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The Check Point Maestro solution provides IT professionals with the ability to manage and scale their security infrastructure with ease, allowing them to secure their networks and applications without compromising performance or availability. The CCME certification exam covers a range of topics, including the architecture of the Check Point Maestro solution, the deployment and configuration of Maestro clusters, and the management of multiple gateways and security policies.
The Check Point Maestro solution is a network security orchestration and management platform that allows organizations to manage large-scale, distributed networks from a central location. The CCME exam tests the candidate's knowledge and practical experience in configuring and managing Check Point Maestro clusters, deploying and maintaining security policies, troubleshooting complex network issues, and optimizing network performance. Passing the CCME exam demonstrates the candidate's ability to design, implement, and manage enterprise-level network security solutions using Check Point Maestro technology.
CheckPoint 156-836 (Check Point Certified Maestro Expert - R81 (CCME)) Certification Exam is designed to validate the skills and knowledge of experienced IT professionals in the area of Check Point's Maestro solution. Check Point Certified Maestro Expert - R81 (CCME) certification exam is intended for those who have already achieved the CCSE R81 certification and now wish to advance their expertise in the Maestro solution. The CCME certification demonstrates that an IT professional has the ability to design, implement and manage complex Maestro environments in a highly secure and efficient manner.
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NEW QUESTION # 62
What type of cluster can a Security Group be compared to?
Answer: B
Explanation:
A Security Group (SG) in Check Point Maestro is comparable to a Load Sharing Active/Active cluster. This is because a Security Group consists of multiple Security Group Members (SGMs) that actively share the traffic load, provide high availability, and ensure scalability. Each SGM processes traffic according to the Security Group policy and synchronizes its state with other members, similar to how a Load Sharing Active/Active cluster distributes traffic across multiple nodes.
Exact Extract:
"A Security Group can be compared to a Load Sharing Active/Active cluster because it consists of multiple Security Group Members that share the traffic load and provide high availability and scalability. Each Security Group Member is an active firewall that processes traffic according to the Security Group policy and synchronizes its state with other members. The Maestro Orchestrator acts as a load balancer that distributes the traffic among the Security Group Members based on their capacity and availability."
-Check Point Certified Maestro Expert (CCME) R81.X Courseware, Module 2: Maestro Security Groups, Lesson 2.1: Introduction to Security Groups, page 2-4
-Check Point R81 Maestro Administration Guide, Chapter 2: Maestro Security Groups, Section: Security Group Overview, page 2-3 Explanation of Options:
* A. Load Sharing Active / Active: Correct, as the Security Group operates like a Load Sharing Active
/Active cluster, with all SGMs actively processing traffic and sharing the load, as described in the documentation.
* B. VSLS: Incorrect, as Virtual System Load Sharing (VSLS) is a specific Check Point clustering mode for Virtual Systems, not directly comparable to a Security Group's architecture.
* C. Active / Backup: Incorrect, as this implies only one node is active while others are passive, which does not align with the active load-sharing nature of Security Groups.
* D. Active / Standby: Incorrect, as this also implies a single active node with standby nodes, whereas all SGMs in a Security Group are active.
References:
Check Point Certified Maestro Expert (CCME) R81.X Courseware, Module 2: Maestro Security Groups, Lesson 2.1: Introduction to Security Groups, page 2-4 Check Point R81 Maestro Administration Guide, Chapter 2: Maestro Security Groups, Section: Security Group Overview, page 2-3
NEW QUESTION # 63
After you import the R81.10 software package, what do you use to verify that it is possible to upgrade an MHO or SG?
Answer: D
Explanation:
The Pre-Upgrade Verifier is a tool that checks the compatibility and readiness of the Maestro environment for the upgrade process. It verifies the current version, the target version, the hardware requirements, the configuration settings, and the license validity of the Maestro Orchestrators and the Security Groups. It also identifies any potential issues or risks that might affect the upgrade and provides recommendations on how to resolve them. The Pre-Upgrade Verifier should be run before importing the R81.10 software package and before performing the actual upgrade.
