产品详情

Bits (#) 19 Data rate (max) (Mbps) 150 Topology Open drain Direction control (typ) Direction-controlled Vin (min) (V) 3 Vin (max) (V) 5.5 Vout (min) (V) 3 Vout (max) (V) 5.5 Applications IEEE1284 Features Output damping resistors, Output enable, Overvoltage tolerant inputs, Partial power down (Ioff) Prop delay (ns) 40 Technology family LVC Supply current (max) (mA) 45 Rating Catalog Operating temperature range (°C) 0 to 70
Bits (#) 19 Data rate (max) (Mbps) 150 Topology Open drain Direction control (typ) Direction-controlled Vin (min) (V) 3 Vin (max) (V) 5.5 Vout (min) (V) 3 Vout (max) (V) 5.5 Applications IEEE1284 Features Output damping resistors, Output enable, Overvoltage tolerant inputs, Partial power down (Ioff) Prop delay (ns) 40 Technology family LVC Supply current (max) (mA) 45 Rating Catalog Operating temperature range (°C) 0 to 70
SSOP (DL) 48 164.358 mm² (15.88 mm × 10.35 mm) TSSOP (DGG) 48 101.25 mm² (12.5 mm × 8.1 mm)
  • 1.4-k Pullup Resistors Integrated on All Open-Drain Outputs Eliminate the Need for Discrete Resistors
  • ESD Protection Exceeds 2000 V Per MIL-STD-883, Method 3015; Exceeds 200 V Using Machine Model (C = 200 pF, R = 0)
  • Designed for the IEEE Std 1284-I (Level 1 Type) and IEEE Std 1284-II (Level 2 Type) Electrical Specifications
  • Flow-Through Architecture Optimizes PCB Layout
  • Package Options Include Plastic 300-mil Shrink Small-Outline (DL) and Thin-Shrink Small-Outline (DGG) Packages

  • 1.4-k Pullup Resistors Integrated on All Open-Drain Outputs Eliminate the Need for Discrete Resistors
  • ESD Protection Exceeds 2000 V Per MIL-STD-883, Method 3015; Exceeds 200 V Using Machine Model (C = 200 pF, R = 0)
  • Designed for the IEEE Std 1284-I (Level 1 Type) and IEEE Std 1284-II (Level 2 Type) Electrical Specifications
  • Flow-Through Architecture Optimizes PCB Layout
  • Package Options Include Plastic 300-mil Shrink Small-Outline (DL) and Thin-Shrink Small-Outline (DGG) Packages

The SN74LVC161284 is designed for 3-V to 3.6-V VCC operation. This device provides asynchronous two-way communication between data buses. The control-function implementation minimizes external timing requirements.

This device has eight bidirectional bits; data can flow in the A-to-B direction when DIR is high, and in the B-to-A direction when DIR is low. This device also has five drivers, which drive the cable side, and four receivers. The SN74LVC161284 has one receiver dedicated to the HOST LOGIC line and a driver to drive the PERI LOGIC line.

The output drive mode is determined by the high-drive (HD) control pin. When HD is high, the outputs are in a totem-pole configuration, and in an open-drain configuration when HD is low. This meets the drive requirements as specified in the IEEE Std 1284-I (level 1 type) and IEEE Std 1284-II (level 2 type) parallel peripheral-interface specifications. Except for HOST LOGIC IN and PERI LOGIC OUT, all cable-side pins have a 1.4-k integrated pullup resistor. The pullup resistor is switched off if the associated output driver is in the low state or if the output voltage is above VCC CABLE. If VCC CABLE is off, PERI LOGIC OUT is set to low.

The device has two supply voltages. VCC is designed for 3-V to 3.6-V operation. VCC CABLE supplies the inputs and output buffers of the cable side only and is designed for 3-V to 3.6-V and for 4.7-V to 5.5-V operation. Even when VCC CABLE is 3 V to 3.6 V, the cable-side I/O pins are 5-V tolerant.

The SN74LVC161284 is characterized for operation from 0°C to 70°C.

The SN74LVC161284 is designed for 3-V to 3.6-V VCC operation. This device provides asynchronous two-way communication between data buses. The control-function implementation minimizes external timing requirements.

This device has eight bidirectional bits; data can flow in the A-to-B direction when DIR is high, and in the B-to-A direction when DIR is low. This device also has five drivers, which drive the cable side, and four receivers. The SN74LVC161284 has one receiver dedicated to the HOST LOGIC line and a driver to drive the PERI LOGIC line.

The output drive mode is determined by the high-drive (HD) control pin. When HD is high, the outputs are in a totem-pole configuration, and in an open-drain configuration when HD is low. This meets the drive requirements as specified in the IEEE Std 1284-I (level 1 type) and IEEE Std 1284-II (level 2 type) parallel peripheral-interface specifications. Except for HOST LOGIC IN and PERI LOGIC OUT, all cable-side pins have a 1.4-k integrated pullup resistor. The pullup resistor is switched off if the associated output driver is in the low state or if the output voltage is above VCC CABLE. If VCC CABLE is off, PERI LOGIC OUT is set to low.

The device has two supply voltages. VCC is designed for 3-V to 3.6-V operation. VCC CABLE supplies the inputs and output buffers of the cable side only and is designed for 3-V to 3.6-V and for 4.7-V to 5.5-V operation. Even when VCC CABLE is 3 V to 3.6 V, the cable-side I/O pins are 5-V tolerant.

The SN74LVC161284 is characterized for operation from 0°C to 70°C.

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顶层文档 类型 标题 格式选项 下载最新的英语版本 日期
* 数据表 SN74LVC161284 数据表 (Rev. J) 2005-2-15
应用手册 原理图检查清单 - 使用自动双向转换器进行设计的指南 PDF | HTML 英语版 PDF | HTML 2024-12-3
应用手册 Understanding Transient Drive Strength vs. DC Drive Strength in Level-Shifters (Rev. A) PDF | HTML 2024-7-3
选择指南 Voltage Translation Buying Guide (Rev. A) 2021-4-15
应用手册 Logic Solutions For IEEE Std 1284 1999-6-1

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仿真模型

HSPICE Model for SN74LVC161284

SCEJ258.ZIP (102 KB) - HSpice 模型
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仿真模型

SN74LVC161284 IBIS Model

SCAM032.ZIP (100 KB) - IBIS 模型
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封装 引脚 CAD 符号、封装和 3D 模型
SSOP (DL) 48 Ultra Librarian
TSSOP (DGG) 48 Ultra Librarian

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