltage Ideally Suited for Automated Assembly Processes Ideal for Power Switching or Amplification Applications Lead Free By Design/RoHS Compliant (Note 1) "Green" Device (Note 2)
Mechanical Data
* * * * * * * Case: DPAK Case Material: Molded Plastic, "Green" Molding Compound. UL Flammability Classification Rating 94V-0 Moisture Sensitivity: Level 1 per J-STD-020D Terminals: Finish -- Matte Tin annealed over Copper Leadframe (Lead Free Plating). Solderable per MIL-STD-202, Method 208 Marking Information: See Page 3 Ordering Information: See Page 3 Weight: 0.34 grams (approximate)
NEW PRODUCT
COLLECTOR
3
BASE
Top View
4
2 1
EMITTER
Device Schematic
Pin Out Configuration
Maximum Ratings
@TA = 25C unless otherwise specified Symbol VCBO VCEO VEBO IC ICM Value -300 -300 -3 -0.5 -0.75 Unit V V V A A
Characteristic Collector-Base Voltage Collector-Emitter Voltage Emitter-Base Voltage Continuous Collector Current Peak Pulse Collector Current
Thermal Characteristics
Characteristic Power Dissipation @TC = 25C Thermal Resistance, Junction to Case Power Dissipation @TA = 25C (Note 3) Thermal Resistance, Junction to Ambient Operating and Storage Temperature Range Symbol PD RJC PD RJA TJ, TSTG Value 15 8.33 1.56 81 -55 to +150 Unit W C/W W C/W C
Electrical Characteristics
@TA = 25C unless otherwise specified Symbol V(SUS)CEO ICBO IEBO hFE Min -300 30 Typ Max -100 -100 240 Unit V A A Test Condition IC = -1mA, IB = 0 VCB = -300V, IE = 0 VEB = - 3V, IC = 0 VCE = -10V, IC = -50mA
Characteristic OFF CHARACTERISTICS Collector-Emitter Sustaining Voltage (Note 4) Collector Cutoff Current Emitter Cutoff Current ON CHARACTERISTICS (Note 4) DC Current Gain
Notes: 1. 2. 3. 4.
No purposefully added lead. Diodes Inc.'s "Green" policy can be found on our website at http://www.diodes.com/products/lead_free/index.php. Device mounted on FR-4 PCB with the minimum pad size recommended. Measured under pulsed conditions. Pulse width = 300s. Duty cycle 2%.
MJD350
Document number: DS31608 Rev. 2 - 2
1 of 4 www.diodes.com
November 2008
(c) Diodes Incorporated
MJD350
2.0
10
PD , POWER DISSIPATION (W)
-IC, COLLECTOR CURRENT (A)
1.5
1
Pw = -10ms
NEW PRODUCT
1.0
0.1
DC
Pw = -100ms
0.5
RJA = 81C/W
0.01
0 0 25 50 75 100 125 TA, AMBIENT TEMPERATURE (C) Fig. 1 Power Dissipation vs. Ambient Temperature (Note 3) 150
0.001 0.1
1 10 100 1,000 -VCE, COLLECTOR-EMITTER VOLTAGE (V) Fig. 2 Typical Collector Current vs. Collector-Emitter Voltage (Note 3)
1,000
1
IC/IB = 10
TA = 150C
100
-VCE(SAT), COLLECTOR-EMITTER SATURATION VOLTAGE (V)
hFE, DC CURRENT GAIN
TA = 25C TA = -55C
TA = 85C
T A = 150C T A = 85C
0.1
TA = 25C TA = -55C
10
VCE = -10V
1 1 10 100 1,000 10,000 -IC, COLLECTOR CURRENT (mA) Fig. 3 Typical DC Current Gain vs. Collector Current
-VBE(ON), BASE-EMITTER TURN-ON VOLTAGE (V) 1.2
VCE = -10V
0.1
0.01 0.1
1 10 100 1,000 -IC, COLLECTOR CURRENT (mA) Fig. 4 Typical Collector-Emitter Saturation Voltage vs. Collector Current
