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Bits (#) 17 Data rate (max) (Mbps) 360 Topology Open drain, Push-Pull Output drive capability (max) (mA) 100000 Vin (min) (V) 3 Vin (max) (V) 5.5 Applications GTL Features Single supply Technology family FB Supply current (max) (mA) 145 Rating Catalog Operating temperature range (°C) 0 to 70
Bits (#) 17 Data rate (max) (Mbps) 360 Topology Open drain, Push-Pull Output drive capability (max) (mA) 100000 Vin (min) (V) 3 Vin (max) (V) 5.5 Applications GTL Features Single supply Technology family FB Supply current (max) (mA) 145 Rating Catalog Operating temperature range (°C) 0 to 70
HLQFP (PCA) 100 256 mm² (16 mm × 16 mm)
  • Compatible With IEEE Std 1194.1-1991 (BTL)
  • LVTTL A Port, Backplane Transceiver Logic (BTL) B\ Port
  • Open-Collector B\-Port Outputs Sink 100 mA
  • B\-Port Biasing Network Preconditions the Connector and PC Trace to the BTL High-Level Voltage
  • High-Impedance State During Power Up and Power Down
  • Selectable Clock Delay
  • TTL-Input Structures Incorporate Active Clamping Networks to Aid in Line Termination
  • BIAS VCC Minimizes Signal Distortion During Live Insertion/Withdrawal

  • Compatible With IEEE Std 1194.1-1991 (BTL)
  • LVTTL A Port, Backplane Transceiver Logic (BTL) B\ Port
  • Open-Collector B\-Port Outputs Sink 100 mA
  • B\-Port Biasing Network Preconditions the Connector and PC Trace to the BTL High-Level Voltage
  • High-Impedance State During Power Up and Power Down
  • Selectable Clock Delay
  • TTL-Input Structures Incorporate Active Clamping Networks to Aid in Line Termination
  • BIAS VCC Minimizes Signal Distortion During Live Insertion/Withdrawal

The SN74FB1653 contains an 8-bit and a 9-bit transceiver with a buffered clock. The clock and transceivers are designed to translate signals between LVTTL and BTL environments. The device is designed specifically to be compatible with IEEE Std 1194.1-1991 (BTL).

The A port operates at LVTTL signal levels. The A outputs reflect the inverse of the data at the B\ port when the A-port output enable (OEA) is high. When OEA is low or when VCC(5 V) typically is less than 2.5 V, the A outputs are in the high-impedance state.

The B\ port operates at BTL signal levels. The open-collector B\ ports are specified to sink 100 mA. Two output enables (OEB and OEB)\ are provided for the B\ outputs. When OEB is low, OEB\ is high, or VCC(5 V) typically is less than 2.5 V, the B port is turned off.

The clock-select (2SEL1 and 2SEL2) inputs are used to configure the TTL-to-BTL clock paths and delays (refer to the MUX-MODE DELAY table).

BIAS VCC establishes a voltage between 1.62 V and 2.1 V on the BTL outputs when VCC(5 V) is not connected.

BG VCC and BG GND are the supply inputs for the bias generator.

VREF is an internally generated voltage source. It is recommended that VREF be decoupled with a 0.1-µF capacitor.

Enhanced heat-dissipation techniques should be used when operating this device from AI to A0 at frequencies greater than 50 MHz, or from AI to B\ or B\ to A0 at frequencies greater than 100 MHz.

The SN74FB1653 contains an 8-bit and a 9-bit transceiver with a buffered clock. The clock and transceivers are designed to translate signals between LVTTL and BTL environments. The device is designed specifically to be compatible with IEEE Std 1194.1-1991 (BTL).

The A port operates at LVTTL signal levels. The A outputs reflect the inverse of the data at the B\ port when the A-port output enable (OEA) is high. When OEA is low or when VCC(5 V) typically is less than 2.5 V, the A outputs are in the high-impedance state.

The B\ port operates at BTL signal levels. The open-collector B\ ports are specified to sink 100 mA. Two output enables (OEB and OEB)\ are provided for the B\ outputs. When OEB is low, OEB\ is high, or VCC(5 V) typically is less than 2.5 V, the B port is turned off.

The clock-select (2SEL1 and 2SEL2) inputs are used to configure the TTL-to-BTL clock paths and delays (refer to the MUX-MODE DELAY table).

BIAS VCC establishes a voltage between 1.62 V and 2.1 V on the BTL outputs when VCC(5 V) is not connected.

BG VCC and BG GND are the supply inputs for the bias generator.

VREF is an internally generated voltage source. It is recommended that VREF be decoupled with a 0.1-µF capacitor.

Enhanced heat-dissipation techniques should be used when operating this device from AI to A0 at frequencies greater than 50 MHz, or from AI to B\ or B\ to A0 at frequencies greater than 100 MHz.

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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 SN74FB1653 数据表 (Rev. H) 2004-3-10
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

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SN74FB1653 IBIS Model (Rev. C)

SCBM012 (10 KB) - IBIS 模型
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