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Text: User's Guide SNVA219A – June 2007 – Revised April 2013 AN-1584 LP5990 DSBGA Evaluation Board 1 Introduction This board is designed to allow the evaluation of the LP5990 Low Voltage CMOS Regulator. Each board is pre-assembled and tested in the factory. The board contains the LP5990 in a 4 bump DSBGA, 0.4mm
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Text: LP5990 www.ti.com SNVS438B – APRIL 2007 – REVISED DECEMBER 2007 LP5990 Micropower 200mA CMOS Low Dropout Voltage Regulator Check for Samples: LP5990 FEATURES DESCRIPTION • • • The LP5990 regulator is designed to meet the requirements of portable, battery-powered systems
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LP5990
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Text: LMH2121 www.ti.com SNVS876A – AUGUST 2012 – REVISED MARCH 2013 LMH2121 3 GHz Fast-Responding Linear Power Detector with 40 dB Dynamic Range Check for Samples: LMH2121 FEATURES DESCRIPTION • • • • • • • • • • • The LMH2121 is an accurate fast-responding power
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Text: LP5560 www.ti.com SNVS873C – AUGUST 2012 – REVISED MAY 2013 LP5560 Programmable LED Driver with Single-Wire Interface Check for Samples: LP5560 FEATURES DESCRIPTION • LP5560 is a programmable LED driver that can generate variety of blinking sequences with up to
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LIN conformance
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Text: LMH2121 www.ti.com SNVS876 – AUGUST 2012 LMH2121 3 GHz Fast-Responding Linear Power Detector with 40 dB Dynamic Range Check for Samples: LMH2121 FEATURES • 1 • • • • • • • • • • 2 Linear response 40 dB power detection range Very low supply current of 3.4 mA
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Text: LMH2121 www.ti.com SNVS876A – AUGUST 2012 – REVISED MARCH 2013 LMH2121 3 GHz Fast-Responding Linear Power Detector with 40 dB Dynamic Range Check for Samples: LMH2121 FEATURES DESCRIPTION • • • • • • • • • • • The LMH2121 is an accurate fast-responding power
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Text: LP5560 www.ti.com SNVS873 – AUGUST 2012 LP5560 Programmable LED Driver with Single-Wire Interface Check for Samples: LP5560 FEATURES 1 • 2 • • • • • • Programmable blinking sequence with current rise and fall time control Default blinking sequence for simple systems
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YFQ0004
Abstract: integrate circuit semiconductor SMD MARKING CODE
Text: LP5904 www.ti.com SNVS637F – MARCH 2011 – REVISED APRIL 2012 LP5904 Ultra Low Noise, 200 mA Linear Regulator for RF/Analog Circuits - Requires No Bypass Capacitor Check for Samples: LP5904 FEATURES for operation 1 • 2 • • • • Stable with 1.0 F Ceramic Input and Output
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integrate circuit semiconductor SMD MARKING CODE
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Text: LP5904 www.ti.com SNVS637F – MARCH 2011 – REVISED APRIL 2012 LP5904 Ultra Low Noise, 200 mA Linear Regulator for RF/Analog Circuits - Requires No Bypass Capacitor Check for Samples: LP5904 FEATURES for operation 1 • 2 • • • • Stable with 1.0 F Ceramic Input and Output
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Text: User's Guide SNVA488A – June 2011 – Revised April 2013 AN-2161 LP5904 DSBGA Evaluation Board Information 1 Introduction This evaluation board is designed to enable the evaluation of the LP5904 Voltage Regulator. Each board is assembled and tested in the factory. This evaluation board has the 4-bump DSBGA package mounted.
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Text: LP5904 www.ti.com SNVS637F – MARCH 2011 – REVISED APRIL 2012 LP5904 Ultra Low Noise, 200 mA Linear Regulator for RF/Analog Circuits - Requires No Bypass Capacitor Check for Samples: LP5904 FEATURES for operation 1 • 2 • • • • Stable with 1.0 F Ceramic Input and Output
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Text: LM94023 www.ti.com SNIS150 – SEPTEMBER 2008 1.5V, micro SMD, Dual-Gain Analog Temperature Sensor with Class AB Output Check for Samples: LM94023 FEATURES DESCRIPTION • • The LM94023 is a precision analog output CMOS integrated-circuit temperature sensor that operates at
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LP5560
Abstract: No abstract text available
Text: LP5560 www.ti.com SNVS873 – AUGUST 2012 LP5560 Programmable LED Driver with Single-Wire Interface Check for Samples: LP5560 FEATURES 1 • 2 • • • • • • Programmable blinking sequence with current rise and fall time control Default blinking sequence for simple systems
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SMD 557
Abstract: No abstract text available
Text: LM94023 www.ti.com SNIS150A – SEPTEMBER 2008 – REVISED MARCH 2013 1.5V, micro SMD, Dual-Gain Analog Temperature Sensor with Class AB Output Check for Samples: LM94023 FEATURES DESCRIPTION • • The LM94023 is a precision analog output CMOS integrated-circuit temperature sensor that operates at
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Text: LM94023 www.ti.com SNIS150A – SEPTEMBER 2008 – REVISED MARCH 2013 1.5V, micro SMD, Dual-Gain Analog Temperature Sensor with Class AB Output Check for Samples: LM94023 FEATURES DESCRIPTION • • The LM94023 is a precision analog output CMOS integrated-circuit temperature sensor that operates at
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Text: LP5904 www.ti.com SNVS637G – MARCH 2011 – REVISED APRIL 2013 Ultra Low Noise, 200 mA Linear Regulator for RF/Analog Circuits - Requires No Bypass Capacitor Check for Samples: LP5904 FEATURES PACKAGE • • 1 • • • • Stable with 1.0 µF Ceramic Input and Output
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Text: LM94023 www.ti.com SNIS150B – SEPTEMBER 2008 – REVISED JUNE 2013 1.5V, micro SMD, Dual-Gain Analog Temperature Sensor with Class AB Output Check for Samples: LM94023 FEATURES DESCRIPTION • • The LM94023 is a precision analog output CMOS integrated-circuit temperature sensor that operates at
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SMD A18a
Abstract: No abstract text available
Text: LM94023 www.ti.com SNIS150A – SEPTEMBER 2008 – REVISED MARCH 2013 1.5V, micro SMD, Dual-Gain Analog Temperature Sensor with Class AB Output Check for Samples: LM94023 FEATURES DESCRIPTION • • The LM94023 is a precision analog output CMOS integrated-circuit temperature sensor that operates at
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Text: LP5904 www.ti.com SNVS637G – MARCH 2011 – REVISED APRIL 2013 Ultra Low Noise, 200 mA Linear Regulator for RF/Analog Circuits - Requires No Bypass Capacitor Check for Samples: LP5904 FEATURES PACKAGE • • 1 • • • • Stable with 1.0 µF Ceramic Input and Output
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Text: LP5904 www.ti.com SNVS637G – MARCH 2011 – REVISED APRIL 2013 Ultra Low Noise, 200 mA Linear Regulator for RF/Analog Circuits - Requires No Bypass Capacitor Check for Samples: LP5904 FEATURES PACKAGE • • 1 • • • • Stable with 1.0 µF Ceramic Input and Output
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Text: LMH2121 www.ti.com SNVS876A – AUGUST 2012 – REVISED MARCH 2013 LMH2121 3 GHz Fast-Responding Linear Power Detector with 40 dB Dynamic Range Check for Samples: LMH2121 FEATURES DESCRIPTION • • • • • • • • • • • The LMH2121 is an accurate fast-responding power
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