SNJ54LVTH16244AWD 供应商
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SNJ54LVTH16244AWD
品牌:TI 封装/批号:SOP/ -
SNJ54LVTH16244AWD
品牌:TI 封装/批号:TSSOP/23+
SNJ54LVTH16244AWD 属性参数
- 现有数量:0现货2,995Factory
- 价格:在售
- 系列:*
- 包装:管件
- 产品状态:在售
- 逻辑类型:-
- 元件数:-
- 每个元件位数:-
- 输入类型:-
- 输出类型:-
- 电流 - 输出高、低:-
- 电压 - 供电:-
- 工作温度:-
- 安装类型:-
- 封装/外壳:-
- 供应商器件封装:-
产品特性
- Members of the Texas Instruments Widebus Family
- State-of-the-Art Advanced BiCMOS Technology (ABT) Design for 3.3-V Operation and Low Static-Power Dissipation
- Support Mixed-Mode Signal Operation (5-V Input and Output Voltages With 3.3-V VCC)
- Support Unregulated Battery Operation Down to 2.7 V
- Typical VOLP (Output Ground Bounce) <0.8 V at VCC = 3.3 V, TA = 25°C
- Ioff and Power-Up 3-State Support Hot Insertion
- Bus Hold on Data Inputs Eliminates the Need for External Pullup/Pulldown Resistors
- Latch-Up Performance Exceeds 500 mA Per JESD 17
- ESD Protection Exceeds JESD 22 2000-V Human-Body Model (A114-A) 200-V Machine Model (A115-A)
- 2000-V Human-Body Model (A114-A)
- 200-V Machine Model (A115-A)
产品概述
The 'LVTH16244A devices are 16-bit buffers and line drivers designed for low-voltage
(3.3-V) VCC operation, but with the capability to provide a TTL interface to
a 5-V system environment. These devices can be used as four 4-bit buffers, two 8-bit buffers, or
one 16-bit buffer. These devices provide true outputs and symmetrical active-low output-enable
(OE) inputs.Active bus-hold circuitry holds unused or undriven inputs at a valid logic state. Use of
pullup or pulldown resistors with the bus-hold circuitry is not recommended.When VCC is between 0 and 1.5 V, the devices are in the
high-impedance state during power up or power down. However, to ensure the high-impedance state
above 1.5 V, OE should be tied to VCC through a
pullup resistor; the minimum value of the resistor is determined by the current-sinking capability
of the driver.These devices are fully specified for hot-insertion applications using
Ioff and power-up 3-state. The Ioff circuitry
disables the outputs, preventing damaging current backflow through the devices when they are
powered down. The power-up 3-state circuitry places the outputs in the high-impedance state during
power up and power down, which prevents driver conflict.