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IC-WJBMSOP8 参数 Datasheet PDF下载

IC-WJBMSOP8图片预览
型号: IC-WJBMSOP8
PDF下载: 下载PDF文件 查看货源
内容描述: 2.7 V激光二极管驱动器 [2.7 V LASER DIODE DRIVER]
分类和应用: 驱动器二极管激光二极管
文件页数/大小: 12 页 / 584 K
品牌: ICHAUS [ IC-HAUS GMBH ]
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iC-WJB  
2.7 V LASER DIODE DRIVER  
Rev E1, Page 7/12  
factor on the peak value of the monitor current pro-  
portional to the laser current is apparent. The average  
kept constant by the control (RSET unchanged) means  
a peak value increased by the factor 2.5. The pulse  
duty factor for which RSET was dimensioned should  
therefore be kept constant if possible.  
CR1V(ISET) 31.22V  
= 24.4kΩ  
RSET =  
=
Iav (AMD)  
0.15mA  
with the Electrical Characteristics No. 301 for V(ISET)  
and No. 108 for current ratio CR1.  
5.0 V  
V(IN)  
Averaging control (APC)  
The control of the average optical laser power requires  
a capacitor at pin CI. This capacitor is used for aver-  
aging and must be adjusted to the selected pulse rep-  
etition frequency and the charging current preset with  
RSET. The ratios are linear in both cases, i.e. the ca-  
pacitor CI must be increased in size proportionally as  
the pulse repetition frequency slows or the current from  
ISET increases:  
0 V  
3.120 V  
V(CI)  
3.118 V  
600 uA  
I(AMD)  
0 A  
Time  
440I(ISET)  
f V(ISET)  
440  
f RSET  
Figure 4: Steady-state APC, f(IN) = 100 kHz (1:4),  
CI ≥  
=
CI = 470 nF, RSET = 10 k  
3.0 V  
Example  
2.0 V  
Pulse repetition frequency 100 kHz, RSET = 10 k:  
V(CI)  
CI = 440 nF, chosen 470 nF.  
1.0 V  
0 V  
Otherwise the charging of the capacitor CI during the  
pulse pauses (with I(ISET) = 1.22 V / RSET) will create  
an excessive average value potential and may destroy  
the laser diode during the next pulse. The capacitor CI  
is correctly dimensioned when the current through the  
laser diode and the optical output signal do not show  
any overshots following the rising edge.  
I(KLD)  
0 A  
0 s  
2 ms  
4 ms  
6 ms  
8 ms  
10 ms  
12 ms  
In steady-state condition and for a pulse duty factor of  
50 % (pulse / pause = 1:1), wave forms as shown in  
Figure 3.  
Figure 5: Turn-on behaviour, f(IN) = 100 kHz (1:1),  
CI = 470 nF, RSET = 10 kΩ  
5.0 V  
Turn-on and turn-off behaviour  
Capacitor CI also determines the starting time from  
switching on the supply voltage VCC to steady-state  
laser pulse operation or after a discharge of CI by  
the watchdog. The following applies to estimating the  
starting time (Figure 5):  
V(IN)  
0 V  
2.552 V  
V(CI)  
2.550 V  
1.7V CI 1.7V CI RSET  
Ton  
=
I(ISET)  
1.22V  
I(AMD)  
250 uA  
0 A  
Time  
Example  
Figure 3: Steady-state APC, f(IN) = 100 kHz (1:1),  
CI = 470 nF, RSET = 10 k: Ton 6.5 ms  
CI = 470 nF, RSET = 10 kΩ  
Figure 6 shows a detailed view of the start of laser  
Figure 4 shows the corresponding signals for a pulse operation; Figure 7 shows the shut-down behaviour.  
duty factor of 20 %. The influence of the pulse duty The decline in the voltage at CI and the absence of the  
 
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