Typical curves – ddta114tua, Electrical characteristics, New prod uc t – Diodes DDTA (R1-ONLY SERIES) UA User Manual

Page 2

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DS30327 Rev. 6 - 2

2 of 3

www.diodes.com

DDTA (R1-ONLY SERIES) UA

© Diodes Incorporated

Electrical Characteristics

@T

A

= 25°C unless otherwise specified

Characteristic

Symbol

Min

Typ

Max

Unit

Test Condition

Collector-Base Breakdown Voltage

BV

CBO

-50

V

I

C

= -50

μA

Collector-Emitter Breakdown Voltage

BV

CEO

-50

V

I

C

= -1mA

Emitter-Base Breakdown Voltage

BV

EBO

-5

V

I

E

= -50

μA

Collector Cutoff Current

I

CBO

-0.5

μA V

CB

= -50V

Emitter Cutoff Current

I

EBO

-0.5

μA V

EB

= -4V

Collector-Emitter Saturation Voltage

V

CE(sat)

-0.3

V

I

C/

I

B

= -10mA/-1mA DDTA113TUA

I

C/

I

B

= -5mA/-0.5mA DDTA123TUA

I

C/

I

B

= -2.5mA/-.25mA DDTA143TUA

I

C/

I

B

= -1mA/-.1mA DDTA114TUA

I

C/

I

B

= -5mA/-0.5mA DDTA124TUA

I

C/

I

B

= -2.5mA/-.25mA DDTA144TUA

I

C/

I

B

= -1mA/-0.1mA DDTA115TUA

I

C/

I

B

= -.5mA/-.05mA DDTA125TUA

DC Current Transfer Ratio

h

FE

100

250

600

⎯ I

C

= -1mA, V

CE

= -5V

Input Resistor (R

1

) Tolerance

ΔR

1

-30

+30

%

Gain-Bandwidth Product*

f

T

250

MHz

V

CE

= -10V, I

E

= 5mA,

f = 100MHz

NEW PROD

UC

T

* Transistor - For Reference Only

Typical Curves – DDTA114TUA

-50

0

50

100

250

200

150

50

100

0

T , AMBIENT TEMPERATURE ( C)

Fig. 1 Derating Curve

A

°

150

P

,

P

O

WE

R

DI

SS

IP

A

T

IO

N (

M

IL

L

IW

A

T

T

S)

D

0.001

0.01

0.1

1

0

10

20

30

40

50

V,

M

A

X

IM

U

M

C

O

LL

E

C

T

O

R

V

O

L

T

A

G

E (

V

)

CE

(S

A

T

)

I , COLLECTOR CURRENT (mA)

Fig. 2 V

vs. I

C

CE(SAT) C

I /I = 10

C

B

-25 C

°

25 C

°

75 C

°

10

1,000

100

1

1

10

h,

D

100

C

C

U

R

R

E

N

T

G

AI

N

(

N

O

R

MA

L

IZ

E

D

)

FE

I , COLLECTOR CURRENT (mA)

Fig. 3 DC Current Gain

C

V

= 10

CE

0

6

12

0

20

30

C

,

C

A

P

A

C

IT

A

N

C

E (

p

F

)

OB

V , REVERSE BIAS VOLTAGE (V)

Fig. 4 Output Capacitance

R

10

5

15

25

8

4

2

I = 0V

E

10

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