TDA7498 vs TPA3255 | Fosi Audio Review
- Output Type: 2-Channel (Stereo)
- Max Output Power x Channels@Load: 100W x 2 @ 6Ohm
- Voltage-Supply: 14V ~ 39V
- Package: PowerSSO-36 EPU

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TDA7498 vs TPA3255
Key differences between the TDA7498E and TPA3255 IC circuit designs:
Function Module | TDA7498E Circuit Characteristics | TPA3255 Circuit Characteristics |
---|---|---|
Input Mode | Supports stereo, single-ended, and mono-bridge input modes via jumpers (e.g., J7, J8). Uses coupling capacitors (C1, C2: 1μF) for DC isolation. | Offers up to four input channels (A, B, C, D), each using 10μF coupling capacitors for DC isolation. Fixed input configuration without jumpers. |
Output Mode | Allows configuration of Mono (BTL) or Stereo via external jumpers. Uses external LC filter (8Ω resistor, inductors) for speaker output. | Provides various modes: Stereo BTL, Mono PBTL, or 2.1 modes. Employs LC filters with larger inductors (15μH) for improved output filtering. |
Gain Adjustment | Adjustable gain (23.6dB~35.6dB) via external jumpers (J9~J12) by selecting external resistor networks. | Gain internally fixed by IC design; external adjustable gain jumpers are not provided. External components must match internal gain configuration. |
Oscillation Frequency Adjustment | Implements frequency shifting for EMC performance using an external transistor circuit (Q1: KTC3875), resistors, and capacitors. | Uses a single external resistor (22kΩ) for oscillator frequency adjustment without additional transistor circuits. |
Power Supply Design | Dedicated 3.3V regulator IC (L4931) supplies power to control circuitry, accompanied by comprehensive decoupling capacitors. | No dedicated external regulator for logic circuits; logic power integrated within IC, requires only a single external power source (PVDD). |
Protection Mechanisms | Employs multiple external diodes (D2~D8) and RC networks for robust overcurrent and overvoltage protection. | Primarily utilizes internal protection circuitry; fewer external protective components required. |
Mute and Standby Features | Provides clear MUTE and STBY control via dedicated pins and external switches (S1, S2) for manual operation. | Features pins such as RESET, FAULT, and CLIP_OTW for reset, fault, and thermal warning indication. No dedicated MUTE/STBY pins, relying on internal logic and external microcontroller interaction. |
Filtering and Stability | Complex filtering design at output with multiple capacitors (220nF, 1μF) and resistors (8Ω) enhancing signal stability and EMI suppression. | Streamlined output filtering circuit with fewer components (1μF, 1nF, 10nF) emphasizing efficient, simplified designs and good EMI performance. |
Circuit Complexity | Higher circuit complexity with numerous external components and jumpers, offering flexibility in function and customization. | Lower circuit complexity, emphasizing efficiency, simplified external components, suitable for compact and efficient designs. |
TDA7498E is ideal for applications demanding extensive adjustability, manual control, and customizable features.
TPA3255 suits designs requiring high efficiency, simplicity, and automated protection mechanisms.