100% PASS 800-150 - FANTASTIC NEW SUPPORTING CISCO DEVICES FOR FIELD TECHNICIANS EXAM QUESTION

100% Pass 800-150 - Fantastic New Supporting Cisco Devices for Field Technicians Exam Question

100% Pass 800-150 - Fantastic New Supporting Cisco Devices for Field Technicians Exam Question

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Tags: New 800-150 Exam Question, Latest 800-150 Exam Materials, Latest 800-150 Test Format, Reliable 800-150 Test Pattern, 800-150 Free Pdf Guide

Starting from our 800-150 practice materials will make a solid foundation for your exam definitively. Do not satisfied with using shortcuts during your process, regular practice with our 800-150 exam prep will be easy. Tens of thousands of people has achieved success with our 800-150study questions, you can absolutely do it. And you will find that passing the 800-150 exam is as easy as pie.

Cisco 800-150 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Cisco Infrastructure and Collaboration Infrastructure: This section of the exam measures the skills of a Collaboration Engineer and focuses on Cisco infrastructure devices, endpoints, and collaboration technologies. It introduces network devices, collaboration endpoints like IP phones and video systems, and explains on-premises collaboration deployments using tools like Cisco Unified Communications Manager. It also covers how video systems integrate into collaboration environments and highlights Cisco’s cloud services for enterprise communication, including Webex Meetings, Webex Teams, and hosted collaboration solutions.
Topic 2
  • Cisco Hardware Replacement: This section of the exam measures the skills of a Technical Support Engineer and teaches how to safely and correctly replace Cisco hardware. It explains safety procedures such as creating safe work zones and handling electrostatic discharge. Students learn the step-by-step processes to replace a wide range of Cisco devices, from switches and routers to firewalls, UCS servers, and collaboration endpoints. It also covers configuring Cisco NX-OS software, including understanding operating modes, boot procedures, and password recovery, and introduces Cisco collaboration endpoint solutions like IP phones and video systems.
Topic 3
  • Cisco UCS and Data Center Architecture: This section of the exam measures the skills of a Data Center Engineer and introduces Cisco’s UCS and data center solutions. It explains the devices found in a data center, including switches, UCS servers, and director switches, and describes different server deployment models. Students will also learn about virtualization components like virtual machines, hypervisors, cloud computing concepts, and deployment models. The section covers how Cisco UCS devices fit into campus networks, edge locations, and data centers, and explains the key components and connections used in UCS architecture.
Topic 4
  • Common Service Tasks and Tools: This section of the exam measures the skills of a Technical Support Engineer and focuses on tasks commonly needed to manage Cisco devices. It explains how devices boot up, introduces common Cisco IOS commands, and identifies tools for file management. It shows how to confirm physical connections, remotely access devices, and connect to the console port. It also covers how to capture the status of a device, recover passwords, and replace devices by using proper tools. Students are also taught how to find serial numbers on Cisco equipment to assist with support and maintenance activities.
Topic 5
  • Cisco Software: This section of the exam measures the skills of a Network Engineer and discusses Cisco’s software systems and licensing. It explains the difference between IOS install and bundle modes and gives an overview of different licensing models. Students learn how to manage Cisco software images, including backing up, transferring, and installing images via FTP, TFTP, or USB. It also covers how to handle configuration files to keep devices running properly and ensure smooth upgrades or replacements.

>> New 800-150 Exam Question <<

Latest 800-150 Exam Materials, Latest 800-150 Test Format

Attempting these 800-150 practice test questions, again and again, enhances your learning and eliminates errors in your readiness for the Supporting Cisco Devices for Field Technicians certification exam. Customization features of Supporting Cisco Devices for Field Technicians (800-150) practice test software give you chance to adjust the settings of the Supporting Cisco Devices for Field Technicians (800-150) practice exams sessions. Windows laptops and PCs support the desktop-based software of the Cisco 800-150 practice test. These Supporting Cisco Devices for Field Technicians (800-150) practice exams create situations that replicate the actual 800-150 exam.

Cisco Supporting Cisco Devices for Field Technicians Sample Questions (Q82-Q87):

NEW QUESTION # 82
A technician must quickly identify multiple Cisco switches in a rack without powering them on. Where should the technician look for serial numbers on the device?

  • A. Front panel near the status LEDs
  • B. Top surface of each switch
  • C. Rear panel near the power supplies
  • D. Bottom surface of each switch

Answer: C

Explanation:
Theserial numberfor Cisco switches is typically found on a label located on therear panel near the power supplies. This positioning allows technicians to quickly access identification information even when the device is not powered on.
This label is essential for inventory tracking, RMA procedures, and registration for support. Serial numbers are not typically placed on the top or bottom surfaces for devices mounted in a rack, as those areas are less accessible.
Reference:Supporting Cisco Devices for Field Technicians (FLDTEC) - Cisco Equipment and Related Hardware


NEW QUESTION # 83
Which term describes the physical range of radio frequency coverage provided by an access point in a wireless topology?

  • A. Wireless LAN (WLAN)
  • B. Service Set Identifier (SSID)
  • C. Basic Service Area (BSA)
  • D. Wireless LAN Controller (WLC)

Answer: C

Explanation:
In wireless networking, theBasic Service Area (BSA)refers to the physical area of radio frequency coverage provided by an access point (AP) in a Basic Service Set (BSS). The BSA defines the coverage area where wireless clients can connect to the network through the AP. The size and shape of a BSA depend on various factors, including the AP's transmit power, antenna type, and physical environment.
Option A, the Service Set Identifier (SSID), is the network name broadcast by the AP. Option C, Wireless LAN (WLAN), refers to the overall wireless network. Option D, Wireless LAN Controller (WLC), is a device that manages multiple APs in a network.
Reference:Supporting Cisco Devices for Field Technicians (FLDTEC) - Wireless Device Support


NEW QUESTION # 84
Drag and drop the safety actions that must be taken prior to beginning work into order on the right for working with electrical equipment.

Answer:

Explanation:

Explanation:

In theFLDTEC course, underSafety and ESD Procedures, Cisco outlines the following safety workflow before working on any network hardware:
* Locate Emergency Power-Off Switch: Identifying how to cut power quickly is essential in case of an electrical fault or emergency.
* Disconnect Power: Always ensure the power source is turned off and disconnected before handling any components.
* Verify with Multimeter: Use a multimeter to confirm that no voltage is present before proceeding.
* Connect ESD Strap: Once confirmed safe, attach your ESD strap to a grounded point to prevent electrostatic damage to sensitive components.
Following this process is critical not only forpersonal safetybut also forequipment protection, especially duringhardware installation, maintenance, or RMA replacements.


NEW QUESTION # 85
Which component serves as the central management and communication core and provides a single point of management via Cisco UCS Manager in a Cisco UCS environment?

  • A. Nexus 9000 Series Switch
  • B. MDS 9000 Series SAN Switch
  • C. UCS Fabric Interconnect
  • D. UCS E-Series server in ISR platforms

Answer: C

Explanation:
TheUCS Fabric Interconnectis the central management and communication hub of theCisco UCS (Unified Computing System)environment. It integrates compute, network, and storage access into a unified system.
Fabric Interconnects:
* Manage all servers and I/O modules connected to the UCS domain
* Provide connectivity and are the point of integration with the Cisco UCSManager
* Offer high-availability and centralized policy management
Other options like the Nexus or MDS switches do not serve this unified management function in a UCS deployment.
Reference:Supporting Cisco Devices for Field Technicians (FLDTEC) -Cisco Equipment and Related Hardware Explanation:
The UCS Fabric interconnect serves as the central management and communication core in a Cisco UCS environment, providing a single point of management via Cisco UCS Manager for the entire UCS system, including servers, networking, and storage components.


NEW QUESTION # 86

Refer to the exhibit. What is the redundancy implementation in this Cisco UCS architecture?

  • A. The system uses a single point of connectivity, relying on internal redundancy within each UCS chassis.
  • B. Redundancy is implemented at the chassis level only, with chassis 1 acting as a backup for chassis 2.
  • C. Redundancy is achieved through dual fabric interconnects, providing separate paths for FCoE, FC, and LAN traffic.
  • D. Redundancy is limited to the uplink connections, with no failover capabilities between the fabric interconnects.

Answer: C

Explanation:
In the providedCisco UCS architecture diagram, the infrastructure consists of:
* Two Fabric Interconnects (A and B), each connecting to:
* Ethernet (LAN)
* Fibre Channel (FC)
* FCoE (Fibre Channel over Ethernet)
* Both Fabric Interconnects are independently connected to bothCisco UCS Chassis 1 and 2through I/O Modules (IOMs).
This is theclassic active-active UCSdesign, providingfull path redundancyfor all traffic types:
* LAN uplinksare handled separately by Fabric Interconnect B.
* SAN trafficis distributed throughFC uplinksandFCoE uplinksvia Fabric Interconnects A and B.
* Each server in the chassis canfail over its traffic to the alternate fabric if one interconnect fails.
This architecture guaranteesno single point of failure, which is essential inmission-critical environments like data centers and enterprise server farms.


NEW QUESTION # 87
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