Datasheet4U Logo Datasheet4U.com

TA8233BH - 30W BTL X 2ch Audio Power Amplifier

General Description

This IC has the amplifier constructions as shown in Fig.1.

The pre-amp (amp 1) is provided to the primary stage, and the input voltage is amplified by the flat amps, amp 3 and amp 4 of each channel through the phase amp (amp 2).

Key Features

  • due to the temperature rise at the high output can also be reduced. This stereo audio power IC, designed for car audio use, has two built.
  • in channels to reduce the characteristic difference between L and R channels. It also contains output short detection circuit, output clip detection and various kind of protection. Features.
  • High power : POUT (1) = 30W (typ. ) / channel (VCC = 14.4V, f = 1kHz, THD = 10%, RL = 2Ω) POUT (2) = 26W (typ. ) / channel (VCC = 13.2V, f = 1kHz, THD = 10%, R.

📥 Download Datasheet

Datasheet Details

Part number TA8233BH
Manufacturer Toshiba
File Size 1.16 MB
Description 30W BTL X 2ch Audio Power Amplifier
Datasheet download datasheet TA8233BH Datasheet

Full PDF Text Transcription for TA8233BH (Reference)

Note: Below is a high-fidelity text extraction (approx. 800 characters) for TA8233BH. For precise diagrams, and layout, please refer to the original PDF.

TA8233BH TOSHIBA Bipolar Linear Integrated Circuit Silicon Monolithic TA8233BH 30W BTL × 2ch Audio Power Amplifier The thermal resistance θj−T of TA8233BH package designe...

View more extracted text
ower Amplifier The thermal resistance θj−T of TA8233BH package designed for low thermal resistance, has high efficiency of heat radiation. The temperature rise of chip can be reduced, and the influence from the degradation of the features due to the temperature rise at the high output can also be reduced. This stereo audio power IC, designed for car audio use, has two built−in channels to reduce the characteristic difference between L and R channels. It also contains output short detection circuit, output clip detection and various kind of protection. Features · High power : POUT (1) = 30W (typ.) / channel (VCC = 14.4V, f