PRODUCT SPECIFICATION AUDIO LINE AMPLIFIER ALA

Similar documents
PRODUCT SPECIFICATION AMPLIFIER MODULE AMS0100

PRODUCT SPECIFICATION AMPLIFIER MODULE AMS

Production Analyzer Rev (USB + FireWire) Rev. 2.x (USB only)

High Efficiency Power Amplifier Module. Features

NAU82011WG 2.9 W Mono Filter-Free Class-D Audio Amplifier. 1 Description VIN. Output Driver VIP. Class D Modulator VDD VSS

LM48820 Ground-Referenced, Ultra Low Noise, Fixed Gain, 95mW Stereo Headphone Amplifier

NAU W Mono Filter-Free Class-D Audio Amplifier

NAU82011VG 3.1W Mono Filter-Free Class-D Audio Amplifier. 1 Description VIN. Output Driver VIP. Class D Modulator VDD VSS NAU82011VG

LM384 5W Audio Power Amplifier

LM4752 Stereo 11W Audio Power Amplifier

1.6W Gate Drive DC-DC Converter P2AGDC-Series

LM384 5W Audio Power Amplifier

ISD8102 / ISD8104 ISD8102/ISD W Class AB Audio Amplifier. with Chip Enable. i) ISD Earphone Sense IN (SE / Diff)

LM837 Low Noise Quad Operational Amplifier

High Efficiency Power Amplifier Module (OEM Version)

UNISONIC TECHNOLOGIES CO., LTD M4670 Preliminary CMOS IC

ESMT Preliminary AD52068

L272. Dual Power Operational Amplifier. Description. Features. Applications. Internal Block Diagram VCC OUT1 OUT2 VEE/GND VEE/GND GND GND GND NC IN1-

2-Vrms Cap-Less Line Driver with Adjustable Gain. Description. Product ID Package Packing Comments 96 Units / Tube TSSOP-14. Right Input Right Output

KM4110/KM mA, Low Cost, +2.7V & +5V, 75MHz Rail-to-Rail Amplifiers

SGM mW Differential Input, Stereo Audio Power Amplifier

L272/L272A Dual Power Operational Amplifier

LM2878 Dual 5 Watt Power Audio Amplifier

LM mw Audio Power Amplifier with Shutdown Mode

500 ma DC-DC Step Down Converter P78G-Series

ICEbricks ICEpower Engine-400. ICEpower Engine-400. ICEpower a/s, Vandtårnsvej 62A, 3 rd floor B, DK-2860 Søborg

LM348. Quad Operational Amplifier. Features. Description. Internal Block Diagram.

LM4610 Dual DC Operated Tone/Volume/Balance Circuit with National 3-D Sound

SGM W Fully Differential Audio Power Amplifier with Selectable Shutdown

KA334. Dual Power Operational Amplifier. Description. Features. Applications. Internal Block Diagram VCC OUT1 OUT2. NC Vcc VEE/GND GND VEE/GND GND GND

KA3303/KA3403. Quad Operational Amplifier. Features. Description. Internal Block Diagram.

LY W Mono Filterless Class D Audio power Amplifier


LM4808 Dual 105 mw Headphone Amplifier

NI 6143 Specifications

LM146/LM346 Programmable Quad Operational Amplifiers


TDA7498L. 80-watt + 80-watt dual BTL class-d audio amplifier. Description. Features

Hypex Electronics BV Kattegat JP Groningen, The Netherlands

Cool Power Technologies

CS6A4689 Stereo Headphone Amplifier Evaluation Board (Rev 1)

INTEGRATED CIRCUITS DATA SHEET. TDA x 1 W portable/mains-fed stereo power amplifier. Product specification File under Integrated Circuits, IC01

AN7511, AN7511S. 1-W BTL audio power amplifier. ICs for Audio Common Use. Overview. Features. Applications. Block Diagram AN7511

LMC7101 Tiny Low Power Operational Amplifier with Rail-To-Rail Input and Output

LM2877 Dual 4W Audio Power Amplifier

SGM W Audio Power Amplifier with Shutdown Mode

MODEL: 20VS2-02. Hybrid IC Isolation Amplifiers 20 Series

Description. Table 1. Device summary. Order code Package Packing. TDA7851F Flexiwatt25 (vertical) Tube TDA7851FH-QIX Flexiwatt25 (horizontal) Tube

