| Parameters |
| Factory Lead Time |
13 Weeks |
| Mount |
Surface Mount |
| Mounting Type |
Surface Mount |
| Package / Case |
6-XFDFN |
| Number of Pins |
6 |
| Supplier Device Package |
6-XSON (0.9x1) |
| Operating Temperature |
-40°C~125°C |
| Packaging |
Tape & Reel (TR) |
| Series |
74AUP |
| Part Status |
Active |
| Moisture Sensitivity Level (MSL) |
1 (Unlimited) |
| Max Operating Temperature |
125°C |
| Min Operating Temperature |
-40°C |
| Supply Voltage |
0.8V~3.6V |
| Base Part Number |
74AUP1Z125 |
| Operating Supply Voltage |
3.6V |
| Max Supply Voltage |
4.6V |
| Min Supply Voltage |
-500mV |
| Logic Function |
Inverter |
| Logic Type |
Inverter, X-Tal Driver |
| RoHS Status |
ROHS3 Compliant |
74AUP1Z125GN,132 Overview
Packages are made with Tape & Reel (TR).There is a copy of it in the 6-XFDFN package.0.8V~3.6V is provided to ensure that the device works normally.It is a type of electronic part mounted in the manner of Surface Mount.As its operating temperature, it is set to -40°C~125°C.There are many similarities between the electronic parts belonging to the series 74AUP.Its base part number 74AUP1Z125 identifies a number of related parts.This is mounted using the Surface Mount method.It is constructed using 6 pins.Normal use can be kept when the minimum supply voltage is kept at -500mV.It is possible to maintain normal operation when the maximum supply voltage is set to 4.6V.As a key factor in its operation, the voltage supply to 3.6V plays an important role.There is no doubt that the maximum value of 125°C should not be exceeded by its operating temperature.The operating temperature should not fall below the minimum value of -40°C.
74AUP1Z125GN,132 Features
74AUP1Z125GN,132 Applications
There are a lot of Nexperia USA Inc. 74AUP1Z125GN,132 Specialty Logic ICs applications.
- Desktop PC
- Single to Multimode Fiber Conversion
- Thermal management
- Laser diode bonding
- High-speed computer links
- Remote controls
- Clock radio
- Low power, low voltage systems
- Wireless 3D game
- Changeing the frequency from IF to RF