AWS 082: NAT Gateway and NAT instance
The real problem
A team recognizes the name NAT Gateway and NAT instance but has not connected the feature to a real requirement, identity boundary, network or data path, failure mode, price dimension, and cleanup owner. A plausible configuration could still fail the workload.
Final outcome
The learner will produce a requirement-led artifact for NAT Gateway and NAT instance, inspect the matching AWS control plane in the Management Console, run a matching CloudShell or AWS CLI query, interpret the output, diagnose one failure, defend one architecture choice, and prove cleanup or approved retained state.
The practical outcome is not a command transcript. It must show what was expected, what happened, what the result proves, what it does not prove, and which evidence would change the decision.
Learning objectives
By the end of this lesson, the learner can:
- explain nat supports initiated connections, not unsolicited inbound;
- explain public and private nat gateways differ;
- explain a nat gateway is az-scoped;
- explain nat64 connects ipv6 to ipv4;
- explain nat instance is customer managed;
- connect control-plane state to the real data, network, identity, or application behavior;
- identify cost and cleanup ownership before any optional mutation;
- troubleshoot from evidence without opening broad access or adding broad permissions.
Relationship model
Requirement
|
v
Identity and policy -> AWS configuration -> network or data path -> workload behavior
| | | |
+--------------------+----------------------+--------------------+
|
v
monitoring, cost, recovery, cleanup
Use this model to separate an AWS object that exists from a result that actually works. Every arrow is a verification boundary.
Prerequisites, permissions, Region, and safety
- Learning baseline: This sequence assumes practical Linux knowledge but no prior cloud-computing or AWS knowledge. Cloud, networking, security, data, automation, and architecture concepts must come from completed earlier lessons. If a prerequisite checkpoint is incomplete, return to its linked lesson before continuing.
- Confirm a non-root caller with
aws sts get-caller-identityand keep the account number private. - Use
ap-south-1unless this lesson explicitly names a second Region. - Confirm the intended profile and Region with
aws configure listbefore interpreting an empty result. - Use read-only List, Get, and Describe permissions for the named services. Design exercises run locally and require no resource-creation permission.
- This is a no-create lesson. Console and CLI work is read-only, and every design artifact is created locally.
- Never publish account IDs, public addresses, ARNs containing private account data, session IDs, presigned URLs, object data, credentials, or KMS material.
- Do not use root, world-open SSH or RDP, disabled TLS verification, unowned resources, or irreversible retention controls in a training exercise.
Core model
| Concept | What the learner must understand |
|---|---|
| NAT supports initiated connections, not unsolicited inbound | A NAT device lets private IPv4 sources reach destinations outside their network and permits response traffic for those translations. It is not an inbound publishing service. |
| Public and private NAT gateways differ | A public NAT gateway uses an Elastic IP and reaches the internet through an internet gateway. A private NAT gateway routes to private networks and cannot use an internet gateway for internet access. |
| A NAT gateway is AZ-scoped | Place one in each active Availability Zone and route private subnets to the NAT in the same AZ for fault isolation and to reduce cross-AZ data transfer. |
| NAT64 connects IPv6 to IPv4 | A NAT gateway can translate IPv6 traffic to IPv4 when used with DNS64 and appropriate routing. It is different from ordinary IPv4 source NAT. |
| NAT instance is customer managed | An EC2 NAT instance requires disabled source/destination checking, routing, security, patching, scaling, and failover. It can offer customization that managed NAT Gateway does not. |
| Endpoints can remove NAT traffic | Gateway endpoints for S3 and DynamoDB and interface endpoints for supported services reduce internet dependency and can change both security and cost. |
How it works
A resilient pattern has a public NAT gateway in each AZ, private-subnet default routes to the local NAT, monitoring, and endpoints for high-volume supported AWS services. One shared NAT is simpler but creates zonal dependency and cross-AZ cost for other zones.
Read the result in layers:
- Scope: account, Region, VPC, bucket, AZ, endpoint, principal, object version, or resource ARN.
- Control plane: the requested configuration exists and reached an expected state.
- Behavior: the request, connection, health check, replication, restore, or application result meets the requirement.
- Operations: monitoring, failure owner, cost, retention, rollback, and cleanup are known.
Control-plane success is necessary but not sufficient. A resource can be available while policy, routing, DNS, health, data, or application behavior remains wrong.
Architecture decision table
| Requirement | Preferred direction | Why |
|---|---|---|
| Standard scalable outbound IPv4 internet | Public NAT Gateway per active AZ | AWS manages throughput and availability of each zonal gateway. |
| Custom packet handling or special software is mandatory | NAT instance with HA automation | EC2 provides control but the customer owns every operational layer. |
| Private network translation without internet egress | Private NAT Gateway | It translates for transit gateway or virtual private gateway paths without an Elastic IP. |
| Large private-subnet S3 transfer | Gateway VPC endpoint | It avoids NAT processing for supported same-Region service traffic. |
Professional questions normally contain several valid services. State the requirement that selects one option, why the nearest alternative fails it, and what changed requirement would reverse the choice.
AWS Management Console guided practice
Before opening a service page, write the expected account, Region, starting state, and evidence. Do not choose Create, Save, Purchase, Lock, or Delete unless the lesson explicitly authorizes the live track.
- Open VPC NAT gateways and inspect connectivity type, subnet, Availability Zone, Elastic IP, private IP, and state.
- Open each private-subnet route table and confirm it points to the intended same-AZ NAT gateway.
- Open VPC Endpoints and identify S3, DynamoDB, or interface endpoints that can remove service traffic from the NAT path.
For each step, capture the field name and value in text. A screenshot may support the record but does not replace the explanation. Console labels can evolve, so use the service search and current documentation if a navigation label differs.
