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AFCT-5760NPZ PDF预览

AFCT-5760NPZ

更新时间: 2024-01-16 18:25:34
品牌 Logo 应用领域
安华高科 - AVAGO 光纤异步传输模式放大器AK系列ATM通信
页数 文件大小 规格书
19页 246K
描述
Families of Small Form Factor Pluggable (SFP) Optical Transceivers for Single-Mode OC3/STM-1 with Optional DMI Part of the Avago Technologies METRAK Family

AFCT-5760NPZ 技术参数

是否Rohs认证: 符合生命周期:Active
Reach Compliance Code:compliantECCN代码:5A991.B.5.A
HTS代码:8517.62.00.50风险等级:5.21
Is Samacsys:N其他特性:MSA-SFF-8074I, MSA-SFF-8472
主体宽度:13.8 mm主体高度:12.2 mm
主体长度或直径:55.2 mm内置特性:AMPLIFIER
通信标准:ATM, GR-253, GR-468, GR-1089, ITU-T-G957, OC-3, OC-12, SDH, SONET, STM-1连接类型:LC CONNECTOR
数据速率(接收):155 Mbps数据速率(发送):155 Mbps
发射极/检测器类型:LASER DIODE, PIN PHOTODIODE光纤设备类型:TRANSCEIVER
光纤类型:SMFJESD-609代码:e4
安装特点:BOARD/PANEL MOUNT最高工作温度:85 °C
最低工作温度:-10 °C最大工作波长:1360 nm
最小工作波长:1261 nm标称工作波长:1310 nm
标称光功率输出:1 mW最小回损:12 dB
灵敏度:-34 dBm最大供电电压:3.5 V
最小供电电压:3.1 V标称供电电压:3.3 V
表面贴装:NO端子面层:Gold (Au)
Base Number Matches:1

AFCT-5760NPZ 数据手册

 浏览型号AFCT-5760NPZ的Datasheet PDF文件第11页浏览型号AFCT-5760NPZ的Datasheet PDF文件第12页浏览型号AFCT-5760NPZ的Datasheet PDF文件第13页浏览型号AFCT-5760NPZ的Datasheet PDF文件第15页浏览型号AFCT-5760NPZ的Datasheet PDF文件第16页浏览型号AFCT-5760NPZ的Datasheet PDF文件第17页 
Transceiver Digital Diagnostic Monitor (Real Time Sense) Characteristics (AFCT-5765Z family only)  
Parameter  
Symbol  
Min.  
Typ.  
Max.  
Unit  
Reference  
Transceiver Internal Temperature Accuracy  
TINT  
-3.0  
+3.0  
°C  
1
Transceiver Internal Supply Voltage Accuracy  
Transmitter Laser dc Bias Current Accuracy  
VINT  
IINT  
PT  
-3.0  
-10  
+3.0  
+10  
+3.0  
+3.0  
%
2
3
%
Transmitted Average Optical Output Power Accuracy  
Received Average Optical Input Power Accuracy  
-3.0  
-3.0  
dB  
dB  
PR  
Notes:  
1. Temperature was measured internal to the transceiver. Valid from = -10 °C to +85 °C or from -40°C to +85°C.  
For calibration to an external temperature, please contact Avago Technologies.  
2. Reference voltage is 3.3 V.  
3. Valid from 0 to 50 mA, avg.  
Transceiver Timing Characteristics  
Parameter  
Symbol  
Minimum  
Maximum  
Unit  
ms  
ms  
ms  
ms  
ms  
ms  
ms  
ms  
ms  
ms  
ms  
ms  
ms  
ms  
ms  
kHz  
Notes  
Hardware TX_DISABLE Assert Time  
Hardware TX_DISABLE Negate Time  
Time to initialize, including reset of TX_FAULT  
Hardware TX_FAULT Assert Time  
Hardware TX_DISABLE to Reset  
Hardware RX_LOS Assert Time  
Hardware RX_LOS De-Assert Time  
Software TX_DISABLE Assert Time  
Software TX_DISABLE Negate Time  
Software Tx_FAULT Assert Time  
Software Rx_LOS Assert Time  
Software Rx_LOS De-Assert Time  
Analog parameter data ready  
Serial bus hardware ready  
t_off  
10  
Note 1  
Note 2  
Note 3  
Note 4  
Note 5  
Note 6  
Note 7  
Note 8  
Note 9  
Note 10  
Note 11  
Note 12  
Note 13  
Note 14  
Note 15  
t_on  
1
t_init  
300  
100  
t_fault  
t_reset  
10  
t_loss_on  
t_loss_off  
t_off_soft  
t_on_soft  
t_fault_soft  
t_loss_on_soft  
t_loss_off_soft  
t_data  
100  
100  
100  
100  
100  
100  
100  
1000  
300  
10  
t_serial  
Write Cycle Time  
t_write  
Serial ID Clock Rate  
Notes:  
f_serial_clock  
400  
1. Time from rising edge of TX_DISABLE to when the optical output falls below 10% of nominal.  
2. Time from falling edge of TX_DISABLE to when the modulated optical output rises above 90% of nominal.  
3. Time from power on or falling edge of Tx_Disable to when the modulated optical output rises above 90% of nominal.  
4. From power on or negation of TX_FAULT using TX_DISABLE.  
5. Time TX_DISABLE must be held high to reset the laser fault shutdown circuitry.  
6. Time from loss of optical signal to Rx_LOS Assertion.  
7. Time from valid optical signal to Rx_LOS De-Assertion.  
8. Time from two-wire interface assertion of TX_DISABLE (A2h, byte 110, bit 6) to when the optical output falls below 10% of nominal. Measured  
from falling clock edge after stop bit of write transaction.  
9. Time from two-wire interface de-assertion of TX_DISABLE (A2h, byte 110, bit 6) to when the modulated optical output rises above 90% of  
nominal.  
10. Time from fault to two-wire interface TX_FAULT (A2h, byte 110, bit 2) asserted.  
11. Time for two-wire interface assertion of Rx_LOS (A2h, byte 110, bit 1) from loss of optical signal.  
12. Time for two-wire interface de-assertion of Rx_LOS (A2h, byte 110, bit 1) from presence of valid optical signal.  
13. From power on to data ready bit asserted (A2h, byte 110, bit 0). Data ready indicates analog monitoring circuitry is functional.  
14. Time from power on until module is ready for data transmission over the serial bus (reads or writes over A0h and A2h).  
15. Time from stop bit to completion of a 1-8 byte write command.  
14  

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