P.S.JPNTestがGoogle Driveで共有している無料の2026 Huawei H12-893_V1.0ダンプ:https://drive.google.com/open?id=1mbRD9M3QUgl7QvOgGxpCTZVxFbm5XGc-
JPNTestのHuaweiのH12-893_V1.0試験トレーニング資料はIT認証試験を受ける全ての受験生が試験に合格することを助けるもので、受験生からの良い評価をたくさんもらいました。JPNTestを選ぶのは成功を選ぶのに等しいです。もしJPNTestのHuaweiのH12-893_V1.0試験トレーニング資料を購入した後、学習教材は問題があれば、或いは試験に不合格になる場合は、私たちが全額返金することを保証いたしますし、私たちは一年間で無料更新サービスを提供することもできます。
| Certification Vendor: | Huawei |
|---|---|
| Exam Name: | HCIP-Data Center Network V1.0 |
| Exam Number: | H12-893_V1.0 |
| Available Languages: | Spanish, English, Chinese |
| Passing Score: | 600/1000 |
| Real Exam Qty: | 60-70 |
| Exam Duration: | 90 minutes |
| Exam Price: | USD 300 |
| Certificate Validity Period: | 3 years |
| Exam Format: | Multiple Choice, Drag and Drop, True or False, Single Choice |
| Related Certifications: | HCIE-Data Center Network HCIA-Data Center Network |
| Sample Questions: | Huawei H12-893_V1.0 Sample Questions |
| Exam Way: | Pearson VUE Test Center / Online Proctoring |
| Pre Condition: | Recommended: HCIA-Data Center Network or equivalent knowledge |
| Official Syllabus URL: | https://cn.e-learning.huawei.com/#/courseDetail?courseId=2af1061c01a64c4d9c5e85c7b5d55dc2 |
天帝様は公平ですから、人間としての一人一人は完璧ではないです。私のように、以前が努力しなかったので、今は無駄に悩んでいます。現在のIT領域で競争が激しくなっていることは皆は良く知っていますから、みんなはIT認証を通じて自分の価値を高めたいです。私もそう思いますが、IT認証は私にとって大変難しいです。でも、幸い私はインターネットでJPNTestのHuaweiのH12-893_V1.0試験トレーニング資料を見つけました。それを手に入れてから私は試験に合格する自信を持つようになります。JPNTestのHuaweiのH12-893_V1.0試験トレーニング資料のカバー率がとても高いですから、自分で勉強するよりずっと効率が高いです。あなたもIT業種の一人としたら、ためらわずにJPNTestのHuaweiのH12-893_V1.0試験トレーニング資料をショッピングカートに入れましょう。JPNTestはきっとあなたが成功への良いアシスタントになります。
| トピック | 出題範囲 |
|---|---|
| トピック 1 |
|
| トピック 2 |
|
| トピック 3 |
|
質問 # 71
Which of the following technologies are Layer 4 load balancing technologies? (Select All that Apply)
正解:A、B、D
解説:
Layer 4 load balancing operates at the transport layer (OSI Layer 4), using TCP/UDP protocols to distribute traffic based on information like IP addresses and port numbers, without inspecting the application-layer content (Layer 7). Let's evaluate each option:
A . Nginx: Nginx is a versatile web server and reverse proxy that supports both Layer 4 and Layer 7 load balancing. In its Layer 4 mode (e.g., with the stream module), it balances TCP/UDP traffic, making it a Layer 4 load balancing technology. This is widely used in Huawei's CloudFabric DCN solutions for traffic distribution. TRUE.
B . PPP (Point-to-Point Protocol): PPP is a Layer 2 protocol used for establishing direct connections between two nodes, typically in WAN scenarios (e.g., dial-up or VPNs). It does not perform load balancing at Layer 4 or any layer, as it's a point-to-point encapsulation protocol. FALSE.
C . LVS (Linux Virtual Server): LVS is a high-performance, open-source load balancing solution integrated into the Linux kernel. It operates at Layer 4, using techniques like NAT, IP tunneling, or direct routing to distribute TCP/UDP traffic across backend servers. It's a core Layer 4 technology in enterprise DCNs. TRUE.
D . HAProxy: HAProxy is a high-availability load balancer that supports both Layer 4 (TCP mode) and Layer 7 (HTTP mode). In TCP mode, it balances traffic based on Layer 4 attributes, making it a Layer 4 load balancing technology. It's commonly deployed in Huawei DCN environments. TRUE.
