Infineon
OPTIREG™ PMIC
Infineon
TLE73683EXUMA3
The device is intended to supply and monitor next generation 32-bit microcontroller families (13 μm lithography) where voltage levels such as 5 V, 3.3 V or 1.3 V are required. The regulator follows the concept of its predecessor TLE6368, where the output of a pre-regulator feeds the inputs of the micro’s linear supplies. In detail, the TLE7368 cascades a Buck converter with linear regulators and voltage followers to achieve lowest power dissipation. This configuration allows to power the application even at high ambient temperatures. he step-down converter delivers a pre-regulated voltage of 5.5 V with a minimum peak current capability of 2.5 A. Supplied by this step down converter two low drop linear post-regulators offer 5 V and 3.3 V (2.6 V) with high accuracy. The current capability of the regulators is 800 mA and 700 mA. The 3.3 V (2.6 V) linear regulator does have its own input allowing to insert a dropper from the Buck output to reduce the on chip power dissipation if necessary. For the same reason, reduction of on chip power dissipation, the core supply (1.5 V, 1.2 V or 1.3 V) follows the concept of integrated control circuit with external power stage. Implementing the on board and microcontroller supplies in this way described, allows operation even at high ambient temperatures.The regulator system contains the so called power sequencing function which provides a controlled power up sequence of the three output voltages. In addition to the main regulators the inputs of two voltage trackers are connected to the 5.5 V Buck converter output voltage. Their protected outputs follow the main 5 V linear regulator with high accuracy and are able to drive loads of 50 mA and 105 mA. To monitor the output voltage levels of each of the linear regulators two independent undervoltage detection circuits are available. They can be used to implement the reset or an interrupt function.For energy saving reasons, e.g. while the motor is turned off, the TLE7368 offers a stand-b
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Infineon
TLE7368EXUMA3
The device is intended to supply and monitor next generation 32-bit microcontroller families (13 μm lithography) where voltage levels such as 5 V, 3.3 V or 1.5 V are required. The regulator follows the concept of its predecessor TLE6368, where the output of a pre-regulator feeds the inputs of the micro’s linear supplies. In detail, the TLE7368 cascades a Buck converter with linear regulators and voltage followers to achieve lowest power dissipation. This configuration allows to power the application even at high ambient temperatures. The step-down converter delivers a pre-regulated voltage of 5.5 V with a minimum peak current capability of 2.5 A. Supplied by this step down converter two low drop linear post-regulators offer 5 V and 3.3 V (2.6 V) with high accuracy. The current capability of the regulators is 800 mA and 700 mA. The 3.3 V (2.6 V) linear regulator does have its own input allowing to insert a dropper from the Buck output to reduce the on chip power dissipation if necessary. For the same reason, reduction of on chip power dissipation, the core supply (1.5 V, 1.2 V or 1.3 V) follows the concept of integrated control circuit with external power stage. Implementing the on board and microcontroller supplies in this way described, allows operation even at high ambient temperatures.The regulator system contains the so called power sequencing function which provides a controlled power up sequence of the three output voltages. In addition to the main regulators the inputs of two voltage trackers are connected to the 5.5 V Buck converter output voltage. Their protected outputs follow the main 5 V linear regulator with high accuracy and are able to drive loads of 50 mA and 105 mA. To monitor the output voltage levels of each of the linear regulators two independent undervoltage detection circuits are available. They can be used to implement the reset or an interrupt function. For energy saving reasons, e.g. while the motor is turned off, the TLE7368 offers a stand
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Infineon
TLE7368EXUMA5
The device is intended to supply and monitor next generation 32-bit microcontroller families (13 μm lithography) where voltage levels such as 5 V, 3.3 V or 1.5 V are required. The regulator follows the concept of its predecessor TLE6368, where the output of a pre-regulator feeds the inputs of the micro’s linear supplies. In detail, the TLE7368 cascades a Buck converter with linear regulators and voltage followers to achieve lowest power dissipation. This configuration allows to power the application even at high ambient temperatures. The step-down converter delivers a pre-regulated voltage of 5.5 V with a minimum peak current capability of 2.5 A. Supplied by this step down converter two low drop linear post-regulators offer 5 V and 3.3 V (2.6 V) with high accuracy. The current capability of the regulators is 800 mA and 700 mA. The 3.3 V (2.6 V) linear regulator does have its own input allowing to insert a dropper from the Buck output to reduce the on chip power dissipation if necessary. For the same reason, reduction of on chip power dissipation, the core supply (1.5 V, 1.2 V or 1.3 V) follows the concept of integrated control circuit with external power stage. Implementing the on board and microcontroller supplies in this way described, allows operation even at high ambient temperatures.The regulator system contains the so called power sequencing function which provides a controlled power up sequence of the three output voltages. In addition to the main regulators the inputs of two voltage trackers are connected to the 5.5 V Buck converter output voltage. Their protected outputs follow the main 5 V linear regulator with high accuracy and are able to drive loads of 50 mA and 105 mA. To monitor the output voltage levels of each of the linear regulators two independent undervoltage detection circuits are available. They can be used to implement the reset or an interrupt function. For energy saving reasons, e.g. while the motor is turned off, the TLE7368 offers a stand