CloudShell and AWS CLI practice
CloudShell is the default browser-based command environment taught in AWS 028. AWS 029 and AWS 030 cover local CLI installation and authentication. This lesson therefore does not assume that an unconfigured local shell is ready.
Start every session with:
export AWS_DEFAULT_REGION="ap-south-1"
aws sts get-caller-identity --query Arn --output text
aws configure list
Redact the account portion of the ARN before sharing. Then perform the topic query:
Map each NAT gateway to its type, state, subnet, address, and the private route tables that use it.
aws ec2 describe-nat-gateways --query 'NatGateways[].{NAT:NatGatewayId,Type:ConnectivityType,State:State,Subnet:SubnetId,Public:NatGatewayAddresses[].PublicIp,Private:NatGatewayAddresses[].PrivateIp}' --output table
Expected interpretation:
A public NAT must occupy a subnet that reaches an internet gateway. Check that each private subnet points to the intended same-AZ NAT and has a return path.
Replace every replace-with-... sample value before running its command, and use only an explicitly owned resource. Explain each option first. These queries are read-only; a successful response does not authorize a later create or delete operation.
Practical work
Create p05-nat-decision.md. Compare a production public NAT gateway in each active AZ, one centralized NAT, a customer-managed NAT instance, a private NAT gateway, and the no-NAT AWS 106 lab. Draw forward and return routes, failure domain, operations, source/destination check, Elastic IP, endpoint alternatives, and every current price dimension. Do not create NAT resources.
The evidence package must contain:
- the problem and final requirement in the learner's own words;
- caller type and Region with private identifiers redacted;
- exact planned values, ownership, and cost class;
- one Console observation and matching CLI or API evidence;
- one behavior result or supplied data-plane record;
- one denied, failed, or counterexample result and evidence-led diagnosis;
- one architecture choice plus the rejected alternative;
- cleanup proof or explicit retained-state owner, expiry, and next lesson.
Verification standard
Use expected state before observed state. Record timestamps in UTC and preserve the original failure before changing anything. A passing submission answers all four questions:
- What exact requirement was tested?
- Which evidence proves the AWS configuration?
- Which evidence proves the workload behavior?
- What remains unproven or requires later monitoring?
If AWS returns no rows, verify account, Region, permission, filters, pagination, resource type, and deletion state before concluding that nothing exists.
Common failures and troubleshooting
| Symptom | Evidence first | Likely boundary | Smallest safe response |
|---|---|---|---|
| object appears missing | caller, Region, filters, pagination, tags | scope or read permission | align scope before creating a duplicate |
| state remains pending or unavailable | service state, events, dependencies, quotas | dependency or capacity | correct the named dependency and wait with a bound |
| AccessDenied | principal, action, resource, explicit-deny context | identity, resource, endpoint, organization, or KMS policy | change only the proven policy layer |
| configuration exists but behavior fails | route, DNS, security, listener, health, logs, object version | data path or application | test the next boundary and change one control |
| bill is higher than expected | hours, bytes, requests, AZs, addresses, retention | cost model or retained resource | stop optional work and reconcile the ledger |
| cleanup is blocked | dependency inventory and owning service | deletion order or immutable state | remove owned dependants in reviewed reverse order |
Do not troubleshoot by attaching administrator access, opening administration ports to the internet, disabling encryption, retrying uncontrolled creation, deleting unknown resources, or weakening retention.
Cost, cleanup, and retained state
No AWS resource is created. Close CloudShell and remove or redact downloaded evidence.
Cleanup evidence requires terminal state and an after-inventory. Search related ENIs, public IPv4 addresses, EBS volumes and snapshots, load balancers, target groups, Auto Scaling instances, endpoints, logs, S3 versions and delete markers, backup recovery points, and global IAM roles when they apply. Billing data can lag, so schedule a later review.
Architecture and certification decisions
- Certification coverage: SAA-C03; SOA-C03; SAP-C02; DOP-C02.
- Exam mapping: SAA D1-D3.
- Explain service scope, failure boundary, consistency, recovery, security, operations, and price rather than matching a keyword.
- Treat availability and durability, encryption and authorization, routing and filtering, health and lifecycle, backup and replication, and discount and capacity as separate concepts.
- Do not reproduce protected certification questions.
Knowledge check
- Can the internet initiate a connection to a private instance through NAT Gateway?
Expected direction: No. Use a public load balancer or another deliberate inbound service.
- Why deploy one NAT gateway per AZ?
Expected direction: It avoids cross-AZ dependency and traffic for private subnets in other zones.
- Can a private NAT gateway route to an internet gateway?
Expected direction: No. The internet gateway drops that traffic.
- When can an endpoint be better than NAT?
Expected direction: When the destination service supports an endpoint and private, policy-controlled service access is preferred.
Completion gate and assessment
| Area | Points | Passing evidence |
|---|---|---|
| Requirement and model | 15 | Correct scope, terminology, and final outcome |
| Console evidence | 15 | Current path and interpreted fields |
| CLI or API evidence | 15 | Scoped command, expected result, and limitations |
| Behavior or decision exercise | 20 | Reproducible result or defensible architecture reasoning |
| Troubleshooting | 15 | Original symptom, hypothesis, one change, retest, rollback |
| Security and cost | 10 | Least privilege, data protection, current price dimensions |
| Cleanup and handoff | 10 | Terminal-state proof or approved retained-state record |
Pass at 80 out of 100 with no critical safety failure. A missing practical artifact, unexplained output, unsafe access, destructive action outside the owned scope, unplanned billed resource, or false cleanup claim requires remediation and a changed retest.