欢迎访问ic37.com |
会员登录 免费注册
发布采购

AK2572 参数 Datasheet PDF下载

AK2572图片预览
型号: AK2572
PDF下载: 下载PDF文件 查看货源
内容描述: APC为突发模式适用直接调制激光二极管 [APC for Burst Mode Applicable Direct Modulation Laser Diode]
分类和应用: 二极管激光二极管PC
文件页数/大小: 50 页 / 439 K
品牌: AKM [ ASAHI KASEI MICROSYSTEMS ]
 浏览型号AK2572的Datasheet PDF文件第15页浏览型号AK2572的Datasheet PDF文件第16页浏览型号AK2572的Datasheet PDF文件第17页浏览型号AK2572的Datasheet PDF文件第18页浏览型号AK2572的Datasheet PDF文件第20页浏览型号AK2572的Datasheet PDF文件第21页浏览型号AK2572的Datasheet PDF文件第22页浏览型号AK2572的Datasheet PDF文件第23页  
ASAHI KASEI  
[AK2572]  
Fig.4-7 Setting Example 3 (BIASFF,MODFF)  
Fig.4-8 Setting Example 4 (BIASFF,MODFF+FB)  
RE_DAC1_GAIN  
RE_DAC1_GAIN  
(RE_DAC3_GAIN)  
(RE_DAC3_GAIN)  
R_MOD_FF  
R_MOD_FF  
I-DAC1(V-DAC3)  
I-DAC1(V-DAC3)  
R_MOD_FB  
=0  
Imod  
(Vmod)  
R_MOD_FB  
=R_APC_FB  
Imod  
(Vmod)  
R_APC_FB  
R_MOD  
R_BIAS  
R_APC_FB  
R_MOD  
R_BIAS  
10/255  
G_DAC1  
10/255  
G_DAC1  
0
0
1
0
(2.2/255)  
(G_DAC3)  
(2.2/255)  
(G_DAC3)  
I-DAC2  
85/255  
I-DAC2  
85/255  
R_BIAS_FB  
=0  
R_BIAS_FB  
=0  
Ibias  
Ibias  
G_DAC2  
G_DAC2  
R_BIAS_FF  
R_BIAS_FF  
RE_DAC2_GAIN  
RE_DAC2_GAIN  
R_MOD=R_MOD_FF+R_MOD_FB  
=R_MOD_FF+R_APC_FB  
R_MOD=R_MOD_FF  
R_BIAS=R_BIAS_FF  
G_DAC1= 1 or 0.1  
G_DAC2= 1 or 0.5  
G_DAC3= 1 or 1.2/2.2  
G_DAC1= 1 or 0.1  
G_DAC2= 1 or 0.5  
G_DAC3= 1 or 1.2/2.2  
R_BIAS=R_BIAS_FF  
Fig.4-9 Setting Example 5 (BIASFF+FB,MODFF) Fig.4-10 Setting Example 6 (BIASFB,MODFB)  
RE_DAC1_GAIN  
(RE_DAC3_GAIN)  
RE_DAC1_GAIN  
(RE_DAC3_GAIN)  
RE_MOD_FBRT  
R_MOD_FF=0  
R_MOD_FF  
R_MOD_FB  
I-DAC1(V-DAC3)  
I-DAC1(V-DAC3)  
Imod  
(Vmod)  
Imod  
(Vmod)  
R_APC_FB  
R_MOD_FB  
R_MOD  
R_BIAS  
R_APC_FB  
R_MOD  
K_MOD  
_FBRT  
10/255  
G_DAC1  
=0  
10/255  
G_DAC1  
(2.2/255)  
(G_DAC3)  
0
1
(2.2/255)  
(G_DAC3)  
I-DAC2  
85/255  
I-DAC2  
85/255  
R_BIAS_FB  
=R_APC_FB  
R_BIAS_FB  
Ibias  
R_BIAS  
Ibias  
K_BIAS  
_FBRT  
G_DAC2  
G_DAC2  
RE_BIAS_FBRT  
R_BIAS_FF=0  
