TIMap-1298  > SN54F85J

suppliers of SN54F85J and PDF data of SN54F85J

Part Numbert Mfg Packt D/C Descriptiont Qty Company/Contact  
SN54F85J 3200  现货库存  CDIP    05+ 
SN54F85J N/A  CDIP  N/A  NEW AND ORIGINAL To:  200 
    SunPlus Electronics co.
  • Contact:David
  • Tel:86-755-83677874
  • Fax:86-755-83677875
  • Email: david@sunplusic.com


SN54F85J TI  N/A  9+  New & original, stoc  8340 
    TONGGUANG (H.K.) Electrics Co...
  • Contact:JAMES
  • Tel:86-755-83996795
  • Fax:86-755-83996795
  • Email: tongguangic@gmail.com
SN54F85J TI  N/A  CDIP  N/A  N/A 
    nantian electronics co., ltd.
  • Contact:Ali
  • Tel:86-755-82518841
  • Fax:
  • Email: nantian88@gmail.com
SN54F85J 200  NEW & STOC  TI    03+ 
SN54F85J TI  CDIP  N/A    1232 
    Shantou MinYu Electronics Co.,..
  • Contact:Cai
  • Tel:86-754-84477346
  • Fax:
  • Email: 547821851@qq.com
SN54F85J TI  CDIP  N/A    1232 
SN54F85J 08+  ORIGINAL  10    CDIP 
    Europe and the United States I..
  • Contact:OMTER
  • Tel:86-754-84471705
  • Fax:
  • Email: omteric@hotmail.com
SN54F85J 10  TI/MOT  03+    CDIP 
    MEIMINGELECTRONICCO.,LTD
  • Contact:Ms.CandyYang
  • Tel:86-0755-33068083
  • Fax:86-0755-33068093
  • Email: meimingic@vip.163.com

SN54F85J Datasheet

Durchlassspannung (IF = 20 mA, tp = 20 ms) Forward voltage 1.2(<1.4) V
Sperrstrom ( VR = 3 V) Reverse current 0.01(<1)
Kapazitat ( VR = 0 V, f = 1 MHz) Capacitance CO 1 6 pF
Wellenlange der Strahlung Wavelength of peak emission peak 950 nm


SN54F85J Price

Pin No. Name Pin Type Function/Description
30* AWBTM Function (Default = O) (NIC on OV7410PI OV7411P) Automatic White Balance speed selection "0" - Select normal AWB "1" - Select "fast" AWB Note: This function is not available on OV7410P/OV7411 P Image Sensor. This pin is "no con- nect".
31 VAXPXO Output Valid pixel detect output. CLK is asserted on this pin during active image period.
32 VHSYNC/MIR Output/Function (Default = O) VerticaUhorizontal syne output. Adding a pullup resistor on this pin enables mirror image
33 FSO/VSFR Output/Function (Default = O) Vertical field/frame syne output, default to field sync. Adding a pullup resistor on this pin enables frame sync.
34 FODD/12CEN Output/Function (Default = O) Even/Odd field flag. Adding a pullup resistor on this pin enables I2C control.
35 PALSW Output PAL switch clock output
36 FSI Input Field syne input
37 PWDN Function Power Down mode selection "0" - Disable power down mode "1" - Enable power down mode
38 AMODO Function AMODO (w/AMODl) selects output mode. Note: This function is not available on OV7410P/OV7411 P Image Sensor. This pin is "no con- nect".
39 AMOD1 Function AMODl (w/AMODO) selects output mode. Note: This function is not available on OV7410P/OV7411 P Image Sensor. This pin is "no con- nect".
40 HSHP Function Sharpness level selection "0" - select normal sharpness "1" - select x2 sharpness
41 DEVDD Vin Analog power
42 DEGNZD Vin Analog ground
43 SCL Input/Output 12C coritrol
44 SDA Input/Output 12C data/address
45 VREF1 Vref Internal reference. Must be decoupled with 0.1 yF capacitor to analog ground.
46 VREF2 Vref Internal reference. Must be decoupled with 0.1 UF capacitor to analog ground.
47 VREF3 Vref Internal reference. Must be decoupled with 0.1 yF capacitor to analog ground.
48 VREF4 Vref Internal reference. Must be decoupled with 0.1 UF capacitor to analog ground.


PARAMETER SYMBOL TEST CONDITION MIN TYP MAX UNIT
Output Voltage Vo 10=30mA -1% +1% V
Quiescent Current IQ lo=OmA, expect lcont 120 1 80
Quiescent Current at Control OFF IQ(OFF) VCONT=OV 1 00 nA
Output Current lo Vo-0.3V 1 00 1 30 mA
Line Regulation CVo|N VIN=Vo+lV Vo+6V, 10=30mA O1 0 %N
Load Regulation CVoIo lo=060mA O03 %/mA
Dropout Voltage CVI-O 10=60mA 0.10 0.18 V
Ripple Rejection RR ein=200mVrms,f=1kHz, lo=lOmA VIN=Vo+lV, Vo=3V Version 70 dB
Average Temperature Coefficient of Output Voltage CVolqiTa Ta=0~85'IC, lo=lOmA +50 ppm/'IC
Output Noise Voltage VNO f=10Hz~80kHz, lo=lOmA, Vo=3V Version 30 ccVrms
Control Voltage for ON-state VCONT(ON) 1.6 V
Control Voltage for OFF-state VCONT(OFF) 0.6 V


BIPOLAR OPERATION The connections for bipolar ranges are shown in Figure 8. Again, as for the unipolar ranges, if the offset and gain specifica- tions are sufficient, one or both of the trimmers shown can be replaced by a 50 Q +1% fixed resistor. The analog input is applied as for the unipolar ranges. Bipolar calibration is similar to unipolar calibration. First, a signal l/2 LSB above negative full scale (-4.9988 V for the +5 V range) is applied and Rl is trimmed to give the first transition (0000 0000 0000 t0 0000 0000 0001). Then a signal 1 1/2 LSB below positive full scale (+4.9963 V for the +5 V range) is applied and R2 trimmed to give the last transition (1111 1111 1110 t0 1111 1111 1111).