BL6316 BELLING | Alldatasheet

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Technical content

Features

/rhombus6 Low EMI Emission /rhombus6 Filterless Class-D Architecture /rhombus6 Output Power -3.2W/ch (V DD =5.0V, RL =3 Ω, THD+N=10%) -1.7W/ch (V DD =5.0V, RL =8 Ω, THD+N=10%) /rhombus6 Supply Voltage:2.2V to 5.0V /rhombus6 Low THD+N and Low Noise /rhombus6 High Efficiency up to 85% /rhombus6 Short Circuit auto Recovery and Thermal Protection /rhombus6 Few External Components to Save the Space and Cost

Applications

/rhombus6 Portable DVD Players /rhombus6 Notebook PC /rhombus6 USB Speakers, Portable Speaker /rhombus6 LCD TV/LCD Monitor Typical Application Pin Configuration 1uF VDD VDD INL INR 0.1uF 0.1uF 1uF BYPASS SHDN MUTE PGND 2 15 GND 11 9 NC DAC OUTL+1 OUTL- OUTR- OUTR+ 470uF PVDD PVDD 6 4 13 1uF

2X3W Ultra low EMI Class-D Amplifier www.belling.com.cn V1.0 Page2 BL 6316 Block Diagram Pin Descriptions Name Pin No. I/O Pin Description

1 OUTL+ O Left Channel Positive Audio Output

2,15 PGND Power Ground

3 OUTL- O Left Channel Negative Audio Output

4,13 PVDD Supply Voltage Terminal for Power Stage

5 I Mute Control Input Pin (active low )

6 VDD Analog Supply Voltage Terminal

7 INL I Left Channel Input Pin

8 BYPASS I Tap to voltage divider for internal midsupply bias generator used for

9 NC No Connection

10 INR I Right Channel Input Pin

11 GND Analog Power Supply Ground

I Shutdown Control Input Pin (active low)

14 OUTR- O Right Channel Negative Audio Output

16 OUTR+ O Right Channel Positive Audio Output

2X3W Ultra low EMI Class-D Amplifier www.belling.com.cn V1.0 Page3 BL 6316

Ordering Information

Order Number Package Type Marking Packing Reel Tape BL6316 SOP-16 BL6316 XXXXX Tube Absolute Maximum Ratings (Over operating free-air temperature, unless otherwise noted) Vss Supply voltage -0.3V to 5.5V VI Input voltage -0.3V to V DD +0.3V TA Operation free-air temperate range -40° C to 85° C TJ Operation free-air junction temperature -40° C to 1 25° C TSTG Storage temperature range -65° C to 150° C TSLD Soldering temperature 300° C, 5sec Recommended Operating Conditions MIN MAX UNIT VSS Supply Voltage AVDD, PVDD 2.2 5.0 V VIH Enable Input High Voltage V DD =5.0V 1.3 VIL Enable Input Low Voltage V DD =5.0V 0.4 V VIH Mute Input High Voltage V DD =5.0V 1.3 VIL Mute Input Low Voltage V DD =5.0V 0.4 V Thermal Information Parameter Symbol Package MAX UNIT Thermal Resistance (Junction to Ambient) θJA SOP-16 110 ° C/W Thermal Resistance (Junction to Case) θJC SOP-1 6 23 ° C/W