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Infineon
TLF35585QUS01XUMA2
The wide switching frequency range allows optimization in respect of efficiency and usage of small filter components. A dedicated reference-regulator supplies the ADC independent from microcontroller load steps and acts as tracking-source for the two-independent sensor-supplies. The flexible state machine, wake-up concept including timer, and the stand-by-regulator favors the usage in numerous applications.Multiple safety features enable easy realization of ASIL D together with various Microcontrollers (μCs). The OPTIREGTM TLF35585QUS01 PMIC comes in TQFP – 48 packages capable for automated optical inspection. The package is thermally enhanced, fully AEC – Q100 Grade 0 qualified and capable to go beyond Grade 0.The OPTIREGTM PMIC TLF35585 is a robust, safe and reliable supply companion for AURIXTM microcontrollers for a dependable system and enables the highest safety standard at system level when combined with AURIXTM microcontrollers TC2xx and TC3xx.To get access to the complete OPTIREG™ PMIC technical documentation please follow the instruction here.
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Infineon
TLF35585QUS02XUMA2
The wide switching frequency range allows optimization in respect of efficiency and usage of small filter components. A dedicated reference-regulator supplies the ADC independent from microcontroller load steps and acts as tracking-source for the two-independent sensor-supplies. The flexible state machine, wake-up concept including timer, and the stand-by-regulator favors the usage in numerous applications.Multiple safety features enable easy realization of ASIL D together with various Microcontrollers (μCs). The OPTIREGTM TLF35585QUS02 PMIC comes in TQFP – 48 packages capable for automated optical inspection. The package is thermally enhanced, fully AEC – Q100 Grade 0 qualified and capable to go beyond Grade 0.The OPTIREGTM PMIC TLF35585 is a robust, safe and reliable supply companion for AURIXTM microcontrollers for a dependable system and enables the highest safety standard at system level when combined with AURIXTM microcontrollers TC2xx and TC3xx.To get access to the complete OPTIREG™ PMIC technical documentation please follow the instruction here.
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Infineon
TLF35585QVS01XUMA2
The wide switching frequency range allows optimization in respect of efficiency and usage of small filter components. A dedicated reference-regulator supplies the ADC independent from microcontroller load steps and acts as tracking-source for the two-independent sensor-supplies. The flexible state machine, wake-up concept including timer, and the stand-by-regulator favors the usage in numerous applications.Multiple safety features enable easy realization of ASIL D together with various microcontrollers. The OPTIREGTM TLF35585QVS01 PMIC comes in small VQFN – 48 packages capable of automated optical inspection (AOI). The package is thermally enhanced, fully AEC – Q100 Grade 0 qualified and capable to go beyond that.The OPTIREGTM PMIC TLF35585 is a robust, safe and reliable supply companion for AURIXTM microcontrollers for a dependable system and enables the highest safety standard at system level when combined with AURIXTM microcontrollers TC2xx and TC3xx.To get access to the complete OPTIREG™ PMIC technical documentation please follow the instruction here.
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Infineon
TLF35585QVS02XUMA2
The wide switching frequency range allows optimization in respect of efficiency and usage of small filter components. A dedicated reference-regulator supplies the ADC independent from microcontroller load steps and acts as tracking-source for the two-independent sensor-supplies. The flexible state machine, wake-up concept including timer, and the stand-by-regulator favors the usage in numerous applications.Multiple safety features enable easy realization of ASIL D together with various Microcontrollers (μCs). The OPTIREGTM TLF35585QVS02 PMIC comes in small VQFN – 48 packages capable for automated optical inspection. The package is thermally enhanced, fully AEC – Q100 Grade 0 qualified and capable to go beyond Grade 0.The OPTIREGTM PMIC TLF35585 is a robust, safe and reliable supply companion for AURIXTM microcontrollers for a dependable system and enables the highest safety standard at system level when combined with AURIXTM microcontrollers TC2xx and TC3xx.To get access to the complete OPTIREG™ PMIC technical documentation please follow the instruction here.
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