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ASAHI KASEI [AKD4584] AKD4584 Evaluation board Rev.A for AK4584 GENERAL DESCRIPTION AKD4584 is an evaluation board for the 24bit 96kHz CODEC, AK4584. The AKD4584 can evaluate A/D converter D/A converter separately in addition to loopback mode (A/D D/A). The AKD4584 also has the digital audio interface and can achieve the interface with digital audio systems via opt-connector. Ordering guide AKD4584 --Evaluation board for AK4584 (Cable for connecting with printer port of IBM-AT, compatible PC and control software are packed with this.) FUNCTION * DIT/DIR with optical input/output * BNC connector for an external clock input * 10pin Header for serial control mode 2.7 ~ 5.25V 4.75 ~ 5.25V GND LIN RIN LOUT ROUT Opt In BNC In Opt out BNC out Control Data 10pin Header AK4584 ROM 10pin Header AK4114 Opt In Opt Out Clock Gen Figure 1. AKD4584 Block Diagram * Circuit diagram and PCB layout are attached at the end of this manual. '01/11 ASAHI KASEI [AKD4584] 1. Evaluation Board Manual Analog Input / Output circuits (1) Input circuits The analog input of AK4584 inputs from J1 (RIN), J3 (LIN). J1 RIN C32 10u RIN + R16 560 J3 LIN C34 10u LIN + R19 560 Figure 2. LIN/RIN Input circuits (2) Output circuits The analog output of AK4584's DAC outputs from J2 (ROUT), J4 (LOUT). R15 220 J2 ROUT ROUT C33 22u R17 10k + LOUT C35 22u R20 10k Figure 3. LOUT/ROUT Output circuits * AKM assumes no responsibility for the trouble when using the above circuit examples. + R18 220 J4 LOUT '01/11 ASAHI KASEI [AKD4584] Digital Input / Output circuits & Set-up jumper pin (1) Digital input circuits The digital input of AK4584 inputs from J7 (RX) or PORT5 (DIR). VDD 2 6 5 PORT5 6 5 GND VCC GND OUT 4 3 2 1 L4 47u 1 DIR C37 0.1u R39 470 + C38 10u RX1 RX JP12 RX1 RX2 RX3 RX4 RX2 J7 RX R40 75 JP13 RX C39 0.1u BNC RX1-4 RX3 RX4 Figure 4. Digital input circuit 1. Digital signal is input to RX1-4 pins respectively. JP12 RX1-4 RX1 RX2 RX3 RX4 JP12 RX1-4 RX1 RX2 RX3 RX4 JP12 RX1-4 RX1 RX2 RX3 RX4 JP12 RX1-4 RX1 RX2 RX3 RX4 2. Digital signal is input to RX1-4 pins via J7 (RX) and PORT5 (DIR). JP13 RX JP13 RX RX BNC RX BNC * AKM assumes no responsibility for the trouble when using the above circuit examples. '01/11 ASAHI KASEI [AKD4584] (2) Digital output circuits The digital output of AK4584 inputs from J6 (TX) or PORT4 (DIT). VDD 5 6 PORT4 5 6 IN VCC IF GND 4 3 2 1 TX JP8 TX JP9 DIT R32 1k C36 0.1u TX1 TX2 TX3 TX1 TX2 TX3 TX1-3 J6 TX T2 DA-02F R37 330 BNC R38 100 Figure 5. Digital output circuit 1. Digital signal is output to TX1-3 pins respectively. JP9 TX1-3 TX1 TX2 TX3 JP9 TX1-3 TX1 TX2 TX3 JP9 TX1-3 TX1 TX2 TX3 2. Digital signal is output to TX1-3 pins via J6 (TX) and PORT4 (DIT). JP8 TX JP8 TX TX BNC TX BNC * AKM assumes no responsibility for the trouble when using the above circuit examples. '01/11 ASAHI KASEI [AKD4584] Operation sequence 1) Set up the power supply lines. [AVDD] (red) = 4.75 5.25V [TVDD] (orange) = 2.7 5.25V [VCC] (red) = 5.0V [VDD] (red) = 5.0V [AGND] (black) = 0V [DGND] (black) = 0V : for AVDD, DVDD, PVDD of AK4584 (typ. 5.0V) : for TVDD of AK4584 (typ. 3.0V) : for logic (typ. 5.0V) : for logic (typ. 5.0V) : for analog ground : for logic ground Each supply line should be distributed from the power supply unit. 2) Set up the evaluation mode, jumper pins and DIP switches. (See the followings.) 3) Power on. The AK4584 should be reset once bringing SW1 "L" upon power-up. Evaluation mode (1) Slave mode In case of AK4584 evaluation using AK4114, it is necessary to correspond to AK4584's and AK4114's audio interface format. About AK4584's audio interface format, refer to AK4584's datasheet. About AK4114's audio interface format, see Table2. (1-1) A/D evaluation using DIT function of AK4584 (1-2) A/D evaluation using DIT function of AK4114 (1-3) D/A evaluation using DIR function of AK4114 (1-4) All interfacing signal (MCLK, BICK, LRCK) are fed from the external circuit (1-1) A/D evaluation using DIT function of AK4584 Using J5 (EXT), PORT4 (DIT) and J6 (TX). Nothing should be connected to J7 (RX), PORT1 (DIR), PORT5 (DIR) and PORT6 (ROM). Remove