MAX9791AEVKIT [MAXIM]

Wake-on-Beep Function;
MAX9791AEVKIT
型号: MAX9791AEVKIT
厂家: MAXIM INTEGRATED PRODUCTS    MAXIM INTEGRATED PRODUCTS
描述:

Wake-on-Beep Function

文件: 总10页 (文件大小:401K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
19-4315; Rev 0; 10/08  
MAX9791A Evaluation Kit  
Evluates:MX791A  
General Description  
Features  
No DC-Blocking Output Capacitors Required at  
The MAX9791A evaluation kit (EV kit) demonstrates the  
MAX9791A IC, which combines a stereo Class D power  
amplifier, a DirectDrive® stereo headphone amplifier,  
and a 120mA, 4.75V low-dropout regulator (LDO) for  
notebook, tablet PC, and portable media player appli-  
cations. Maxim’s DirectDrive technology eliminates the  
need for bulky DC-blocking capacitors at the output of  
the headphone amplifier.  
Headphone Output  
Speaker and Headphone Operation  
Speaker: 2W Stereo Output  
Headphone: 180mW DirectDrive Stereo Output  
Wake-on-Beep Function  
120mA, 4.75V LDO  
Lead-Free and RoHS Compliant  
Fully Assembled and Tested  
The EV kit is configured for a 12dB speaker amplifier  
gain and a 0dB headphone amplifier gain. It is designed  
to operate from a 4.5V to 5.5V speaker supply and an  
optional separate 2.7V to 5.5V headphone supply. The  
EV kit is capable of delivering up to 2W into a pair of 4Ω  
speakers and 180mW into a 32Ω headphone load.  
Ordering Information  
PART  
TYPE  
MAX9791AEVKIT+  
EV Kit  
+Denotes lead-free and RoHS compliant.  
Component List  
DESIGNATION  
QTY  
DESCRIPTION  
DESIGNATION  
QTY  
DESCRIPTION  
OPTIONAL COMPONENTS  
REQUIRED COMPONENTS  
1μF 10%, 10V X7R ceramic  
capacitors (0603)  
Murata GRM188R71A105K  
AVDD, HPVDD,  
PGND,  
SPOUTL+,  
SPOUTL-,  
SPOUTR+,  
SPOUTR-  
C1, C2, C5, C6,  
C25–C28  
8
3
3
3
7
Binding posts  
1μF 10%, 50V X7R ceramic  
capacitors (0805)  
Murata GRM21BR71H105K  
C3, C4, C29  
C7, C8, C9  
0.1μF 10%, 16V X7R ceramic  
capacitors (0603)  
Murata GRM188R71C104K  
C11–C24, C32,  
C33  
Not installed, ceramic capacitors  
(0603)  
0
0
HPL, HPR,  
10μF 10%, 10V X7R ceramic  
capacitors (0805)  
Murata GRM21BR71A106K  
PGND, SENSE,  
SPOL+, SPOL-,  
SPOR+, SPOR-  
Not installed, small PCB test  
points  
C10, C30, C31  
R1, R2  
2
3
20k1% resistors (0603)  
40.2k1% resistors (0603)  
HPINL, SPINL  
HPINR, SPINR  
HPOUT  
2
2
1
3
2
0
White side-entry phono jacks  
Red side-entry phono jacks  
3.5mm stereo headphone jack  
3-pin headers  
R3, R4, R13  
Speaker and headphone amplifier  
with LDO (28 TQFN-EP*)  
Maxim MAX9791AETI+  
U1  
1
1
JU1, JU2, JU3  
JU4, JU6  
2-pin headers  
PCB: MAX9791A Evaluation Kit+  
JU5  
Not installed, 2-pin header  
Not installed, inductors (6.4mm x  
6mm x 1.5mm)  
L1–L4  
R5–R8  
0
4
0
05% resistors (0805)  
R9–R12,  
R14, R15  
Not installed, resistors (0603)  
DirectDrive is a registered trademark of Maxim Integrated  
Products, Inc.  
R16  
0
5
Not installed, resistor (0805)  
Shunts (JU1–JU5)  
*EP = Exposed pad.  
