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FAIRCHILD MMSZ5226B-MMSZ5257B Series Zeners 数据手册

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2024年7月14日发(作者:南宫正祥)

MMSZ5226B - MMSZ5257B — Zeners

February 2012

MMSZ5226B - MMSZ5257B

Zeners

Tolerance = 5%

SOD-123

Absolute Maximum Ratings *

T

A

= 25°C unless otherwise noted

Symbol

P

D

R

θJA

T

STG

Parameter

Power Dissipation @25°C

Thermal Resistance, Juncion to Ambient **

Storage Temperature Range

Value

500

340

-55 to +150

Units

mW

°C/W

°C

°CT

J

Operating Junction Temperture+150

* These ratings are limiting values above which the serviceability of the diode may be impaired.

** FR-4 or FR-5 = 3.5 × 1.5 inches using minimumrecommended land pads.

Electrical Characteristics

T

A

= 25°C unless otherwise noted

Device

MMSZ5226B

MMSZ5227B

MMSZ5228B

MMSZ5229B

MMSZ5230B

MMSZ5231B

MMSZ5232B

MMSZ5233B

MMSZ5234B

MMSZ5235B

MMSZ5236B

MMSZ5237B

MMSZ5238B

MMSZ5239B

MMSZ5240B

MMSZ5241B

MMSZ5242B

MMSZ5243B

MMSZ5244B

MMSZ5245B

MMSZ5246B

MMSZ5247B

Mark

D1

D2

D3

D4

D5

E1

E2

E3

E4

E5

F1

F2

F3

F4

F5

H1

H2

H3

H4

H5

J1

J2

V

Z

(V)

Min.

3.135

3.42

3.705

4.085

4.465

4.845

5.32

5.7

5.89

6.46

7.125

7.79

8.265

8.645

9.5

10.45

11.4

12.35

13.3

14.25

15.2

16.15

Typ.

3.3

3.6

3.9

4.3

4.7

5.1

5.6

6

6.2

6.8

7.5

8.2

8.7

9.1

10

11

12

13

14

15

16

17

Max.

3.465

3.78

4.095

4.515

4.935

5.355

5.88

6.3

6.51

7.14

7.875

8.61

9.135

9.555

10.5

11.55

12.6

13.65

14.7

15.75

16.8

17.85

Z

Z

(Ω) @ I

ZK

(mA)

28

24

23

22

19

17

11

7.0

7.0

5.0

6.0

8.0

8.0

10

17

22

30

13

15

16

17

19

20

20

20

20

20

20

20

20

20

20

20

20

20

20

20

20

20

9.5

9.0

8.5

7.8

7.4

Z

ZK

(Ω) @ I

ZK

(mA)

1,600

1,700

1,900

2,000

1,900

1,600

1,600

1,600

1,000

750

500

500

600

600

600

600

600

600

600

600

600

600

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

I

R

(μA) @ V

R

(V)

25

15

10

5.0

5.0

5.0

5.0

5.0

5.0

3.0

3.0

3.0

3.0

3.0

3.0

2.0

1.0

0.5

0.1

0.1

0.1

0.1

1.0

1.0

1.0

1.0

2.0

2.0

3.0

3.5

4.0

5.0

6.0

6.5

6.5

7.0

8.0

8.4

9.1

9.9

10

11

12

13

V

F

Foward Voltage = 0.9V Maximum @ I

F

= 10mA for all MMSZ5200 series

© 2012 Fairchild Semiconductor Corporation

MMSZ5226B - MMSZ5257B Rev. E21

MMSZ5226B - MMSZ5257B — Zeners

Electrical Characteristics

(Continued) T

A

= 25°C unless otherwise noted

Device

MMSZ5248B

MMSZ5249B

MMSZ5250B

MMSZ5251B

MMSZ5252B

MMSZ5253B

MMSZ5254B

MMSZ5255B

MMSZ5256B

MMSZ5257B

Mark

J3

J4

J5

K1

K2

K3

K4

K5

M1

M2

V

Z

(V)

Min.

17.1

18.05

19

20.92

22.8

23.75

25.65

26.6

28.5

31.35

Typ.

18

19

20

22

24

25

27

28

30

33

Max.

