SNJ54LS244FK Military Integrated Electronic IC Chips With 3 State Outputs
Product Details:
Place of Origin: | original |
Brand Name: | original |
Certification: | original |
Model Number: | SNJ54LS08W |
Payment & Shipping Terms:
Minimum Order Quantity: | 1 |
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Price: | negotiation |
Packaging Details: | carton box |
Delivery Time: | 1-3working days |
Payment Terms: | T/T |
Supply Ability: | 100,000 |
Detail Information |
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Features: | High Speed (tpd 10-50ns) | Supply Voltage (min) (V): | 4.5V |
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Supply Voltage (max) (V): | 5.5V | Number Of Channels: | 8 |
IOL (max) (mA): | 24 | Supply Current (max) (µA): | 46000 |
IOH (max) (mA): | -15 | Input Type: | Bipolar |
High Light: | Integrated Electronic IC Chips,8Ch Electronic IC Chips,SNJ54LS244FK |
Product Description
SNJ54LS244FK Integrated Circuit IC Chip With 3-State Outputs Military 8-Ch 4.5V
Military 8-ch, 4.5-V to 5.5-V bipolar buffers with 3-state outputs
Specifications of SNJ54LS244FK
Technology family | LS |
Supply voltage (min) (V) | 4.5 |
Supply voltage (max) (V) | 5.5 |
Number of channels | 8 |
IOL (max) (mA) | 24 |
Supply current (max) (µA) | 46000 |
IOH (max) (mA) | -15 |
Input type | Bipolar |
Output type | 3-State |
Features | High speed (tpd 10-50ns) |
Rating | Military |
Operating temperature range (°C) | -55 to 125 |
Features of SNJ54LS244FK
*Inputs Tolerant Down to 2 V, Compatible With 3.3-V or 2.5-V Logic Inputs
*Maximum tpd of 15 ns at 5 V
*3-State Outputs Drive Bus Lines or Buffer Memory Address Registers
*PNP Inputs Reduce DC Loading
*Hysteresis at Inputs Improves Noise Margins
Applications of SNJ54LS244FK
• Servers
• LED Displays
• Network Switches
• Telecom Infrastructure
• Motor Drivers
• I/O Expanders
Overview of SNJ54LS244FK
This device is organized as two 4-bit buffers and drivers with separate output-enable (G) inputs. When G is low,
the device passes data from the A inputs to the Y outputs. When G is high, the outputs are in the high
impedance state. Inputs can be driven from either 3.3-V or 5-V devices. This feature allows the use of this device
as a translator in a mixed 3.3-V and 5-V system environment. To ensure the high-impedance state during power
up or power down, G must be tied to VCC through a pullup resistor; the minimum value of the resistor is
determined by the current-sinking capability of the driver.