ZHCS546P December 2009 – April 2019 LMZ10504
PRODUCTION DATA.
The compensation for each solution was optimized to work over the stated input range. Many applications have a fixed input voltage rail. It is possible to modify the compensation to obtain a faster transient response for a given input voltage operating point. This schematic is intended to serve as a helpful starting point towards an optimized design.
Figure 26. Schematic for 2.5-V Output Based on 3.3-V to 5-V Input | DESIGNATOR | DESCRIPTION | CASE SIZE | MANUFACTURER | MANUFACTURER P/N | QUANTITY |
|---|---|---|---|---|---|
| U1 | Power Module | PFM-7 | Texas Instruments | LMZ10504TZ-ADJ | 1 |
| Cin1 | 22 µF, X5R, 10 V | 1210 | AVX | 1210ZD226MAT | 2 |
| Cin2 | 220 µF, 10 V, AL-Elec | E | Panasonic | EEE1AA221AP | 1* |
| CO1 | 4.7 µF, X5R, 10 V | 0805 | AVX | 0805ZD475MAT | 1* |
| CO2 | 22 µF, X5R, 6.3 V | 1206 | AVX | 12066D226MAT | 1* |
| CO3 | 100 µF, X5R, 6.3 V | 1812 | AVX | 18126D107MAT | 1 |
| Rfbt | 75 kΩ | 0402 | Vishay Dale | CRCW040275K0FKED | 1 |
| Rfbb | 34.8 kΩ | 0402 | Vishay Dale | CRCW040234K8FKED | 1 |
| Rcomp | 1.0 kΩ | 0402 | Vishay Dale | CRCW04021K00FKED | 1 |
| Ccomp | 100 pF, ±5%, C0G, 50 V | 0402 | Murata | GRM1555C1H101JZ01 | 1 |
| CSS | 10 nF, ±10%, X7R, 16 V | 0402 | Murata | GRM155R71C103KA01 | 1 |
| VOUT | Rfbb |
|---|---|
| 2.5 V | 34.8 kΩ |
| 1.8 V | 59 kΩ |
| 1.5 V | 84.5 kΩ |
| 1.2 V | 150 kΩ |
| 0.9 V | 590 kΩ |