Lead Count (#) | 24 |
Pkg. Type | SOICW |
Pkg. Code | MVC |
Pitch (mm) | 1.27 |
Pkg. Dimensions (mm) | 15.39 x 7.49 x 0.00 |
Moisture Sensitivity Level (MSL) | 1 |
Pb (Lead) Free | Yes |
ECCN | EAR99 |
HTSUS |
Pkg. Type | SOICW |
Lead Count (#) | 24 |
Carrier Type | Tray |
Moisture Sensitivity Level (MSL) | 1 |
TID LDR (krad(Si)) | 30 |
Pb (Lead) Free | Yes |
Pb Free Category | Nickel/Palladium/Gold-Silver - e4 |
MOQ | 25 |
Control Mode | Peak Current Mode |
DSEE (MeV·cm2/mg) | 43 |
Die Sale Availability? | No |
Duty Cycle (%) | 97 - 97 |
Flow | RT Plastic |
Length (mm) | 15.4 |
No-Load Operating Current | 12 |
PROTO Availability? | No |
PWMs (#) | 2 |
Phases (Max) | 2 |
Pitch (mm) | 1.3 |
Pkg. Dimensions (mm) | 15.4 x 7.5 x 0.00 |
Qualification Level | Radiation Tolerant Plastic |
Quiescent Current | 11µA |
Rating | Space |
Supply Voltage (max) (V) | 19 - 19 |
Supply Voltage (min) (V) | 4.5 - 4.5 |
Switching Frequency (max) (kHz) | 1500 |
Switching Frequency (min) (kHz) | 250 |
Temp. Range | -40 to +125°C |
Thickness (mm) | 0 |
Topology | Sync. Buck |
Topology Characteristic | Synchronous |
Topology [Rail 1] | Buck |
UVLO Falling (V) | 4 |
UVLO Rising (V) | 4.2 |
VBIAS (Max) (V) | 19 |
VREF (V) | 0.6 |
VREF Output | Yes |
Width (mm) | 7.5 |
The ISL73847M is a synchronous buck controller that can operate as a single or dual-phase controller. It works with the ISL71441M (half-bridge GaN FET driver) to generate point-of-load voltage rails for commercial space applications.
It accepts an input voltage range of 4.5V to 19V with a programmable PWM output switching frequency between 250kHz and 1.5MHz with a single resistor. The output can regulate a voltage upwards of 600mV and is limited on the top end by the minimum off time and selected switching frequency.
The wide input voltage range makes it a suitable power supply option for a high-current FPGA core and other general-purpose power solutions. The ISL73847M uses current mode modulation, which simplifies loop compensation and provides excellent power supply rejection. Additionally, the output is remotely sensed to compensate for any voltage drop in the load conditions. Together, this results in a robust power supply solution that requires minimal components while achieving high current density.