Thus, A (Nginx), C (LVS), and D (HAProxy) are Layer 4 load balancing technologies. PPP is not.
質問 # 72
Which of the following statements is false about M-LAG deployment?
正解:A
解説:
M-LAG (Multi-Chassis Link Aggregation) on Huawei CE series switches enhances high availability and load balancing by making two switches appear as one. Let's evaluate each statement:
A . Multi-level M-LAG is mainly used to construct a large Layer 2 network in a DCN or directly connect DCNs at Layer 2: This is true. Multi-level M-LAG extends the topology across multiple layers or data centers, facilitating large Layer 2 domains, a common use case in Huawei DCNs. TRUE.
B . In multi-level M-LAG networking, you can manually configure the root bridge to prevent STP loops: This is true. Manual configuration of the root bridge (e.g., using STP priority) is supported to optimize path selection and prevent loops, especially in complex M-LAG setups. TRUE.
C . Multi-level M-LAG must be configured based on V-STP: This is false. While V-STP can be used to prevent loops, M-LAG does not require V-STP specifically. Standard STP, RSTP, or MSTP can also be configured, depending on the network design. The requirement is loop prevention, not a mandatory V-STP dependency. FALSE.
D . M-LAG networking can be classified into single-level M-LAG networking and multi-level M-LAG networking: This is true. Single-level M-LAG connects two switches directly to devices, while multi-level M-LAG extends across additional layers or devices, a recognized classification in Huawei documentation. TRUE.
Thus, C is the false statement because multi-level M-LAG does not mandate V-STP configuration.
質問 # 73
To allow access to a VXLAN network, you need to configure service access points on devices.
There are two access modes: Layer ? sub-interface and binding. (Enter the acronym in uppercase letters.)
正解:
解説:
3
Explanation:
VXLAN (Virtual Extensible LAN) is a network overlay technology that extends Layer 2 networks over a Layer 3 underlay, commonly implemented in Huawei's CloudFabric data center solutions.
To enable access to a VXLAN network, service access points (e.g., interfaces or sub-interfaces) must be configured on devices such as switches or routers acting as VXLAN Tunnel Endpoints (VTEPs). The question mentions two access modes: "Layer ? sub-interface" and "binding," with the task to fill in the layer acronym in uppercase letters.
Context Analysis: The missing layer is indicated by a "?" and is part of a sub-interface configuration. In networking, sub-interfaces are typically associated with Layer 3 (e.g., for VLAN tagging or VXLAN integration), where they handle IP routing or mapping to overlay networks.
Access Modes:
Layer 3 Sub-Interface: This mode involves configuring a sub-interface on a Layer 3 device (e.g., a router or Layer 3 switch) to terminate VXLAN tunnels and perform routing. The sub-interface is associated with a VNI (VXLAN Network Identifier) and often uses a Layer 3 protocol (e.g., BGP EVPN) to connect to the VXLAN overlay.
Binding: This likely refers to binding a VNI to a Bridge Domain (BD) or interface, a common practice in Huawei's VXLAN configuration to map the overlay network to a physical or logical port.
This can occur at Layer 2 or Layer 3, but the sub-interface context suggests Layer 3 involvement.
The question's structure implies the layer number for the sub-interface mode, which is Layer 3 in VXLAN contexts for routing and gateway functions. Thus, the acronym (digit) to enter is 3.
質問 # 74
An administrator configures BGP EVPN on all spine and leaf switches. The underlay network already provides IP connectivity. Which protocol is mainly responsible for carrying VXLAN overlay control-plane information between VTEPs?
正解:D
解説:
MP-BGP with EVPN address families exchanges overlay endpoint information, MAC addresses, IP bindings, and routing data. OSPF and IS-IS only establish underlay connectivity, while VRRP provides gateway redundancy rather than overlay control-plane functionality.
質問 # 75
VXLAN is a network virtualization technology that uses MAC-in-UDP encapsulation. What is the destination port number used during UDP encapsulation?
正解:B
質問 # 76
......
H12-893_V1.0認証pdf資料: https://www.jpntest.com/shiken/H12-893_V1.0-mondaishu
ちなみに、JPNTest H12-893_V1.0の一部をクラウドストレージからダウンロードできます:https://drive.google.com/open?id=1mbRD9M3QUgl7QvOgGxpCTZVxFbm5XGc-