BZX84C16-V Vishay Semiconductors, BZX84C16-V Datasheet

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BZX84C16-V

Manufacturer Part Number
BZX84C16-V
Description
Manufacturer
Vishay Semiconductors
Datasheet
Small Signal Zener Diodes
Features
Absolute Maximum Ratings
T
1)
Thermal Characteristics
T
1)
Document Number 85763
Rev. 1.7, 14-Jul-05
• These diodes are also available in other
• The Zener voltages are graded according to the
• Silicon Planar Power Zener Diodes
• Lead (Pb)-free component
• Component in accordance to RoHS 2002/95/EC
Power dissipation
Thermal resistance junction to ambient air
Junction temperature
Storage temperature range
amb
amb
Device on fiberglass substrate, see layout.
Device on fiberglass substrate, see layout.
case styles and other configurations
including: the SOD-123 case with type
designation BZT52 series, the dual zener
diode common anode configuration in the SOT-23
case with type designation AZ23 series and the
dual zener diode common cathode configuration
in the SOT-23 case with type designation DZ23
series.
international E 24 standard. Standard Zener volt-
age tolerance is ± 5 %. Replace "C" with "B" for
and WEEE 2002/96/EC
± 2 % tolerance.
= 25 °C, unless otherwise specified
= 25 °C, unless otherwise specified
Parameter
Parameter
Test condition
Test condition
e3
Mechanical Data
Case: SOT-23 Plastic case
Weight: approx. 8.8 mg
Packaging Codes/Options:
GS18 / 10 k per 13" reel (8 mm tape), 10 k/box
GS08 / 3 k per 7" reel (8 mm tape), 15 k/box
Symbol
Symbol
R
P
T
thJA
T
tot
S
j
BZX84-V-Series
- 65 to + 150
Vishay Semiconductors
300
420
Value
Value
150
1)
1)
www.vishay.com
°C/W
Unit
mW
Unit
°C
°C
1

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BZX84C16-V Summary of contents

Page 1

... GS18 / 10 k per 13" reel (8 mm tape), 10 k/box GS08 / 3 k per 7" reel (8 mm tape), 15 k/box Test condition Symbol P tot Test condition Symbol R thJA BZX84-V-Series Vishay Semiconductors Value Unit 1) mW 300 Value Unit 1) °C/W 420 150 ° 150 °C www ...

Page 2

... BZX84C4V3-V Z17 4 BZX84C4V7-V Z1 4.4 BZX84C5V1-V Z2 4.8 BZX84C5V6-V Z3 5.2 BZX84C6V2-V Z4 5.8 BZX84C6V8-V Z5 6.4 BZX84C7V5 BZX84C8V2-V Z7 7.7 BZX84C9V1-V Z8 8.5 BZX84C10-V Z9 9.4 BZX84C11-V Y1 10.4 BZX84C12-V Y2 11.4 BZX84C13-V Y3 12.4 BZX84C15-V Y4 13.8 BZX84C16-V Y5 15.3 BZX84C18-V Y6 16.8 BZX84C20-V Y7 18.8 BZX84C22-V Y8 20.8 BZX84C24-V Y9 22.8 BZX84C27-V Y10 25.1 BZX84C30-V Y11 28 BZX84C33-V Y12 31 BZX84C36-V Y13 34 BZX84C39-V Y14 37 BZX84C43-V Y15 40 BZX84C47-V Y16 44 BZX84C51-V Y17 48 BZX84C56-V Y18 52 BZX84C62-V Y19 ...

Page 3

... BZX84-V-Series Vishay Semiconductors Temp. Test Reverse Leakage Coefficient Current Current of Zener Voltage α ZT1 ZT2 R µ /° ...

Page 4

... BZX84-V-Series Vishay Semiconductors Typical Characteristics (Tamb = 25 °C unless otherwise specified) Figure 1. Forward characteristics Figure 2. Admissible Power Dissipation vs. Ambient Temperature ° C Figure 3. Pulse Thermal Resistance vs. Pulse Duration www.vishay.com 4 Figure 4. Dynamic Resistance vs. Zener Current Figure 5. Capacitance vs. Zener Voltage Figure 6. Dynamic Resistance vs. Zener Current Document Number 85763 Rev ...

Page 5

... Figure 8. Thermal Differential Resistance vs. Zener Voltage Figure 9. Dynamic Resistance vs. Zener Voltage Document Number 85763 Rev. 1.7, 14-Jul-05 BZX84-V-Series Vishay Semiconductors °C Figure 10. Temperature Dependence of Zener Voltage vs. Zener Voltage Figure 11. Change of Zener Voltage vs. Junction Temperature °C Figure 12. Temperature Dependence of Zener Voltage vs. Zener ...

Page 6

... BZX84-V-Series Vishay Semiconductors Figure 13. Change of Zener Voltage vs. Junction Temperature Figure 14. Change of Zener voltage from turn- the point of thermal equilibrium vs. Zener voltage Figure 15. Change of Zener voltage from turn- the point of thermal equilibrium vs. Zener voltage www.vishay.com 6 Document Number 85763 Rev. 1.7, 14-Jul-05 ...

Page 7

... Document Number 85763 Rev. 1.7, 14-Jul-05 Figure 16. Breakdown Characteristics Figure 17. Breakdown Characteristics BZX84-V-Series Vishay Semiconductors www.vishay.com 7 ...

Page 8

... BZX84-V-Series Vishay Semiconductors Layout for R test Theta;JA Thickness: Fiberglass 0.059 in. (1.5 mm) Copper leads 0.012 in. (0.3 mm) www.vishay.com 8 Figure 18. Breakdown Characteristics 12 (0.47) 0.8 (0.03) 15 (0.59) 5 (0.2) 7.5 (0.3) 3 (0.12) 1 (0.4) 2 (0.8) 1 (0.4) 2 (0.8) 1.5 (0.06) 5.1 (0.2) 17451 Document Number 85763 Rev. 1.7, 14-Jul-05 ...

Page 9

... Package Dimensions in mm (Inches) 0.4 (.016) 0.4 (.016) 3.1 (.122) 2.8 (.110) 0.4 (.016) 0.95 (.037) 0.95 (.037) Document Number 85763 Rev. 1.7, 14-Jul-05 0.175 (.007) 0.098 (.005) 0.1 (.004) max. Mounting Pad Layout 2.0 (0.079) 0.95 (0.037) BZX84-V-Series Vishay Semiconductors 2.6 (.102) 2.35 (.092) ISO Method E 0.52 (0.020) 0.9 (0.035) 0.95 (0.037) 17418 www.vishay.com 9 ...

Page 10

... We reserve the right to make changes to improve technical design Parameters can vary in different applications. All operating parameters must be validated for each customer application by the customer. Should the buyer use Vishay Semiconductors products for any unintended or unauthorized application, the buyer shall indemnify Vishay Semiconductors against all claims, costs, damages, and expenses, arising out of, directly or indirectly, any claim of personal damage, injury or death associated with such unintended or unauthorized use ...

Page 11

Specifications of the products displayed herein are subject to change without notice. Vishay Intertechnology, Inc., or anyone on its behalf, assumes no responsibility or liability for any errors or inaccuracies. Information contained herein is intended to provide a product description ...

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