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 [AKD4382A-SB]
AKD4382A-SB
AK4382A Evaluation board Rev.0
General Description The AKD4382A-SB is an evaluation board for AK4382A, which is 192kHz sampling 24Bit DAC. The AKD4382A-SB includes a LPF which can add differential analog outputs from the AK4382A and also has a digital interface. Therefore, it is easy to evaluate the AK4382A. Ordering Guide AKD4382A-SB --- Evaluation board for AK4382A Function On-board Analog output buffer circuit On-board digital audio interface. (AK4113)
+15V
AGND -15V
+3.3V Reg Reg
+5V
DIR COAX In AK4113 Opt In
PORT1 EXT PORT2 Control Data
Lch 2nd Order AK4382A LPF Rch
Figure 1. Block diagram
* Circuit diagram are attached at the end of this manual. COAX is recommended for an evaluation of the Sound quality.

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Operation sequence
1) Set up the power supply lines. (See "Other jumpers set-up".) Name +15V -15V AGND Color Red Blue Black Voltage +12+15V -12-15V 0V Comments For regulator and op-amps. For op-amps. GND Attention This jack should be always connected to power supply. This jack should be always connected to power supply. This jack should be always connected to power supply.
Table 1. Set up of power supply lines
Each supply line should be distributed from the power supply unit. 2) Set-up the jumper pins 3) Set-up the DIP switches. (See the followings.) 4) Power on The AK4382A should be reset once by bringing SW1 (PDN) "L" upon power-up.

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Evaluation mode
1. DIR (COAX) (default) It is possible to evaluate the AK4382A by using CD disk. The DIR generates MCLK, BICK, LRCK and SDATA from the received data through BNC connector (J1). Setting of jumper is shown below. COAX is recommended for an evaluation of the Sound quality.
JP4
OPT COAX RX (Default)
Figure 2. Jumper setting, when using DIR 2. DIR (Optical Link) It is possible to evaluate the AK4382A by using CD disk. The DIR generates MCLK, BICK, LRCK and SDATA from the received data through optical connector (PORT3: TORX176). Setting of jumper is shown below.
JP4
OPT COAX RX
Figure 3. Jumper setting, when using DIR
3. All clocks are fed through the PORT1.
R13, R15, R17, R18 R1, R2, R3, R8 : open : 100 or short (0)
DIP Switch setting
[SW2]: AK4113 setting No. 1 2 Pin OCKS1 OCKS0 OFF ON Default ON OFF AK4113 Master Clock setting Refer to Table4 Table 2. SW2 setting The frequency of the master clock output is set by OCKS0 and OCKS1 as shown in Table 4. OCKS1 0 1 1 OCKS0 0 0 1 MCLK Frequency 256fs @fs=88.2/96kHz 512fs @32/44.1/48kHz 128fs @176.4/192kHz Table 3. MCLK Clock
Default

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SW1 setting
[SW1](PDN): Reset of AK4382A. Select "H" during operation.
External Analog Filter Circuit
The 2nd order LPF (fc=93.2kHz, Q=0.712) which adds differential outputs of the AK4382A is implemented on the board. When the further attenuation of the out-of-band noise is needed, some additional LPF is required. Analog signal is output through BNC connectors on the board. And the output level of the AK4382A is 5.5Vpp@5V.
LOUT(ROUT-)
R2 R1 R3 C1 R1 R3 C2
+15V
+
OP275
10u
220
LOUT+ (ROUT+)
R2
C2
10k
-15V
Figure 4. On-board analog filter R1 4.7k R2 R3 C1 4.7k 200 3900p Table 4. The value of R, C on this board C2 470p
fin 20kHz 40kHz Frequency Response -0.003dB -0.122dB Table 5. Frequency Response of LPF
80kHz -1.821dB
Amplitude = 20 log K= fc= 0= Q= R2 , R1 0 , 2 1 , 2C1C2R2R3 2C10 . 1+1+1 R1 R2 R 3
K [1-(f/fc) ] +[(1/Q)(f/fc)] 2
22
[dB],

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Control Software Manual Set-up of evaluation board and control software
1. Set up the AKD4382A-SB according to previous term. 2. Connect IBM-AT compatible PC with AKD4382A-SB by 10-line type flat cable (packed with AKD4382A-SB). Take care of the direction of 10pin header. (Please install the driver in the CD-ROM when this control software is used on Windows 2000/XP. Please refer "Installation Manual of Control Software Driver by AKM device control software". In case of Windows95/98/ME, this installation is not needed. This control software does not operate on Windows NT.) 3. Insert the CD-ROM labeled "AKD4382A-SB Evaluation Kit" into the CD-ROM drive. 4. Access the CD-ROM drive and double-click the icon of "AKD4382A-SB.exe" to set up the control program. 5. Then please evaluate according to the follows.
Operation flow
Keep the following flow. 1. Set up the control program according to explanation above. 2. Click "Port Reset" button.
Explanation of each buttons
1. [Port Reset] : 2. [Write default] : 3. [All Write] : 4. [Function1] : 5. [Function2] : 6. [Function3] : 7. [Function4] : 8. [Function5]: 9. [SAVE] : 10. [OPEN] : 11. [Write] : Set up the USB interface board (AKDUSBIF-A) in case using the board. Initialize the register of AK4382A. Write all registers that is currently displayed. Dialog to write data by keyboard operation. Dialog to write data by keyboard operation. The sequence of register setting can be set and executed. The sequence that is created on [Function3] can be assigned to buttons and executed. The register setting that is created by [SAVE] function on main window can be assigned to buttons and executed. Save the current register setting. Write the saved values to all register. Dialog to write data by mouse operation.
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.

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Explanation of each dialog 1. [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". When writing the input data to AK4382A, click [OK] button. If not, click [Cancel] button.
2. [Function1 Dialog] : Dialog to write data by keyboard operation
Address Box: Data Box: Input registers address in 2 figures of hexadecimal. Input registers data in 2 figures of hexadecimal.
When writing the input data to AK4382A, click [OK] button. If not, click [Cancel] button.
3. [Function2 Dialog] : Dialog to evaluate ATT
Address Box: Input registers address in 2 figures of hexadecimal. Start Data Box: Input starts data in 2 figures of hexadecimal. End Data Box: Input end data in 2 figures of hexadecimal. Interval Box: Data is written to AK4642 by this interval. Step Box: Data changes by this step. Mode Select Box: With checking 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 Without checking 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 When writing the input data to AK4382A, click [OK] button. If not, click [Cancel] button.

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4. [Save] and [Open] 4-1. [Save]
Save the current register setting data. The extension of file name is "akr".
(Operation flow) (1) Click [Save] Button. (2) Set the file name and push [Save] Button. The extension of file name is "akr". 4-2. [Open]
The register setting data saved by [Save] is written to AK4382A. The file type is the same as [Save].
(Operation flow) (1) Click [Open] Button. (2) Select the file (*.akr) and Click [Open] Button.

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5. [Function3 Dialog]
The sequence of register setting can be set and executed. (1) Click [F3] Button. (2) Set the control sequence. Set the address, Data and Interval time. Set "-1" to the address of the step where the sequence should be paused. (3) Click [Start] button. Then this sequence is executed. The sequence is paused at the step of Interval="-1". Click [START] button, the sequence restarts from the paused step. This sequence can be saved and opened by [Save] and [Open] button on the Function3 window. The extension of file name is "aks".
Figure 5. Window of [F3]

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6. [Function4 Dialog]
The sequence that is created on [Function3] can be assigned to buttons and executed. When [F4] button is clicked, the
window as shown in Figure 6 opens.
Figure 6. [F4] window

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6-1. [OPEN] buttons on left side and [START] buttons
(1) Click [OPEN] button and select the sequence file (*.aks). The sequence file name is displayed as shown in Figure 7.
Figure 7. [F4] window (2) (2) Click [START] button, then the sequence is executed.
6-2. [SAVE] and [OPEN] buttons on right side
[SAVE] : The sequence file names can assign be saved. The file name is *.ak4. [OPEN] : The sequence file names assign that are saved in *.ak4 are loaded.
6-3. Note
(1) This function doesn't support the pause function of sequence function. (2) All files need to be in same folder used by [SAVE] and [OPEN] function on right side. (3) When the sequence is changed in [Function3], the file should be loaded again in order to reflect the change.

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7. [Function5 Dialog]
The register setting that is created by [SAVE] function on main window can be assigned to buttons and executed. When [F5] button is clicked, the following window as shown in Figure 8opens.
Figure 8. [F5] window
7-1. [OPEN] buttons on left side and [WRITE] button (1) Click [OPEN] button and select the register setting file (*.akr).
(2) Click [WRITE] button, then the register setting is executed.
7-2. [SAVE] and [OPEN] buttons on right side
[SAVE] : The register setting file names assign can be saved. The file name is *.ak5. [OPEN] : The register setting file names assign that are saved in *.ak5 are loaded.
7-3. Note
(1) All files need to be in same folder used by [SAVE] and [OPEN] function on right side. (2) When the register setting is changed by [Save] Button in main window, the file should be loaded again in order to reflect the change.

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Measurement Results
[Measurement condition] * Measurement unit * MCLK * BICK * fs * Bit * Power Supply * Interface * Temperature fs=44.1kHz Parameter S/(N+D) DR S/N fs=96kHz Parameter S/(N+D) DR S/N fs=192kHz Parameter S/(N+D) DR S/N : Audio Precision System two Cascade (AP2) : 512fs (44.1kHz), 256fs (96kHz), 128fs (192kHz) : 64fs : 44.1kHz, 96kHz, 192kHz : 24bit : VDD=5V : Internal DIR (44.1kHz, 96kHz, 192kHz) : Room
Input signal 1kHz, 0dB 1kHz, -60dB "0" data
Measurement filter 20kLPF 22kLPF, A-weighted 22kLPF, A-weighted
Lch 93.5 dB 112.5 dB 112.5 dB
Rch 94.1 dB 112.5 dB 112.4 dB
Input signal 1kHz, 0dB 1kHz, -60dB "0" data
Measurement filter 40kLPF 40kLPF 22kLPF, A-weighted 40kLPF 22kLPF, A-weighted
Lch 92.1 dB 105.0 dB 112.6 dB 105.1 dB 112.9 dB
Rch 92.6 dB 104.9 dB 112.6 dB 105.0 dB 112.9 dB
Input signal 1kHz, 0dB 1kHz, -60dB "0" data
Measurement filter 40kLPF 40kLPF 22kLPF, A-weighted 40kLPF 22kLPF, A-weighted
Lch 91.0 dB 104.3 dB 111.6 dB 105.0 dB 112.7 dB
Rch 91.5 dB 104.3 dB 111.6 dB 104.9 dB 112.6 dB

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Plots
(fs=44.1kHz)
AKM
+0 -10 -20 -30 -40 -50 -60 -70 d B r A -80 -90 -100 -110 -120 -130 -140 -150 -160 -170 -180 20 50 100
AK4382A FFT VDD=5V, fs=44.1kHz, fin=1kHz, 0dBFS input
200
500 Hz
1k
2k
5k
10k
20k
Figure 9. FFT (fin=1kHz, 0dBFS input)
AKM
+0 -10 -20 -30 -40 -50 -60 -70 d B r A -80 -90 -100 -110 -120 -130 -140 -150 -160 -170 -180 20 50 100
AK4382A FFT VDD=5V, fs=44.1kHz, fin=1kHz, -60dBFS input
200
500 Hz
1k
2k
5k
10k
20k
Figure 10. FFT (fin=1kHz, -60dBFS input)

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(fs=44.1kHz)
AKM
+0 -10 -20 -30 -40 -50 -60 -70 d B r A -80 -90 -100 -110 -120 -130 -140 -150 -160 -170 -180 20 50 100
AK4382A FFT VDD=5V, fs=44.1kHz, No signal input
200
500 Hz
1k
2k
5k
10k
20k
Figure 11. FFT (Noise Floor)
AKM
+0 -10 -20 -30 -40 -50 -60 -70 d B r A -80 -90 -100 -110 -120 -130 -140 -150 -160 -170 -180 20 50 100 200
AK4382A FFT Out of band noise VDD=5V, fs=44.1kHz, No signal input
500
1k Hz
2k
5k
10k
20k
50k
100k
Figure 12. FFT (Out of band noise)

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(fs=44.1kHz)
AKM
-70
AK4382A THD+N vs. Input Level VDD=5V, fs=44.1kHz, fin=1kHz
-75
-80
-85
-90 d B r A -100
-95
-105
-110
-115
-120 -120
-110
-100
-90
-80
-70
-60 dBFS
-50
-40
-30
-20
-10
+0
Figure 13 . THD+N vs. Input level (fin=1kHz)
AKM
-70
AK4382A THD+N vs. Input Frequency VDD=5V, fs=44.1kHz, 0dBFS input
-75
-80
-85
-90 d B r A -100
-95
-105
-110
-115
-120 20
50
100
200
500 Hz
1k
2k
5k
10k
20k
Figure 14 . THD+N vs. Input Frequency (0dBFS input)

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(fs=44.1kHz)
AKM
+0 -10 -20 -30 -40 -50 -60 -70 -80 -90 -100 -110 -120 -120
AK4382A Linearity VDD=5V, fs=44.1kHz, fin=1kHz
d B r A
-110
-100
-90
-80
-70
-60 dBFS
-50
-40
-30
-20
-10
+0
Figure 15. Linearity (fin=1kHz)
AKM
+1 +0.9 +0.8 +0.7 +0.6 +0.5 +0.4 +0.3 +0.2 d B r A +0.1 +0 -0.1 -0.2 -0.3 -0.4 -0.5 -0.6 -0.7 -0.8 -0.9 -1 2k 4k 6k
AK4382A Frequency Response VDD=5V, fs=44.1kHz, 0dBFS input
8k
10k Hz
12k
14k
16k
18k
20k
Figure 16. Frequency Response (0dBFS input)

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(fs=44.1kHz)
AKM
-70 -75 -80 -85 -90 -95 -100 d B -105 -110 -115 -120 -125 -130 -135 -140 20
AK4382A Crosstalk (Red=Lch, Blue=Rch) VDD=5V, fs=44.1kHz, 0dBFS input
50
100
200
500 Hz
1k
2k
5k
10k
20k
Figure 17. Crosstalk (0dBFS input)

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[AKD4382A-SB]
(fs=96kHz)
AKM
+0 -10 -20 -30 -40 -50 -60 -70 d B r A -80 -90 -100 -110 -120 -130 -140 -150 -160 -170 -180 40 50 100 200
AK4382A FFT VDD=5V, fs=96kHz, fin=1kHz, 0dBFS input
500
1k Hz
2k
5k
10k
20k
40k
Figure 18. FFT (fin=1kHz, 0dBFS input)
AKM
+0 -10 -20 -30 -40 -50 -60 -70 d B r A -80 -90 -100 -110 -120 -130 -140 -150 -160 -170 -180 40 50 100 200
AK4382A FFT Notch Filter = ON VDD=5V, fs=96kHz, fin=1kHz, 0dBFS input
500
1k Hz
2k
5k
10k
20k
40k
Figure 19. FFT(fin=1kHz, 0dBFS input, Notch)

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(fs=96kHz)
AKM
+0 -10 -20 -30 -40 -50 -60 -70 d B r A -80 -90 -100 -110 -120 -130 -140 -150 -160 -170 -180 40 50 100 200
AK4382A FFT VDD=5V, fs=96kHz, fin=1kHz, -60dBFS input
500
1k Hz
2k
5k
10k
20k
40k
Figure 20. FFT (fin=1kHz, -60dBFS input)
AKM
+0 -10 -20 -30 -40 -50 -60 -70 d B r A -80 -90 -100 -110 -120 -130 -140 -150 -160 -170 -180 40 50 100 200
AK4382A FFT VDD=5V, fs=96kHz, No signal input
500
1k Hz
2k
5k
10k
20k
40k
Figure 21. FFT (Noise Floor)