18.9

19.95

21

23.1

25.2

26.25

28.35

29.4

31.5

34.65

Z

Z

(Ω) @ I

ZK

(mA)

21

23

25

29

33

35

41

44

49

58

7.0

6.6

6.2

5.6

5.2

5.0

4.6

4.5

4.2

3.8

Z

ZK

(Ω) @ I

ZK

(mA)

600

600

600

600

600

600

600

600

600

700

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

I

R

(μA) @ V

R

(V)

0.1

0.1

0.1

0.1

0.1

0.1

0.1

0.1

0.1

0.1

14

14

15

17

18

19

21

21

23

25

V

F

Foward Voltage = 0.9V Maximum @ I

F

= 10mA for all MMSZ5200 series

© 2012 Fairchild Semiconductor Corporation

MMSZ5226B - MMSZ5257B Rev. E22

MMSZ5226B - MMSZ5257B — Zeners

Typical Performance Characteristics

35

V

Z

-

Z

E

N

E

R

V

O

L

T

A

G

E

(

V

)

5000

V = 33.0V

Z

25

20

15

10

5

1

V = 3.3V

Z

V = 5.1V

Z

V = 12.0V

Z

º

T = 25 C

A

Z

Z

-

I

M

P

E

D

A

N

C

E

(

o

h

m

s

)

30

2000

1000

500

V = 3.3V

Z

200

100

50

V = 5.1V

Z

º

T = 25 C

A

V = 33.0V

Z

20

10

V = 12.0V

Z

5

2

1

0.1

2510

I - ZENER CURRENT (mA)

Z

2030

0.20.5125

I - ZENER CURRENT (mA)

Z

1020

Figure 1. Zener Current vs. Zener VoltageFigure 2. Zener Current vs. Zener Impedence

6

V

Z

-

Z

E

N

E

R

V

O

L

T

A

G

E

(

V

)

5

V

Z

-

Z

E

N

E

R

V

O

L

T

A

G

E

(

V

)

V = 3.3V

Z

V = 5.1V

Z

4

T = -25 C

º

A

T = 25 C

º

A

5.5

T = 125 C

º

A

3

T = 85 C

º

A

5

T = 100 C

º

A

T = 25 C

º

A

T = -25 C

º

A

T = 85 C

º

A

2

T = 100 C

º

A

º

T = 125 C

A

4.5

1

12510

I - ZENER CURRENT (mA)

Z

2030

4

12510

I - ZENER CURRENT (mA)

Z

2030

Figure 3. 3.3 Zener Voltage vs. TemperatureFigure 4. 5.1 Zener Voltage vs. Temperature

15

V

Z

-

Z

E

N

E

R

V

O

L

T

A

G

E

(

V

)

V = 12.0V

Z

40

T = 125 C

º

A

V = 33.0V

Z

V

Z

-

Z

E

N

E

R

V

O

L

T

A

G

E

(

V

)

T = 125 C

º

A

º

T = 100 C

A

35

10

T = -25 C

T = 85 C T = 100 C

º

T = 25 C

ºº

º

A

AA

A

30

T = -25 C

T = 85 C

T = 25 C

ºº

º

A

A

A

5

25

0

12510

I - ZENER CURRENT (mA)

Z

2030

20

12510

I - ZENER CURRENT (mA)

Z

2030

Figure 5. 12 Zener Voltage vs. Zener TemperatureFigure 6. 33 Zener Voltage vs. Zener Temperature

© 2012 Fairchild Semiconductor Corporation

MMSZ5226B - MMSZ5257B Rev. E23

TRADEMARKS

The following includes registered and unregistered trademarks and service marks, owned by Fairchild Semiconductor and/or its global subsidiaries, and is not

intended to be an exhaustive list of all such trademarks.

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®

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®

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Global Power Resource

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Making Small Speakers Sound Louder

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Programmable Active Droop¥

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RapidConfigure¥

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Saving our world, 1mW/W/kW at a time™

SignalWise¥

SmartMax¥

SMART START¥

Solutions for Your Success¥

SPM

®

STEALTH¥

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Sync-Lock™

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TriFault Detect¥

TRUECURRENT

®

*

PSerDes¥

UHC

®

Ultra FRFET¥

UniFET¥

VCX¥

VisualMax¥

VoltagePlus¥

XS™

*

* Trademarks of System General Corporation, used under license by Fairchild Semiconductor.

DISCLAIMER

FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS HEREIN TO IMPROVE

RELIABILITY, FUNCTION, OR DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT

OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS. THESE

SPECIFICATIONS DO NOT EXPAND THE TERMS OF FAIRCHILD’S WORLDWIDE TERMS AND CONDITIONS, SPECIFICALLY THE WARRANTY THEREIN,

WHICH COVERS THESE PRODUCTS.

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FAIRCHILD’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE

EXPRESS WRITTEN APPROVAL OF FAIRCHILD SEMICONDUCTOR CORPORATION.

As used herein:

1. Life support devices or systems are devices or systems which, (a) 2. A critical component in any component of a life support, device, or

are intended for surgical implant into the body or (b) support or system whose failure to perform can be reasonably expected to

sustain life, and (c) whose failure to perform when properly used in cause the failure of the life support device or system, or to affect its

accordance with instructions for use provided in the labeling, can be safety or effectiveness.

reasonably expected to result in a significant injury of the user.

