U1ZB220-Z TOSHIBA Semiconductor CORPORATION, U1ZB220-Z Datasheet

no-image

U1ZB220-Z

Manufacturer Part Number
U1ZB220-Z
Description
Manufacturer
TOSHIBA Semiconductor CORPORATION
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
U1ZB220-Z
Manufacturer:
TOSHIBA
Quantity:
99 000
Part Number:
U1ZB220-Z
Manufacturer:
TOSHIBA
Quantity:
2 060
Part Number:
U1ZB220-Z
Manufacturer:
VISHAY/威世
Quantity:
20 000
Part Number:
U1ZB220-Z TE12L
Manufacturer:
TOSHIBA
Quantity:
99 000
Part Number:
U1ZB220-Z TE12R
Manufacturer:
TOSHIBA
Quantity:
99 000
CONSTANT VOLTAGE REGULATION
TRANSIENT SUPPRESSORS
l Average Power Dissipation : P = 1.0 W
l Zener Voltage
l Surface Mounting Plastic Mold Package
MAXIMUM RATINGS
STANDARD SOLDERING PAD
Power Dissipation
Junction Temperature
Storage Temperature Range
CHARACTERISTIC
TOSHIBA ZENER DIODE SILICON DIFFUSED TYPE
U1ZB6.8~U1ZB390
(Ta = 25°C)
: V
Z
= 6.8~390 V
SYMBOL
T stg
T j
P
MARK
−40~150
−40~150
RATING
1.0
1
UNIT
°C
°C
W
Weight: 0.06g
JEDEC
JEITA
TOSHIBA
U1ZB6.8~U1ZB390
3−4D1A
2001-07-11
Unit: mm

Related parts for U1ZB220-Z

U1ZB220-Z Summary of contents

Page 1

TOSHIBA ZENER DIODE SILICON DIFFUSED TYPE U1ZB6.8~U1ZB390 CONSTANT VOLTAGE REGULATION TRANSIENT SUPPRESSORS l Average Power Dissipation : Zener Voltage : V l Surface Mounting Plastic Mold Package MAXIMUM RATINGS (Ta = 25°C) CHARACTERISTIC Power Dissipation ...

Page 2

... U1ZB200−Y 190 200 210 U1ZB200−Z 200 210 220 U1ZB220 198 220 242 U1ZB220−Y 210 220 230 U1ZB220−Z 220 230 240 U1ZB240 216 240 264 U1ZB240−Y 230 240 250 U1ZB240−Z 240 250 260 (Ta = 25°C) ...

Page 3

ZENER CHARACTERISTICS ZENER ZENER VOLTAGE IMPEDANCE TYPE V ( (Ω) Z MIN TYP. MAX U1ZB270 243 270 297 U1ZB270−X 250 260 270 U1ZB270−Y 260 270 280 U1ZB270−Z 270 280 290 U1ZB300 270 300 330 U1ZB300−X 280 290 300 ...

Page 4

U1ZB6.8~U1ZB390 4 2001-07-11 ...

Page 5

RESTRICTIONS ON PRODUCT USE · TOSHIBA is continually working to improve the quality and reliability of its products. Nevertheless, semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical stress ...

Related keywords