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[AKD4382A-SB]
(fs=96kHz)
AKM
-70
AK4382A THD+N vs. Input Level VDD=5V, fs=96kHz, fin=1kHz
-75
-80
-85
-90 d B r A -100
-95
-105
-110
-115
-120 -120
-110
-100
-90
-80
-70
-60 dBFS
-50
-40
-30
-20
-10
+0
Figure 22. THD+N vs. Input level (fin=1kHz)
AKM
-70
AK4382A THD+N vs. Input Frequency VDD=5V, fs=96kHz, 0dBFS input
-75
-80
-85
-90 d B r A -100
-95
-105
-110
-115
-120 40
50
100
200
500
1k Hz
2k
5k
10k
20k
40k
Figure 23. THD+N vs. Input Frequency (0dBFS input)

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[AKD4382A-SB]
(fs=96kHz)
AKM
+0 -10 -20 -30 -40 -50 -60 -70 -80 -90 -100 -110 -120 -120
AK4382A Linearity VDD=5V, fs=96kHz, fin=1kHz
d B r A
-110
-100
-90
-80
-70
-60 dBFS
-50
-40
-30
-20
-10
+0
Figure 24. Linearity (fin=1kHz)
AKM
+1 +0.9 +0.8 +0.7 +0.6 +0.5 +0.4 +0.3 +0.2 d B r A +0.1 +0 -0.1 -0.2 -0.3 -0.4 -0.5 -0.6 -0.7 -0.8 -0.9 -1 2.5k 5k 7.5k 10k 12.5k
AK4382A Frequency Response VDD=5V, fs=96kHz, 0dBFS input
15k
17.5k
20k Hz
22.5k
25k
27.5k
30k
32.5k
35k
37.5k
40k
Figure 25. Frequency Response (0dBFS input)

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[AKD4382A-SB]
(fs=96kHz)
AKM
-70 -75 -80 -85 -90 -95 -100 d B -105 -110 -115 -120 -125 -130 -135 -140 40
AK4382A Crosstalk (Red=Lch, Blue=Rch) VDD=5V, fs=96kHz, 0dBFS input
50
100
200
500
1k Hz
2k
5k
10k
20k
40k
Figure 26. Crosstalk (0dBFS input)

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(fs=192kHz)
AKM
+0 -10 -20 -30 -40 -50 -60 -70 d B r A -80 -90 -100 -110 -120 -130 -140 -150 -160 -170 -180 90 200 500
AK4382A FFT VDD=5V, fs=192kHz, fin=1kHz, 0dBFS input
1k
2k Hz
5k
10k
20k
50k
80k
Figure 27. FFT (fin=1kHz, 0dBFS input)
AKM
+0 -10 -20 -30 -40 -50 -60 -70 d B r A -80 -90 -100 -110 -120 -130 -140 -150 -160 -170 -180 90 200 500
AK4382A FFT Notch Filter = ON VDD=5V, fs=192kHz, fin=1kHz, 0dBFS input
1k
2k Hz
5k
10k
20k
50k
80k
Figure 28. FFT(fin=1kHz, 0dBFS input, Notch)

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(fs=192kHz)
AKM
+0 -10 -20 -30 -40 -50 -60 -70 d B r A -80 -90 -100 -110 -120 -130 -140 -150 -160 -170 -180 90 200 500
AK4382A FFT VDD=5V, fs=192kHz, fin=1kHz, -60dBFS input
1k
2k Hz
5k
10k
20k
50k
80k
Figure 29. FFT (fin=1kHz, -60dBFS input)
AKM
+0 -10 -20 -30 -40 -50 -60 -70 d B r A -80 -90 -100 -110 -120 -130 -140 -150 -160 -170 -180 90 200 500
AK4382A FFT VDD=5V, fs=192kHz, No signal input
1k
2k Hz
5k
10k
20k
50k
80k
Figure 30. FFT (Noise Floor)

