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LE79Q2281DVC 参数 Datasheet PDF下载

LE79Q2281DVC图片预览
型号: LE79Q2281DVC
PDF下载: 下载PDF文件 查看货源
内容描述: [PCM Codec, A/MU-Law, 1-Func, CMOS, PQFP64, GREEN, MS-026ACD, TQFP-64]
分类和应用: PC电信电信集成电路
文件页数/大小: 38 页 / 620 K
品牌: ZARLINK [ ZARLINK SEMICONDUCTOR INC ]
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Le79228  
Data Sheet  
No.  
Item  
Insertion Loss  
A-D, D-A  
Condition  
Min  
Typ  
Max  
Unit  
Note  
Input: 1014Hz, 0dBm0  
AR = AX = GR = GX = 0 dB,  
DISN, R, X, B and Z disabled  
–0.25  
0
+0.25  
1
Temperature = 25°C  
Variation over temperature  
A-D AX + GX  
D-A AR + GR  
DR Input: 1014 Hz, –10 dBm0  
AR=AX=GR=GX=0 dB, DISN,  
R, X, B and Z filters default  
–0.15  
–0.1  
0
0
+0.15  
+0.1  
A-D + D-A  
dB  
3., 7.  
Level set error (Error between  
setting and actual value)  
2
3
–0.1  
0
0.1  
DR to DX gain in full digital  
loopback mode  
–0.3  
0
+0.3  
A-D (PCM output)  
–7  
0
–69  
–78  
+19  
+12  
+7  
Idle Channel Noise,  
4
5
dBm0p  
Psophometric Weighted (A-law)  
D-A (VOUT  
A-D (PCM output)  
D-A (VOUT  
)
5.  
2.  
Idle Channel Noise,  
C Message weighted (µ-law)  
dBrnC0  
Bits  
)
6
7
Coder Offset decision value, Xn A-D, Input signal = 0 V  
PSRR Image frequency (VCC)  
A-D  
PSRR Image frequency (VCC)  
D-A  
Input: 4.8 to 7.8 kHz,  
200 mVp-p  
Measure at:  
8000 Hz Input frequency  
Gdisn = –0.9375 to 0.9375  
Vin = 0 dBm0  
1014Hz; –10dBm0  
B = Z = 0; X = R = 1  
37  
37  
dB  
8
9
1
DISN gain accuracy  
+0.2  
dB  
µS  
2., 6.,  
8.  
10  
11  
12  
End-to-end group delay  
525  
–75  
0 dBm0  
0 dBm0  
0 dBm0  
0 dBm0  
300 Hz to 3400 Hz  
300 Hz to 3400 Hz  
1014 Hz  
Crosstalk  
TX to RX  
dBm0  
dBm0  
same channel RX to TX  
2.  
–76  
–78  
Crosstalk  
TX or RX to TX  
other channel TX or RX to RX  
1014 Hz  
Notes:  
1. Not tested or partially tested in production. This parameter is guaranteed by characterization or correlation to other tests.  
2. Guaranteed by design.  
3. Overall 1.014 kHz insertion loss error of the Le79228 Quad ISLAC device is guaranteed to be 0.34 dB  
4. These voltages are referred to VREF.  
5. When relative levels (dBm0) are used, the specification holds for any setting of (AX + GX) gain from 0 to 12 dB or (AR + GR) from 0 to –12  
dB.  
6. Group delay spec valid only when Channels 1–4 occupy consecutive slots in the frame. Programming channels in non-consecutive timeslots  
can add up to 1 frame delay in the Group delay measurements. The Group delay specification is defined as the sum of the minimum values  
of the group delays for transmit and the receive paths when the B, X, R, and Z filters are disabled with null coefficients. See Figure 5, on  
page 16.  
7. Requires that the calibration command (7Ch) must be performed to achieve this performance.  
8. An additional frame of delay can be added if PCLK frequencies less than 1.536 MHz are used.  
9. In the absence of any error, the analog level of VREF + 1.02 V represents a digital code of 7FFFh, and the analog level of VREF - 1.02 V  
represents a digital code of 8000h.  
Transmit and Receive Paths  
In this section, the transmit path is defined as the analog input to the Le79228 Quad ISLAC device (VINn) to the PCM voice output  
of the Le79228 Quad ISLAC device A-law/µ-law speech compressor. The receive path is defined as the PCM voice input to the  
Le79228 Quad ISLAC device speech expander to the analog output of the Le79228 Quad ISLAC device (VOUTn). All limits  
defined in this section are tested with B = 0, Z = 0 and X = R = GR = 1.  
When AR is enabled, a nominal gain of –6.02 dB is added to the analog section of the receive path.  
When AX is enabled, a nominal gain of +6.02 dB is added to the analog section of the transmit path.  
When relative levels (dBm0) are used in any of the following transmission characteristics, the specification holds for any setting  
of (AX + GX) gain from 0 to 12 dB or (AR + GR) from 0 to –12 dB.  
14  
Zarlink Semiconductor Inc.