--- 產品詳情 ---
Technology Family | LV-A |
Supply voltage (Min) (V) | 2 |
Supply voltage (Max) (V) | 5.5 |
Number of channels (#) | 10 |
IOL (Max) (mA) | 12 |
ICC (Max) (uA) | 20 |
IOH (Max) (mA) | -12 |
Input type | Schmitt-Trigger |
Output type | 3-State |
Features | Balanced outputs, High speed (tpd 10-50ns), Partial power down (Ioff), Over-voltage tolerant inputs |
Rating | Catalog |
- 2-V to 5.5-V VCC Operation
- Max tpd of 15 ns at 5 V
- Schmitt-Trigger Inputs Allow for Slow Input Rise/Fall Time
- Polarity Control for Y Outputs Selects True or Complementary Logic
- Typical VOLP (Output Ground Bounce)
???<0.8 V at VCC = 3.3 V, TA = 25°C - Typical VOHV (Output VOH Undershoot)
???>>2.3 V at VCC = 3.3 V, TA = 25°C - Ioff Supports Partial-Power-Down Mode Operation
- Supports Mixed-Mode Voltage Operation on All Ports
- Latch-Up Performance Exceeds 250 mA Per JESD 17
- ESD Protection Exceeds JESD 22
- 2000-V Human-Body Model (A114-A)
- 200-V Machine Model (A115-A)
- 1000-V Charged-Device Model (C101)
The SN74LV8151 is a 10-bit universal Schmitt-trigger buffer with 3-state outputs, designed for 2-V to 5.5-V VCC operation. The logic control (T/C\) pin allows the user to configure Y1 to Y8 as noninverting or inverting outputs. When T/C\ is high, the Y outputs are noninverted (true logic ), and when T/C\ is low, the Y outputs are inverted (complementary logic).
When output-enable (OE)\ input is low, the device passes data from Dn to Yn. When OE\ is high, the Y outputs are in the high-impedance state. The path A to P is a simple Schmitt-trigger buffer, and the path B to N is a simple Schmitt-trigger inverter.
This device is fully specified for partial-power-down applications using Ioff. The Ioff circuitry disables the outputs, preventing damaging current backflow through the device when it is powered down.
To ensure the high-impedance state during power up or power down, 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.
為你推薦
-
TI數字多路復用器和編碼器SN54HC1512022-12-23 15:12
-
TI數字多路復用器和編碼器SN54LS1532022-12-23 15:12
-
TI數字多路復用器和編碼器CD54HC1472022-12-23 15:12
-
TI數字多路復用器和編碼器CY74FCT2257T2022-12-23 15:12
-
TI數字多路復用器和編碼器SN74LVC257A2022-12-23 15:12
-
TI數字多路復用器和編碼器SN74LVC157A2022-12-23 15:12
-
TI數字多路復用器和編碼器SN74ALS258A2022-12-23 15:12
-
TI數字多路復用器和編碼器SN74ALS257A2022-12-23 15:12
-
TI數字多路復用器和編碼器SN74ALS157A2022-12-23 15:12
-
TI數字多路復用器和編碼器SN74AHCT1582022-12-23 15:12
-
電動汽車直流快充方案設計【含參考設計】2023-08-03 08:08
-
Buck電路的原理及器件選型指南2023-07-31 22:28
-
100W USB PD 3.0電源2023-07-31 22:27
-
基于STM32的300W無刷直流電機驅動方案2023-07-06 10:02
-
上新啦!開發板僅需9.9元!2023-06-21 17:43
-
參考設計 | 2KW AC/DC數字電源方案2023-06-21 17:43
-
千萬不能小瞧的PCB半孔板2023-06-21 17:34