Table 10-16. Example 3 SSPA Response String

Byte

Byte

Description

Position

Value

 

 

(hex)

 

1

AA

Frame Sync Byte 1

 

 

 

2

55

Frame Sync Byte 2

3

A

Destination Address of PC request originator

 

 

 

4

5

Source address of the respondent

 

 

 

5

0

Protocol Version Compatibility Field must be always 0

 

 

 

6

6F

Echo of the Originator’s Request ID byte

 

 

 

7

3

“Get Response” designator

 

 

 

8

3

Data Tag 3. System conditions access

 

 

 

9

0

Error status “0”, No Errors

 

 

 

10

12

Data length - 18 bytes

 

 

 

11

47

Tempcomp attenuator DAC value Low Byte

 

 

 

12

2

Tempcomp attenuator DAC value High Byte, DAC Value=583

 

 

 

13

1C

SSPA internal core temperature Low Byte

 

 

 

14

0

SSPA internal core temperature High Byte, Temperature=28 C

 

 

 

15

0

SSPA Fault status Low Byte. See Table 10-15.

 

 

 

16

80

SSPA Fault status High Byte. See Table 10-15.

 

 

 

17

C8

SSPA Attenuation Level Low Byte

 

 

 

18

0

SSPA Attenuation Level, High Byte, Atten. Level=200 – 20.0 dB

 

 

 

19

82

Forward RF output Low byte

 

 

 

20

1

Forward RF output High byte, Forward RF=386 – 38.6 dBm

 

 

 

21

B6

SSPA DC Current Low Byte

 

 

 

22

2

SSPA DC Current High Byte, Current=694 – 69.4 Amps

 

 

 

23

67

SSPA Regulator DC voltage Low Byte

 

 

 

24

0

SSPA Regulator DC voltage High Byte, Voltage=103 – 10.3 Volts

 

 

 

25

95

SSPA Power Supply voltage Low Byte

 

 

 

26

0

SSPA Power Supply voltage High Byte, Voltage=149 – 14.9 Volts

 

 

 

27

D3

SSPA Gate Drive Voltage Low Byte

 

 

 

28

FF

SSPA Gate Drive Voltage High Byte Voltage= -45(-4.5) Volts

 

 

 

29

4C

Arithmetic checksum of bytes 3 to 28

 

 

 

Operations Manual, HPA2, Compact Outdoor SSPA

205486 REV F

101

Page 101
Image 101
Paradise 205486 REV F manual Get Response designator

205486 REV F specifications

Paradise 205486 REV F is an innovative and cutting-edge solution that promises to reshape the landscape of various industries, primarily through its focus on sustainability, efficiency, and advanced technology integration. This model has garnered attention for its unique features that set it apart from its predecessors.

One of the main features of Paradise 205486 REV F is its environmentally friendly design. It utilizes sustainable materials in its construction, reducing the overall carbon footprint while promoting energy efficiency. This approach not only helps in conserving natural resources but also aligns with global efforts to combat climate change. The use of recyclable materials ensures that the product remains viable even at the end of its lifecycle.

Furthermore, the integrated technologies of Paradise 205486 REV F reflect a modern approach to automation and connectivity. It is equipped with advanced IoT (Internet of Things) capabilities, allowing for real-time data monitoring and analytics. This means users can track performance metrics and gather insights that drive informed decision-making. The system's connectivity with smart devices ensures seamless communication, enhancing user experience and operational efficiency.

The model also incorporates artificial intelligence that enables predictive maintenance and operational optimization. By analyzing data patterns, the AI system can foresee potential issues and address them before they escalate, minimizing downtime and ensuring continuous productivity. This feature is particularly valuable in industrial applications where time is critical.

Another standout characteristic of the Paradise 205486 REV F is its modular design. This flexibility allows users to customize configurations based on specific needs, ensuring that the solution can adapt to various environments and uses. Whether intended for industrial, commercial, or residential applications, the model can be tailored to suit various operational requirements, enhancing overall user satisfaction.

Moreover, the user interface is designed for intuitive interaction. With a focus on user-friendliness, the interface ensures that both expert users and beginners can navigate and utilize the system effectively. Comprehensive training and support resources further complement this, making the transition to the new system smooth and efficient.

In conclusion, Paradise 205486 REV F represents a significant advancement in sustainable technology. With its commitment to environmental stewardship, integration of cutting-edge IoT and AI technologies, and customizable modular design, it serves as a forward-thinking solution that meets the demands of today and anticipates the needs of tomorrow. This model not only elevates operational efficiency but also emphasizes the importance of sustainability in technological advancements.