The Leader in High Temperature Semiconductor Solutions CHT-LDOP

2022-04-12

■General Description
●The CHT-LDOP is a 1A, low-dropout linear voltage regulator compatible with high-temperature environments. Typical operation temperature range extends from -50°C to 225°C.
●The circuit is stable throughout the whole temperature range and under a large choice of capacitive loads.
●The minimum dropout voltage (V-in-V-out) is 2V with a 1A load current at 225°C and 1V for load currents lower than 400mA. The dropout voltage can span from 1 Volts to 20 Volts.
●The circuit is a one-die solution. CHT-LDOP is available in TO-254 package and in bare die.
■Features
●1V to 20V dropout Voltage @400mA
●2V to 20V dropout Voltage @1A
●Max 1A output current @ 225°C
●60dB input ripple rejection (0-100Hz)
●C-load from 100nF to 1000μF, large ESR range
●Output voltage programmable by bonding option (bare die version)
●Available in TO-254 package and bare die form (contact CISSOID)(for other package options, please contact CIS-SOID)
●The start-up is operative over the whole temperature range
●Latch-up free
●Validated at 225°C for 43800 hours (and still on-going)

CISSOID

CHT-LDOPCHT-LDOP-025CHT-LDOP-050CHT-LDOP-055CHT-LDOP-056CHT-LDOP075CHT-LDOP-090CHT-LDOP-100CHT-LDOP-120CHT-LDOP-130CHT-LDOP-150CHT-LDOP-025-TO254-TCHT-LDOP-033-TO254-TCHT-LDOP-033CHT-LDOP-050-TO254-TCHT-LDOP-055-TO254-TCHT-LDOP-056-TO254-TCHT-LDOP-075-TO254-TCHT-LDOP-075CHT-LDOP-090-TO254-TCHT-LDOP-100-TO254-TCHT-LDOP-120-TO254-TCHT-LDOP-130-TO254-TCHT-LDOP-150-TO254-T

More

Part#

High-Temperature Low-Dropout Voltage Regulatorlow-dropout linear voltage regulator

More

High Temperature electronic systems ]Well logging applications ]Automotive applications ]Aeronautics applications ]Aerospace applications ]

More

Datasheet

More

More

Please see the document for details

More

More

English Chinese Chinese and English Japanese

25-Mar-15

Version: 2.4

DS-090404

794 KB

- The full preview is over. If you want to read the whole 9 page document,please Sign in/Register -
  • +1 Like
  • Add to Favorites

Recommend

All reproduced articles on this site are for the purpose of conveying more information and clearly indicate the source. If media or individuals who do not want to be reproduced can contact us, which will be deleted.

Contact Us

Email: