3M™ Digital WallDisplayAppendix

Input/Output Signal Specifications

 

 

 

 

 

 

 

Video Signal

Analog 0.7Vp-p, 75 Ohms

 

 

 

termination (positive polarity)

 

 

 

 

 

 

 

 

 

 

 

 

Horizontal Sync Signal

TTL Level (positive/negative

 

 

 

polarity)

 

 

 

 

 

 

 

 

 

 

 

 

Vertical Sync Signal

TTL Level (positive/negative

 

 

Computer

polarity)

 

 

 

 

 

 

 

 

 

 

 

Composite Sync Signal

TTL Level

 

 

 

 

 

 

 

 

Audio Input Signal

200m Vrms, 20k Ohms (Max

 

 

 

3.0Vp-p)

 

 

 

 

 

 

 

 

 

 

 

 

Audio Output Signal

0~200m Vrms, 1k Ohms

 

 

 

 

 

 

 

 

S-Video

Luminance signal: 1.0Vp-p,

 

 

 

75 Ohms

 

 

 

 

 

 

 

 

 

 

 

 

 

Chrominance signal:

 

 

Video

 

0.286Vp-p (color burst), 75

 

 

 

Ohms

 

 

 

 

 

 

 

 

 

 

 

 

Video Signal

1.0 Vp-p, 75 Ohms

 

 

 

 

 

 

 

 

Audio Input Signal

200m Vrms, 20k Ohms

 

 

 

 

 

 

 

 

 

 

 

Computer Compatibility

Resolution

Refresh Rate

Horizontal

 

 

Frequency

 

 

 

640x400

85 Hz

37.9 kHz

640x480

60 Hz

31.5 kHz

640x480

72 Hz

37.9 kHz

 

 

 

640x480

75 Hz

37.5 kHz

 

 

 

640x480

85 Hz

43.3 kHz

800x600

56 Hz

35.1 kHz

 

 

 

800x600

60 Hz

37.9 kHz

 

 

 

800x600

72 Hz

48.1 kHz

 

 

 

800x600

75 Hz

46.9 kHz

800x600

85 Hz

53.7 kHz

1024x768

60 Hz

48.4 kHz

 

 

 

1024x768

70 Hz

56.5 kHz

 

 

 

1024x768

75 Hz

60.0 kHz

1024x768

85 Hz

68.7 kHz

 

 

 

1280x1024

60 Hz

64.0 kHz

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Texas Instruments 8200IC, 8200IW, 8100CB manual Input/Output Signal Specifications, Computer Compatibility

8200IW, 8100CB, 8200IC specifications

Texas Instruments (TI) has long been a leader in the semiconductor industry, developing a wide range of integrated circuits (ICs) that cater to various applications. Among these, the TI 8200IC, 8100CB, and 8200IW stand out for their innovative features and advanced technologies.

The Texas Instruments 8200IC is primarily designed for high-performance data processing applications. One of its standout features is its ability to operate at high speeds, making it ideal for demanding computing tasks. This IC supports a broad range of input voltages, ensuring compatibility with various systems. Its low power consumption is another critical advantage, as it allows for longer battery life in portable devices. Embedded within the 8200IC are advanced signal processing capabilities, which enable efficient handling of complex algorithms and data streams. This feature is essential in applications ranging from telecommunications to consumer electronics.

The TI 8100CB, on the other hand, focuses on microcontroller functionality, offering a versatile solution for embedded systems. This chip comes with an extensive selection of I/O ports, allowing seamless integration with other components in a system. Its built-in memory facilitates the execution of intricate control algorithms, making it suitable for automation and robotics applications. The 8100CB also supports multiple communication protocols, including Serial Peripheral Interface (SPI) and Inter-Integrated Circuit (I2C), enabling easy connectivity with sensors and peripherals. Moreover, its robust design ensures reliability in various operating conditions, making it a preferred choice for industrial and automotive applications.

Finally, the Texas Instruments 8200IW is designed with wireless communication in mind. This IC excels in providing reliable connectivity solutions, supporting multiple wireless protocols such as Bluetooth and Wi-Fi. Its compact design enables integration into space-constrained devices while maintaining high performance. The 8200IW features advanced security mechanisms to ensure data integrity during wireless transmission, which is critical in today’s connected world. Additionally, its energy-efficient architecture is tailored for IoT applications, allowing devices to operate efficiently in low-power modes.

In summary, the Texas Instruments 8200IC, 8100CB, and 8200IW showcase the company’s commitment to innovation in semiconductor technology. With features tailored for high-speed data processing, microcontroller applications, and wireless communication, these ICs offer versatile solutions for a wide array of uses, empowering designers to create cutting-edge products across different sectors.