LM4936MHX/NOPB National Semiconductor, LM4936MHX/NOPB Datasheet

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LM4936MHX/NOPB

Manufacturer Part Number
LM4936MHX/NOPB
Description
IC AMP AUDIO PWR 2.2W AB 28TSSOP
Manufacturer
National Semiconductor
Series
Boomer®r
Type
Class ABr
Datasheet

Specifications of LM4936MHX/NOPB

Output Type
2-Channel (Stereo) with Stereo Headphones
Max Output Power X Channels @ Load
2.2W x 2 @ 3 Ohm; 110mW x 2 @ 32 Ohm
Voltage - Supply
2.7 V ~ 5.5 V
Features
Bass Boost, Depop, I²C, Mute, Shutdown, SPI, Thermal Protection, Volume Control
Mounting Type
Surface Mount
Package / Case
28-TSSOP Exposed Pad, 28-eTSSOP, 28-HTSSOP
Operational Class
Class-AB
Audio Amplifier Output Configuration
2-Channel Stereo
Audio Amplifier Function
Headphone/Speaker
Total Harmonic Distortion
0.06@8Ohm@0.4W%
Single Supply Voltage (typ)
3/5V
Dual Supply Voltage (typ)
Not RequiredV
Power Supply Requirement
Single
Rail/rail I/o Type
No
Power Supply Rejection Ratio
57dB
Single Supply Voltage (min)
2.7V
Single Supply Voltage (max)
5.5V
Dual Supply Voltage (min)
Not RequiredV
Dual Supply Voltage (max)
Not RequiredV
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
28
Package Type
TSSOP EP
For Use With
LM4936MHEVAL - BOARD EVALUATION LM4936MH
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
LM4936MHX

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LM4936MHX/NOPB
Manufacturer:
NS/TI
Quantity:
1 300
© 2005 National Semiconductor Corporation
LM4936
Stereo 2W Audio Power Amplifiers with Volume Control
and Selectable Control Interface (SPI or I
General Description
The LM4936 is a monolithic integrated circuit that provides
volume control, and stereo bridged audio power amplifiers
capable of producing 2W into 4Ω (Note 1) with less than 1%
THD or 2.2W into 3Ω (Note 2) with less than 1% THD.
Boomer
to provide high quality audio while requiring a minimum
amount of external components. The LM4936 incorporates a
SPI or I
stereo bridged audio power amplifiers and a selectable gain
or bass boost. All of the LM4936’s features (i.e. SD, Mode,
Mute, Gain Sel) make it optimally suited for multimedia
monitors, portable radios, desktop, and portable computer
applications.
The LM4936 features an externally controlled, low-power
consumption shutdown mode, and both a power amplifier
and headphone mute for maximum system flexibility and
performance.
Note 1: When properly mounted to the circuit board, LM4936MH will deliver
2W into 4Ω. See Application Information section Exposed-DAP package
PCB Mounting Considerations for more information.
Note 2: An LM4936MH that has been properly mounted to the circuit board
and forced-air cooled will deliver 2.2W into 3Ω.
Connection Diagram
Boomer
®
is a registered trademark of NationalSemiconductor Corporation.
®
2
C Control Interface that runs the volume control,
audio integrated circuits were designed specifically
See NS Package Number MXA28A for Exposed-DAP TSSOP
DS201178
Order Number LM4936MH
TSSOP Package
Top View
Key Specifications
n P
n
n
n
n Single-ended mode - THD+N at 90mW into 32Ω 1%(typ)
n Shutdown current
Features
n Selectable SPI or I
n System Beep Detect
n Stereo switchable bridged/single-ended power amplifiers
n Selectable internal/external gain and bass boost
n “Click and pop” suppression circuitry
n Thermal shutdown protection circuitry
n Headphone Sense
Applications
n Portable and Desktop Computers
n Multimedia Monitors
n Portable Radios, PDAs, and Portable TVs
O
into 3Ω
into 4Ω
into 8Ω
at 1% THD+N
20117802
2
C Control Interface
2
C)
www.national.com
1.25W (typ)
0.7µA (typ)
2.2W (typ)
2.0W (typ)
April 2005

Related parts for LM4936MHX/NOPB

LM4936MHX/NOPB Summary of contents

Page 1

... Note 2: An LM4936MH that has been properly mounted to the circuit board and forced-air cooled will deliver 2.2W into 3Ω. Connection Diagram See NS Package Number MXA28A for Exposed-DAP TSSOP Boomer ® registered trademark of NationalSemiconductor Corporation. © 2005 National Semiconductor Corporation Key Specifications THD+N O into 3Ω n into 4Ω ...

Page 2

Block Diagram www.national.com FIGURE 1. LM4936 Block Diagram 2 20117801 ...

Page 3

... Absolute Maximum Ratings If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications. Supply Voltage Storage Temperature Input Voltage Power Dissipation (Note 11) ESD Susceptibility (Note 12) ESD Susceptibility (Note 13) Junction Temperature Soldering Information Small Outline Package Vapor Phase (60 sec ...

Page 4

Electrical Characteristics for Control Interface The following specifications apply for V Symbol Parameter V Digital Input High Voltage IH V Digital Input Low Voltage IL t SPI ENABLE Setup Time ES t SPI ENABLE Hold Time EH t SPI ENABLE ...

Page 5

Electrical Characteristics for Bridged Mode Operation The following specifications apply for V Symbol Parameter N Output Noise OUT X Channel Separation (Note 17) talk Note 3: The θ given is for an MXA28A package whose exposed-DAP is soldered to an ...