2X3W Ultra low EMI Class-D Amplifier www.belling.com.cn V1.0 Page4 BL 6316 Electrical Characteristics (VDD =5V, Gain=21dB, R =8 Ω, T =25 ° C , unless otherwise noted.) Symbol Parameter Test Conditions MIN TYP MAX UNIT VIN Supply Power 2.2 5.0 V VDD =5.0V 2.8 THD+N=10%,f=1KHZ,R L=4 Ω VDD =3.6V 1.3 W VDD =5.0V 2.1 THD+N=1%,f=1KHZ,R L=4 Ω VDD =3.6V 1 W VDD =5.0V 1.7 THD+N=10%,f=1KHZ,R L=8 Ω VDD =3.6V 0.8 W VDD =5.0V 1.20 PO Output Power THD+N=1%,f=1KHZ,R L=8 Ω VDD =3.6V 0.6 W VDD =5.0V, P O =0.5W, R L=8 Ω 0.15 VDD =3.6V, P O =0.5W, R L=8 Ω f=1KHz 0.14 VDD =5.0V, P O =1W, R L=4 Ω 0.18 THD+N Total Harmonic Distortion Plus Noise VDD =3.6V, P O =1W, R L=4 Ω f=1KHz 0.16 G V Gain 25 dB PSRR Power Supply Ripple Rejection VDD=5.0V, Inputs ac-grounded with CIN=0.47 µF f=1KHz -55 dB C S Crosstalk VDD =5.0V,P O =0.5W, R L=8 Ω, G V=25dB f=1KHz -85 dB SNR Signal-to-Noise Ratio VDD =5.0V,Vorms=1V, G V=25dB f=1KHz 82 dB A-weighting 87 Vn Output Noise VDD =5.0V,Inputs floating with C IN =0.47 µF No A-weighting 136 µV Dyn Dynamic range V DD =5.0V,THD=1% f=1KHz 90 dB R L=8 Ω,THD=10% 85 η Efficiency R L=4Ω,THD=10% f=1KHz VDD =5.0V 5 IQ Quiescent Current VDD =3.0V No Load 3.6 mA IMUTE Muting Current V DD =5.0V V MUTE =0.3V 3.5 mA ISD Shutdown Current V DD =2.5V to 5.5V V SD =0.3V 1 µA Vos Output Offset Voltage VIN =0V, V DD =5V 10 mV OTP Over Temperature Protection 135 OTH Over Temperature Hysterisis No Load, Junction Temperature VDD =5.0V ° C

2X3W Ultra low EMI Class-D Amplifier www.belling.com.cn V1.0 Page5 BL 6316 Typical Operating Characteristics (VDD =5V, Gain=21dB, R L =8 Ω, T =25° C, unless otherwise noted.) THD+N vs Output Power THD+N vs Output Power 0.1 0.2 0.5 1m 42m 5m 10m 100m 500m 1 2 W 0.1 0.2 0.5 1m 42m 5m 10m 100m 500m 1 2 W THD+N VS vs Output Power THD+N VS FREQUENCY 0.1 0.2 0.5 1m 22m 5m 10m 100m 500m 1 W 0.01 0.02 0.05 0.1 0.2 0.5 20 20k50 100 200 500 1k 2k 5k Hz NOISE FLOOR FFT Frequency Response -120 -40 -100 -80 -60 d B V 10 20k20 50 100 200 500 1k 2k 5k 10k Hz +16 +22 +17 +18 +19 +20 +21 d B g A 20 20k50 100 200 500 1k 2k 5k Hz R L=3ohm Gain=21dB VDD= 3.6V , 4.2V , 5V R L=4ohm Gain=21dB VDD= 3.6V , 4.2V , 5V R L=8ohm Gain=21dB VDD=3.6V , 4.2V , 5V R L=8ohm Gain=21dB Vo=1Vp -p R L=8ohm Gain=21dB Vo=1Vp-p R L=8ohm Gain=21dB

