SLES230A September 2008 – August 2015 PCM2912A
PRODUCTION DATA.
| MIN | MAX | UNIT | ||
|---|---|---|---|---|
| Supply voltage | VBUS | –0.3 | 6.5 | V |
| Ground voltage differences | BGND, PGND, AGND, HGND, DGND | –0.1 | 0.1 | V |
| Input voltage | VCCP, VCCA, VCCL, VCCR, VDD | –0.3 | 4 | V |
| Digital input voltage | PLAY, REC | –0.3 | 6.5 | V |
| D+, D–, XTI, XTO, MMUTE, TEST0, TEST1, POWER, MAMP, SSPND | –0.3 | 4 | V | |
| Analog input voltage | MBIAS, VIN, VCOM1, VCOM2, VOUTL, VOUTR, FR, FL | –0.3 | 4 | V |
| Input current (any pins except supplies) | –10 | 10 | mA | |
| Ambient temperature under bias | –40 | 125 | °C | |
| Junction temperature | 150 | |||
| Storage temperature, Tstg | –55 | 150 | ||
| VALUE | UNIT | |||
|---|---|---|---|---|
| V(ESD) | Electrostatic discharge | Human body model (HBM), per ANSI/ESDA/JEDEC JS-001(1) | ±3000 | V |
| Charged device model (CDM), per JEDEC specification JESD22-C101(2) | ±1000 | |||
| MIN | NOM | MAX | UNIT | ||
|---|---|---|---|---|---|
| VBUS | Supply voltage | 4.35 | 5 | 5.25 | V |
| Analog input voltage, full scale (–0 dB) | 0.43 VCCA | VPP | |||
| Digital input logic family | TTL | ||||
| Digital input clock frequency | 5.997 | 6 | 6.003 | MHz | |
| Analog output load resistance | 32 | Ω | |||
| Analog output load capacitance | 100 | pF | |||
| Digital output load capacitance | 10 | pF | |||
| TA | Operating free-air temperature | –25 | 70 | °C | |
| THERMAL METRIC(1) | PCM2912A | UNIT | |
|---|---|---|---|
| PJT (TQFP) | |||
| 32 PINS | |||
| RθJA | Junction-to-ambient thermal resistance | 69.6 | °C/W |
| RθJC(top) | Junction-to-case (top) thermal resistance | 10.6 | °C/W |
| RθJB | Junction-to-board thermal resistance | 34.6 | °C/W |
| ψJT | Junction-to-top characterization parameter | 0.3 | °C/W |
| ψJB | Junction-to-board characterization parameter | 33.9 | °C/W |
| PARAMETER | TEST CONDITIONS | MIN | TYP | MAX | UNIT | |
|---|---|---|---|---|---|---|
| INPUT LOGIC | ||||||
| VIH | Input logic high level | 2 | 3.3 | VDC | ||
| VIL | Input logic low level | 0.8 | ||||
| IIH | Input logic high current(1)(2) | VIN = 3.3 V | –10 | 10 | μA | |
| Input logic high current(3) | VIN = 3.3 V | 65 | 100 | |||
| IIL | Input logic low current(1)(2) | VIN = 0 V | –10 | 10 | μA | |
| Input logic low current(3) | VIN = 0 V | –10 | 10 | |||
| OUTPUT LOGIC | ||||||
| VOH | Output logic high level(1) | IOH = –10 mA | 2.9 | VDC | ||
| Output logic high level(4) | IOH = –2 mA | 2.8 | ||||
| VOL | Output logic low level(1) | IOL = 10 mA | 0.3 | VDC | ||
| Output logic low level(4) | IOL = 2 mA | 0.5 | ||||
| Output logic low level(5) | IOL = 8 mA | 0.5 | ||||
| IOH | Output leak current(5) | VIN = 5 V | ±10 | μA | ||
| CLOCK FREQUENCY | ||||||
| Input clock frequency, XTI | 5.997 | 6.000 | 6.003 | MHz | ||
| MICROPHONE BIAS | ||||||
| Output voltage | 0.75 VCCA | VDC | ||||
| Output current | 2 | mA | ||||
| Output noise | RL = 1 kΩ | 5 | μVRMS | |||
| ANALOG-TO-DIGITAL CONVERTER (ADC) CHARACTERISTICS | ||||||
| Resolution | 16 | Bits | ||||
| Audio data channel | 1 | Channel | ||||
| Sampling frequency | 8 11.025 16 22.05 32 44.1 48 |
kHz | ||||
| ADC DYNAMIC PERFORMANCE(6) | ||||||
| THD+N | Total harmonic distortion plus noise | VIN = –1 dB of 0.43 VCCA | 0.01% | 0.02% | ||
| Dynamic range | A-weighted | 82 | 90 | dB | ||
| SNR | Signal-to-noise ratio | A-weighted | 84 | 92 | dB | |
| ADC DC ACCURACY | ||||||
| Gain error | ±2 | ±10 | % of FSR | |||
| Bipolar zero error | ±0 | % of FSR | ||||
| ANALOG INPUT | ||||||
| Input voltage | 0.43 VCCA | VPP | ||||
| Center voltage | 0.5 VCCA | V | ||||
| Antialiasing filter frequency response | –3 dB | 150 | kHz | |||
| fIN = 20 kHz | –0.08 | dB | ||||
| MICROPHONE AMPLIFIER | ||||||
| Gain | 0 | 20 | dB | |||
| Input impedance | 20 | kΩ | ||||
| INPUT PGA | ||||||
| Gain range | –12 | 30 | dB | |||
| Gain step size | 1 | dB | ||||
| ADC DIGITAL FILTER PERFORMANCE | ||||||
| Passband | 0.454 fS | Hz | ||||