DC/DC power module 3.3V / 4.5A / 14.8W

SGM4809 Dual 158mW Headphone Amplifier with Active Low Shutdown Mode

LM4811 Dual 105mW Headphone Amplifier with Digital Volume Control and Shutdown Mode

ICEpower125ASX2 Designer s Manual 2x125W or 1x500W ICEpower Amplifier with integrated ICEpower Supply

0.1 F A4 SDB IS31AP2036A IN+ IN- Figure 1 Typical Application Circuit (Differential Input)

TDA W Hi-Fi AUDIO POWER AMPLIFIER

LMH6672 Dual, High Output Current, High Speed Op Amp

Description. Table 1. Device summary. Order code Operating temp. range Package Packaging

SGM W Mono Fully Differential Audio Power Amplifier

BA Features. General Description. Applications. Marking Information. 3W Mono Filterless Class D Audio Power Amplifier

PAM8302A. Pin Assignments. Description. Features. Applications. A Product Line of. Diodes Incorporated 2.5W FILTERLESS CLASS-D MONO AUDIO AMPLIFIER

LM833 Dual Audio Operational Amplifier

2.7W Mono Filter-less Class-D Audio Amplifier. Applications. Description. PWM Generator

KA224/KA224A, KA324/KA324A, KA2902

TS mW Stereo Headphone Amplifier. Description. Applications. Order Codes

NI DAQPad -6020E Family Specifications

LMV301 Low Input Bias Current, 1.8V Op Amp w/ Rail-to-Rail Output

HT82V7524 3W Mono Filter-free Class-D Audio Power Amplifier

3W Stereo Class-D Audio Power Amplifier BA Data Sheet. Biforst Technology Inc. Rev.1.1,

SGM8908 Capless 3Vrms Line Driver with Adjustable Gain

ICEpower500A 500W General Purpose ICEpower Amplifier

Appendix G - Specifications. G Specifications. Appendix G - Specifications ANALOG SIGNAL OUTPUTS. Low Distortion Sine Wave. Frequency Accuracy

Obsolete Product(s) - Obsolete Product(s)

Dual, Ultralow Distortion, Ultralow Noise Op Amp AD8599

FED30-48 S 05 - N HC Series Name Input Output Output Remote Control Assembly Option Voltage Quantity Voltage Option PART NUMBER STRUCTURE

1 W BTL mono audio amplifier TDA7052

KA7500B. SMPS Controller. Features. Description. Internal Block Diagram.

Tracking Regulator TLE 4252

LME49721 Evaluation Board

Hypex Electronics BV Kattegat JP Groningen, The Netherlands

Appendix D - Specifications. D Specifications. Appendix D - Specifications ANALOG SIGNAL OUTPUTS. Low Distortion Sine Wave

LF353 Wide Bandwidth Dual JFET Input Operational Amplifier

NI PXI-4461 Specifications

LM161/LM261/LM361 High Speed Differential Comparators

LM4562 Dual High Performance, High Fidelity Audio Operational Amplifier

High Common-Mode Rejection. Differential Line Receiver SSM2141 REV. B FUNCTIONAL BLOCK DIAGRAM FEATURES. High Common-Mode Rejection

LM160/LM360 High Speed Differential Comparator

Low Power, Precision, Auto-Zero Op Amps AD8538/AD8539 FEATURES Low offset voltage: 13 μv maximum Input offset drift: 0.03 μv/ C Single-supply operatio

UNISONIC TECHNOLOGIES CO., LTD

SGM W Audio Power Amplifier

LM759 LM77000 Power Operational Amplifiers

Single and Dual, Ultralow Distortion, Ultralow Noise Op Amps AD8597/AD8599 PIN CONFIGURATIONS FEATURES APPLICATIONS

LM W Audio Power Amplifier

LM9044 Lambda Sensor Interface Amplifier

FreeSpace ZA 250-LZ / 190-HZ zone amplifier TECHNICAL DATA SHEET. Key Features. Product Overview. Product Information.