________________________________________________________________ Maxim Integrated Products  
1
For pricing, delivery, and ordering information, please contact Maxim Direct at 1-888-629-4642,  
or visit Maxim’s website at www.maxim-ic.com.  
MAX9791A Evaluation Kit  
Component Suppliers  
SUPPLIER  
PHONE  
WEBSITE  
Murata Electronics North America, Inc.  
770-436-1300  
www.murata-northamerica.com  
Note: Indicate that you are using the MAX9791A when contacting this component supplier.  
Quick Start  
Recommended Equipment  
Before beginning, the following equipment is needed:  
Detailed Description of Hardware  
The MAX9791A evaluation kit (EV kit) demonstrates the  
MAX9791A IC in a 28-pin TQFN package. The IC com-  
bines a stereo Class D amplifier, a stereo DirectDrive  
headphone amplifier, and a 120mA, 4.75V low-dropout  
regulator (LDO) for notebook, tablet PC, and portable  
media player applications. Maxim’s DirectDrive technol-  
ogy eliminates the need for bulky DC-blocking capaci-  
tors at the headphone amplifier output. The IC features  
adjustable gain.  
One 5V, 3A DC supply  
Two 4Ω speakers  
One stereo headphone  
Two audio signal sources  
Procedure  
The EV kit is configured for a 12dB speaker amplifier  
gain and 0dB headphone amplifier gain. The gains can  
be adjusted by modifying the corresponding gain-set-  
ting resistors R1–R4. R1 and R2 set the speaker amplifi-  
er gain while R3 and R4 set the headphone amplifier  
gain. The EV kit is designed to operate from a 4.5V to  
5.5V speaker supply and an optional separate 2.7V to  
5.5V headphone supply. The EV kit is capable of deliv-  
ering up to 2W into a pair of 4Ω speakers, 180mW into a  
32Ω headphone load, and 120mA from the LDO output.  
The MAX9791A EV kit is fully assembled and tested.  
Follow the steps below to verify board operation.  
Caution: Do not turn on the power supply until all  
connections are completed.  
Evluates:MX791A  
1) Verify that shunts are installed as follows:  
JU1: Pins 2-3 (speaker amplifier enabled)  
JU2: Pins 1-2 (headphone amplifier enabled)  
JU3: Pins 1-2 (LDO enabled)  
JU4: Installed (HPVDD connected to AVDD)  
JU6: Installed (wake-on-beep function disabled)  
2) Set the power-supply output to 5V.  
3) Disable the power-supply output.  
In applications where speaker leads exceed 225mm,  
replace resistors R5–R8 with a surface-mount 0805 fer-  
rite bead and install surface-mount 0603 capacitors for  
C11–C14. The speaker outputs do not require an output  
filter as the MAX9791A relies on the inherent inductance  
of the speaker coil and the natural filtering of an attached  
speaker. For optimum results, use a speaker with a  
series inductance > 10µH. The EV kit layout shows an  
optional speaker output filter for evaluation purposes.  
4) Connect the power-supply ground to the PGND  
PCB pad and the power-supply positive output to  
the AVDD PCB pad.  
5) Verify that the audio source output is disabled.  
6) Connect the audio sources’ right channels to the  
SPINR and HPINR phono jacks and the left chan-  
nels to the SPINL and HPINL phono jacks.  
Shutdown  
Jumpers JU1, JU2, and JU3 enable or disable the speaker  
amplifier (SPKR_EN), the headphone amplifier (HP_EN),  
and the LDO (LDO_EN), respectively. See Tables 1, 2,  
and 3 for jumper JU1, JU2, and JU3 configuration.  
7) Plug the headphone into the HPOUT headphone jack.  
8) Connect one speaker across the SPOUTL+ and  
SPOUTL- PCB pads and the other speaker across  
the SPOUTR+ and SPOUTR- PCB pads.  
Table 1. Speaker Amplifier (Jumper JU1)  
SHUNT  
POSITION  
MAX9791A SPEAKER  
AMPLIFIER  
9) Enable the power-supply output.  
10) Enable the audio source.  
SPKR_EN PIN  
Connected to  
AVDD  
11) Verify that the headphones and speakers are playing  
the audio source signal.  