ANTI-COUNTERFEITING POLICY

Fairchild Semiconductor Corporation's Anti-Counterfeiting Policy. Fairchild's Anti-Counterfeiting Policy is also stated on our external website, ,

under Sales Support.

Counterfeiting of semiconductor parts is a growing problem in the industry. All manufacturers of semiconductor products are experiencing counterfeiting of their

parts. Customers who inadvertently purchase counterfeit parts experience many problems such as loss of brand reputation, substandard performance, failed

applications, and increased cost of production and manufacturing delays. Fairchild is taking strong measures to protect ourselves and our customers from the

proliferation of counterfeit parts. Fairchild strongly encourages customers to purchase Fairchild parts either directly from Fairchild or from Authorized Fairchild

Distributors who are listed by country on our web page cited above. Products customers buy either from Fairchild directly or from Authorized Fairchild Distributors

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Fairchild will not provide any warranty coverage or other assistance for parts bought from Unauthorized Sources. Fairchild is committed to combat this global

problem and encourage our customers to do their part in stopping this practice by buying direct or from authorized distributors.

PRODUCT STATUS DEFINITIONS

Definition of Terms

Datasheet Identification Definition

Datasheet contains the design specifications for product development. Specifications may change

Advance Information Formative / In Design

in any manner without notice.

Datasheet contains preliminary data; supplementary data will be published at a later date. Fairchild

Preliminary First Production

Semiconductor reserves the right to make changes at any time without notice to improve design.

Datasheet contains final specifications. Fairchild Semiconductor reserves the right to make

No Identification Needed Full Production

changes at any time without notice to improve the design.

Datasheet contains specifications on a product that is discontinued by Fairchild Semiconductor.

Obsolete Not In Production

The datasheet is for reference information only.

Rev. I61

Product Status

© Fairchild Semiconductor Corporation

2024年7月14日发(作者:南宫正祥)

MMSZ5226B - MMSZ5257B — Zeners

February 2012

MMSZ5226B - MMSZ5257B

Zeners

Tolerance = 5%

SOD-123

Absolute Maximum Ratings *

T

A

= 25°C unless otherwise noted

Symbol

P

D

R

θJA

T

STG

Parameter

Power Dissipation @25°C

Thermal Resistance, Juncion to Ambient **

Storage Temperature Range

Value

500

340

-55 to +150

Units

mW

°C/W

°C

°CT

J

Operating Junction Temperture+150

* These ratings are limiting values above which the serviceability of the diode may be impaired.

** FR-4 or FR-5 = 3.5 × 1.5 inches using minimumrecommended land pads.

Electrical Characteristics

T

A

= 25°C unless otherwise noted

Device

MMSZ5226B

MMSZ5227B

MMSZ5228B

MMSZ5229B

MMSZ5230B

MMSZ5231B

MMSZ5232B

MMSZ5233B

MMSZ5234B

MMSZ5235B

MMSZ5236B

MMSZ5237B

MMSZ5238B

MMSZ5239B

MMSZ5240B

MMSZ5241B

MMSZ5242B

MMSZ5243B

MMSZ5244B

MMSZ5245B

MMSZ5246B

MMSZ5247B

Mark

D1

D2

D3

D4

D5

E1

E2

E3

E4

E5

F1

F2

F3

F4

F5

H1

H2

H3

H4

H5

J1

J2

V

Z

(V)

Min.

3.135

3.42

3.705

4.085

4.465

4.845

5.32

5.7

5.89

6.46

7.125

7.79

8.265

8.645

9.5

10.45

11.4

12.35

13.3

14.25

15.2

16.15

Typ.

3.3

3.6

3.9

4.3

4.7

5.1

5.6

6

6.2

6.8

7.5

8.2

8.7

9.1

10

11

12

13

14

15

16

17

Max.

3.465

3.78

4.095

4.515

4.935

5.355

5.88

6.3

6.51

7.14

7.875

8.61

9.135

9.555

10.5

11.55

12.6

13.65

14.7

15.75

16.8

17.85

Z

Z

(Ω) @ I

ZK

(mA)

28

24

23

22

19

17

11

7.0

7.0

5.0

6.0

8.0

8.0

10

17

22

30

13

15

16

17

19

20

20

20

20

20

20

20

20

20

20

20

20

20

20

20

20

20

9.5

9.0

8.5

7.8

7.4

Z

ZK

(Ω) @ I

ZK

(mA)

1,600

1,700

1,900

2,000

1,900

1,600

1,600

1,600

1,000

750

500

500

600

600

600

600

600

600

600

600

600

600

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

I

R

(μA) @ V

R

(V)