| Stop band | 0.583 fS | Hz | ||||
| Passband ripple | –0.02 | 0.02 | dB | |||
| Stop-band attenuation | –65 | dB | ||||
| Delay time | 17.4/fS | s | ||||
| HPF frequency response | –3 dB | 0.078 fS/1000 | Hz | |||
| DIGITAL-TO-ANALOG CONVERTER (DAC) CHARACTERISTICS | ||||||
| Resolution | 16 | Bits | ||||
| Audio data channel | 1, 2 | Channel | ||||
| Sampling frequency | 8 11.025 16 22.05 32 44.1 48 |
kHz | ||||
| DAC DYNAMIC PERFORMANCE(7) | ||||||
| THD+N | Total harmonic distortion plus noise | RL > 10 kΩ, VOUT = 0 dB of 0.6 VCCA | 0.01% | 0.02% | ||
| RL = 32 Ω, VOUT = 0 dB of 0.55 VCCA | 0.02% | 0.05% | ||||
| Dynamic range | EIAJ, A-weighted | 82 | 90 | dB | ||
| SNR | Signal-to-noise ratio | EIAJ, A-weighted | 84 | 92 | dB | |
| Channel separation | RL > 10 kΩ | 80 | 88 | dB | ||
| DAC DC ACCURACY | ||||||
| Gain mismatch channel-to-channel | –10 | ±2 | 10 | % of FSR | ||
| Gain error | –10 | ±2 | 10 | % of FSR | ||
| Bipolar zero error | ±3 | % of FSR | ||||
| ANALOG OUTPUT | ||||||
| Output voltage | RL > 10 kΩ | 0.6 VCCA | VPP | |||
| RL = 32 Ω | 0.55 VCCA | |||||
| Center voltage | 0.5 VCCA | V | ||||
| Output power | RL = 32 Ω | 13 | mW | |||
| RL = 16 Ω | 25 | |||||
| Load impedance (AC coupling) | Line | 10 | kΩ | |||
| Headphone | 16 | 32 | Ω | |||
| LPF frequency response | –3 dB | 140 | kHz | |||
| f = 20 kHz | –0.1 | dB | ||||
| SIDETONE PROGRAMMABLE ATTENUATOR | ||||||
| Gain range | –76 | 0 | dB | |||
| Gain step size | 1 | dB | ||||
| OUTPUT PROGRAMMABLE ATTENUATOR | ||||||
| Gain range | –76 | 0 | dB | |||
| Gain step size | 1 | dB | ||||
| ANALOG LOOPBACK PERFORMANCE(8) | ||||||
| THD+N | Total harmonic distortion plus noise | RL > 10 kΩ, VIN = 0 dB of 0.43 VCCA | 0.01% | 0.02% | ||
| RL = 32 Ω, VIN = 0 dB of 0.43 VCCA | 0.02% | 0.05% | ||||
| Dynamic range | EIAJ, A-weighted | 82 | 90 | dB | ||
| SNR | Signal-to-noise ratio | EIAJ, A-weighted | 84 | 92 | dB | |
| DAC DIGITAL FILTER PERFORMANCE | ||||||
| Passband | 0.445 fS | Hz | ||||
| Stop band | 0.555 fS | Hz | ||||
| Passband ripple | ±0.1 | dB | ||||
| Stop-band attenuation | –43 | dB | ||||
| Delay time | 14.3/fS | s | ||||
| POWER-SUPPLY REQUIREMENTS | ||||||
| VBUS | Voltage range | Bus-powered | 4.35 | 5 | 5.25 | VDC |
| Supply current | ADC, DAC operation (RL = 32 Ω) | 85 | 100 | mA | ||
| Suspend mode(9) | 220 | 300 | μA | |||
| Power dissipation | ADC, DAC Operation | 425 | 500 | mW | ||
| Suspend mode(9) | 0.8 | 1 | mW | |||
| VCCP,VCCL VCCR,VCCA VDD | Internally-generated power supply voltage(10) | 3 | 3.3 | 3.6 | VDC | |
| TEMPERATURE RANGE | ||||||
| Operation temperature | –25 | 85 | °C | |||
Figure 1. Overall Characteristic
Figure 3. Passband Ripple
Figure 2. Stop Band Attenuation
Figure 4. Transient Band Response
Figure 5. Stop Band Characteristic
Figure 6. Passband Characteristic
Figure 7. Stop Band Characteristic
Figure 8. Passband Characteristic
Figure 9. Stop Band Attenuation
Figure 11. Transient Band Response
Figure 10. Passband Ripple
Figure 12. Stop Band Characteristic
Figure 13. Passband Characteristic
Figure 14. Stop Band Characteristic
Figure 15. Passband Characteristic
Figure 16. THD+N at –1 dB vs Temperature
Figure 18. THD+N at –1 dB vs Supply Voltage
Figure 20. THD+N at –1 dB vs Sampling Frequency
Figure 17. Dynamic Range and Signal-to-Noise Ratio vs Temperature
Figure 19. Dynamic Range and Signal-to-Noise Ratio vs Supply Voltage
Figure 21. Dynamic Range and Signal-to-Noise Ratio vs Sampling Frequency
Figure 22. THD+N at 0 dB vs Temperature
Figure 24. THD+N at 0 dB vs Supply Voltage
Figure 26. THD+N at 0 dB vs Sampling Frequency
Figure 23. Dynamic Range and Signal-to-Noise Ratio vs Temperature
Figure 25. Dynamic Range and Signal-to-Noise Ratio vs Supply Voltage
Figure 27. Dynamic Range and Signal-to-Noise Ratio vs Sampling Frequency
Figure 28. Supply Current vs Supply Voltage
Figure 30. Supply Current vs Temperature at Suspend Mode
Figure 29. Supply Current vs Sampling Frequency