2X3W Ultra low EMI Class-D Amplifier www.belling.com.cn V1.0 Page6 BL 6316

Application Information

The MUTE pin is an input for controlling the output state of the BL6316. A logic high on this pin enables the outputs, a logic low on this pin disables the outputs. The terminal may be used as a quick disable/enable of the outputs when changing channels between different audio sources. The MUTE pin can be left floating due to the internal pull-up. Shutdown operation The BL6316 employs a shutdown mode of operation designed to reduce supply current to the absolute minimum level during periods of nonuse for power conservation. The SHDN input terminal should be held high during normal operation when the amplifier is in use. The SHDN pin can be left floating due to the internal pull-up. Under Voltage Lock-out (UVLO) The BL6316 incorporates circuitry designed to detect low supply voltage. When the supply voltage drops to 1.8V or below, the BL6316 outputs are disabled, and the device comes out of this state and starts to normal function when V DD ≥2.0V. Short -Circuit Protection The BL6316 has short circuit protection circuitry on the outputs to prevent damage to the device during output-to-output shorts and output-to-GND short occurs. When a short circuit is detected on the outputs, the part immediately disables the drive. This is an unlatched fault. Normal operation is restored when the fault is removed. Thermal Protection Thermal protection on the BL6316 prevents damage to the device when the internal die temperature exceeds 135 °C . There is a ±20 °C tolerance on this trip point from device to device. Once the die temperature exceeds the thermal set point, the device enters into the shutdown state and the outputs are disabled. This is not a latched fault. The thermal fault is cleared once the temperature of the die is reduced by 30 °C . The device begins normal operation at this point with no external system intervention. Maximum Gain The BL6316 has two internal amplifier stages. The first stage's gain is externally configurable, while the second stage's is internally fixed. The differential gain for the IC is A =20*log [2*((R f /(Ri +R e ))] Where R e is externally resistor, The BL6316 Rf =180kΩ, Ri =20kΩ, so the maximum closed-gain is 25dB (no externally resistor). Decoupling Capacitor (C The BL6316 is a high-performance Class-D audio amplifier that requires adequate power supply decoupling to ensure the efficiency is high and total harmonic distortion (THD) is low. For higher frequency transients, spikes, or digital hash on the line a good low equivalent series resistance (ESR) ceramic capacitor, typically 1 µF, placed as close as possible to the device PVDD lead works best. Placing this decoupling capacitor close to the BL6316 is important for the efficiency of the Class-D amplifier, because any resistance or inductance in the trace between the device and the capacitor can cause a loss in efficiency. For filtering lower-frequency noise signals, a 4.7 µF or greater capacitor placed near the audio power amplifier would also help, but it is not required in most applications because of the high PSRR of this device.

2X3W Ultra low EMI Class-D Amplifier www.belling.com.cn V1.0 Page7 BL 6316 Input Capacitors (C i ) The input capacitors and input resistors from a high-pass filter with the corner frequency, f determined in below equation The value of input capacitor is important to consider as it directly affects the bass (low frequency) performance of the circuit. Speaker in wireless phones cannot usually respond well to low frequencies, so the corner frequency can be set to block low frequencies in this application. Not using input capacitors can increase out offset. Below equation is used to solve for the input coupling capacitance. If the corner frequency is within the audio band, the capacitors should have tolerance of ±10% or better, because any mismatch in capacitance causes an impedance mismatch at the corner frequency and below. Analog Reference Bypass Capacitor BYP ) The Analog Reference Bypass Capacitor (C BYP ) is the most critical capacitor and serves several important functions. During start-up or recovery from shutdown mode, C determines the rate at which the amplifier starts up. The second function is to reduce noise caused by the power supply coupling into the output drive signal. This noise is from the internal analog reference to the amplifier, which appears as degraded PSRR and THD+N. A ceramic bypass capacitor (C BYP ) with values of 0.47 µF to 1.0 µF is recommended for the best THD and noise performance. Increasing the bypass capacitor reduces clicking and popping noise from power on/off and entering and leaving shutdown. Filter Free Operation and Ferrite Bead Filters A ferrite bead filter can often be used if the design is failing radiated emissions without an LC filter and the frequency sensitive circuit is greater than 1MHz. This filter functions well for circuits that just have to pass FCC and CE because FCC and CE only test radiated emissions greater than 30MHz. When choosing a ferrite bead, choose one with high impedance at high frequencies, and very low impedance at low frequencies. In addition, select a ferrite bead with adequate current rating to prevent distortion of the output signal. Use an LC output filter if there are low frequency (<

1 MHz) EMI sensitive circuits and/or there are long

leads from amplifier to speaker. Ferrite Bead Filter to reduce EMI

2X3W Ultra low EMI Class-D Amplifier www.belling.com.cn V1.0 Page8 BL 6316 Outline Dimension SOP-16