Tren Maya Route 2026: The Ultimate Travel eSIM & Connectivity Survival Guide


The 2026 Tren Maya Network Landscape: Jungle Geography & Cellular Reality

Spanning 1,554 kilometers across five southeastern Mexican states—Quintana Roo, Yucatán, Campeche, Tabasco, and Chiapas—the Tren Maya is a masterpiece of civil engineering. However, for digital nomads, international tourists, and remote professionals, the rail network represents one of the most complex radio frequency (RF) operational environments in North America.

To maintain reliable data throughput across the system's seven operational sections, travelers must understand the intersection between rugged regional topography, train car physics, and local telecommunications infrastructure.

`` +-------------------------------------------------------------------------+ | TREN MAYA RF CONNECTIVITY SPECTRUM | | | | [Coastal Karst / Quintana Roo] [Dense Canopy / Calakmul Biosphere]| | High Band (2.1 - 3.5 GHz) Low Band (700 - 850 MHz) | | Dense macro towers Deep RF absorption by foliage | | High tourist congestion Towers spaced 15–30 km apart | | Stable 4G/5G urban nodes Critical dead zones (Edge/No Svc)| +-------------------------------------------------------------------------+ ``

RF Propagation: Dense Jungle Canopy vs. Coastal Corridors

The rail loop cuts through vastly different environmental biomes, each dictating how cellular signals reach your handset:

The Rolling Stock Shield: Alstom Carriages and Speed-Induced Jitter

Cellular performance is heavily restricted by the train itself. The Tren Maya fleet, manufactured by Alstom (Xiinbal, Janal, and P'atal configurations), uses modern rolling stock designs that inadvertently act as signal suppressors:

  1. Faraday Shielding & Low-E Glazing: The passenger coaches are constructed from welded aluminum extrusions and fitted with double-glazed, metalized Low-Emissivity (Low-E) window coatings designed for thermal insulation. This glass-metal envelope introduces an RF insertion loss ranging between 15 dB and 28 dB, degrading an exterior 4-bar signal down to 1 bar—or dropping it completely inside the cabin.
  2. Doppler Shift & Tower Handover Latency: At cruising speeds of up to 160 km/h, your device must execute rapid cell-tower handovers. In rural sections with weak overlapping coverage, these transitions frequently fail. Handover latency spikes, causing high packet loss, broken TCP sessions, and persistent DNS timeouts.
Route SegmentPrimary TerrainDominant Signal ProfileTypical In-Cabin Performance
Cancún Airport – Playa del CarmenCoastal Limestone / Urban5G / 4G LTE (Telcel / AT&T)Reliable (15–80 Mbps)
Mérida Teya – CampecheSemi-Arid Plains / Scrub4G LTE / 3G LegacyIntermittent (5–25 Mbps)
Escárcega – Xpujil – CalakmulPrimary Rainforest Canopy3G / Marginal Band 28 LTESevere Dead Zones / Frequent Outages
Palenque – TenosiqueRiver Valleys / Dense Jungle4G LTE (Isolated Nodes)Spotty (0–10 Mbps)

Single-Carrier Fragility and the Need for Redundancy

Along remote rail cuts, carrier infrastructure is fragmented. A cell tower serving the jungle outskirts of Calakmul might host Altán Redes or Telcel transmitters, while completely lacking AT&T or Movistar equipment. Relying on a single physical Mexican carrier SIM card regularly leads to total connectivity dropouts lasting 45 to 90 consecutive minutes.

Multi-network eSIM profiles solve this vulnerability by dynamically shifting to whichever local carrier holds the strongest tower link along that specific kilometer of track.

Furthermore, when crossing marginal coverage zones, data connections often throttle down to base levels. While legacy travel SIM providers restrict throttled speeds to an unusable 128 kbps, modern providers like MollySIM maintain a 384 kbps Fair Use Policy (FUP) speed limit—three times the industry standard. This extra bandwidth keeps essential travel applications running smoothly, ensuring offline map recalculations, Apple Pay tokens, WhatsApp messaging, and boarding pass verifications process without system timeouts, even deep in the Chiapas and Campeche jungles.