References =
*Check Point R81.10 for Scalable Platforms - Check Point Software
*CHECK POINT MAESTRO EXPERT
NEW QUESTION # 64
What kinds of transceivers are supported on Orchestrator MHO-140?
Answer: A
Explanation:
The Maestro Hyperscale Orchestrator MHO-140 supports a variety of transceivers to provide high-speed and high-density connectivity. Specifically, it supports SFP, SFP+, QSFP, and QSFP28 transceivers, which cater to different port speeds and connectivity requirements in the Maestro environment.
Exact Extract:
"The Orchestrator MHO-140 supports SFP, SFP+, QSFP, and QSFP28 transceivers on its ports. SFP stands for Small Form-factor Pluggable, SFP+ supports up to 10 Gbps, QSFP (Quad Small Form-factor Pluggable) supports up to 40 Gbps, and QSFP28 supports up to 100 Gbps per port."
-Check Point Certified Maestro Expert (CCME) R81.X Courseware, Module 1: Introduction to Check Point Maestro, Lesson 1.2: Maestro Licensing and Hardware, page 1-8
-Check Point R81 Maestro Administration Guide, Chapter 1: Introduction to Check Point Maestro, Section:
Maestro Licensing, page 1-6
-Check Point Quantum Maestro Orchestrator Datasheet, page 3
Explanation of Options:
* A. SFP, QSFP, QSFP28: Incorrect, as it omits SFP+, which is supported by the MHO-140.
* B. SFP+, SFP28, QSFP: Incorrect, as SFP28 is not explicitly listed as supported on the MHO-140, and SFP is missing.
* C. SFP, SFP+, SFP28: Incorrect, as SFP28 is not supported, and QSFP and QSFP28 are omitted.
* D. SFP, SFP+, QSFP, QSFP28: Correct, as this option includes all transceivers supported by the MHO-
140, as per the official documentation.
References:
Check Point Certified Maestro Expert (CCME) R81.X Courseware, Module 1: Introduction to Check Point Maestro, Lesson 1.2: Maestro Licensing and Hardware, page 1-8 Check Point R81 Maestro Administration Guide, Chapter 1: Introduction to Check Point Maestro, Section:
Maestro Licensing, page 1-6
Check Point Quantum Maestro Orchestrator Datasheet, page 3
NEW QUESTION # 65
Multiple SGs can exist in a Dual Site environment. Each SG can be configured in one of three ways. Which is not one of those ways?
Answer: A
Explanation:
This is not one of the ways to configure a Security Group in a Dual Site environment, because load balancers are not required or supported for the inter-site communication between the Maestro Orchestrators (MHOs).
The MHOs use the Site-Sync port and VLANs to synchronize the resources and connections across the sites.
The three valid scenarios for Dual Site configuration are:
*Direct connectivity between remote site Orchestrators: This scenario requires two orchestrators, one for each site, and a direct connection between them using the site-sync port.
*Two orchestrators on the same site are connected to the remote site orchestrators through two different switches: This scenario requires four orchestrators, two for each site, and a connection between them using the site-sync port and two external switches that support QinQ and MTU increment.
*Two orchestrators on the same site are connected to the remote site orchestrators through one switch: This scenario also requires four orchestrators, two for each site, and a connection between them using the site-sync port and one external switch that support QinQ and MTU increment.
References =
*Maestro Dual Site configuration with a direct connection through L2 switches
*[Dual Site Single Maestro Hyperscale Orchestrator Cluster (Dual Site Single MHO Redundancy)]
*[Maestro Frequently Asked Questions (FAQ)]
NEW QUESTION # 66
What command will be used for updating fwkern.conf file on all Appliances within Security Group?
Answer: C
NEW QUESTION # 67
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