Obsolete Product(s) - Obsolete Product(s)

LM6118/LM6218 Fast Settling Dual Operational Amplifiers

Quad Audio Switch REV. B BLOCK DIAGRAM OF ONE SWITCH CHANNEL

SGM W Fully Differential Audio Power Amplifier

PM24S/PM24D series 30W Single/Dual Output DC/DC Converter

TABLE OF CONTENTS Features... Applications... Pin Configurations... General Description... Revision History... 2 Specifications... 3 Absolute Maximum

Low Drop Voltage Regulator TLE

Transcription:

PRODUCT SPECIFICATION AUDIO LINE AMPLIFIER ALA0080-2000 FEATURE LIST 2x45Wrms into 6Ω @ 1% THD Entirely differential patented APC (adaptive pole control) amplifier technology 80kHz load independent frequency range (-3dB) Very low THD in the audio band 115dB dynamic range Output impedance <5mΩ @ 100Hz Differential inputs with 0.1% resistors for improved CMRR SCOPE These technical specifications describes the functionalities and features of the Anaview Audio Line Amplifier ALA0080-2000, capable of delivering up to 2x45W when supplied with a DC source between 12 and 25VDC. Typical applications are networked audio devices, portable audio devices, docking stations, audio receivers, powered speakers and residential audio system. Current Revision Date: 2015-06-02 Page Number: 1 of 19

DISCLAIMER The data sheet contains specifications that may be subject to change without prior notice. Responsibility for verifying the performance, safety, reliability and compliance with legal standards of end products using this subassembly falls to the manufacturer of said end product. ANAVIEW products are not authorized for use as critical components in life support devices or life support systems without the express written approval of the president of ETAL Group AB. As used herein: 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, and whose failure to perform when properly used in accordance with instructions for use provided in the labelling, can be reasonably expected to result in a significant injury to the user. 2. A critical component is any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness. Current Revision Date: 2015-06-02 Page Number: 2 of 19

ELECTRICAL SPECIFICATIONS Input specifications: Supply voltage nenable IN+ IN- Input impedance VS+: CON2:5, CON2:7 GND: CON2:6, CON2:8 Min: +9VDC(*1) Max: +30VDC Recommended: +12VDC to +25VDC Shut down input: CON1:5 "nenable" Shut down by: Leave floating Normal operation : Pull down to GND 0 1.45 Vrms max Balanced audio input, left channel 0 1.45 Vrms max Balanced audio input, right channel Single ended input signal +IN_CH1: CON1:8 Signal -IN_CH1: CON1:7 Ground Input impedance = 2.4kΩ Balanced input signal +IN_CH1: CON1:8 Signal -IN_CH1: CON1:7 Signal Input impedance = 2.3kΩ +IN_CH2: CON1:2 Signal -IN_CH2: CON1:1 Ground Input impedance = 2.4kΩ +IN_CH2: CON1:2 Signal -IN_CH2: CON1:1 Signal Input impedance = 2.3kΩ (*1) ALA0080-2000 need a supply voltage of minimum 11.5VDC to start but won t shut down until the supply voltage drops below 9VDC. Current Revision Date: 2015-06-02 Page Number: 3 of 19

Output specifications @ 12V: Audio outputs Typ. cont. output power (*1) Max output power (*2) THD +OUT_CH1: CON2:1,3 -OUT_CH1: CON2:2,4 2x14W 4Ω 2x10W 6Ω 2x8W 8Ω 2x15W 4Ω 2x11W 6Ω 2x9W 8Ω 1% +OUT_CH2: CON2:9,11 -OUT_CH2: CON2:10,12 2x14W 4Ω 2x10W 6Ω 2x8W 8Ω 2x15W 4Ω 2x11W 6Ω 2x9W 8Ω 1% Output specifications @ 20V: Audio outputs Typ. cont. output power (*1) Max output power (*2) THD +OUT_CH1: CON2:1,3 -OUT_CH1: CON2:2,4 2x9W 4Ω 2x16W 6Ω 2x20W 8Ω 2x40W 4Ω 2x31W 6Ω 2x23W 8Ω 1% +OUT_CH2: CON2:9,11 -OUT_CH2: CON2:10,12 2x9W 4Ω 2x16W 6Ω 2x20W 8Ω 2x40W 4Ω 2x31W 6Ω 2x23W 8Ω 1% Output specifications @ 25V: Audio outputs Typ. cont. output power (*1) Max output power (*2) THD +OUT_CH1: CON2:1,3 -OUT_CH1: CON2:2,4 +OUT_CH2: CON2:9,11 -OUT_CH2: CON2:10,12 2x11W 6Ω 2x13W 8Ω 2x11W 6Ω 2x13W 8Ω 2x45W 6Ω 2x35W 8Ω 2x45W 6Ω 2x35W 8Ω (*1) Typical continuous output power with an ambient temperature of 50 C. (*2) Maximum output power it the power delivered in the specified load with a maximum of 1% THD 1% 1% Current Revision Date: 2015-06-02 Page Number: 4 of 19

