MOTMap-375  > MLG1608B1N8S

suppliers of MLG1608B1N8S and PDF data of MLG1608B1N8S

Part Numbert Mfg Packt D/C Descriptiont Qty Company/Contact  
MLG1608B1N8S TDK    2009+ROHS    390000 
    BONASE(HK) ELECTRONICS CO., L..
  • Contact:Vincent
  • Tel:86-0755-82579312
  • Fax:86-0755-83239040
  • Email: bonase@vip.163.com
MLG1608B1N8S TDK  0603/4K  N/A    88000 
    Koben Electronics Co.,Ltd.
  • Contact:Forrest Zhu
  • Tel:86-755-82579966
  • Fax:86-755-23816068
  • Email: forrest2016@ekoben.com


MLG1608B1N8S TDK    08+  Stock on hand  30000 
    Meicheng Tech (HK) Electron Li..
  • Contact:Yoyo
  • Tel:86-755-83740517
  • Fax:86-755-83741004
  • Email: sales@meicheng-hk.com


MLG1608B1N8S TDK  SMD  09+    50000 
    AODAI ELECTRONIC(HK)LIMITED
  • Contact:xie
  • Tel:86-755-83013880
  • Fax:
  • Email: jiezhou528@live.cn
MLG1608B1N8S TDK    08+  original ,stock ,roh  1000000 
MLG1608B1N8S TDK    07+  EXCESS  10760 
    GuangZhou BinBin Technology De..
  • Contact:lin
  • Tel:86-20-31795262
  • Fax:
  • Email: gzbbdz@qq.com
MLG1608B1N8S TDK    2007     
    Shenzhen Haixinyuan Electronic..
  • Contact:Zhu
  • Tel:86-755-83013532
  • Fax:0755-83013883
  • Email: sales@hxydz.com
MLG1608B1N8S TDK    07+    60000 
    HuiYuan Electronic (Asia)Limit..
  • Contact:chen
  • Tel:86-755-23956858
  • Fax:86-755-23956577
  • Email: chen@huiyuan-elelc.com
MLG1608B1N8S TDK  EXCESS  07+    10760 
MLG1608B1N8S TDK    2009+ROHS    390000 
    BONASE(HK) ELECTRONICS CO., L..
  • Contact:Vincent
  • Tel:86-755-82579312
  • Fax:86-755-8323-9040
  • Email: bonase@vip.163.com
MLG1608B1N8S TDK    2006    SMD 
    TOPTECH(HK)ELECTRONICS COMPANY..
  • Contact:Cherry Chan
  • Tel:0-852-30657799
  • Fax:0-852-30073198
  • Email: cherry@toptechhk.com
MLG1608B1N8S     TDK     
MLG1608B1N8S   sales@kech  TDK    06+ 
MLG1608B1N8S TDK    2007+PB    38900 
    HONGFAXINELECTRONIC(ASIA)LIMIT..
  • Contact:Mr.Chen
  • Tel:086-0755-82736393
  • Fax:086-0755-83987202
  • Email: tony@hfxelec-asia.com
MLG1608B1N8S TDK  SMD  DC:06-07+  ★PASSIVECOMPONENTSSU  60000 

MLG1608B1N8S Datasheet

Parameter Conditions Minimum Typical Maximum Units
ABSOLUTE MAXIMUM RATINGS (note l)
Supply voltage, VD D Referenced to GND -0.5 7 V
Inputs and Clock Outputs Referenced to GND -0.5 VDD+0.5 v
Electrostatic Discharge MIL-STD-883 2000 v
Ambient Operating Temperature 0 70 oC
Soldering Temperature Max of 10 seconds 260 oC
Junction temperature 150 oC
Storage temperature -65 150 oC
DC CHARACTERISTICS (VDD = 3.3 V unless specified otherwise)
Operating Voltage, VDD 3.13 5.50 V
Input High Voltage, VIH, CLKIN pin only VD D/2+1 VDD/2 v
Input Low Voltage, VIL, CLKIN pin only VDD/2 VDD/2-1 v
Input High Voltage, VIH 2 v
Input Low Voltage, VIL 0.8 v
Output High Voltage, VOH IOH=-25mA 2.4 v
O utput Low Voltage, VO L IO L=25mA 0.4 v
Output High Voltage, VO H, CMO S level IO H=-8mA VDD -0.4 v
Operating Suppl Current,IDD (Note 2) No Load, Sl=l, SO=O 25 mA
Operating Suppl Current,IDD (Note 3) No Load, Sl=l, SO=O 74 mA
Short Circuit Current Each output 50 mA
Input Capacitance SO, Sl, FBIN 7 pF
AC CHARACTERISTICS (VDD = 3.3 V unless specified otherwise)
Input Clock Frequency See table on page 2 5 80 MHz
O utput Clock Frequency See table on page 2 5 160 MHz
Output Clock Rise Time, CL=30pF 0.8 t0 2.OV 1.5 ns
Output Clock Fall Time, CL=30pF 2.0 t0 0.8V 1.5 ns
Output Clock Duty Cycle, VDD=3.3V At VDD/2 40 50 60 %
Device to D evice Skew, equally loaded rising edges at VDD/2 700 ps
O utput to O utput Skew, equally loaded rising edges at VDD/2 250 ps
Input to Output Skew, FBIN to CLK8 rising edges at VDD/2 350 ps
Maximum Absolute Jitter 300 ps
Cycle to Cycle Jitter, 30pF loads 500 ps


MLG1608B1N8S Price
The AC158 is a high-speed quad 2-input multiplexer. It selects four bits of data from two sources using the common Select and Enable inputs. The four buffered outputs present the selected data in the inverted form. The AC158 can also be used as a function generator.
MLG1608B1N8S on stock
Yes. This is normal behavior when the CX74038 synthesizer is programmed for an integer VCO divide value (N = 89, 90, 91, 92.. 260...300, etc.). Internal dithering causes the phase noise to pulsate at a slow rate. This can be eliminated by disabling internal dithering when N is an integer value.