| Parameters |
| Factory Lead Time |
6 Weeks |
| Mount |
Surface Mount |
| Mounting Type |
Surface Mount |
| Package / Case |
16-WFBGA, WLBGA |
| Number of Pins |
16 |
| Operating Temperature |
-40°C~105°C |
| Packaging |
Tape & Reel (TR) |
| Feature |
Auto Retry, Fault Timeout, Latched Fault |
| Part Status |
Active |
| Moisture Sensitivity Level (MSL) |
1 (Unlimited) |
| Type |
Hot Swap Controller |
| Applications |
General Purpose |
| Voltage - Supply |
2.7V~18V |
| Base Part Number |
MAX15096 |
| Number of Channels |
1 |
| Current - Output (Max) |
6A |
| Max Supply Current |
900μA |
| Current - Supply |
580μA |
| Internal Switch(s) |
Yes |
| Programmable Features |
Circuit Breaker, Current Limit, OVP, Slew Rate, UVLO |
| RoHS Status |
RoHS Compliant |
MAX15096GWE+T Overview
Package 16-WFBGA, WLBGA includes it.At present, 1 channels are available.The package looks like a Tape & Reel (TR).There is a Surface Mount-like arrangement.Electrical components classified as Hot Swap Controller are referred to as Hot Swap Controller components.A reliable operation requires the temperature to be set to -40°C~105°C.A General Purpose application is available for the device.A feature of Auto Retry, Fault Timeout, Latched Fault describes it.As long as you have a 2.7V~18VV power source, it should work.The MAX15096 family includes it.This device operates by using 16 pins.Programmable features include Circuit Breaker, Current Limit, OVP, Slew Rate, UVLO.Presently, there is a limited supply of 580μA.Hot-swappable device is posHot-swappable deviceioned in the direction of Surface Mount.Its maximum output is 6AV.Hot Swap operates at a maximum current of 900μA.
MAX15096GWE+T Features
Features of Auto Retry, Fault Timeout, Latched Fault
Programmable features of Circuit Breaker, Current Limit, OVP, Slew Rate, UVLO
MAX15096GWE+T Applications
There are a lot of Maxim Integrated MAX15096GWE+T hot swap controllers applications.
- Disconnect faulty loads before supply voltage drops
- Industrial
- Raid
- Active current limit
- Identify faulty boards
- Base station power distribution system
- Limitting the inrush current
- Data communication systems
- Short circuit protection
- Continuous monitoring of device temperature