Protections and functions: Over temperature protection Under voltage protection Power shut down by over temperature. Outputs float when heat sink temperature reaches >110 C. Output switching resumes about 1s after temperature drops below the threshold. Power shut down by under voltage on VS+ (supply voltage). Typical threshold Shutdown Restart 8.6V 11.3V Over current protection nenable The over current protection is DC input voltage and temperature dependent but will allow full power 4Ω in 50 C ambient without over current protection. The over current protection will protect the amp outputs from short between them and short to DC input. It will not protect against short to GND. Shut down input: CON1:5 "nenable Shut down by: Leave pin floating Normal operation : Pull down to GND VS+ nenable 200k 1n ndiag Status output: CON1:3 "ndiag ndiag goes low during under voltage and over temperature Current Revision Date: 2015-06-02 Page Number: 5 of 19

Offset voltage (open inputs) Switching frequency (idle) Switching recidual Minimum load impedance Recommended load Gain (f =1kHz) Idle noise Upper BW limit (-3dB) Lower BW limit (-3dB) Output impedance (100Hz) <5mV typ. (20mV max) 300kHz to 500kHz 500mVrms typ. 4Ω 4Ω to 8Ω with +20V supply voltage 6Ω to 8Ω with +25V supply voltage (*1) 22.7dB typ. 30 uvrms (unweighted) typ. 80kHz typ. <5Hz 3mΩ typ. (5mΩ max) Residual noise vs freq See Figure 4 THD vs PWR See Figure 5-12 THD vs freq See Figure 13-15 Freq response See Figure 16 Crosstalk See Figure 17 (*1) ALA0080-2000 will not deliver specified full output power in 4Ω 50 C with +25V supply voltage without going into over current protection. Therefore it is not recommended to use 4Ω load with more than +20V supply voltage even if the amplifier will not take damage from it. Cooling Mounting of the unit GENERAL SPECIFICATIONS Convection cooling Efficiency See Figure 18 Idle current consumption Disable current consumption Manufacturing according to workmanship standard See Figure 2. Board outline, dimensions & mounting holes. PCB may be secured to mating PCB using M3 size screws. 60mA typ. With +12V supply voltage 75mA typ. With +20V supply voltage 85mA typ. With +25V supply voltage 35mA typ. With +12V supply voltage 47mA typ. With +20V supply voltage 55mA typ. With +25V supply voltage IPC-A-610, Revision D, February 2005 ENVIROMENTAL CONDITIONS Humidity Ambient Operating Temperature Storage Temperature 5 85% RH non condensing 0 C to +50 C -40 C to +85 C Current Revision Date: 2015-06-02 Page Number: 6 of 19

CONNECTIONS Figure 1. Bottom View, two dual row header connectors, CON1 and CON2 Signal connector CON1 : 8 pin (2.0mm) dual row vertical header Article number CVILux CB74082V100 Mating connectors CVILux CB74082V100 (Through hole) CVILux CB74082M100 (SMD) Pinning: Description: Pin 1 : -IN_CH2 Negative input channel 2 Pin 2 : +IN_CH2 Positive input channel 2 Pin 3 : ndiag Status output Pin 4 : GND GND Pin 5 : nenable Enable input Pin 6 : GND GND Pin 7 : -IN_CH1 Negative input channel 1 Pin 8 : +IN_CH1 Positive input channel 1 Current Revision Date: 2015-06-02 Page Number: 7 of 19

