SN74LVC16T245-EP
- Control Inputs VIH and VIL Levels Are
Referenced to VCCA Voltage - VCC Isolation Feature – If Either VCC
Input Is at GND, Both Ports Are in the High-Impedance State - Overvoltage-Tolerant Inputs and Outputs Allow Mixed-Voltage-Mode Data
Communications - Fully Configurable Dual-Rail Design Allows Each Port to Operate Over the Full
1.65-V to 5.5-V Power-Supply Range - Ioff Supports Partial-Power-Down Mode Operation
- Latch-Up Performance Exceeds 100 mA Per JESD 78, Class II
- ESD Protection Exceeds JESD 22
- 2000-V Human-Body Model (A114-A)
- 200-V Machine Model (A115-A)
- 1000-V Charged-Device Model (C101)
This 16-bit noninverting bus transceiver uses two separate configurable power-supply rails. The A port is designed to track VCCA. VCCA accepts any supply voltage from 1.65 V to 5.5 V. The B port is designed to track VCCB. VCCB accepts any supply voltage from 1.65 V to 5.5 V. This allows for universal low-voltage bidirectional translation between any of the 1.8-V, 2.5-V, 3.3-V, and 5-V voltage nodes.
The SN74LVC16T245 is designed for asynchronous communication between two data buses. The logic levels of the direction-control (DIR) input and the output-enable (OE) input activate either the B-port outputs or the A-port outputs or place both output ports into the high-impedance mode. The device transmits data from the A bus to the B bus when the B-port outputs are activated, and from the B bus to the A bus when the A-port outputs are activated. The input circuitry on both A and B ports always is active and must have a logic HIGH or LOW level applied to prevent excess ICC and ICCZ.
The SN74LVC16T245 is designed so that the control pins (1DIR, 2DIR, 1OE, and 2OE) are supplied by VCCA.
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.
The VCC isolation feature ensures that if either VCC input is at GND, then both ports are in the high-impedance state.
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.
기술 자료
| 상위 문서 | 유형 | 직함 | 형식 옵션 | 최신 영어 버전 다운로드 | 날짜 |
|---|---|---|---|---|---|
| * | 데이터 시트 | SN74LVC16T245-EP 16-BIT DUAL-SUPPLY BUS TRANSCEIVER datasheet (Rev. A) | 2013. 2. 12 | ||
| * | 방사능 및 안정성 보고서 | CLVC16T245MDGGREP Reliability Report | 2013. 4. 24 | ||
| * | 방사능 및 안정성 보고서 | CLVC16T245MDGGREP Reliability Report | 2013. 4. 24 | ||
| * | VID | SN74LVC16T245-EP VID V6212667 | 2016. 6. 21 | ||
| 애플리케이션 노트 | Schematic Checklist - A Guide to Designing With Fixed or Direction Control Translators | PDF | HTML | 2024. 10. 2 | ||
| 애플리케이션 노트 | Schematic Checklist - A Guide to Designing with Auto-Bidirectional Translators | PDF | HTML | 2024. 7. 12 | ||
| 애플리케이션 노트 | Understanding Transient Drive Strength vs. DC Drive Strength in Level-Shifters (Rev. A) | PDF | HTML | 2024. 7. 3 | ||
| Application brief | Voltage Translation for Rugged High Reliability Applications | PDF | HTML | 2021. 7. 20 | ||
| 선택 가이드 | Voltage Translation Buying Guide (Rev. A) | 2021. 4. 15 |
설계 및 개발
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| 패키지 | 핀 | CAD 기호, 풋프린트 및 3D 모델 |
|---|---|---|
| TSSOP (DGG) | 48 | Ultra Librarian |