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PBL38615-1 参数 Datasheet PDF下载

PBL38615-1图片预览
型号: PBL38615-1
PDF下载: 下载PDF文件 查看货源
内容描述: 用户线接口电路 [Subscriber Line Interface Circuit]
分类和应用:
文件页数/大小: 18 页 / 234 K
品牌: ERICSSON [ ERICSSON ]
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PBL 386 15/1  
4. The overload level is automatically expanded as needed up  
to 1.25 VPeak when the signal level >0.5 VPeak and is  
specified at the four-wire transmit port, VTX, with the signal  
source at the two-wire port. Note that the gain from the  
two-wire port to the four-wire transmit port is G2-4S = -0.5.  
5. Secondary protection resistors RF impact the insertion loss.  
The specified insertion loss is for RF = 0.  
Notes  
1. The overload level is automatically expanded to 2.5 VPeak  
when the signal level > 1.0 VPeak and is specified at the  
two-wire port with the signal source at the four-wire  
receive port.  
2. The two-wire impedance is programmable by selection of  
external component values according to:  
ZTR = ZT/|G2-4S αRSN| where:  
6. The specified insertion loss tolerance does not include  
errors caused by external components.  
ZTR = impedance between the TIPX and RINGX  
terminals  
ZT = programming network between the VTX and RSN  
terminals  
7. The level is specified at the four-wire receive port and  
referenced to a 600 programmed two-wire impedance  
level.  
G2-4S = transmit gain, nominally = -0.5  
8. The two-wire idle noise is specified with the four-wire  
receive port grounded (ERX = 0; see figure 6).  
The four-wire idle noise at VTX is the two-wire value -6 dB  
and is specified with the two-wire port terminated in 600 Ω  
(RL). The noise specification is referenced to a 600 Ω  
programmed two-wire impedance level at VTX. The four-  
wire receive port is grounded (ERX = 0).  
9. The VBat2 voltage is optimized for RL=600 with a  
programmed linecurrent, IL=27 mA. This gives VBat2=22 V at  
the terminal (e.g. calculated to 21.9V).  
α
RSN = receive current gain, nominally = 400 (current  
defined as positive flowing into the receivesumm-  
ing node, RSN, and when flowing from tip to ring).  
3. Higher return loss values can be achieved by adding a  
reactive component to RT, the two-wire terminating  
impedance programming resistance, e.g. by dividing RT  
into two equal halves and connecting a capacitor from the  
common point to ground.  
7