Page 6

Typical Application www.national.com FIGURE 2. Typical Application Circuit 6 20117812 ...

Page 7

Address Mode Control Register Volume Control Register (See Table Sense Pin Logic ...

Page 8

Typical Performance Characteristics THD+N vs Output Power/Channel 3Ω V-BTL f = 1kHz, 80kHz BW THD+N vs Output Power/Channel 4Ω V-BTL f = 1kHz, 80kHz ...

Page 9

Typical Performance Characteristics THD+N vs Output Power/Channel 8Ω V- 1kHz 220µF, 80kHz BW OUT THD+N vs Output Power/Channel 32Ω V-SE ...

Page 10

Typical Performance Characteristics THD+N vs Output Power/Channel 4Ω V-BTL f = 1kHz, 80kHz BW THD+N vs Output Power/Channel 8Ω V-BTL f = 1kHz, 80kHz ...

Page 11

Typical Performance Characteristics THD+N vs Output Power/Channel 32Ω V- 1kHz 220µF, 80kHz BW OUT THD+N vs Output Voltage 10kΩ, Dock Pins DD LDOCK ...

Page 12

Typical Performance Characteristics PSRR vs Frequency 200mVp-p DD RIPPLE Inputs Terminated, 80kHz BW Crosstalk vs Frequency 8Ω V-BTL P = 1W, 80kHz BW OUT Crosstalk vs Frequency ...

Page 13

Typical Performance Characteristics Headphone Sense Threshold vs Supply Voltage R = 8Ω 1V 220µF, 80kHz BW OUT Output Power/Channel vs Supply Voltage R = 3Ω 2V/V, 80kHz BW L V-BTL Output Power/Channel ...

Page 14

Typical Performance Characteristics Output Power/Channel vs Supply Voltage R = 32Ω 1V/V, 80kHz BW L V-SE Power Dissipation vs Output Power/Channel = 2V/V, THD+N ≤ 1%, 80kHz 5V V-BTL Power Dissipation vs Output ...

Page 15

Typical Performance Characteristics Supply Current vs Supply Voltage R = 8Ω L Output Power/Channel vs Load Resistance Output Power/Channel vs Load Resistance Note 19: These curves show the thermal dissipation ability of the LM4936MH at different ambient temperatures given these ...

Page 16

Typical Performance Characteristics 2 500LFPM + 2in : The part is soldered to a 2in 2 2in on bottom: The part is soldered to a 2in 2 2 2in : The part is soldered to a 2in , 1oz. copper ...

Page 17

... Example PCB layouts are shown in the Demon- stration Board Layout section. Further detailed and specific information concerning PCB layout, fabrication, and mounting is available in National Semiconductor’s AN1187. PCB LAYOUT AND SUPPLY REGULATION CONSIDERATIONS FOR DRIVING 3Ω AND 4Ω LOADS Power dissipated by a load is a function of the voltage swing across the load and the load’ ...

Page 18

Application Information BRIDGE CONFIGURATION EXPLANATION As shown in Figure 2, the LM4936 output stage consists of two pairs of operational amplifiers, forming a two-channel (channel A and channel B) stereo amplifier. (Though the following discusses channel A, it applies equally ...

Page 19

Application Information the length of leads and traces that connect capacitors be- tween the LM4936’s power supply pin and ground as short as possible. Connecting a 1µF capacitor, C BYPASS pin and ground improves the internal bias voltage’s stability and ...

Page 20

Application Information 0.01µF 0.1µF 0.22µF 0.47µF 1.0µF 200ms DOCKING STATION INTERFACE Applications such as notebook computers can take advan- tage of a docking station to connect to external devices such as monitors or audio/visual equipment that ...

Page 21

Application Information voltage applied to the HP SENSE pin at approximately 50mV. This 50mV puts the LM4936 into bridged mode op- eration. The output coupling capacitor blocks the amplifier’s half supply DC voltage, protecting the headphones. The HP SENSE threshold ...

Page 22

Application Information Serial Number ...

Page 23

Application Information AUDIO POWER AMPLIFIER DESIGN Audio Amplifier Design: Driving 1W into an 8Ω Load The following are the desired operational parameters: Power Output: Load Impedance: Input Level: Input Impedance: Bandwidth: 100 Hz−20 kHz The design begins by specifying the ...

Page 24

Application Information SPI OPERATIONAL REQUIREMENTS 1. The maximum clock rate is 5MHz for the CLK pin. 2. CLK must remain logic-high for at least 100ns (t the rising edge of CLK, and CLK must remain logic-low for at least 100ns ...

Page 25

Application Information TIMING DIAGRAMS (Continued) 2 FIGURE Bus Format 2 FIGURE Timing Diagram 25 20117895 20117896 www.national.com ...

Page 26

LM4936 MH Exposed-DAP Board Artwork Composite View Top Layer Internal Layer 2 www.national.com (Notes 8, 9) 20117844 20117848 20117846 26 Silk Screen 20117847 Internal Layer 1 20117845 Bottom Layer 20117843 ...

Page 27

Designator Value Tolerance 20kΩ 1% IN1 IN2 20kΩ 20kΩ 20kΩ 1% DOCK1 DOCK2 20kΩ 1% BS1 BS2 R , ...

Page 28

... BANNED SUBSTANCE COMPLIANCE National Semiconductor manufactures products and uses packing materials that meet the provisions of the Customer Products Stewardship Specification (CSP-9-111C2) and the Banned Substances and Materials of Interest Specification (CSP-9-111S2) and contain no ‘‘Banned Substances’’ as defined in CSP-9-111S2. ...

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