Technical Documents
Specifications
Brand
STMicroelectronicsProduct Type
Counter
Package Type
SO
Mount Type
Surface
Number of Elements
1
Minimum Supply Voltage
-0.5V
Pin Count
14
Maximum Supply Voltage
22V
Maximum Operating Temperature
125°C
Length
8.75mm
Height
1.75mm
Standards/Approvals
No
Series
HCF4093
Automotive Standard
AEC-Q100
Country of Origin
Morocco
Product Details
The HCF4093 is a monolithic integrated circuit fabricated in metal oxide semiconductor technology available in the SO14 package.
The HCF4093 consists of four Schmitt trigger circuits. Each circuit function has a 2-input NAND gate with Schmitt trigger action on both inputs. The gate switches at different points for positive and negative going signals. The difference between the positive voltage (VP) and the negative voltage (VN) is defined as hysteresis voltage (VH).
Stock information temporarily unavailable.
299.000 OMR
0.120 OMR Each (On a Reel of 2500) (ex VAT)
313.950 OMR
0.126 OMR Each (On a Reel of 2500) (inc. VAT)
2500
299.000 OMR
0.120 OMR Each (On a Reel of 2500) (ex VAT)
313.950 OMR
0.126 OMR Each (On a Reel of 2500) (inc. VAT)
Stock information temporarily unavailable.
2500
| Quantity | Unit price | Per Reel |
|---|---|---|
| 2500 - 2500 | 0.120 OMR | 299.000 OMR |
| 5000+ | 0.108 OMR | 269.100 OMR |
Technical Documents
Specifications
Brand
STMicroelectronicsProduct Type
Counter
Package Type
SO
Mount Type
Surface
Number of Elements
1
Minimum Supply Voltage
-0.5V
Pin Count
14
Maximum Supply Voltage
22V
Maximum Operating Temperature
125°C
Length
8.75mm
Height
1.75mm
Standards/Approvals
No
Series
HCF4093
Automotive Standard
AEC-Q100
Country of Origin
Morocco
Product Details
The HCF4093 is a monolithic integrated circuit fabricated in metal oxide semiconductor technology available in the SO14 package.
The HCF4093 consists of four Schmitt trigger circuits. Each circuit function has a 2-input NAND gate with Schmitt trigger action on both inputs. The gate switches at different points for positive and negative going signals. The difference between the positive voltage (VP) and the negative voltage (VN) is defined as hysteresis voltage (VH).