Interface - Signal Terminators

Image Part Number Description / PDF Quantity Rfq
UCC5641PW24

UCC5641PW24

Texas Instruments

IC SCSI 9-LINE TERM 24-TSSOP

0

UCC5629FQPTRG4

UCC5629FQPTRG4

Texas Instruments

IC SCSI 14-LINE TERM 48-LQFP

0

DS2117MB/T&R

DS2117MB/T&R

Maxim Integrated

IC TERM SCSI LVD/SE ULT-3 36SSOP

0

UCC5696PNRG4

UCC5696PNRG4

Texas Instruments

IC PROG TERM SCSI 27LINE 80-LQFP

0

UC5603NG4

UC5603NG4

Texas Instruments

IC TERMINATOR SCSI 9LINE 16DIP

0

PACUSB-U2Y6R

PACUSB-U2Y6R

Sanyo Semiconductor/ON Semiconductor

IC USB TERMINATOR 1CHAN SOT23-6

0

UCC5672MWPTRG4

UCC5672MWPTRG4

Texas Instruments

IC SCSI 9-LINE TERM 36-SSOP

0

Z53C8003VSC

Z53C8003VSC

Zilog / Littelfuse

IC SCSI CMOS 48PLCC

0

DS21T09S

DS21T09S

Maxim Integrated

IC TERM PLUG/PLAY SCSI 28-SOIC

0

SIP5668CS-TR-E3

SIP5668CS-TR-E3

Vishay / Siliconix

IC SCSI 14-LINE TERM SQFP

0

UCC5640PW28G4

UCC5640PW28G4

Texas Instruments

IC SCSI 9-LINE TERM 28-TSSOP

0

Z53C8003FSC

Z53C8003FSC

Zilog / Littelfuse

IC SCSI CMOS 48LQFP

0

DS21T05S

DS21T05S

Maxim Integrated

IC TERMINATOR SCSI 300MIL 16SOIC

0

DS21T07S/T&R

DS21T07S/T&R

Maxim Integrated

IC TERMINATOR SCSI 16-SOIC

0

PACUSB-D1YB5R

PACUSB-D1YB5R

Sanyo Semiconductor/ON Semiconductor

IC USB TERMINATOR 1CHAN SC70-6

0

DS21T05Z/T&R

DS21T05Z/T&R

Maxim Integrated

IC TERMINATOR SCSI 150MIL 16SOIC

0

Z53C8003VSC00TR

Z53C8003VSC00TR

Zilog / Littelfuse

IC Z53C80 SCSI 44PLCC

0

UC5601DWPTRG4

UC5601DWPTRG4

Texas Instruments

IC TERMINATOR SCSI 28SOIC

0

DS21S07AS/T&R

DS21S07AS/T&R

Maxim Integrated

IC TERMINATOR SCSI 16-SOIC

0

LX7202-15ISF

LX7202-15ISF

Microsemi

IC USB LINE TERM EMI/ESD SOT23-6

0

Interface - Signal Terminators

1. Overview

Signal terminators are specialized integrated circuits designed to match impedances and suppress signal reflections in high-speed transmission lines. They play a critical role in maintaining signal integrity by ensuring that voltage and current signals propagate without distortion. These devices are essential in modern electronics, particularly in applications requiring high-frequency data transmission, such as telecommunications, computing, and industrial automation.

2. Main Types and Functional Classification

Type Functional Characteristics Application Examples
Resistive Terminators Fixed or adjustable resistors to match transmission line impedance DDR memory interfaces, RS-485 buses
Capacitive Terminators Block DC signals while allowing AC signals to pass High-speed ADC/DAC interfaces
Active Terminators Dynamic impedance adjustment with voltage regulation Fiber optic communication systems
Differential Terminators Balanced termination for differential signaling Ethernet (10GBASE-T), USB 3.0

3. Structure and Composition

Signal terminators typically consist of: - Precision resistors/capacitors embedded in silicon or ceramic substrates. - Package housing (e.g., SMT, TSSOP) with thermal dissipation features. - Internal ESD protection layers to prevent voltage spikes. - Multi-layer metallization for high-frequency signal routing.

4. Key Technical Specifications

Parameter Description
Termination Resistance ( ) Matches transmission line impedance (e.g., 50 , 75 , 100 ).
Frequency Range (GHz) Determines suitability for high-speed applications (e.g., 0.1-10 GHz).
Power Handling (W) Maximum power dissipation without thermal degradation.
Capacitance (pF) Affects signal rise/fall time in capacitive terminators.
Impedance Tolerance (%) Accuracy of impedance matching (e.g., 2%, 5%).

5. Application Fields

  • Telecommunications: 5G base stations, optical transceivers.
  • Computing: Motherboard PCIe interfaces, GPU memory buses.
  • Industrial: PLCs, motor drive signal lines.
  • Automotive: CAN FD bus systems, ADAS sensors.

Case Study: In 10GBASE-T Ethernet, differential terminators ensure 100 impedance matching to reduce crosstalk and bit error rates.

6. Leading Manufacturers and Products

Manufacturer Representative Product Key Features
TI (Texas Instruments) SN75LBC176 RS-485 line driver with integrated termination
Analog Devices ADN4661 Low-power LVDS signal terminator
Infineon Technologies TLE5012B Automotive CAN FD controller with termination
STMicroelectronics TS922 Rail-to-rail op-amp for active termination circuits

7. Selection Guidelines

Key considerations: 1. Impedance match: Align with transmission line characteristics. 2. Frequency compatibility: Ensure specifications exceed system requirements. 3. Environmental factors: Temperature range, vibration resistance. 4. Package size: Prioritize SMT for high-density PCBs.
Case Study: For aerospace applications, select terminators with 2% impedance tolerance and -55 C to +125 C operating range.

8. Industry Trends

  • Development of terahertz-range terminators for 6G networks.
  • Integration with AI-driven impedance tuning in active terminators.
  • Adoption of nanomaterial-based substrates for improved thermal management.
  • Growth in automotive Ethernet terminators due to vehicle electrification.
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