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Juniper JN0-683 Exam Overview:

Certification Vendor:Juniper
Exam Name:Data Center, Professional (JNCIP-DC)
Exam Number:JN0-683
Certificate Validity Period:3 years
Exam Price:$400 USD
Passing Score:Scaled (Approx. 650/1000)
Available Languages:English
Real Exam Qty:65
Exam Format:Multiple-choice
Exam Duration:90 minutes
Related Certifications:Juniper Networks Certified Professional Data Center (JNCIP-DC)
Sample Questions:Juniper JN0-683 Sample Questions
Exam Way:Online-proctored or Pearson VUE testing center
Pre Condition:JNCIS-DC (JN0-481) is recommended/preferred.
Official Syllabus URL:https://www.juniper.net/us/en/training/certification/tracks/data-center/jncip-dc.html

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Juniper JN0-683 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Data Center Interconnect: For Data Center Engineers, this part focuses on interconnecting data centers, covering Layer 2 and Layer 3 stretching, stitching fabrics together, and using EVPN-signaled VXLAN for seamless communication between data centers.
Topic 2
  • EVPN-VXLAN Signaling: This section assesses an understanding of Ethernet VPN (EVPN) concepts, including route types, multicast handling, and Multiprotocol BGP (MBGP). It also covers EVPN architectures like CRB and ERB, MAC learning, and symmetric routing.
Topic 3
  • Data Center Multitenancy and Security: This section tests knowledge of single-tenant and multitenant data center setups. Candidates such as Data Center Professionals are evaluated on ensuring tenant traffic isolation at both Layer 2 and Layer 3 levels in shared infrastructure environments.

Juniper Data Center, Professional (JNCIP-DC) Sample Questions (Q87-Q92):

NEW QUESTION # 87
You are preparing an sFlow monitoring system configuration. In this scenario, what Information will be included in the datagram sent to the sFlow collector? (Choose two.)

Answer: A,D

Explanation:
sFlow is a packet sampling technology used to monitor traffic in a network. It sends sampled packet data and interface counters to an sFlow collector, which analyzes the traffic patterns.
Option A: The datagram sent to the sFlow collector includes information about the interface through which the packets entered the agent (the switch or router). This is crucial for understanding where in the network the traffic was captured.
Option D: sFlow datagrams also include the source and destination VLAN for the sampled packets. This allows for detailed analysis of the traffic flow within different VLANs.


NEW QUESTION # 88
Which parameter is used to associate a received route with a local VPN route table?

Answer: D

Explanation:
route-target community: The route-target community is used to associate a received route with a local VPN route table in an EVPN or MPLS VPN environment. It acts as an import and export policy for routes, ensuring that only the relevant routes are imported into a particular VRF (Virtual Routing and Forwarding instance) based on the matching route-target.


NEW QUESTION # 89
You want to provide a OCI that keeps each data center routing domain isolated, while also supporting translation of VNIs. Which DCI scheme allows these features?

Answer: D

Explanation:
over the top (OTT) with VNI translation enabled: An OTT (Over-the-Top) architecture with VNI translation allows you to keep each data center's routing domain isolated while enabling translation of VXLAN Network Identifiers (VNIs) between the data centers. This approach supports multi-tenancy and facilitates communication between isolated data centers by mapping VNIs between them.


NEW QUESTION # 90
You need to load-balance traffic across multiple links to a multihomed CE device using ESI-LAG in all-active mode. Which protocol is used between the CE and the leaf devices to achieve this?

Answer: D

Explanation:
When a CE device is multihomed to multiple leaf devices in all-active mode using ESI-LAG, the Link Aggregation Control Protocol (LACP) is used between the CE and each leaf device to bundle the physical links into a logical aggregated Ethernet interface. This allows traffic to be load- balanced across all active links while the leaf devices coordinate over EVPN to present a consistent forwarding view to the CE.


NEW QUESTION # 91
Click the Exhibit button. Both DC and DC2 are using EVPN-VXLAN technology deployed using an ERB architecture. A server on the Red VLAN must communicate with a server on the Green VLAN. The Blue VLAN in DC and DC2 needs to be the same VLAN.
Which statement is correct?

Answer: B

Explanation:
In an EVPN-VXLAN ERB (Edge Routed Bridging) architecture, Layer 2 VLANs can be stretched across data centers using VXLAN, while Layer 3 communication between different VLANs requires routing at the edge. Since the Blue VLAN must remain the same across DC and DC2, it must be stretched using VXLAN. However, inter-VLAN communication (between the Red and Green VLANs) requires Layer 3 routing, which is typically handled by a services block, such as the SRX Series chassis cluster shown in the diagram.
To enable inter-VLAN communication, a transit VNI (VXLAN Network Identifier) must be introduced, allowing the Red and Green VLANs to communicate across the two data centers. The interconnect between the SRX Series devices ensures that Layer 3 routing can be performed while maintaining VXLAN encapsulation between the two sites.


NEW QUESTION # 92
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