the X'tal (X1). The bi-phase data is output from TX3. JP6 (EXT) should be open. JP3 XTI JP6 EXT JP10 MCLK JP11 BICK JP14 LRCK JP15 SDTI DIR ADC EXT DIR EXT DIR EXT DIR ADC '01/11 ASAHI KASEI [AKD4584] * Clock setting (1-1-1) Normal Speed (MCLK=256fs=11.2896MHz@fs=44.1kHz) JP1 MCKO JP4 MCLK JP5 BCFS JP7 LRFS M1 M2 x1 x2 x4 x2 x1 x4 x1 (1-1-2) Normal Speed (MCLK=512fs=22.5792MHz@fs=44.1kHz) JP1 MCKO JP4 MCLK JP5 BCFS JP7 LRFS M1 M2 x1 x2 x4 x2 x1 x4 x1 (1-1-3) Double Speed (MCLK=256fs=22.5792MHz@fs=88.2kHz) JP1 MCKO JP4 MCLK JP5 BCFS JP7 LRFS M1 M2 x1 x2 x4 x2 x1 x4 x1 * SW2 (MODE) setting (See Table 1) Normal speed and double speed are same setting. (1) When XTALE is "H", MCLK can output from MCKO1/2 pins though AK4584 is powered down. (2) When DMCK is "H", MCKO1 output is disabled. H L 1 2 3 4 5 6 7 8 9 10 DIF0 DIF1 DIF2 OCKS0 OCKS1 CM0 TEST3 XTALE DMCK MS '01/11 ASAHI KASEI [AKD4584] (1-2) A/D evaluation using DIT function of AK4114 Using X'tal (X2) and PORT2 (DIT). Nothing should be connected to J5 (EXT), J7 (RX), PORT1 (DIR), PORT5 (DIR) and PORT6 (ROM). Remove the X'tal (X1). JP6 (EXT) should be short. In normal speed and double speed mode, JP1 (MCKO), JP4 (MCLK), JP5 (BCFS) and JP7 (LRFS) should be open. JP3 XTI JP6 EXT JP10 MCLK JP11 BICK JP14 LRCK JP15 SDTI DIR ADC EXT DIR EXT DIR EXT DIR ADC * SW2 (MODE) setting (See Table 1) Normal speed and double speed are same setting. (1) Set the audio interface format of AK4114 using DIF2-0. (2) Set the master clock output of AK4114using OCKS1-0. (3) Set the PLL mode or X'tal mode of AK4114 using CM0. (4) When XTALE is "H", MCLK can output from MCKO1/2 pins though AK4584 is powered down. (5) When DMCK is "H", MCKO1 output is disabled. H 1 2 3 4 5 6 7 8 9 10 L DIF0 DIF1 DIF2 OCKS0 OCKS1 CM0 TEST3 XTALE DMCK MS Above figure is 24bit MSB justified, MCKO output of AK4114 is 256fs, AK4114 is X'tal mode. Using DIT of AK4114, AK4114 is set X'tal mode. '01/11 ASAHI KASEI [AKD4584] (1-3) D/A evaluation using DIR function of AK4114 Using PORT1 (DIR). Nothing should be connected to J7 (RX), PORT5 (DIR) and PORT6 (ROM). Remove the X'tal (X1). JP6 (EXT) should be short. In normal speed, double speed mode and quad speed mode, JP1 (MCKO), JP4 (MCLK), JP5 (BCFS) and JP7 (LRFS) should be open. JP3 XTI JP6 EXT JP10 MCLK JP11 BICK JP14 LRCK JP15 SDTI DIR ADC EXT DIR EXT DIR EXT DIR ADC * SW2 (MODE) setting (See Table 1) (1) Set the audio interface format of AK4114 using DIF2-0. (2) Set the master clock output of AK4114using OCKS1-0. (3) Set the PLL mode or X'tal mode of AK4114 using CM0. (4) When XTALE is "H", MCLK can output from MCKO1/2 pins though AK4584 is powered down. (5) When DMCK is "H", MCKO1 output is disabled. H 1 2 3 4 5 6 7 8 9 10 L DIF0 DIF1 DIF2 OCKS0 OCKS1 CM0 TEST3 XTALE DMCK MS Above figure is 24bit MSB justified, MCKO output of AK4114 is 256fs, AK4114 is PLL mode. In quad speed mode of AK4114, set OCKS1="H" and OCKS0="H". The MCKO output of AK4114 is output 128fs. '01/11 ASAHI KASEI [AKD4584] (1-4) All interfacing signal (MCLK, BICK, LRCK) are fed from the external circuit Using PORT6 (ROM). Nothing should be connected to J7 (RX), PORT1 (DIR) and PORT5 (DIR). Remove the X'tal (X1). JP6 (EXT) should be short. In normal speed, double speed mode and quad speed mode, JP1 (MCKO), JP4 (MCLK), JP5 (BCFS) and JP7 (LRFS) should be open. JP3 XTI JP6 EXT JP10 MCLK JP11 BICK JP14 LRCK JP15 SDTI DIR ADC EXT DIR EXT DIR EXT DIR ADC * SW2 (MODE) setting (See Table 1) (1) When XTALE is "H", MCLK can output from MCKO1/2 pins though AK4584 is powered down. (2) When DMCK is "H", MCKO1 output is disabled. H 1 2 3 4 5 6 7 8 9 10 L DIF0 DIF1 DIF2 OCKS0 OCKS1 CM0 TEST3 XTALE DMCK MS '01/11 ASAHI KASEI [AKD4584] (2) Master Mode (2-1) A/D evaluation using DIT function of AK4584 Using X'tal (X1), PORT4 (DIT) and J6 (TX). Nothing should be connected to J7 (RX), PORT1 (DIR), PORT5 (DIR) and PORT6 (ROM). The bi-phase data is output from TX3. JP6 (EXT) should be short. In normal speed, double speed mode and quad speed mode, JP3 (XTI), JP4 (MCLK), JP5 (BCFS) and JP7 (LRFS) should be open. JP3 XTI JP6 EXT JP10 MCLK JP11 BICK JP14 LRCK JP15 SDTI DIR ADC EXT DIR EXT DIR EXT DIR ADC * Clock Setting (2-1-1) Select MCKO1 JP1 MCKO JP4 MCLK JP5 BCFS JP7 LRFS M1 M2 x1 x2 x4 x2 x1 x4 x1 (2-1-2) Select MCKO2 JP1 MCKO JP4 MCLK JP5 BCFS JP7 LRFS M1 M2 x1 x2 x4 x2 x1 x4 x1 * SW2 (MODE) setting (See Table 1) Normal speed and double speed are same setting. (1) When XTALE is "H", MCLK can output from MCKO1/2 pins though AK4584 is powered down. (2) When DMCK is "H", MCKO1 output is disabled. H 1 2 3 4 5 6 7 8 9 10 L DIF0 DIF1 DIF2 OCKS0 OCKS1 CM0 TEST3 XTALE DMCK MS '01/11 ASAHI KASEI [AKD4584] (2-2) D/A evaluation using DIR function of AK4584 Using PORT5 (DIR) or J7 (RX). Nothing should be connected to PORT1 (DIR) and PORT6 (ROM). JP6 (EXT) should be short. In normal speed and double speed mode, JP1 (MCKO), JP4 (MCLK), JP5 (BCFS) and JP7 (LRFS) should be open. JP3 XTI JP6 EXT JP10 MCLK JP11 BICK JP14 LRCK JP15 SDTI DIR ADC EXT DIR EXT DIR EXT DIR ADC * Clock setting (2-2-1) Select MCKO1 JP1 MCKO JP4 MCLK JP5 BCFS JP7 LRFS M1 M2 x1 x2 x4 x2 x1 x4 x1 (2-2-2) Select MCKO2 JP1 MCKO JP4 MCLK JP5 BCFS JP7 LRFS M1 M2 x1 x2 x4 x2 x1 x4 x1 * SW2 (MODE) setting (See Table 1) Normal speed, double speed and quad speed mode are same setting. (1) When XTALE is "H", MCLK can output from MCKO1/2 pins though AK4584 is powered down. (2) When DMCK is "H", MCKO1 output is disabled. H 1 2 3 4 5 6 7 8 9 10 L DIF0 DIF1 DIF2 OCKS0 OCKS1 CM0 TEST3 XTALE DMCK MS '01/11 ASAHI KASEI [AKD4584] DIP Switch set up [SW2] (MODE): Setting evaluation mode for AK4584 and AK4114 ON is "H", OFF is "L". No. 1 2 3 4 5 6 7 8 9 10 Name ON ("H") OFF ("L") DIF0 AK4114 Audio Format Setting DIF1 See Table 2 DIF2 OCKS0 AK4114 Master Clock Output Setting See Table 3 OCKS1 CM0 AK4114 X'tal Mode AK4114 PLL Mode TEST3 Normally OFF XTALE MCKO1/2 Enable MCKO1/2 Disable DMCK MCKO1 Disable MCKO1 Enable M/S Master Mode Slave Mode Table 1. Setting mode for AK4584 and AK4114 DIF1 DIF0 AK4114 DAUX 0 0 24bit, MSB justified 0 1 24bit, MSB justified 1 0 24bit, MSB justified 1 1 24bit, MSB justified 0 0 24bit, MSB justified 0 1 24bit, I2S Table 2. Setting AK4114 audio interface format OCKS1 OCKS0 MCKO1 X'tal 0 0 256fs 256fs 0 1 256fs 256fs 1 0 512fs 512fs 1 1 128fs 128fs Table 3. Setting AK4114 master clock output AK4114 SDTO 16bit, LSB justified 18bit, LSB justified 20bit, LSB justified 24bit, LSB justified 24bit, MSB justified 24bit, I2S Mode 0 1 2 3 4 5 DIF2 0 0 0 0 1 1 Mode 0 1 2 3 fs 96kHz 96kHz 48kHz 192kHz Other jumper pins set up 1. JP1 (GND) : Analog ground and Digital ground OPEN : Separated. The function of the toggle SW Upper-side is "H" and lower-side is "L". [SW1] (PDN): Power down of AK4584. Keep "H" during normal operation. [SW3] (DIR): Power down of AK4114. Keep "H" during normal operation. '01/11 ASAHI KASEI [AKD4584] Indication for LED [LED1] (INT0): Output INT0 pin of AK4584. [LED2] (INT1): Output INT1 pin of AK4584. [LED3] (ERF): Output INT0 pin of AK4114. [LED4] (DZF): Output DZF pin of AK4584. Serial Control The AK4584 can be controlled via the printer port (parallel port) of IBM-AT compatible PC. Connect PORT3 (CTRL) with PC by 10 wire flat cable packed with the AKD4584. Connect PC CSN CCLK CDTI CDTO AKD4584 10 wire flat cable 10pin Connector 10pin Header Figure 6. Connect of 10 wire flat cable '01/11 ASAHI KASEI [AKD4584] 2. Control Software Manual Set-up of evaluation board and control software 1. Set up the AKD4584 according to previous term. 2. Connect IBM-AT compatible PC with AKD4584 by 10-line type flat cable (packed with AKD4584). Take care of the direction of 10pin header. (This control software does not operate on Windows NT/2000, therefore please operate it on Windows 95/98.) 3. Insert the floppy-disk labeled "AKD4584 Control Program ver 1.0" into the floppy-disk drive. 4. Access the floppy-disk drive and double-click the icon of "AKD4584-1.exe" and "AKD4584-2" to set up the control program. 5. Then please evaluate according to the follows. Explanation of each buttons 1. [Port Setup] : 2. [Write default] : 3. [All Read] : 4. [Function1] : 5. [Function2] : 6. [Write] : 7. [Read] : Set up the printer port. Initialize the register of AK4584. Read the all register of AK4584. Dialog to write data by keyboard operation. Dialog to evaluate IPGA and OATT. Dialog to write data by mouse operation. Read each register data by mouse operation. Explanation of each dialog 1. [Function1 Dialog] : Address Box: Data Box: Dialog to write data by keyboard operation Input register address in 2 figures of hexadecimal. Input register data in 2 figures of hexadecimal. If you want to write the input data to AK4584, click "OK" button. If not, click "Cancel" button. 2. [Function2 Dialog] : Dialog to evaluate IPGA and OATT This dialog corresponds to only addr=04H, 05H, 06H, 07H. Address Box: Input register address in 2 figures of hexadecimal. Start Data Box: Input start data in 2 figures of hexadecimal. End Data Box: Input end data in 2 figures of hexadecimal. Interval Box: Data is written to AK4584 by this interval. Step Box: Data changes by this step. Mode Select Box: If you check this check box, data reaches end data, and returns to start data. [Example] Start Data = 00, End Data = 09 Data flow: 00 01 02 03 04 05 06 07 08 09 09 08 07 06 05 04 03 02 01 00 If you do not check this check box, data reaches end data, but does not return to start data. [Example] Start Data = 00, End Data = 09 Data flow: 00 01 02 03 04 05 06 07 08 09 If you want to write the input data to AK4584, click "OK" button. If not, click "Cancel" button. '01/11 ASAHI KASEI [AKD4584] 3. [Write Dialog] : Dialog to write data by mouse operation There are dialogs corresponding to each register. Click the "Write" button corresponding to each register to set up the dialog. If you check the check box, data becomes "H" or "1". If not, "L" or "0". If you want to write the input data to AK4584, click "OK" button. If not, click "Cancel" button. Operation flow Keep the following flow surely. 1. Set up the control program according to explanation above. 2. Click "Port Setup" button. 3. Click "Write default" button. 4. Then set up the dialog and input data. Indication of data Input data is indicated on the register map. Red letter indicates "H" or "1" and blue one indicates "L" or "0". Blank is the part that is not defined in the datasheet. Attention on the operation If you set up Function1 or Function2 dialog, input data to all boxes. Attention dialog is indicated if you input data or address that is not specified in the datasheet or you click "OK" button before you input data. In that case set up the dialog and input data once more again. These operations does not need if you click "Cancel" button or check the check box. '01/11 ASAHI KASEI [AKD4584] MEASUREMENT RESULTS [Measurement condition] * Measurement unit: Audio Precision, System Two Cascade * MCLK : 256fs * BCLK : 64fs * fs : 44.1kHz, 96kHz * Bit : 24bit * Power Supply : AVDD=DVDD=TVDD=PVDD=5.0V * Interface : DIR/DIT * Temperature : Room [Measurement Results] Parameter ADC Analog Input Characteristics S/(N+D) (fs=44.1kHz, -0.5dB Input) (fs=96kHz, -0.5dB Input) D-Range (fs=44.1kHz, -60dB Input, A-weighted) (fs=96kHz, -60dB Input) S/N (fs=44.1kHz, A-weighted) (fs=96kHz) Interchannel Isolation DAC Analog Output Characteristics S/(N+D) (fs=44.1kHz, 0dB Output) (fs=96kHz, -0.5dB Output) D-Range (fs=44.1kHz, -60dB Output, A-weighted) (fs=96kHz, -60dB Output) S/N (fs=44.1kHz, A-weighted) (fs=96kHz) Interchannel Isolation Result Unit 92.0 88.3 100.6 96.1 101.0 96.1 110.5 dB dB dB dB dB dB dB 95.3 95.1 105.5 100.4 105.9 100.5 115.5 dB dB dB dB dB dB dB '01/11 ASAHI KASEI [AKD4584] [ADC Plot : fs=44.1kHz] AKM AK4584 ADC THD+N vs. Input Level VDD=5.0V, fs=44.1kHz, fin=1kHz -80 -82 -84 -86 -88 -90 -92 d B F S -94 -96 -98 -100 -102 -104 -106 -108 -110 -120 -110 -100 -90 -80 -70 -60 dBr Color Blue Line Style Solid Thick 3 D a ta D S P Anlr.THD+N Am p l A Axis L e ft l a s t.a t2c -50 -40 -30 -20 -10 Figure 1. THD+N vs. Input Level AKM AK4584 ADC THD+N vs. Input Frequency VDD=5.0V, fs=44.1kHz, Input=-0.5dBr -80 -82 -84 -86 -88 -90 -92 d B F S -94 -96 -98 -100 -102 -104 -106 -108 -110 20 50 100 200 500 Hz Color Blue Line Style Solid Thick 3 D a ta D S P Anlr.THD+N Am p l A Axis L e ft l a s t.a t2c 1k 2k 5k 10k 20k Figure 2. THD+N vs. Input Frequency '01/11 ASAHI KASEI [AKD4584] AKM AK4584 ADC Linearity VDD=5.0V, fs=44.1kHz, fin=1kHz +0 -10 -20 -30 -40 d B F S -50 -60 -70 -80 -90 -100 -110 -120 -120 -110 -100 -90 -80 -70 -60 dBr -50 -40 -30 -20 -10 +0 Color Blue Line Style Solid Thick 3 D a ta D S P Anlr.Bandpass A Axis L e ft l a s t.a t2c Figure 3. Linearity AKM AK4584 ADC F requency Response VDD=5.0V, fs=44.1kHz, Input=-0.5dBr +0 -0.1 -0.2 -0.3 -0.4 d B F S -0.5 -0.6 -0.7 -0.8 -0.9 -1 20 50 100 200 500 Hz 1k 2k 5k 10k 20k Color Blue Line Style Solid Thick 3 D a ta D S P Anlr.Am pl A Axis L e ft l a s t.a t2c Figure 4. Frequency Response '01/11 ASAHI KASEI [AKD4584] AKM A K 4 5 8 4 A D C C rosstalk VDD=5.0V, fs=44.1kHz, Input=-0.5dBr -80 -85 -90 -95 -100 -105 d B -110 -115 -120 -125 -130 -135 -140 20 50 100 200 500 Hz 1k 2k 5k 10k 20k Color Blue Blue Line Style Solid Solid Thick 3 3 D a ta D S P Anlr.Crosstalk B D S P Anlr.Crosstalk A Axis L e ft L e ft l a s t.a t2c Figure 5. Crosstalk AKM A K 4 5 8 4 A D C F F T P lot VDD=5.0V, fs=44.1kHz, fin=1kHz, Input=-0.5dBr +0 -20 -40 -60 d B F S -80 -100 -120 -140 -160 -180 20 50 100 200 500 Hz 1k 2k 5k 10k 20k Color Blue Line Style Solid Thick 3 D a ta Fft.Ch.1 Am p l Axis L e ft l a s t.a t2c Figure 6. FFT Plot '01/11 ASAHI KASEI [AKD4584] AKM A K 4 5 8 4 A D C F F T P lot VDD=5.0V, fs=44.1kHz, fin=1kHz, Input=-60dBr +0 -20 -40 -60 d B F S -80 -100 -120 -140 -160 -180 20 50 100 200 500 Hz 1k 2k 5k 10k 20k Color Blue Line Style Solid Thick 3 D a ta Fft.Ch.1 Am p l Axis L e ft l a s t.a t2c Figure 7. FFT Plot AKM A K 4 5 8 4 A D C F F T P lot VDD=5.0V, fs=44.1kHz, fin=None +0 -20 -40 -60 d B F S -80 -100 -120 -140 -160 -180 20 50 100 200 500 Hz 1k 2k 5k 10k 20k Color Blue Line Style Solid Thick 3 D a ta Fft.Ch.1 Am p l Axis L e ft l a s t.a t2c Figure 8. FFT Plot '01/11 ASAHI KASEI [AKD4584] [ADC Plot : fs=96kHz] AKM AK4584 ADC THD+N vs. Input Level VDD=5.0V, fs=96kHz, fin=1kHz -80 -82 -84 -86 -88 -90 -92 d B F S -94 -96 -98 -100 -102 -104 -106 -108 -110 -120 -110 -100 -90 -80 -70 -60 dBr Color Blue Line Style Solid Thick 3 D a ta D S P Anlr.THD+N Am p l A Axis L e ft l a s t.a t2c -50 -40 -30 -20 -10 Figure 9. THD+N vs. Input Level AKM AK4584 ADC THD+N vs. Input Frequency VDD=5.0V, fs=96kHz, Input=-0.5dBr -80 -82 -84 -86 -88 -90 -92 d B F S -94 -96 -98 -100 -102 -104 -106 -108 -110 20 50 100 200 500 Hz Color Blue Line Style Solid Thick 3 D a ta D S P Anlr.THD+N Am p l A Axis L e ft l a s t.a t2c 1k 2k 5k 10k 20k 40k Figure 10. THD+N vs. Input Frequency '01/11 ASAHI KASEI [AKD4584] AKM AK4584 ADC Linearity VDD=5.0V, fs=96kHz, fin=1kHz +0 -10 -20 -30 -40 d B F S -50 -60 -70 -80 -90 -100 -110 -120 -120 -110 -100 -90 -80 -70 -60 dBr -50 -40 -30 -20 -10 +0 Color Blue Line Style Solid Thick 3 D a ta D S P Anlr.Bandpass A Axis L e ft l a s t.a t2c Figure 11. Linearity AKM AK4584 ADC F requency Response VDD=5.0V, fs=96kHz, Input=-0.5dBr +0 -0.1 -0.2 -0.3 -0.4 d B F S -0.5 -0.6 -0.7 -0.8 -0.9 -1 20 50 100 200 500 Hz 1k 2k 5k 10k 20k 40k Color Blue Line Style Solid Thick 3 D a ta D S P Anlr.Am pl A Axis L e ft l a s t.a t2c Figure 12. Frequency Response '01/11 ASAHI KASEI [AKD4584] AKM A K 4 5 8 4 A D C C rosstalk VDD=5.0V, fs=96kHz, Input=-0.5dBr -80 -85 -90 -95 -100 -105 d B -110 -115 -120 -125 -130 -135 -140 20 50 100 200 500 Hz 1k 2k 5k 10k 20k 40k Color Blue Blue Line Style Solid Solid Thick 3 3 D a ta D S P Anlr.Crosstalk B D S P Anlr.Crosstalk A Axis L e ft L e ft l a s t.a t2c Figure 13. Crosstalk AKM A K 4 5 8 4 A D C F F T P lot VDD=5.0V, fs=96kHz, fin=1kHz, Input=-0.5dBr +0 -20 -40 -60 d B F S -80 -100 -120 -140 -160 -180 20 50 100 200 500 Hz 1k 2k 5k 10k 20k 40k Color Blue Line Style Solid Thick 3 D a ta Fft.Ch.1 Am p l Axis L e ft l a s t.a t2c Figure 14. FFT Plot '01/11 ASAHI KASEI [AKD4584] AKM A K 4 5 8 4 A D C F F T P lot VDD=5.0V, fs=96kHz, fin=1kHz, Input=-60dBr +0 -20 -40 -60 d B F S -80 -100 -120 -140 -160 -180 20 50 100 200 500 Hz 1k 2k 5k 10k 20k 40k Color Blue Line Style Solid Thick 3 D a ta Fft.Ch.1 Am p l Axis L e ft l a s t.a t2c Figure 15. FFT Plot AKM A K 4 5 8 4 A D C F F T P lot VDD=5.0V, fs=96kHz, fin=None +0 -20 -40 -60 d B F S -80 -100 -120 -140 -160 -180 20 50 100 200 500 Hz 1k 2k 5k 10k 20k 40k Color Blue Line Style Solid Thick 3 D a ta Fft.Ch.1 Am p l Axis L e ft l a s t.a t2c Figure 16. FFT Plot '01/11 ASAHI KASEI [AKD4584] [DAC Plot : fs=44.1kHz] AKM AK4584 DAC THD+N vs. Input Level VDD=5.0V, fs=44.1kHz, fin=1kHz -80 -82 -84 -86 -88 -90 d B r A -92 -94 -96 -98 -100 -102 -104 -106 -108 -110 -120 -110 -100 -90 -80 -70 -60 dBFS Color Blue Line Style Solid Thick 3 D a ta Anlr.THD+N Am p l Axis L e ft l a s t.a t2c -50 -40 -30 -20 -10 +0 Figure 1. THD+N vs. Input Level AKM AK4584 DAC THD+N vs. Input Frequency VDD=5.0V, fs=44.1kHz, Input=0dBFS -80 -82 -84 -86 -88 -90 d B r A -92 -94 -96 -98 -100 -102 -104 -106 -108 -110 20 50 100 200 500 Hz Color Blue Line Style Solid Thick 3 D a ta Anlr.THD+N Am p l Axis L e ft l a s t.a t2c 1k 2k 5k 10k 20k Figure 2. THD+N vs. Input Frequency '01/11 ASAHI KASEI [AKD4584] AKM AK4584 DAC Linearity VDD=5.0V, fs=44.1kHz, fin=1kHz +0 -10 -20 -30 -40 d B r A -50 -60 -70 -80 -90 -100 -110 -120 -120 -110 -100 -90 -80 -70 -60 dBFS -50 -40 -30 -20 -10 +0 Color Blue Line Style Solid Thick 3 D a ta Anlr.Bandpass Axis L e ft l a s t.a t2c Figure 3. Linearity AKM AK4584 DAC F requency Response VDD=5.0V, fs=44.1kHz, Input=0dBFS +1 +0.8 +0.6 +0.4 +0.2 +0 -0.2 -0.4 -0.6 -0.8 -1 2k 4k 6k 8k 10k Hz Color Blue Line Style Solid Thick 3 D a ta Anlr.Am pl Axis L e ft l a s t.a t2c d B r A 12k 14k 16k 18k 20k Figure 4. Frequency Response '01/11 ASAHI KASEI [AKD4584] AKM A K 4 5 8 4 D A C C rosstalk VDD=5.0V, fs=44.1kHz, Input=0dBFS -100 -102.5 -105 -107.5 -110 -112.5 d B -115 -117.5 -120 -122.5 -125 -127.5 -130 20 50 100 200 500 Hz 1k 2k 5k 10k 20k Color Blue Blue Line Style Solid Solid Thick 3 3 D a ta Anlr.Crosstalk Anlr.Crosstalk Axis L e ft L e ft l a s t.a t2c Figure 5. Crosstalk AKM A K 4 5 8 4 D A C F F T P lot VDD=5.0V, fs=44.1kHz, fin=1kHz, Input=0dBFS +0 -20 -40 -60 d B r A -120 -80 -100 -140 -160 -180 20 50 100 200 500 Hz 1k 2k 5k 10k 20k Color Blue Line Style Solid Thick 3 D a ta Fft.Ch.1 Am p l Axis L e ft l a s t.a t2c Figure 6. FFT Plot '01/11 ASAHI KASEI [AKD4584] AKM A K 4 5 8 4 D A C F F T P lot VDD=5.0V, fs=44.1kHz, fin=1kHz, Input=-60dBFS +0 -20 -40 -60 d B r A -120 -80 -100 -140 -160 -180 20 50 100 200 500 Hz 1k 2k 5k 10k 20k Color Blue Line Style Solid Thick 3 D a ta Fft.Ch.1 Am p l Axis L e ft l a s t.a t2c Figure 7. FFT Plot AKM A K 4 5 8 4 D A C F F T P lot VDD=5.0V, fs=44.1kHz, fin=None +0 -20 -40 -60 d B r A -120 -80 -100 -140 -160 -180 20 50 100 200 500 Hz 1k 2k 5k 10k 20k Color Blue Line Style Solid Thick 3 D a ta Fft.Ch.1 Am p l Axis L e ft l a s t.a t2c Figure 8. FFT Plot '01/11 ASAHI KASEI [AKD4584] [DAC Plot : fs=96kHz] AKM AK4584 DAC THD+N vs. Input Level VDD=5.0V, fs=96kHz, fin=1kHz -80 -82 -84 -86 -88 -90 d B r A -92 -94 -96 -98 -100 -102 -104 -106 -108 -110 -120 -110 -100 -90 -80 -70 -60 dBFS Color Blue Line Style Solid Thick 3 D a ta Anlr.THD+N Am p l Axis L e ft l a s t.a t2c -50 -40 -30 -20 -10 +0 Figure 9. THD+N vs. Input Level AKM AK4584 DAC THD+N vs. Input Frequency VDD=5.0V, fs=96kHz, Input=0dBFS -80 -82 -84 -86 -88 -90 d B r A -92 -94 -96 -98 -100 -102 -104 -106 -108 -110 20 50 100 200 500 Hz Color Blue Line Style Solid Thick 3 D a ta Anlr.THD+N Am p l Axis L e ft l a s t.a t2c 1k 2k 5k 10k 20k 40k Figure 10. THD+N vs. Input Frequency '01/11 ASAHI KASEI [AKD4584] AKM AK4584 DAC F requency Response VDD=5.0V, fs=96kHz, fin=1kHz +0 -10 -20 -30 -40 d B r A -50 -60 -70 -80 -90 -100 -110 -120 -120 -110 -100 -90 -80 -70 -60 dBFS -50 -40 -30 -20 -10 +0 Color Blue Line Style Solid Thick 3 D a ta Anlr.Bandpass Axis L e ft l a s t.a t2c Figure 11. Linearity AKM AK4584 DAC F requency Response VDD=5.0V, fs=96kHz, Input=0dBFS +1 +0.8 +0.6 +0.4 +0.2 +0 -0.2 -0.4 -0.6 -0.8 -1 2.5k 5k 7.5k 10k 12.5k 15k 17.5k 20k Hz Color Blue Line Style Solid Thick 3 D a ta Anlr.Am pl Axis L e ft l a s t.a t2c d B r A 22.5k 25k 27.5k 30k 32.5k 35k 37.5k 40k Figure 12. Frequency Response '01/11 ASAHI KASEI [AKD4584] AKM A K 4 5 8 4 D A C C rosstalk VDD=5.0V, fs=96kHz, Input=0dBFS -90 -95 -100 -105 d B -110 -115 -120 -125 -130 20 50 100 200 500 Hz 1k 2k 5k 10k 20k 40k Color Blue Blue Line Style Solid Solid Thick 3 3 D a ta Anlr.Crosstalk Anlr.Crosstalk Axis L e ft L e ft l a s t.a t2c Figure 13. Crosstalk AKM A K 4 5 8 4 D A C F F T P lot VDD=5.0V, fs=96kHz, fin=1kHz, Input=0dBFS +0 -20 -40 -60 d B r A -120 -80 -100 -140 -160 -180 20 50 100 200 500 Hz 1k 2k 5k 10k 20k 40k Color Blue Line Style Solid Thick 3 D a ta Fft.Ch.1 Am p l Axis L e ft l a s t.a t2c Figure 14. FFT Plot '01/11 ASAHI KASEI [AKD4584] AKM A K 4 5 8 4 D A C F F T P lot VDD=5.0V, fs=96kHz, fin=1kHz, Input=-60dBFS +0 -20 -40 -60 d B r A -120 -80 -100 -140 -160 -180 20 50 100 200 500 Hz 1k 2k 5k 10k 20k 40k Color Blue Line Style Solid Thick 3 D a ta Fft.Ch.1 Am p l Axis L e ft l a s t.a t2c Figure 15. FFT Plot AKM A K 4 5 8 4 D A C F F T P lot VDD=5.0V, fs=96kHz, fin=None +0 -20 -40 -60 d B r A -120 -80 -100 -140 -160 -180 20 50 100 200 500 Hz 1k 2k 5k 10k 20k 40k Color Blue Line Style Solid Thick 3 D a ta Fft.Ch.1 Am p l Axis L e ft l a s t.a t2c Figure 16. FFT Plot '01/11 ASAHI KASEI [AKD4584] AKM A K 4 5 8 4 D A C F F T P lot VDD=5.0V, fs=44.1kHz, fin=None +0 -20 -40 -60 d B r A -120 -80 -100 -140 -160 -180 20 50 100 200 500 Hz 1k 2k 5k 10k 20k 40k Color Blue Line Style Solid Thick 3 D a ta Fft.Ch.1 Am p l Axis L e ft l a s t.a t2c Figure 17. Outband Noise (fs=44.1kHz) AKM A K 4 5 8 4 D A C F F T P lot VDD=5.0V, fs=96kHz, fin=None +0 -20 -40 -60 d B r A -120 -80 -100 -140 -160 -180 20 50 100 200 500 1k Hz 2k 5k 10k 20k 50k 80k Color Blue Line Style Solid Thick 3 D a ta Fft.Ch.1 Am p l Axis L e ft l a s t.a t2c Figure 18. Outband Noise (fs=96kHz) '01/11 ASAHI KASEI [AKD4584] IMPORTANT NOTICE * These products and their specifications are subject to change without notice. Before considering any use or application, consult the Asahi Kasei Microsystems Co., Ltd. (AKM) sales office or authorized distributor concerning their current status. * AKM assumes no liability for infringement of any patent, intellectual property, or other right in the application or use of any information contained herein. * Any export of these products, or devices or systems containing them, may require an export license or other official approval under the law and regulations of the country of export pertaining to customs and tariffs, currency exchange, or strategic materials. * AKM products are neither intended nor authorized for use as critical components in any safety, life support, or other hazard related device or system, and AKM assumes no responsibility relating to any such use, except with the express written consent of the Representative Director of AKM. As used here: (a) A hazard related device or system is one designed or intended for life support or maintenance of safety or for applications in medicine, aerospace, nuclear energy, or other fields, in which its failure to function or perform may reasonably be expected to result in loss of life or in significant injury or damage to person or property. (b) A critical component is one whose failure to function or perform may reasonably be expected to result, whether directly or indirectly, in the loss of the safety or effectiveness of the device or system containing it, and which must therefore meet very high standards of performance and reliability. * It is the responsibility of the buyer or distributor of an AKM product who distributes, disposes of, or otherwise places the product with a third party to notify that party in advance of the above content and conditions, and the buyer or distributor agrees to assume any and all responsibility and liability for and hold AKM harmless from any and all claims arising from the use of said product in the absence of such notification. '01/11 A B C D E R1 5.1 RX1 RX2 1 2 AVDD R2 5.1 DVDD RIN LIN L1 (short) 1 VCC E + C1 47u 2 E CN1 44 43 42 41 40 39 38 37 36 35 34 2 1 D1 HSU119 R3 10k U1A 1 2 3 4 PDN R4 13k 2 1 1 + C3 10u C5 0.1u U1B 74HC14 C2 10u + 2 L 3 1 H SW1 PDN 2 74HC14 C6 0.1u 44 43 42 41 C4 0.1u 40 39 38 37 36 35 RIN LIN PVDD AVDD PVSS D TEST1 AVSS VREF RX2 RX1 CN2 U2 34 R CN3 D 1 1 TEST2 ROUT 33 33 ROUT RX3 2 2 RX3 LOUT 32 1 32 LOUT 3 3 NC VCOM 31 C7 0.1u 2 + C8 2.2u 31 RX4 4 4 RX4 DZF 30 30 DZF R5 100 PDN VCC 1 C 5 5 PDN LED1 INT0 2 R6 1k 2 U3A 74HCT04 1 6 6 INT0 LED2 INT1 1 2 R8 1k 4 U3B 74HCT04 3 7 7 INT1 AK4584 M/S 29 29 M/S R7 100 U4 4584_LRCK LRCK 28 28 C 4584_BICK B1 B2 B3 B4 B5 B6 B7 B8 18 17 16 15 14 13 12 11 6 5 4 3 2 1 BICK 27 27 6 5 4 3 2 1 CDTI 8 8 CDTI SDTI 26 26 4584_SDTI 2 3 4 5 6 7 8 9 19 1 CDTO CCLK 9 9 CDTO SDTO 25 25 4584_SDTO M2 JP1 MCKO RP1 47k MCKO A1 A2 A3 A4 A5 A6 A7 A8 G DIR 10 10 CCLK MCKO2 24 24 74HCT245 RP2 47k XTI/MCKI M1 XTALE TEST3 B DMCK DVDD DVSS TVDD XTO TX1 TX2 TX3 M/S CSN 11 11 CSN MCKO1 23 23 B 12 13 14 15 16 17 18 19 20 21 1 2 1 2 22 C9 0.1u 1 C10 0.1u 2 1 X1 11.2896MHz C11 C15 JP3 XTI 19 20 21 22 TVDD TVDD L2 (short) 12 13 14 15 16 17 A CN4 18 2 C12 10u C13 10u + C14 47u DGND JP2 GND + 1 AGND + A TEST3 XTALE DMCK Title Size Document Number DVDD TVDD MCKI AKD4584 AK4584 Sheet E TX1 TX2 TX3 Rev A3 Date: D A 1 of Tuesday, May 22, 2001 4 A B C A B C D E VCC 1 3 T1 TO92 VOUT GND VIN 2 VCC + C18 0.1u 6 5 6 5 GND VCC GND OUT 4 3 2 1 2 E PORT1 1 L3 47u C17 0.1u C16 47u E DIR C19 0.1u + C20 10u R9 470 C21 10u VD + C22 0.1u C23 0.47u R10 18k 48 47 46 45 44 43 42 41 40 39 38 VCOM D TEST1 AVDD AVSS INT1 NC RX3 RX2 RX1 NC RX0 R 37 U5 VCC SW2 1 2 3 4 5 6 7 8 9 10 20 19 18 17 16 15 14 13 12 11 1 IPS0 D U3C 74HCT04 INT0 36 5 6 R11 1k 2 LED3 ERF 1 VCC DIF0 DIF1 DIF2 OCKS0 OCKS1 CM0 TEST3 XTALE DMCK M/S 2 NC OCKS0 35 OCKS0 3 DIF0 OCKS1 34 OCKS1 VCC MODE RP3 1 2 3 4 5 6 7 8 9 10 11 4 TEST2 CM1 33 5 DIF1 CM0 32 CM0 6 5 8 9 R12 10k 2 1 D2 HSU119 C C OCKS0 OCKS1 CM0 TEST3 XTALE DMCK M/S 6 NC 1 7 DIF2 AK4114 PDN 31 3 XTI 30 9 P/SN DAUX 28 2 8 IPS1 XTO 29 R13 51 DAUX 10 XTL0 MCKO2 27 11 B XTL1 BICK 26 DIR_BICK B 12 VIN MCKO1 COUT UOUT DVDD BOUT VOUT DVSS DVSS TVDD LRCK TX0 TX1 SDTO 25 DIR_SDTI 13 14 15 16 17 18 19 20 21 22 23 C27 0.1u + C28 0.1u + 24 DIR_LRCK DIR_MCLK VCC VCC C29 10u VD C30 10u PORT2 A 5 6 5 6 IN VCC IF GND 4 3 2 1 2 47k X2 11.2896MHz C26 5p C25 0.1u 1 C24 5p U1C 74HC14 U1D 74HC14 L H SW3 DIR A DIT R14 1k C31 0.1u Title Size Document Number AKD4584 DIR Sheet E Rev A3 Date: A B C D A 2 of Tuesday, May 22, 2001 4 A B C D E E E RIN ROUT C33 22u R17 10k R16 560 D + J1 RIN C32 10u + R15 220 J2 ROUT D LIN LOUT C35 22u R20 10k R19 560 C + J3 LIN C34 10u + R21 1k 2 2 R18 220 J4 LOUT AVDD C LED4 1 DZF 3 1 TR1 RN1202 (10k,10k) DZF B B VCC 8 U3D 9 11 U3E 10 4 U6A 74AC74 Q 5 12 74HCT04 U3F 13 11 74HCT04 U1E 10 D CLK PR 2 3 74HCT04 CL Q 6 12 74HC14 U1F 13 1 A 74HC14 A Title Size Document Number AKD4584 Input/Output Sheet E Rev A3 Date: A B C D A 3 of Tuesday, May 22, 2001 4 A B C D E VDD EXT_MCLK R22 E 10k 10k 10k R27 R30 PORT3 1 2 3 4 5 10 9 8 7 6 R23 R25 R28 470 470 470 U7 2 3 4 5 6 7 8 9 1 19 A1 A2 A3 A4 A5 A6 A7 A8 G1 G2 Y1 Y2 Y3 Y4 Y5 Y6 Y7 Y8 18 17 16 15 14 13 12 11 R24 R26 R29 100 100 100 CSN CCLK CDTI VCC JP4 MCLK 10 D CLK CL Q 8 PR 12 11 Q 9 E 10 CSN CCLK CDTI CDTO R31 51 U6B 74AC74 x1 x2 U8 CLK RST 11 Q1 Q2 Q3 Q4 Q5 Q6 Q7 Q8 Q9 Q10 Q11 Q12 9 7 6 5 3 2 4 13 12 14 15 1 J5 EXT x4 x2 x1 JP5 BCFS EXT_BICK CTRL 74HCT541 13 JP6 EXT x4 x1 JP7 LRFS EXT_LRCK CDTO 74HC4040 D VDD PORT4 5 6 5 6 IN VCC IF GND 4 3 2 1 D TX JP8 TX JP9 DIT R32 1k C36 0.1u TX1 TX2 TX3 TX1 TX2 TX3 SDTI R34 51 4584_SDTO MCKO U9 2 3 4 5 6 7 8 9 1 19 A1 A2 A3 A4 A5 A6 A7 A8 G1 G2 Y1 Y2 Y3 Y4 Y5 Y6 Y7 Y8 18 17 16 15 14 13 12 11 TX1-3 R33 51 4584_SDTI DAUX 4584_MCKO MCKI R35 51 J6 TX T2 DA-02F R37 330 R36 51 BNC C R38 100 DIR_MCLK DIR JP10 74HCT541 C EXT_MCLK VDD 2 EXT MCLK 4584_MCKO ADC PORT5 6 5 6 5 GND VCC GND OUT 4 3 2 1 1 L4 47u DIR_BICK C37 0.1u R39 + C38 10u RX1 RX JP12 RX1 RX2 RX3 RX4 RX2 4584_BICK EXT_BICK DIR DIR JP11 BICK DIR EXT B 470 JP13 RX C39 R40 75 0.1u BNC DIR_LRCK 4584_LRCK JP14 LRCK B J7 RX RX1-4 RX3 RX4 EXT_LRCK EXT MCLK BICK LRCK SDTI VCC PORT6 1 2 3 4 5 10 9 8 7 6 GND GND SDTI DAUX VDD for 74HCT541 A ADC VCC JP15 SDTI ROM R41 VCC for 74HC14, 74HCT04, 74HCT245 74AC74, 74HC4040, 74HCT541 DIR_SDTI C41 0.1u C42 0.1u C43 0.1u C44 0.1u C45 0.1u C46 0.1u DIR 10k A C48 47u + C47 0.1u C40 47u + Title Size Document Number AKD4584 LOGIC Sheet E Rev A3 Date: A B C D A 4 of Tuesday, May 22, 2001 4 |
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