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TLV320AIC12KEVM,

TLV320AIC14KEVM

August  2005

Data Acquisition Products

User’s Guide

SLAU097A

Summary of Contents for TLV320AIC12K Series

Page 1: ...TLV320AIC12KEVM TLV320AIC14KEVM August 2005 Data Acquisition Products User s Guide SLAU097A ...

Page 2: ...tute a license from TI to use such products or services or a warranty or endorsement thereof Use of such information may require a license from a third party under the patents or other intellectual property of the third party or a license from TI under the patents or other intellectual property of TI Reproduction of information in TI data books or data sheets is permissible only if reproduction is...

Page 3: ... handling or use of the goods Please be aware that the products received may not be regulatory compliant or agency certified FCC UL CE etc Due to the open construction of the product it is the user s responsibility to take any and all appropriate precautions with regard to electrostatic discharge EXCEPT TO THE EXTENT OF THE INDEMNITY SET FORTH ABOVE NEITHER PARTY SHALL BE LIABLE TO THE OTHER FOR A...

Page 4: ...rtainty as to the load specification please contact a TI field representative During normal operation some circuit components may have case temperatures greater than 30 C The EVM is designed to operate properly with certain components above 40 C as long as the input and output ranges are maintained These components include but are not limited to linear regulators switching transistors pass transis...

Page 5: ...Bill of Materials Appendix A TLV320AIC12KEVM 14KEVM Schematic FCC Warning This equipment is intended for use in a laboratory test environment only It gen erates uses and can radiate radio frequency energy and has not been tested for compliance with the limits of computing devices pursuant to subpart J of part 15 of FCC rules which are designed to provide reasonable protection against radio frequen...

Page 6: ...ents call the Texas Instruments Literature Response Center at 800 477 8924 or the Product Information Center PIC at 972 644 5580 When ordering identify this booklet by its title and literature number Updated documents can also be obtained through our website at www ti com Data Sheets Literature Number TLV320AIC12K SLWS115 TLV320AIC14K SLWS115 ...

Page 7: ...2 1 Codec to Platform 2 2 2 2 Jumper Options 2 4 2 2 1 Stand Alone Slave 2 4 2 2 2 Single Master Only 2 5 2 2 3 Master Slave Cascade 2 5 3 Analog Interface 3 1 4 EVM Operation 4 1 5 TLV320AIC12KEVM 14KEVM Bill of Materials 5 1 6 TLV320AIC12KEVM 14KEVM Schematic A 1 ...

Page 8: ...red Signals 4 2 Tables 2 1 Pinout for 40 Pin Connector 2 2 2 2 Jumper Options 2 4 2 3 Stand Alone Slave Jumper Settings 2 5 2 4 Single Master Only Jumper Settings 2 5 2 5 Master Slave Cascade Jumper Settings 2 5 3 1 Analog Interface Connectors 3 1 ...

Page 9: ...IC12K TLV320AIC14K This guide refers to the TLV320AIC12K only since the remaining device feature set is a subset of the TLV320AIC12K Any important differences are noted Figure 1 1 EVM The EVM is split into two complementary halves as shown in Figure 1 1 Slave CODEC Master CODEC Chapter 1 ...

Page 10: ...1 2 ...

Page 11: ...he digital interface Create a custom interface between the codec EVM and the host system Alternatively if a TI DSK DSP starter kit is the host system a develop ment platform is available from TI This platform provides the additional functions that the codec requires in a convenient form factor Topic Page 2 1 Codec to Platform 2 2 2 2 Jumper Options 2 4 Chapter 2 ...

Page 12: ...DIN Data in J1 6 DGND Digital ground J1 7 DOUT Data out J1 8 Reserved Reserved for future use J1 9 FS Frame sync J1 10 Reserved Reserved for future use J1 11 CLKX Transmit clock J1 12 Reserved Reserved for future use J1 13 FSX Frame sync transmit J1 14 Reserved Reserved for future use J1 15 DX Data transmit J1 16 DR Data receive J1 17 RESET Global reset for all devices J1 18 FSR Frame sync receive...

Page 13: ... V J1 38 AGND Analog ground J1 39 3 3V_A Analog 3 3 V J1 40 AGND Analog ground The development platform supports a number of functions that the codecs require These are MCLK generation Manual reset generation Power options Refer to the DSP Codec Development Platform User s Guide SLAU090 for details regarding the development platform Further descriptions regarding the operation of this EVM assumes ...

Page 14: ...ly or via capacitor W8 Connects analog and digital ground together W9 Gives user the option of disconnecting the 3 3 V driver ground from the regular analog ground W10 Use for odd number codec channels Isolate the data from the co dec not participating in the chain P1 9 P1 10 Last FSD in the chain must be high P1 11 P1 12 SCL must be high P1 13 P1 14 SDA must be high Since the EVM contains two cod...