Power connector CON2 : 12 pin (2.0mm) dual row vertical header Article number CVILux CB74122V100 Mating connectors CVILux CB74122V100 (Through hole) CVILux CB74122M100 (SMD) Pinning: Pin 1 : +OUT_CH1 Pin 2 : -OUT_CH1 Pin 3 : +OUT_CH1 Pin 4 : -OUT_CH1 Pin 5 : VS+ Pin 6 : GND Pin 7 : VS+ Pin 8 : GND Pin 9 : +OUT_CH2 Pin 10 : -OUT_CH2 Pin 11 : +OUT_CH2 Pin 12 : -OUT_CH2 Description: Positive output Negative output Positive output Negative output Positive supply voltage GND Positive supply voltage GND Positive output Negative output Positive output Negative output EMC Emission Immunity REGULATIONS AND COMPLIANCES EN 55022:2006+A1:2007+A2:2006 Class B FCC part 15 (CISPR22) Class B Tested at a level of 1/8 of the max output power. IEC 61000-4-2 (2008) IEC 61000-4-3 (2006) IEC 61000-4-4 (2004) *Only I/O line applicable IEC 61000-4-6 (2008) *Only I/O line applicable IEC 61000-4-8 (2009) MECHANICAL OUTLINE Size (l x w x h) Weight IP figures, encapsulation IP XY (X=Solids, Y=Liquids) Coloring, design and branding 68x33x18mm, see Figure 2. Board outline, dimensions below. Max component height/lead length on PCB top side: 4.0 mm Max component height/lead length on PCB bottom side: 13.3 mm Max total height including mating connector: 18.5mm 26g Open frame ALA0080-2000, black PCB Current Revision Date: 2015-06-02 Page Number: 8 of 19

Figure 2. Board outline, dimensions and side views Current Revision Date: 2015-06-02 Page Number: 9 of 19

390p 390p Figure 3. Connection diagram. LOAD CONSIDERATION Connecting different loads For optimum noise performance when connecting different speakers/loads on the amp channels, the load with highest impedance at 400kHz should be connected to output channel 2 (OUT_CH2). Current Revision Date: 2015-06-02 Page Number: 10 of 19

Figure 4. Residual noise. Figure 5. THD vs power, 4Ω +12V supply. Current Revision Date: 2015-06-02 Page Number: 11 of 19

Figure 6. THD vs power, 6Ω +12V supply. Figure 7. THD vs power, 8Ω +12V supply. Current Revision Date: 2015-06-02 Page Number: 12 of 19

Figure 8. THD vs power, 4Ω +20V supply. Figure 9. THD vs power, 6Ω +20V supply. Current Revision Date: 2015-06-02 Page Number: 13 of 19

Figure 10. THD vs power, 8Ω +20V supply. Figure 11. THD vs power, 6Ω +25V supply. Current Revision Date: 2015-06-02 Page Number: 14 of 19

Figure 12. THD vs power, 8Ω +25V supply. Figure 13. THD+N vs frequency, 4Ω +20V supply. Current Revision Date: 2015-06-02 Page Number: 15 of 19

Figure 14. THD+N vs frequency, 6Ω +25V supply. Figure 15. THD+N vs frequency, 8Ω +25V supply. Current Revision Date: 2015-06-02 Page Number: 16 of 19

Figure 16. Frequency responses 4ohms, 6ohms, 8ohms, open circuit. Figure 17. Inter channel crosstalk Current Revision Date: 2015-06-02 Page Number: 17 of 19

Figure 18. Typical efficiency, both channels powered. Current Revision Date: 2015-06-02 Page Number: 18 of 19

REVISION LOG Rev. Date Item Sign PA1 2015-02-11 Preliminary release revision JN A 2015-06-02 Official release RK ANAVIEW CONTACT INFORMATION For further information about Anaview s products and technology please contact: Email: info@anaview.com Website: www.anaview.com ETAL Group AB Fagerstagatan 3 SE-163 53 SPÅNGA SWEDEN Current Revision Date: 2015-06-02 Page Number: 19 of 19