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[AKD4382A-SB]
(fs=192kHz)
AKM
-70
AK4382A THD+N vs. Input Level VDD=5V, fs=192kHz, fin=1kHz
-75
-80
-85
-90 d B r A -100
-95
-105
-110
-115
-120 -120
-110
-100
-90
-80
-70
-60 dBFS
-50
-40
-30
-20
-10
+0
Figure 31. THD+N vs. Input level (fin=1kHz)
AKM
-70
AK4382A THD+N vs. Input Frequency VDD=5V, fs=192kHz, 0dBFS input
-75
-80
-85
-90 d B r A -100
-95
-105
-110
-115
-120 40
50
100
200
500
1k Hz
2k
5k
10k
20k
40k
Figure 32. THD+N vs. Input Frequency (0dBFS input)

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[AKD4382A-SB]
(fs=192kHz)
AKM
+0 -10 -20 -30 -40 -50 -60 -70 -80 -90 -100 -110 -120 -120
AK4382A Linearity VDD=5V, fs=192kHz, fin=1kHz
d B r A
-110
-100
-90
-80
-70
-60 dBFS
-50
-40
-30
-20
-10
+0
Figure 33. Linearity (fin=1kHz)
AKM
+1 +0.9 +0.8 +0.7 +0.6 +0.5 +0.4 +0.3 +0.2 d B r A +0.1 +0 -0.1 -0.2 -0.3 -0.4 -0.5 -0.6 -0.7 -0.8 -0.9 -1 5k 10k 15k 20k 25k
AK4382A Frequency Response VDD=5V, fs=192kHz, 0dBFS input
30k
35k
40k Hz
45k
50k
55k
60k
65k
70k
75k
80k
Figure 34. Frequency Response (0dBFS input)

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[AKD4382A-SB]
(fs=192kHz)
AKM
-70 -75 -80 -85 -90 -95 -100 d B -105 -110 -115 -120 -125 -130 -135 -140 90 200 500
AK4382A Crosstalk (Red=Lch, Blue=Rch) VDD=5V, fs=192kHz, 0dBFS input
1k
2k Hz
5k
10k
20k
50k
80k
Figure 35. Crosstalk (0dBFS input)

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Revision History
Date (YY/MM/DD) 07/06/13 Manual Revision KM089400 Board Revision 0
Reason First edition
Contents
IMPORTANT NOTICE These products and their specifications are subject to change without notice. When you consider any use or application of these products, please make inquiries the sales office of Asahi Kasei EMD Corporation (AKEMD) or authorized distributors as to current status of the products. AKEMD assumes no liability for infringement of any patent, intellectual property, or other rights 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. AKEMD products are neither intended nor authorized for use as critical componentsNote1) in any safety, life support, or other hazard related device or systemNote2), and AKEMD assumes no responsibility for such use, except for the use approved with the express written consent by Representative Director of AKEMD. As used here: Note1) 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. Note2) 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. It is the responsibility of the buyer or distributor of AKEMD products, who distributes, disposes of, or otherwise places the product with a third party, to notify such third 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 AKEMD harmless from any and all claims arising from the use of said product in the absence of such notification.