Page 15: ...Only Jumper Settings Jumper 1 2 2 3 W2 Inserted Not inserted W3 Inserted Not inserted W4 Inserted Not inserted P1 9 P1 10 N A N A P1 11 P1 12 Inserted Inserted P1 13 P1 14 Inserted Inserted 2 2 3 Master Slave Cascade This configuration applies to EVM1 only and is the factory set shipping condition When both codecs are used both U1 and U2 are active In this condition U2 is always the master codec a...

Page 16: ...d loads to be connected to the codecs screw terminals have been used wherever possible Table 3 1 Analog Interface Connectors TLV320AIC12K TLV320AIC14K Master Slave Master Slave Input Sources Microphone input J9 J8 J9 J8 INP1 J5 J3 J5 J3 INP2 J4 J2 J4 J2 Output Loads OUTP1 OUTM1 600 Ω line output J7 J6 J7 J6 OUTP2 OUTP3 16 Ω driver output J11 J10 NA Chapter 3 ...

Page 17: ...3 2 ...

Page 18: ...utomatically based on the available MCLK It is now possible to calculate what should be observed after power up by calculating what FS and SCLK should be observed FS J In this example MCLK is generated by the development platform and is equal to 100 MHz J FS MCLK 16 m n p J Default values for m n and p are 16 6 and 8 respectively J FS 100 106 16 16 6 8 J FS 8138 Hz SCLK J SCLK 16 FS number of devi...

Page 19: ...4 2 The captured signals are shown in Figure 4 1 Figure 4 1 EVM Captured Signals FS SCLK ...

Page 20: ...4 1 µF C1 C2 C3 C4 Capacitor 1 µF 10 V ceramic Y5V 0603 Panasonic ECJ 1VF1A105Z 5 10 kΩ R1 R2 R3 R4 R5 Resistor 10 kΩ 1 16 W 5 0603 SMD Panasonic ERJ 3GEYJ103V 2 10 kΩ R6 R7 Resistor 10 0 kΩ 1 8 W 1 1206 SMD Panasonic ERJ 8ENF1002V 2 U1 U2 IC CODEC 1CH 16 bit 3 3 V 30 TSSOP Texas Instruments TLV320AIC12KIDBT Alternate IC CODEC 1CH 16 bit 3 3 V 30 TSSOP Texas Instruments TLV320AIC14KIDBT 1 TLV320AI...

Page 21: ...Used Part number Vendor Description Ref Des Value 2 See Assy Dwg 0 500 4 40 Nylon hex thread SP Keystone Electronics 1902C 2 See Assy Dwg 4 40 X 1 4 Machine screw PH SS Building Fasteners PMSSS 440 0025 PH ...

Page 22: ...A 1 TLV320AIC12K 14K EVM Schematic TLV320AIC12K 14K EVM Schematic The TLV320AIC12K 14K EVM schematics are provided on the following pages Appendix A ...

Page 23: ...B A 12500 TI Boulevard Dallas Texas 75243 Title SHEET OF FILE SIZE DATE REV 20 Jul 2005 Drawn By Engineer Revision History REV ECN Number Approved AIC12_REVA DOCUMENTCONTROL 2xAIC12 Analog_IO AIC12K 14KEVM B J PURVIS Y DEWONCK 1 3 6435620 ...

Page 24: ...uF C10 0 1uF C11 0 1uF C12 0 1uF 3 3V_A_DRV 3 3V_A_DRV 3 3V_A 3 3V_A 1 8V_D 1 8V_D 3 3V_D 3 3V_D DGND AGND R1 10K 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 P1 40 PIN PLUG DGND DGND DGND R2 10K 3 3V_D R3 10K FSD_2 GBL_SYNC_RESET GBL_DIN GBL_MCLK GBL_SYNC_PWDN DOUTb GBL_SCLK GBL_SDA GBL_SCL DGND AGND W8 IOVSS 1 SCLK 28 IOVDD 2 AVDD...

Page 25: ...NP1_a OUTP1_a OUTM1_a MICIN_a INM1_a INM2_a INP2_a 3 B A 2 1 J9 AGND C28 0 1uF C22 0 1uF C24 0 1uF C21 0 1uF C23 0 1uF R7 10K W5 C27 0 1uF W7 1 2 3 J11 OUTP2_a OUTMV_a OUTP3_a MICBIAS_b 1 2 J3 1 2 J6 1 2 J2 INP1_b OUTP1_b OUTM1_b MICIN_b INM1_b INM2_b INP2_b 3 B A 2 1 J8 AGND C26 0 1uF C20 0 1uF C18 0 1uF C17 0 1uF C19 0 1uF R6 10K W4 C25 0 1uF W6 1 2 3 J10 OUTP2_b OUTMV_b OUTP3_b AIC12K 14KEVM B ...

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