25

15

10

5.0

5.0

5.0

5.0

5.0

5.0

3.0

3.0

3.0

3.0

3.0

3.0

2.0

1.0

0.5

0.1

0.1

0.1

0.1

1.0

1.0

1.0

1.0

2.0

2.0

3.0

3.5

4.0

5.0

6.0

6.5

6.5

7.0

8.0

8.4

9.1

9.9

10

11

12

13

V

F

Foward Voltage = 0.9V Maximum @ I

F

= 10mA for all MMSZ5200 series

© 2012 Fairchild Semiconductor Corporation

MMSZ5226B - MMSZ5257B Rev. E21

MMSZ5226B - MMSZ5257B — Zeners

Electrical Characteristics

(Continued) T

A

= 25°C unless otherwise noted

Device

MMSZ5248B

MMSZ5249B

MMSZ5250B

MMSZ5251B

MMSZ5252B

MMSZ5253B

MMSZ5254B

MMSZ5255B

MMSZ5256B

MMSZ5257B

Mark

J3

J4

J5

K1

K2

K3

K4

K5

M1

M2

V

Z

(V)

Min.

17.1

18.05

19

20.92

22.8

23.75

25.65

26.6

28.5

31.35

Typ.

18

19

20

22

24

25

27

28

30

33

Max.

18.9

19.95

21

23.1

25.2

26.25

28.35

29.4

31.5

34.65

Z

Z

(Ω) @ I

ZK

(mA)

21

23

25

29

33

35

41

44

49

58

7.0

6.6

6.2

5.6

5.2

5.0

4.6

4.5

4.2

3.8

Z

ZK

(Ω) @ I

ZK

(mA)

600

600

600

600

600

600

600

600

600

700

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

0.25

I

R

(μA) @ V

R

(V)

0.1

0.1

0.1

0.1

0.1

0.1

0.1

0.1

0.1

0.1

14

14

15

17

18

19

21

21

23

25

V

F

Foward Voltage = 0.9V Maximum @ I

F

= 10mA for all MMSZ5200 series

© 2012 Fairchild Semiconductor Corporation

MMSZ5226B - MMSZ5257B Rev. E22

MMSZ5226B - MMSZ5257B — Zeners

Typical Performance Characteristics

35

V

Z

-

Z

E

N

E

R

V

O

L

T

A

G

E

(

V

)

5000

V = 33.0V

Z

25

20

15

10

5

1

V = 3.3V

Z

V = 5.1V

Z

V = 12.0V

Z

º

T = 25 C

A

Z

Z

-

I

M

P

E

D

A

N

C

E

(

o

h

m

s

)

30

2000

1000

500

V = 3.3V

Z

200

100

50

V = 5.1V

Z

º

T = 25 C

A

V = 33.0V

Z

20

10

V = 12.0V

Z

5

2

1

0.1

2510

I - ZENER CURRENT (mA)

Z

2030

0.20.5125

I - ZENER CURRENT (mA)

Z

1020

Figure 1. Zener Current vs. Zener VoltageFigure 2. Zener Current vs. Zener Impedence

6

V

Z

-

Z

E

N

E

R

V

O

L

T

A

G

E

(

V

)

5

V

Z

-

Z

E

N

E

R

V

O

L

T

A

G

E

(

V

)

V = 3.3V

Z

V = 5.1V

Z

4

T = -25 C

º

A

T = 25 C

º

A

5.5

T = 125 C

º

A

3

T = 85 C

º

A

5

T = 100 C

º

A

T = 25 C

º

A

T = -25 C

º

A

T = 85 C

º

A

2

T = 100 C

º

A

º

T = 125 C

A

4.5

1

12510

I - ZENER CURRENT (mA)

Z

2030

4

12510

I - ZENER CURRENT (mA)

Z

2030

Figure 3. 3.3 Zener Voltage vs. TemperatureFigure 4. 5.1 Zener Voltage vs. Temperature

15

V

Z

-

Z

E

N

E

R

V

O

L

T

A

G

E

(

V

)

V = 12.0V

Z

40

T = 125 C

º

A

V = 33.0V

Z

V

Z

-

Z

E

N

E

R

V

O

L

T

A

G

E

(

V

)

T = 125 C

º

A

º

T = 100 C

A

35

10

T = -25 C

T = 85 C T = 100 C

º

T = 25 C

ºº

º

A

AA

A

30

T = -25 C

T = 85 C

T = 25 C

ºº

º

A

A

A

5

25

0

12510

I - ZENER CURRENT (mA)

Z

2030

20

12510

I - ZENER CURRENT (mA)

Z

2030

Figure 5. 12 Zener Voltage vs. Zener TemperatureFigure 6. 33 Zener Voltage vs. Zener Temperature

© 2012 Fairchild Semiconductor Corporation

MMSZ5226B - MMSZ5257B Rev. E23

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