Tehnička dokumentacija
Tehnički podaci
Brand
onsemiLogic Function
XOR
Mounting Type
Surface Mount
Number Of Elements
4
Number of Inputs per Gate
2
Schmitt Trigger Input
No
Package Type
SOIC
Pin Count
14
Logic Family
VHC
Input Type
CMOS
Maximum Operating Supply Voltage
5.5 V
Maximum High Level Output Current
-8mA
Maximum Propagation Delay Time @ Maximum CL
16.5ns
Minimum Operating Supply Voltage
2 V
Maximum Low Level Output Current
8mA
Width
4mm
Minimum Operating Temperature
-55 °C
Dimensions
8.75 x 4 x 1.75mm
Maximum Operating Temperature
+125 °C
Output Type
Bipolar Schottky TTL
Propagation Delay Test Condition
50pF
Length
8.75mm
Height
1.75mm
Zemlja podrijetla
Philippines
Detalji o proizvodu
74VHC Family, ON Semiconductor
Advanced 74VHC High-Speed silicon-gate CMOS logic family products from ON Semiconductor offering high speed operation similar to equivalent Bipolar Schottky TTL, whilst maintaining the advantage of CMOS low power dissipation.
74VHC Family
RSD 88.179
RSD 35,271 komad (u Reel od 2500) (bez PDV-a)
RSD 105.814
RSD 42,325 komad (u Reel od 2500) (s PDV-om)
2500
RSD 88.179
RSD 35,271 komad (u Reel od 2500) (bez PDV-a)
RSD 105.814
RSD 42,325 komad (u Reel od 2500) (s PDV-om)
2500
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Tehnička dokumentacija
Tehnički podaci
Brand
onsemiLogic Function
XOR
Mounting Type
Surface Mount
Number Of Elements
4
Number of Inputs per Gate
2
Schmitt Trigger Input
No
Package Type
SOIC
Pin Count
14
Logic Family
VHC
Input Type
CMOS
Maximum Operating Supply Voltage
5.5 V
Maximum High Level Output Current
-8mA
Maximum Propagation Delay Time @ Maximum CL
16.5ns
Minimum Operating Supply Voltage
2 V
Maximum Low Level Output Current
8mA
Width
4mm
Minimum Operating Temperature
-55 °C
Dimensions
8.75 x 4 x 1.75mm
Maximum Operating Temperature
+125 °C
Output Type
Bipolar Schottky TTL
Propagation Delay Test Condition
50pF
Length
8.75mm
Height
1.75mm
Zemlja podrijetla
Philippines
Detalji o proizvodu
74VHC Family, ON Semiconductor
Advanced 74VHC High-Speed silicon-gate CMOS logic family products from ON Semiconductor offering high speed operation similar to equivalent Bipolar Schottky TTL, whilst maintaining the advantage of CMOS low power dissipation.