R_BIAS_FF  
RE_DAC2_GAIN  
G_DAC1= 1 or 0.1  
G_DAC2= 1 or 0.5  
G_DAC3= 1 or 1.2/2.2  
R_MOD=R_MOD_FF  
RE_DAC2_GAIN  
R_MOD=R_MOD_FB  
R_MOD_FB=K_MOD_FBRT*R_APC_FB)  
G_DAC1= 1 or 0.1  
G_DAC2= 1 or 0.5  
G_DAC3= 1 or 1.2/2.2  
R_BIAS=R_BIAS_FF+R_BIAS_FB  
=R_BIAS_FF+R_APC_FB  
R_BIAS=R_BIAS_FB  
R_BIAS_FB=K_BIAS_FBRT*R_APC_FB)  
Fig.4-11 Setting Example 7 (BIASFB,MODFF+FB) Fig. 4-12 Setting Example 8 (BIASFF+FB,MODFB)  
RE_DAC1_GAIN  
(RE_DAC3_GAIN)  
RE_DAC1_GAIN  
(RE_DAC3_GAIN)  
RE_MOD_FBRT  
R_MOD_FF  
RE_MOD_FBRT  
R_MOD_FF=0  
I-DAC1(V-DAC3)  
I-DAC1(V-DAC3)  
Imod  
(Vmod)  
Imod  
(Vmod)  
R_APC_FB  
R_MOD_FB  
R_MOD  
R_BIAS  
R_APC_FB  
R_MOD_FB  
R_MOD  
R_BIAS  
K_MOD  
_FBRT  
10/255  
G_DAC1  
K_MOD  
_FBRT  
10/255  
(2.2/255)  
G_DAC1  
(G_DAC3)  
(2.2/255)  
(G_DAC3)  
I-DAC2  
85/255  
I-DAC2  
85/255  
R_BIAS_FB  
Ibias  
R_BIAS_FB  
Ibias  
K_BIAS  
_FBRT  
K_BIAS  
_FBRT  
G_DAC2  
G_DAC2  
RE_BIAS_FBRT  
R_BIAS_FF  
RE_BIAS_FBRT  
R_BIAS_FF=0  
RE_DAC2_GAIN  
RE_DAC2_GAIN  
R_MOD=R_MOD_FF+R_MOD_FB  
R_MOD_FB=K_MOD_FBRT*R_APC_FB)  
R_MOD=R_MOD_FB  
R_MOD_FB=K_MOD_FBRT*R_APC_FB)  
G_DAC1= 1 or 0.1  
G_DAC2= 1 or 0.5  
G_DAC3= 1 or 1.2/2.2  
G_DAC1= 1 or 0.1  
G_DAC2= 1 or 0.5  
G_DAC3= 1 or 1.2/2.2  
R_BIAS=R_BIAS_FB  
R_BIAS_FB=K_BIAS_FBRT*R_APC_FB)  
R_BIAS=R_BIAS_FF+R_BIAS_FB  
R_BIAS_FB=K_BIAS_FBRT*R_APC_FB)  
Fig.4-13 Setting Example 9 (BIASFF+FB, MODFF+FB)  
RE_DAC1_GAIN  
(RE_DAC3_GAIN)  
RE_MOD_FBRT  
R_MOD_FF  
I-DAC1(V-DAC3)  
Imod  
R_APC_FB  
R_MOD_FB  
R_MOD  
R_BIAS  
(Vmod)  
K_MOD  
_FBRT  
10/255  
(2.2/255)  
G_DAC1  
(G_DAC3)  
I-DAC2  
85/255  
R_BIAS_FB  
Ibias  
K_BIAS  
_FBRT  
G_DAC2  
RE_BIAS_FBRT  
R_BIAS_FF  
RE_DAC2_GAIN  
G_DAC1= 1 or 0.1  
G_DAC2= 1 or 0.5  
G_DAC3= 1 or 1.2/2.2  
R_MOD=R_MOD_FF+R_MOD_FB  
R_MOD_FB=K_MOD_FBRT*R_APC_FB)  
R_BIAS=R_BIAS_FF+R_BIAS_FB  
R_BIAS_FB=K_BIAS_FBRT*R_APC_FB)  
-19-  
<MS0290-E-01>  
2004/8  
 复制成功!