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Toshiba Semiconductor TAR DataSheet

No. parte # Fabricante Descripción Hoja de Datos
1
TAR5S17

Toshiba Semiconductor
(TAR5Sxx) Point Regulators







• Low stand-by current Overtemperature/overcurrent protection Operation voltage range is wide. Maximum output current is high. Difference between input voltage and output voltage is low. Small package. Ceramic capacitors can be used. Weig
Datasheet
2
TAR5S15

Toshiba Semiconductor
(TAR5Sxx) Point Regulators







• Low stand-by current Overtemperature/overcurrent protection Operation voltage range is wide. Maximum output current is high. Difference between input voltage and output voltage is low. Small package. Ceramic capacitors can be used. Weig
Datasheet
3
TAR5S16

Toshiba Semiconductor
(TAR5Sxx) Point Regulators







• Low stand-by current Overtemperature/overcurrent protection Operation voltage range is wide. Maximum output current is high. Difference between input voltage and output voltage is low. Small package. Ceramic capacitors can be used. Weig
Datasheet
4
TAR5S18

Toshiba Semiconductor
(TAR5Sxx) Point Regulators







• Low stand-by current Overtemperature/overcurrent protection Operation voltage range is wide. Maximum output current is high. Difference between input voltage and output voltage is low. Small package. Ceramic capacitors can be used. Weig
Datasheet
5
TAR5S19

Toshiba Semiconductor
(TAR5Sxx) Point Regulators







• Low stand-by current Overtemperature/overcurrent protection Operation voltage range is wide. Maximum output current is high. Difference between input voltage and output voltage is low. Small package. Ceramic capacitors can be used. Weig
Datasheet
6
TAR5S20

Toshiba Semiconductor
(TAR5Sxx) Point Regulators







• Low stand-by current Overtemperature/overcurrent protection Operation voltage range is wide. Maximum output current is high. Difference between input voltage and output voltage is low. Small package. Ceramic capacitors can be used. Weig
Datasheet
7
TAR5S23

Toshiba Semiconductor
(TAR5Sxx) Point Regulators







• Low stand-by current Overtemperature/overcurrent protection Operation voltage range is wide. Maximum output current is high. Difference between input voltage and output voltage is low. Small package. Ceramic capacitors can be used. Weig
Datasheet
8
TAR5S25

Toshiba Semiconductor
(TAR5Sxx) Point Regulators







• Low stand-by current Overtemperature/overcurrent protection Operation voltage range is wide. Maximum output current is high. Difference between input voltage and output voltage is low. Small package. Ceramic capacitors can be used. Weig
Datasheet
9
TAR5S27

Toshiba Semiconductor
(TAR5Sxx) Point Regulators







• Low stand-by current Overtemperature/overcurrent protection Operation voltage range is wide. Maximum output current is high. Difference between input voltage and output voltage is low. Small package. Ceramic capacitors can be used. Weig
Datasheet
10
TAR5S29

Toshiba Semiconductor
(TAR5Sxx) Point Regulators







• Low stand-by current Overtemperature/overcurrent protection Operation voltage range is wide. Maximum output current is high. Difference between input voltage and output voltage is low. Small package. Ceramic capacitors can be used. Weig
Datasheet
11
TAR5S34

Toshiba Semiconductor
(TAR5Sxx) Point Regulators







• Low stand-by current Overtemperature/overcurrent protection Operation voltage range is wide. Maximum output current is high. Difference between input voltage and output voltage is low. Small package. Ceramic capacitors can be used. Weig
Datasheet
12
TAR5S15U

Toshiba Semiconductor
Point Regulator
overtemperature and overcurrent protection circuits. Features
• Low standby current
• Overtemperature and overcurrent protections
• Wide operating voltage range
• High maximum output current
• Low input-to-output voltage differential
• Small package
Datasheet
13
TAR5S16U

Toshiba Semiconductor
Point Regulator
overtemperature and overcurrent protection circuits. Features
• Low standby current
• Overtemperature and overcurrent protections
• Wide operating voltage range
• High maximum output current
• Low input-to-output voltage differential
• Small package
Datasheet
14
TAR5S18U

Toshiba Semiconductor
Point Regulator
overtemperature and overcurrent protection circuits. Features
• Low standby current
• Overtemperature and overcurrent protections
• Wide operating voltage range
• High maximum output current
• Low input-to-output voltage differential
• Small package
Datasheet
15
TAR5S19U

Toshiba Semiconductor
Point Regulator
overtemperature and overcurrent protection circuits. Features
• Low standby current
• Overtemperature and overcurrent protections
• Wide operating voltage range
• High maximum output current
• Low input-to-output voltage differential
• Small package
Datasheet
16
TAR5S23U

Toshiba Semiconductor
Point Regulator
overtemperature and overcurrent protection circuits. Features
• Low standby current
• Overtemperature and overcurrent protections
• Wide operating voltage range
• High maximum output current
• Low input-to-output voltage differential
• Small package
Datasheet
17
TAR5S26U

Toshiba Semiconductor
Point Regulator
overtemperature and overcurrent protection circuits. Features
• Low standby current
• Overtemperature and overcurrent protections
• Wide operating voltage range
• High maximum output current
• Low input-to-output voltage differential
• Small package
Datasheet
18
TAR5S29U

Toshiba Semiconductor
Point Regulator
overtemperature and overcurrent protection circuits. Features
• Low standby current
• Overtemperature and overcurrent protections
• Wide operating voltage range
• High maximum output current
• Low input-to-output voltage differential
• Small package
Datasheet
19
TAR5S30U

Toshiba Semiconductor
Point Regulator
overtemperature and overcurrent protection circuits. Features
• Low standby current
• Overtemperature and overcurrent protections
• Wide operating voltage range
• High maximum output current
• Low input-to-output voltage differential
• Small package
Datasheet
20
TAR5S31U

Toshiba Semiconductor
Point Regulator
overtemperature and overcurrent protection circuits. Features
• Low standby current
• Overtemperature and overcurrent protections
• Wide operating voltage range
• High maximum output current
• Low input-to-output voltage differential
• Small package
Datasheet



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