28
2007/06
5
4
3
2
1
-15V
+15V VOP+ T1 NJM78M05FA R4
D
GND
VOPC7 470u
+
1
IN
OUT
3
AVDD C2 0.1u
+
D
C4 470u
C3 0.1u
C1 47u
short
R3 R2 R1 R8
open open open open
MCLK BICK LRCK SDATA
C
4113_MCLKO1 4113_BICK 4113_SDTO 4113_LRCK PDN
R13 5.1 R15 100 R17 100 R18 100
MCLK BICK SDTI1 LRCK
1 2 3 4 5 6 7 8
B
D3V R22 10k R21 10k R20 10k
C5 10p
C6 open
PORT2
1 3 5 7 9 2 4 6 8 10
U2 CSN CCLK CDTI R23 R24 R25 470 470 470
2 3 5 6 11 10 14 13 1 15 1A 1B 2A 2B 3A 3B 4A 4B A/B G 1Y 2Y 3Y 4Y VCC GND 4 7 9 12 16 8
uP-I/F
C22 0.1u
VDD
74LVC157
A
5
4
3
+ + 1 3 5 7 9
PORT1
2 4 6 8 10
EXT
2
C
U8
MCLK BICK SDTI LRCK PDN CSN CCLK CDTI
DZFL DZFR VDD VSS AOUTL+ AOUTLAOUTR+ AOUTR-
16
This part is on the same pad.
15
VDD
14
C8 0.1u
13 12 11 10 9
R50 1M
+
C9 10u
AOUTL+ AOUTLAOUTR+ AOUTRB
AK4382A
A
Title Size A3 Date:
2
Document Number
AKD4382A-SB
AK4382A
Thursday, May 10, 2007 Sheet
1
Rev
0
1 of 3
5
4
3
2
1
D
D
R28 AOUTL4.7k R32 200 C23 3900p
R29 4.7k C20 470p
R34 AOUTL+ 4.7k R41 4.7k
R35 200
C24 open
C54
+
R36 220
J2 AOUTL
10u C55 470p
R37 10k
C
C
U7
1 2 3 4 AOUT -AIN +AIN -VP +VP BOUT -BIN +BIN 8 7 6 5
JP (R52) VOP+ C38 0.1u
+
C37 10u
5.1
OP275
C31 0.1u
+
C32 10u
JP (R53) VOP5.1
AOUTR4.7k R33
B
+
R30
R31 4.7k C21 470p
C49
R40 220
J4 AOUTR
10u
R42 10k
B
200 C48 3900p
R38 AOUTR+ 4.7k R43 4.7k
R39 200
C50 open
C47 470p
A
A
Title Size A3 Date:
5 4 3 2
Document Number
AKD4382A-SB
Analog
Thursday, May 10, 2007 Sheet
1
Rev
0
2 of 3
5
4
3
2
1
D3V D1 HSU119 T3 upc3533HF U3
1 2 3 4 5 6 7 1A 1Y 2A 2Y 3A 3Y GND VCC 6A 6Y 5A 5Y 4A 4Y 14 13 12 11 10 9 8
R49 10k
R26 VOP+ VDD C29 0.1u
+ 1 IN 2 OUT GND 3
D3V C10 0.1u short
D
D
L
3
H
1
SW1 PDN
C28 0.1u
PDN
C30 47u
C11 47u
+
C12 0.1u
74HC14
2
U5 SW2
1 DVDD CM0/CDTO/CAD1 30 +
R44 D3V 5.1 C15 10u C13 0.1u
2 DVSS CM1/CDTI/SDA 29
OCKS0 OCKS1
3 4
2 1
D3V
OCKS
R46
3
C
TVDD
OCKS1/CCLK/SCL
28
C14 0.1u
4 V/TX OCKS0/CSN/CAD0 27
10k R45 10k
26
C
5
XTI
MCKO1
4113_MCLKO1
6
XTO
MCKO2
25
7
PDN
DAUX
24
R48
8 R BICK 23
4113_BICK
15k D3V C16 10u
B
9 +
AVDD
SDTO
22
4113_SDTO
R51 1M
C17 0.1u
10
AVSS
LRCK
21
4113_LRCK
B
This part is on the same pad.
11 RX1 INT0 20
TEST1
J1 COAX R27 75
C18
12 RX2/DIF0 FS96/I2C 19
0.1u
13 RX3/DIF1 P/SN 18
D3V
D3V COAX JP4 RX AVDD PORT3
6
A
14
RX4/DIF2
INT1
17
SW2
15 RX5 RX6/IPS 16
OCKS1 H L H
OCKS0 L L H
Master Clock 512fs@fs=32k/44.1k/48kHz 256fs@fs=88.2k/96kHz 128fs@fs=176.4k/192kHz
A
OPT L1 short AK4113
6 5
5
GND VCC GND OUT
4 3 2 1
R47 short
TORX173
C19 0.1u
Title Size A3 Date:
5 4 3 2
Document Number
AKD4382A-SB
AK4113
Thursday, May 10, 2007 Sheet
1
Rev
0
3 of 3


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