1-2  
Disabled  
Enabled  
Connected to  
PGND  
2-3*  
*Default position.  
2
_______________________________________________________________________________________  
MAX9791A Evaluation Kit  
Evluates:MX791A  
Speaker and Headphone Gain Setting  
The default gain-setting resistors (R1 and R2) configure  
the speaker amplifier gain to 12dB. While the default  
gain-setting resistors (R3 and R4) configure the head-  
phone amplifier gain to 0dB. The gain can be changed  
by replacing these resistors with other surface-mount  
0603 resistors. Resistors with a tolerance of 1% are rec-  
ommended for optimum performance. Use Table 5 and  
the following equations to select new gain-setting resis-  
tors for the corresponding channel:  
Table 2. Headphone Amplifier (Jumper JU2)  
MAX9791A  
HEADPHONE  
AMPLIFIER  
SHUNT  
POSITION  
HP_EN PIN  
Connected to  
AVDD  
1-2*  
Enabled  
Connected to  
PGND  
2-3  
Disabled  
*Default position.  
Table 5. Component Function  
Table 3. LDO (Jumper JU3)  
CHANNEL  
Speaker right  
Speaker left  
RIN  
R1  
R2  
R3  
R4  
SHUNT  
LDO_EN PIN  
POSITION  
MAX9791A LDO  
Enabled  
Connected to  
Headphone right  
Headphone left  
1-2*  
AVDD  
Connected to  
2-3  
Disabled  
PGND  
20kΩ  
R
= - 4  
kΩ  
IN  
*Default position.  
A
VSPKR  
Wake-on-Beep  
where A  
where A  
is the desired speaker voltage gain.  
VSPKR  
Jumper JU6 controls the MAX9791A EV kit’s wake-on-  
beep feature. See Table 4 for jumper JU6 configuration.  
Refer to the Wake-on-Beep section of the MAX9791/  
MAX9792 IC data sheet for more information.  
40.2kΩ  
R
= −  
kΩ  
IN  
A
VHP  
is the desired headphone voltage gain.  
VHP  
Table 4. Wake-on-Beep (Jumper JU6)  
SHUNT  
POSITION  
BEEP PIN*  
EV KIT FUNCTION  
Connected to  
GND  
Wake-on-beep feature is  
disabled  
Installed**  
A qualified BEEP signal  
overrides HP_EN and  
enabling the  
Connected to a  
user-supplied  
BEEP output  
Not installed  
speaker and headphone  
amplifiers. The LDO must  
be enabled (see Table 3).  
*Do not leave the BEEP pin unconnected.  
**Default position.  
Refer to MAX9791/MAX9792 IC data sheet.  
_______________________________________________________________________________________  
3
MAX9791A Evaluation Kit  
Evluates:MX791A  
Figure 1. MAX9791A EV Kit Schematic  
4
_______________________________________________________________________________________  
MAX9791A Evaluation Kit  
Evluates:MX791A  
Figure 2. MAX9791A EV Kit Component Placement Guide—Component Side  
_______________________________________________________________________________________  
5
MAX9791A Evaluation Kit  
Evluates:MX791A  
Figure 3. MAX9791A EV Kit PCB Layout—Component Side  
6
_______________________________________________________________________________________  
MAX9791A Evaluation Kit  
Evluates:MX791A  
Figure 4. MAX9791A EV Kit PCB Layout—Layer 2  
_______________________________________________________________________________________  
7
MAX9791A Evaluation Kit  
Evluates:MX791A  
Figure 5. MAX9791A EV Kit PCB Layout—Layer 3  
8
_______________________________________________________________________________________  
MAX9791A Evaluation Kit  
Evluates:MX791A  
Figure 6. MAX9791A EV Kit PCB Layout—Solder Side  
_______________________________________________________________________________________  
9
MAX9791A Evaluation Kit  
Evluates:MX791A  
Figure 7. MAX9791A EV Kit Component Placement Guide—Solder Side  
Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are  
implied. Maxim reserves the right to change the circuitry and specifications without notice at any time.  
10 __________________Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 408-737-7600  
© 2008 Maxim Integrated Products  
is a registered trademark of Maxim Integrated Products, Inc.  

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