Local Carrier Breakdown: Telcel vs. AT&T Mexico vs. Movistar Across the Peninsula

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Navigating the 1,554-kilometer Tren Maya circuit requires understanding the architectural differences among Mexico’s major Mobile Network Operators (MNOs). Cellular propagation through the Yucatán Peninsula faces unique environmental challenges: dense limestone bedrock, flat topography lacking natural high-elevation mast sites, and thick semi-evergreen jungle canopies that attenuate higher-frequency RF signals.

`` YUCATÁN PENINSULA RF SPECTRUM PROFILE ┌─────────────────────────────────────────────────────────────────────────┐ │ Low-Band (Band 28 - 700 MHz) ████████████████████ [Deep Jungle Reach]│ │ Mid-Band (Band 4/66 - 1.7/2.1G) ██████████ [Station Hubs] │ │ High-Band (Band n78 - 3.5 GHz) ████ [Urban 5G Only] │ └─────────────────────────────────────────────────────────────────────────┘ ``

Telcel (América Móvil): The Rural Jungle Monolith

Telcel remains Mexico's indisputable coverage leader along remote transportation corridors. Its dominance stems from heavy capital investment in low-band Band 28 (700 MHz APT) spectrum, which provides the RF propagation distance required to push signals kilometers off main highways into raw jungle cuts.

AT&T Mexico: Urban Throughput vs. Transit Gaps

AT&T Mexico operates a robust, modern network optimized for metropolitan population centers and major tourism corridors.

Movistar (Telefónica): The Virtualized Network Model

Movistar has fundamentally altered its Mexican operational model by returning its domestic access spectrum and migrating its entire subscriber traffic onto AT&T Mexico’s Radio Access Network (RAN) via an infrastructure-sharing agreement.


Technical Connectivity Matrix: Evaluating Your Tren Maya Options

Selecting the wrong hardware or network setup along the rail line can leave you stranded without navigation, digital ticketing, or emergency communications. The table below details how different connectivity models perform across the southern rail segments:

Evaluation MetricPhysical Local SIM (e.g., Telcel Direct)Generic Roaming eSIM (Single Carrier)Pocket Wi-Fi Rental (Skyroam/Local)MollySIM Multi-Carrier eSIM
Network ArchitectureSingle Network Lock (Telcel)Single Roaming Partner (Usually AT&T or Movistar)Single/Dual Virtual SIM via HotspotDynamic Multi-Carrier Auto-Switching
Band 28 (700MHz) Jungle ReachSupported (Hardware dependent)Variable (Often locked to urban bands)Limited by hotspot modem antennaNative Low-Band 28 / B4 / B66 Access
Rural Track Uptime (Est.)65% – 75%35% – 50%40% – 55%85% – 92% (Carrier Redundant)
FUP Baseline Speed (Post-Cap)0 kbps (Hard cut-off / balance drain)64 – 128 kbps (Connection drops)128 kbps (Timeouts on basic apps)384 kbps (Smooth Navigation & Auth)
Hardware & Setup OverheadPhysical swap, kiosk lines, ID validationDigital QR install; locked networkBulky battery pack to charge and carryInstant QR / In-App eSIM Deployment
Local App CompatibilityFull (Local MX IP)High (May route via US/EU gateways)High (High latency routing)Optimized Routing & Low Latency

Why Multi-Carrier Core Redundancy Wins on the Rail

Because no single Mexican operator covers 100% of the newly cleared railway rights-of-way, relying on a single network profile introduces major points of failure.

`` [Tren Maya Transit] ──► Telcel Mast Drops ──► Single SIM: TOTAL OUTAGE (45+ min) └──► Auto-Switch ──► MollySIM: Seamless AT&T / Altán Handover ``

A specialized travel eSIM like MollySIM bridges this gap by decoupling the subscriber from a single local carrier's physical towers. By holding roaming agreements across Mexico's top infrastructure footprints, your device seamlessly switches between Telcel's long-range Band 28 rural nodes and AT&T's high-capacity urban stations.

When deep-canopy interference degrades signal quality below high-speed thresholds, MollySIM's 384 kbps Fair Use Policy (FUP) ensures your connection doesn't stall out. Unlike the restrictive 128 kbps caps common among standard tourist packages, a 384 kbps baseline provides sufficient bandwidth to refresh Google Maps layers, authenticate Apple Pay / Google Wallet tokens, validate digital Tren Maya PDF QR codes, and send WhatsApp messages without frustrating connection timeouts.

