Topology | SEPIC Buck-Boost Topology |
Input voltage | 5-20 V |
Switching frequency | 450-2000 kHz |
Output 1 | 12 V / 0.05 A |
Output 2 | 5 V / 0.05 A |
IC revision | A |
The LT®3095 generates two low-noise bias supplies from a common input voltage ranging from 3V to 20V. Each channel includes a fixed frequency, peak current-mode step-up switching regulator and a low-noise, singleresistor- programmable 50mA linear regulator. The linear regulator’s high power supply ripple rejection (PSRR) combined with its low-noise performance results in less than 100μVP-P output ripple and noise.
Each boost regulator adjusts its output voltage to 2V above the corresponding linear regulator’s output voltage, optimizing power dissipation, PSRR and transient response. This tracking scheme, along with internal boost regulator frequency compensation and integrated Schottky diodes, minimizes external component count and simplifies system design. Each linear regulator includes internal current limit and thermal limit protection circuitry.
The LT3095 switching frequency is externally programmable with a single resistor from 450kHz to 2MHz. A SYNC pin allows synchronization to an external clock. The LT3095 is available in a thermally enhanced, low profile (0.75mm) 24-lead 3mm × 5mm QFN package.
Order Code | Datasheet | Simulation | Downloads | Status | Product series | L1 (µH) | L2 (µH) | n | IR (A) | IR 2 (A) | ISAT (A) | ISAT1 (A) | ISAT2 (A) | RDC1 typ (mΩ) | RDC2 typ (mΩ) | RDC1 max (mΩ) | RDC2 max (mΩ) | fres 1 (MHz) | Samples | |
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74489430150 | SPEC | 9 files | Active i| Production is active. Expected lifetime: >10 years. | WE-TDC SMT Shielded Coupled Inductor | 15 | 15 | 1:1 | 0.85 | 0.85 | 1.25 | 1.3 | 1.3 | 262 | 262 | 295 | 295 | 29 |
Order Code | Datasheet | Simulation | |
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74489430150 | SPEC |
Samples |
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Order Code | Datasheet | Simulation | Downloads | Status | Product series | L1 (µH) | L2 (µH) | n | IR (A) | IR 2 (A) | ISAT (A) | ISAT1 (A) | ISAT2 (A) | RDC1 typ (mΩ) | RDC2 typ (mΩ) | RDC1 max (mΩ) | RDC2 max (mΩ) | fres 1 (MHz) | Samples |
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