Tekninen dokumentti
Tekniset tiedot
Merkki
STMicroelectronicsAmplifier Type
Audio Power Amplifier
Output Type
Open Drain
Application
Speaker
Maximum Power
70 W, 80W
Mounting Type
Surface Mount
Amplifier Class
Class D
Typical Single Supply Voltage
14 → 36 V
Power Supply Type
Single
Number of Channels per Chip
2
Package Type
PowerSSO
Pin Count
36
Input Signal Type
Differential, Single Ended
Output Signal Type
Differential
Typical Gain Bandwidth Product
400kHz
Minimum Operating Temperature
0 °C
Maximum Operating Temperature
+150 °C
Dimensions
10.5 x 2.35 x 7.6mm
Tuotetiedot
Audio Class-D Power Amplifiers, STMicroelectronics
Analogue switch-mode class-D power amplifiers enable a higher efficiency, thus reducing the power dissipation and the need for larger heatsinks.
Audio Amplifiers, STMicroelectronics
Varastotiedot eivät ole tilapäisesti saatavilla.
Tarkista myöhemmin uudelleen.
€ 39,00
€ 7,80 1 kpl (5 kpl/pakkaus) (ilman ALV)
€ 48,94
€ 9,789 1 kpl (5 kpl/pakkaus) (Sis ALV:n)
Standardi
5
€ 39,00
€ 7,80 1 kpl (5 kpl/pakkaus) (ilman ALV)
€ 48,94
€ 9,789 1 kpl (5 kpl/pakkaus) (Sis ALV:n)
Standardi
5
Osta irtotavarana
Määrä | Yksikköhinta | Per Pakkaus |
---|---|---|
5 - 20 | € 7,80 | € 39,00 |
25 - 45 | € 7,30 | € 36,50 |
50 - 120 | € 6,90 | € 34,50 |
125 - 245 | € 6,60 | € 33,00 |
250+ | € 6,20 | € 31,00 |
Tekninen dokumentti
Tekniset tiedot
Merkki
STMicroelectronicsAmplifier Type
Audio Power Amplifier
Output Type
Open Drain
Application
Speaker
Maximum Power
70 W, 80W
Mounting Type
Surface Mount
Amplifier Class
Class D
Typical Single Supply Voltage
14 → 36 V
Power Supply Type
Single
Number of Channels per Chip
2
Package Type
PowerSSO
Pin Count
36
Input Signal Type
Differential, Single Ended
Output Signal Type
Differential
Typical Gain Bandwidth Product
400kHz
Minimum Operating Temperature
0 °C
Maximum Operating Temperature
+150 °C
Dimensions
10.5 x 2.35 x 7.6mm
Tuotetiedot
Audio Class-D Power Amplifiers, STMicroelectronics
Analogue switch-mode class-D power amplifiers enable a higher efficiency, thus reducing the power dissipation and the need for larger heatsinks.