MMBTA55 MMBTA56
Driver PNP
1 2
3
SOT-23
V CEO
MMBTA55 -60 -60 -4.0 -5 MMBTA56 -80 -80 -4.0
MMBTA55=2H, MMBTA56=2GM
(3) MMBTA55 MMBTA56
0
-60 -80 -60 -80
MMBTA55 MMBTA56
0 I B =0) -6 -8 S
-4.0 -0.1 -0.1 -0.1 u
MMBTA55 MMBTA56
u
_ _ 3.Pulse Test:Pulse Width < 300us, Duty Cycle < 2.0% 4. f T is defined as the freguency at which hfeextrapolates to unity
WEITRON
http://www.weitron.com.tw
MMBTA55 MMBTA56
ELECTRICAL CHARACTERISTICS
C harac teris tic ( T A = 25 C unles s otherwis e noted) S ymbol Min Max Unit
ON CHARACTERISTICS
DC C urrent G ain (I C = -10 mAdc, VC E = -1.0 V dc) (I C = -100 mAdc, VC E = -1.0 V dc) C ollector- E mitter S aturation V oltage (I C = -100 mAdc, IB = -10 mAdc) B as e - E mitter On V oltage (I C = -100 mAdc, VC E = -1.0 V dc) hF E -100 -100 -0.25 -1.2 V dc V dc
V C E (s at) V B E ( on)
SMALL- SIGNAL CHARACTERISTICS
C urrent- G ain - B andwidth P roduct (4) (I C = -100 mA, VC E = -1.0 V f = 1 00 MHz) , fT 50 MHz
TURN-ON TIME -1.0 V VCC +40 V RL OUTPUT Vin 0 tr = 3.0 n s 5.0 uF 100 5.0 us tr = 3.0 ns *Total S hunt C apacitance of Tes t J ig and C onnectors F or P NP Tes t C ircuits , R evers e All V oltage P olarities RB * CS - 6.0 pF
-
TURN-OFF TIME +VBB VCC +40 V 100 Vin 5.0 u F 100 RB * CS - 6.0 pF
-
5.0 u s +10 V
100
RL OUTPUT
FIG1. Switching Time Test Circuits
f T , CURRENT-GAIN - BANDWIDTH PRODUCT(MHz)
300 200 VCE = -2.0 V TJ = 25 C
100 70 50 30 -2.0 -3.0
-5.0 -7.0 -10
-20 -30
-50 -70 -100
-200
IC , COLLECTOR CURRENT (mA)
FIG2. Current-Gain - Bandwidth Product
WEITRON
http://www.weitron.com.tw
MMBTA55 MMBTA56
100 70 50 C, CAPACITANCE (pF) 30 20 Cibo t, TIME (ns) TJ = 25 C 1.0 k 700 500 300 200 100 70 50 30 20 -0.5 -1.0 -2.0 -5.0 -10 -20 -50 -100 VCC = 40 V IC/IB = 10 IB1 = IB2 TJ = 25 C
ts
tf tr td @ V BE(off) = 0.5 V -20 -30 -50 -70 -100 -200 -300 -500
10 7.0 5.0 -0.1 -0.2
Cobo
10 -5.0 -7.0 -10
VR , REVERSE VOL TAGE (VOLTS)
IC , COLLECTOR CURRENT (mA)
FIG.3 Capacitance
400 TJ = 125 C hFE , DC CURRENT GAIN 200 25 C -55 C VCE = -1.0 V V, VOLTAGE (VOLTS) -1.0
FIG4. Switching Time
TJ = 25 C VBE(sat) @ I C/IB = 10
-0.8
-0.6
VBE(on) @ V CE = -1.0 V
100 80 60
-0.4 -0.2 VCE(sat) @ I C/IB = 10 0 -0.5
40 -0.5 -1.0 -2.0
-5.0 -10
-20
-50
-100 -200
-500
-1.0 -2.0
-5.0
-10
-20
-50
-100 -200
-500
IC , COLLECTOR CURRENT (mA)
IC , COLLECTOR CURRENT (mA)
FIG.5 DC Current Gain
FIG6. "ON"Voltages
VCE , COLLECTOR-EMITTER VOL TAGE (VOLTS)
TJ = 25 C -0.8 IC = -50 mA IC = -100 mA IC = -250 mA IC = -500 mA
R VB , TEMPERATURE COEFFICIENT (mV/ C)
-1.0
-0.8
-1.2
-0.6
-1.6 -2.0 R VB for VBE
-0.4 -0.2 IC = -10 mA
-2.4 -2.8 -0.5
0 -0.05 -0.1 -0.2
-0.5
-1.0
-2.0
-5.0
-10
-20
-50
-1.0 -2.0
-5.0
-10
-20
-50
-100 -200
-500
IB , BASE CURRENT (mA)
IC, COLLECTOR CURRENT (mA)
FIG7. Collector Saturation Region
FIG8. Base-Emitter Temperature Coefficient
WEITRON
http://www.weitron.com.tw
MMBTA55 MMBTA56
SOT-23 Package Outline Dimensions
Unit:mm
A
T OP V IE W
B
C
E
G H
D
K J L M
Dim Min Max A 0.35 0.51 B 1.19 1.80 C 2.10 3.00 D 0.85 1.05 E 0.46 1.00 G 1.70 2.10 H 2.70 3.10 J 0.01 0.13 K 0.89 1.60 L 0.30 0.61 M 0.076 0.25
WEITRON
http://www.weitron.com.tw
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