Specifications
| Attribute | Value |
| Package | Tape & Reel (TR),Cut Tape (CT) |
| ProductStatus | Active |
| Type | ADC, Audio |
| NumberofChannels | 4 |
| Resolution(Bits) | 24 b |
| SamplingRate(PerSecond) | 216k |
| DataInterface | I²S |
| VoltageSupplySource | Analog and Digital |
| Voltage-Supply | 3V ~ 3.6V, 5V |
| OperatingTemperature | -10°C ~ 70°C |
| MountingType | Surface Mount |
| Package/Case | 64-PowerTQFP |
Overview
Description
The PCM4204PAPR is a high-performance, 4-channel 24-bit, 216kHz delta-sigma ADC (Analog-to-Digital Converter) from Texas Instruments. It features ultra-low THD+N (Total Harmonic Distortion + Noise) and high dynamic range (123dB), making it ideal for professional audio applications like mixing consoles, digital recorders, and broadcast equipment.
Key features:
- 4-channel simultaneous sampling
- 24-bit resolution with 216kHz max sample rate
- 123dB dynamic range, -110dB THD+N
- Serial audio interface (I²S, left-justified)
- Single +5V supply operation
- TSSOP-28 package
The PCM4204PAPR supports master/slave clocking and includes digital high-pass filters for DC offset removal. Its robust performance and multi-channel capability suit high-end audio systems requiring precision and low noise.
For detailed specs, refer to the datasheet on TI’s website.
Key features:
- 4-channel simultaneous sampling
- 24-bit resolution with 216kHz max sample rate
- 123dB dynamic range, -110dB THD+N
- Serial audio interface (I²S, left-justified)
- Single +5V supply operation
- TSSOP-28 package
The PCM4204PAPR supports master/slave clocking and includes digital high-pass filters for DC offset removal. Its robust performance and multi-channel capability suit high-end audio systems requiring precision and low noise.
For detailed specs, refer to the datasheet on TI’s website.
Equivalent
The PCM4204PAPR is a high-performance 24-bit, 216kHz ADC. Equivalent alternatives include:
1. AK5394A (Asahi Kasei) - 24-bit, 192kHz ADC
2. CS5381 (Cirrus Logic) - 24-bit, 192kHz ADC
3. AD7768 (Analog Devices) - 24-bit, 256kHz ADC (higher speed, different interface)
Check pin compatibility and specs for exact replacement. For audio-focused designs, AK5394A or CS5381 are closer matches.
1. AK5394A (Asahi Kasei) - 24-bit, 192kHz ADC
2. CS5381 (Cirrus Logic) - 24-bit, 192kHz ADC
3. AD7768 (Analog Devices) - 24-bit, 256kHz ADC (higher speed, different interface)
Check pin compatibility and specs for exact replacement. For audio-focused designs, AK5394A or CS5381 are closer matches.
Application
The PCM4204PAPR is a high-performance, 24-bit, 216kHz sampling, 4-channel analog-to-digital converter (ADC) designed for professional audio applications. Key application areas include:
1. Professional Audio Equipment – Used in mixing consoles, digital audio workstations (DAWs), and multichannel recorders.
2. Broadcast & Studio Gear – Ideal for high-end microphone preamps, ADAT interfaces, and broadcast systems.
3. Live Sound Systems – Deployed in stage boxes and digital snake systems for high-fidelity audio capture.
4. Test & Measurement – Utilized in audio analyzers and precision measurement devices.
Its low distortion and high dynamic range make it suitable for demanding audio environments.
1. Professional Audio Equipment – Used in mixing consoles, digital audio workstations (DAWs), and multichannel recorders.
2. Broadcast & Studio Gear – Ideal for high-end microphone preamps, ADAT interfaces, and broadcast systems.
3. Live Sound Systems – Deployed in stage boxes and digital snake systems for high-fidelity audio capture.
4. Test & Measurement – Utilized in audio analyzers and precision measurement devices.
Its low distortion and high dynamic range make it suitable for demanding audio environments.
Package
The PCM4204PAPR is a high-performance, 24-bit, 216kHz sampling, 4-channel analog-to-digital converter (ADC) from Texas Instruments. It comes in a 64-pin HTQFP (PAP) package, which is a PowerPAD™ Thermally Enhanced Thin Quad Flat Pack. This package type ensures efficient thermal dissipation and compact PCB mounting. Key features include low noise, high dynamic range, and flexible digital interfaces.