SLOS717B August 2011 – December 2014 TPA2025D1
PRODUCTION DATA.
MIN | MAX | UNIT | ||
---|---|---|---|---|
Supply voltage | VBAT | –0.3 | 6 | V |
Input Voltage, VI | IN+, IN– | –0.3 | VBAT + 0.3 | V |
Output continuous total power dissipation | See Thermal Information | |||
Operating free-air temperature range, TA | –40 | 85 | °C | |
Operating junction temperature range, TJ | –40 | 150 | °C | |
Minimum load resistance | 3.2 | Ω | ||
Maximum input voltage swing | EN = 0 V | 2 | VRMS | |
Storage temperature range, Tstg | –65 | 150 | °C |
VALUE | UNIT | |||
---|---|---|---|---|
V(ESD) | Electrostatic discharge | Human-body model (HBM), per ANSI/ESDA/JEDEC JS-001(1) | ±2000 | V |
Charged-device model (CDM), per JEDEC specification JESD22-C101(2) | ±500 | |||
Machine model (MM) | ±100 |
MIN | MAX | UNIT | ||
---|---|---|---|---|
Supply voltage, VBAT | 2.5 | 5.2 | V | |
VIH | High–level input voltage, EN | 1.3 | V | |
VIL | Low–level input voltage, EN | 0.6 | V | |
TA | Operating free-air temperature | –40 | 85 | °C |
TJ | Operating junction temperature | –40 | 150 | °C |
THERMAL METRIC(1) | TPA2025D1 | UNITS | |
---|---|---|---|
YZG | |||
12 PINS | |||
RθJA | Junction-to-ambient thermal resistance | 97.3 | °C/W |
RθJC(top) | Junction-to-case(top) thermal resistance | 36.7 | |
RθJB | Junction-to-board thermal resistance | 55.9 | |
ψJT | Junction-to-top characterization parameter | 13.9 | |
ψJB | Junction-to-board characterization parameter | 49.5 |
PARAMETER | TEST CONDITIONS | MIN | TYP | MAX | UNIT | |
---|---|---|---|---|---|---|
BOOST CONVERTER | ||||||
PVDD | Boost converter output voltage range | IBOOST = 0 mA | 5.4 | 5.75 | 6.4 | V |
IBOOST = 700 mA | 5.6 | V | ||||
IL | Boost converter input current limit | Power supply current | 1800 | mA | ||
Boost converter start-up current limit | Boost converter starts up from full shutdown | 600 | ||||
Boost converter wakes up from auto-pass through mode | 1000 | |||||
fBOOST | Boost converter frequency | 1.2 | MHz | |||
CLASS-D AMPLIFIER | ||||||
PO | Output power | THD = 1%, VBAT = 2.5 V, f = 1 kHz | 1440 | mW | ||
THD = 1%, VBAT = 3.0 V, f = 1 kHz | 1750 | |||||
THD = 1%, VBAT = 3.6 V, f = 1 kHz | 1900 | |||||
THD = 1%, VBAT = 2.5 V, f = 1 kHz, RL = 4 Ω + 33 µH |
1460 | |||||
THD = 1%, VBAT = 3.0 V, f = 1 kHz, RL = 4 Ω + 33 µH |
1800 | |||||
THD = 1%, VBAT = 3.6 V, f = 1 kHz, RL = 4 Ω + 33 µH |
2280 | |||||
VO | Peak output voltage | THD = 1%, VBAT = 3.6 V, f = 1 kHz, 6 dB crest factor sine burst, no clipping | 5.45 | V | ||
AV | Voltage gain | 19.5 | 20 | 20.5 | dB | |
|VOOS | | Output offset voltage | 2 | 10 | mV | ||
Short-circuit protection threshold current | 2 | A | ||||
RIN | Input impedance (per input pin) | AV = 20 dB | 24 | kΩ | ||
Input impedance in shutdown (per input pin) | EN = 0 V | 1300 | ||||
ZO | Output impedance in shutdown | 2 | kΩ | |||
Boost converter auto-pass through threshold | Class-D output voltage threshold when boost converter automatically turns on | 2 | VPK | |||
fCLASS-D | Class-D switching frequency | 275 | 300 | 325 | kHz | |
η | Class-D and boost combined efficiency | PO = 1 W, VBAT = 3.6 V | 82% | |||
EN | Noise output voltage | A-weighted | 49 | μVRMS | ||
Unweighted | 65 | |||||
SNR | Signal-to-noise ratio | 1.7 W, RL = 8 Ω + 33 µH. A-weighted | 97 | dB | ||
1.7 W, RL = 8 Ω + 33 µH. Unweighted | 95 | |||||
2 W, RL = 4 Ω + 33 µH. A-weighted | 95 | |||||
2 W, RL = 4 Ω + 33 µH. Unweighted | 93 | |||||
THD+N | Total harmonic distortion plus noise(1) | PO = 100 mW, f = 1 kHz | 0.06% | |||
PO = 500 mW, f = 1 kHz | 0.07% | |||||
PO = 1.7 W, f = 1 kHz, RL = 8 Ω + 33 µH | 0.07% | |||||
PO = 2 W, f = 1 kHz, RL = 4 Ω + 33 µH | 0.15% | |||||
THD+N added to other audio signal connected at amplifier input during shutdown | 0.02% | |||||
AC PSRR | AC-Power supply ripple rejection (output referred) | 200 mVPP square ripple, VBAT = 3.8 V, f = 217 Hz | 62.5 | dB | ||
200 mVPP square ripple, VBAT = 3.8 V, f = 1 kHz | 62.5 | |||||
AC CMRR | AC-Common mode rejection ratio (output referred) | 200 mVPP square ripple, VBAT = 3.8 V, f = 217 Hz | 71 | dB | ||
200 mVPP square ripple, VBAT = 3.8 V, f = 1 kHz | 71 | |||||
AUTOMATIC GAIN CONTROL | ||||||
AGC maximum attenuation | 10 | dB | ||||
AGC attenuation resolution | 0.5 | dB | ||||
AGC attack time (gain decrease) | 20 | µs/dB | ||||
AGC release time (gain increase) | 1.6 | s/dB | ||||
Gain vs VBAT slope | VBAT < inflection point | 7.5 | dB/V | |||
AGC inflection point (Note: AGC pin voltage is read only at device power-up. A device power cycle is required to change AGC inflection points.) |
AGC = Float | 3.25 | V | |||
AGC = GND | 3.55 | |||||
AGC = VBAT | 3.75 |