
TPS59603QDSGRQ1
ActiveSYNCHRONOUS BUCK FET DRIVER FOR HIGH-FREQUENCY CPU CORE POWER IN AUTOMOTIVE APPLICATIONS
Deep-Dive with AI
Search across all available documentation for this part.

TPS59603QDSGRQ1
ActiveSYNCHRONOUS BUCK FET DRIVER FOR HIGH-FREQUENCY CPU CORE POWER IN AUTOMOTIVE APPLICATIONS
Technical Specifications
Parameters and characteristics commom to parts in this series
Specification | TPS59603QDSGRQ1 | TPS59603 Series |
---|---|---|
Current - Supply | 160 µA | 160 µA |
Grade | Automotive | Automotive |
Mounting Type | Surface Mount, Wettable Flank | Surface Mount, Wettable Flank |
Operating Temperature [Max] | 125 ¯C | 125 ¯C |
Operating Temperature [Min] | -40 °C | -40 °C |
Package / Case | 8-WFDFN Exposed Pad | 8-WFDFN Exposed Pad |
Qualification | AEC-Q100 | AEC-Q100 |
Supplier Device Package | 8-WSON (2x2) | 8-WSON (2x2) |
Voltage - Supply [Max] | 5.5 V | 5.5 V |
Voltage - Supply [Min] | 4.5 V | 4.5 V |
Pricing
Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly
TPS59603 Series
Synchronous buck FET driver for high-frequency CPU core power in automotive applications
Part | Supplier Device Package | Current - Supply | Voltage - Supply [Max] | Voltage - Supply [Min] | Package / Case | Qualification | Operating Temperature [Max] | Operating Temperature [Min] | Grade | Mounting Type |
---|---|---|---|---|---|---|---|---|---|---|
Texas Instruments TPS59603QDSGTQ1The TPS59603-Q1 drivers are optimized for high-frequency CPU VCOREapplications. Advanced features such as reduced dead-time drive and auto zero crossing are used to optimize efficiency over the entire load range.
TheSKIPpin provides the option of CCM operation to support controlled management of the output voltage. In addition, the TPS59603-Q1 supports two low-power modes. With the PWM input in tri-state, quiescent current is reduced to 130 µA, with immediate response. WhenSKIPis held at tri-state, the current is reduced to 8 µA (typically 20 µs is required to resume switching). Paired with the appropriate TI controller, the drivers deliver an exceptionally high performance power supply system.
The TPS59603-Q1 device is packaged in a space saving, thermally-enhanced 8-pin, 2-mm x 2-mm wettable flanks WSON package and operates from –40°C to 125°C.
The TPS59603-Q1 drivers are optimized for high-frequency CPU VCOREapplications. Advanced features such as reduced dead-time drive and auto zero crossing are used to optimize efficiency over the entire load range.
TheSKIPpin provides the option of CCM operation to support controlled management of the output voltage. In addition, the TPS59603-Q1 supports two low-power modes. With the PWM input in tri-state, quiescent current is reduced to 130 µA, with immediate response. WhenSKIPis held at tri-state, the current is reduced to 8 µA (typically 20 µs is required to resume switching). Paired with the appropriate TI controller, the drivers deliver an exceptionally high performance power supply system.
The TPS59603-Q1 device is packaged in a space saving, thermally-enhanced 8-pin, 2-mm x 2-mm wettable flanks WSON package and operates from –40°C to 125°C. | 8-WSON (2x2) | 160 µA | 5.5 V | 4.5 V | 8-WFDFN Exposed Pad | AEC-Q100 | 125 ¯C | -40 °C | Automotive | Surface Mount, Wettable Flank |
Texas Instruments TPS59603QDSGRQ1The TPS59603-Q1 drivers are optimized for high-frequency CPU VCOREapplications. Advanced features such as reduced dead-time drive and auto zero crossing are used to optimize efficiency over the entire load range.
TheSKIPpin provides the option of CCM operation to support controlled management of the output voltage. In addition, the TPS59603-Q1 supports two low-power modes. With the PWM input in tri-state, quiescent current is reduced to 130 µA, with immediate response. WhenSKIPis held at tri-state, the current is reduced to 8 µA (typically 20 µs is required to resume switching). Paired with the appropriate TI controller, the drivers deliver an exceptionally high performance power supply system.
The TPS59603-Q1 device is packaged in a space saving, thermally-enhanced 8-pin, 2-mm x 2-mm wettable flanks WSON package and operates from –40°C to 125°C.
The TPS59603-Q1 drivers are optimized for high-frequency CPU VCOREapplications. Advanced features such as reduced dead-time drive and auto zero crossing are used to optimize efficiency over the entire load range.
TheSKIPpin provides the option of CCM operation to support controlled management of the output voltage. In addition, the TPS59603-Q1 supports two low-power modes. With the PWM input in tri-state, quiescent current is reduced to 130 µA, with immediate response. WhenSKIPis held at tri-state, the current is reduced to 8 µA (typically 20 µs is required to resume switching). Paired with the appropriate TI controller, the drivers deliver an exceptionally high performance power supply system.
The TPS59603-Q1 device is packaged in a space saving, thermally-enhanced 8-pin, 2-mm x 2-mm wettable flanks WSON package and operates from –40°C to 125°C. | 8-WSON (2x2) | 160 µA | 5.5 V | 4.5 V | 8-WFDFN Exposed Pad | AEC-Q100 | 125 ¯C | -40 °C | Automotive | Surface Mount, Wettable Flank |
Description
General part information
TPS59603 Series
The TPS59603-Q1 drivers are optimized for high-frequency CPU VCOREapplications. Advanced features such as reduced dead-time drive and auto zero crossing are used to optimize efficiency over the entire load range.
TheSKIPpin provides the option of CCM operation to support controlled management of the output voltage. In addition, the TPS59603-Q1 supports two low-power modes. With the PWM input in tri-state, quiescent current is reduced to 130 µA, with immediate response. WhenSKIPis held at tri-state, the current is reduced to 8 µA (typically 20 µs is required to resume switching). Paired with the appropriate TI controller, the drivers deliver an exceptionally high performance power supply system.
The TPS59603-Q1 device is packaged in a space saving, thermally-enhanced 8-pin, 2-mm x 2-mm wettable flanks WSON package and operates from –40°C to 125°C.
Documents
Technical documentation and resources