-VBE(SAT), BASE-EMITTER SATURATION VOLTAGE (V)
1.2
IC/IB = 10
1.0
1.0
0.8
T A = -55C
0.8
T A = -55C
0.6
TA = 25C
0.6
TA = 25C
0.4
TA = 85C
0.4
T A = 85C
0.2
T A = 150C
0.2 0
TA = 150C
0 0.1 1 10 100 1,000 -IC, COLLECTOR CURRENT (mA) Fig. 5 Typical Base-Emitter Turn-On Voltage vs. Collector Current
0.1
1 10 100 1,000 -IC, COLLECTOR CURRENT (mA) Fig. 6 Typical Base-Emitter Saturation Voltage vs. Collector Current
MJD350
Document number: DS31608 Rev. 2 - 2
2 of 4 www.diodes.com
November 2008
(c) Diodes Incorporated
MJD350
1,000
f = 1MHz
CAPACITANCE (pF)
Cibo
100
NEW PRODUCT
10
Cobo
1 0.1 1 10 100 VR, REVERSE VOLTAGE (V) Fig. 7 Typical Capacitance Characteristics 1 r(t), TRANSIENT THERMAL RESISTANCE
D = 0.7 D = 0.5 D = 0.3
0.1
D = 0.1 D = 0.05
D = 0.9 R JA(t) = r(t) * RJA R JA = 81C/W P(pk)
D = 0.02
0.01
D = 0.01 D = 0.005
t1
D = Single Pulse
t2 TJ - TA = P * RJA(t) Duty Cycle, D = t 1/t2
0.001 0.00001
0.0001
0.001
0.01 0.1 1 t1, PULSE DURATION TIME (s) Fig. 8 Transient Thermal Response (Note 3)
10
100
1,000
Ordering Information
Part Number MJD350-13
Notes:
(Note 5) Case DPAK Packaging 2500/Tape & Reel
5. For packaging details, go to our website at http://www.diodes.com/datasheets/ap02007.pdf.
Marking Information
MJD350 = Product Type Marking Code = Manufacturers' code marking YYWW = Date Code Marking YY = Last Digit of Year, (ex: 08 = 2008) WW = Week Code 01-52
YYWW MJD350
MJD350
Document number: DS31608 Rev. 2 - 2
3 of 4 www.diodes.com
November 2008
(c) Diodes Incorporated
MJD350 Package Outline Dimensions
E b2 L2
NEW PRODUCT
D
b e1
e
L1 A1 H A
C
L
SEATING PLANE
C1
DPAK Dim Min Max A 2.18 2.40 A1 0.89 1.14 b 0.61 Typ b2 5.20 5.50 C 0.45 0.58 C1 0.45 0.58 D 5.40 6.20 E 6.35 6.80 e 2.28 Typ e1 4.57 Typ H 9.00 10.40 L 0.51 L1 0.64 1.02 L2 0.88 1.27 All Dimensions in mm
Suggested Pad Layout
Z C
E1 X2 X1 Y1 Y2
Dimensions Z X1 X2 Y1 Y2 C E1
Value (in mm) 11.6 1.5 7.0 2.5 7.0 6.9 2.3
IMPORTANT NOTICE Diodes Incorporated and its subsidiaries reserve the right to make modifications, enhancements, improvements, corrections or other changes without further notice to any product herein. Diodes Incorporated does not assume any liability arising out of the application or use of any product described herein; neither does it convey any license under its patent rights, nor the rights of others. The user of products in such applications shall assume all risks of such use and will agree to hold Diodes Incorporated and all the companies whose products are represented on our website, harmless against all damages. LIFE SUPPORT Diodes Incorporated products are not authorized for use as critical components in life support devices or systems without the expressed written approval of the President of Diodes Incorporated.
MJD350
Document number: DS31608 Rev. 2 - 2
4 of 4 www.diodes.com
November 2008
(c) Diodes Incorporated


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