Why Onboard Train Wi-Fi Fails & The Airport SIM Card Trap

Many international travelers step onto the Tren Maya assuming the train’s promised onboard Wi-Fi will cover their digital needs between Cancún and Palenque. In practice, relying on train Wi-Fi or grabbing the first physical SIM card you see at the airport creates severe connectivity bottlenecks that can leave you stranded without navigation or transit tickets mid-jungle.

The Reality of Tren Maya’s Onboard Wi-Fi

The Alstom-built X'trapolis Tsíimin K’áak trainsets feature onboard wireless routing systems, but the infrastructure relies entirely on hybrid cellular-satellite backhaul. When the train travels at 160 km/h through dense limestone canopies, physical and digital bottlenecks quickly emerge:

`` [Satellite / 4G Mast] ──(Backhaul Bottleneck)──► [Train Rooftop Gateway] │ ┌─────────────────────────────────┴─────────────────────────────────┐ ▼ ▼ [300+ Passengers Competing] [Captive Portal Timeouts] • Latency spikes to 800ms+ • Drops session every 15–30 mins • Packet loss exceeding 35% • Re-authentication fails offline ``

The Airport Vendor Gouge vs. The OXXO Registration Maze

To bypass train Wi-Fi, many visitors try to purchase a physical plastic SIM card upon landing at Cancún International Airport (CUN) or from a local convenience store like OXXO. Both approaches present distinct logistical hurdles:

`` Physical Setup Pitfalls ├── CUN Airport Kiosks ──► 300%–400% tourist markup ($50+ for 3GB) ├── OXXO Cash Counters ──► Spanish-only menus, unregistered SIM batches, cash-only top-ups └── IFT ID Mandates ──► Stringent passport/CURP verification hurdles for non-residents ``

  1. Predatory Terminal Pricing: Airport kiosks at CUN Terminals 2, 3, and 4 charge exorbitant rates—often demanding $45 to $65 USD for low-tier, single-carrier packages that retail for less than 200 MXN ($10 USD) outside the airport.
  2. Regulatory Red Tape & Language Hurdles: Mexican telecommunications frameworks require carrier identity validation. Buying an Amigo chip at an OXXO counter requires navigating Spanish-only SMS activation menus, matching IMEI profiles, and dealing with staff who frequently lack the system access needed to register foreign passports or generate bypass codes for the lack of a local CURP (tax ID).
  3. The Single-Carrier Trap in Chiapas & Campeche: A standard physical SIM locks your phone to one provider. If you insert a Telcel physical SIM and the rail route shifts into an AT&T-dominant corridor across the Tabasco wetland margins or southern Campeche forest reserves, your device displays "No Service" for hours.
Connectivity OptionAcquisition FrictionCarrier FlexibilityJungle Dead-Zone Resilience
Tren Maya Public Wi-FiCaptive portal login; drops constantlyZero (Shared Train Backhaul)Fails completely outside station radii
CUN Airport Physical SIMHigh tourist markups ($50+); long linesSingle-Carrier LockedPoor (No fallback when primary carrier drops)
OXXO Physical SIMSpanish SMS menus; ID/CURP validationSingle-Carrier LockedPoor (Manual store top-ups required)
MollySIM Travel eSIMInstant QR install; zero ID paperworkMulti-Carrier (Telcel / AT&T)High (Auto-switching + 384 kbps FUP)

Deploying a digital travel profile via MollySIM bypasses airport markups and counter activations entirely. Because it does not tie your handset to a single physical radio mast, your device dynamically switches to the strongest local network along the rail corridor. Even when deep jungle canopy dampens 5G/4G throughput, MollySIM's 384 kbps Fair Use Policy (FUP) maintains continuous data flow—yielding three times the bandwidth of competing 128 kbps throttles so Apple Pay, map navigation, and messaging stay operational throughout your transit.

Segment-by-Segment Connectivity Field Guide: Cancún to Palenque

The 1,554-kilometer Tren Maya loop traverses drastically different radio frequency (RF) environments. As the train accelerates up to 160 km/h through varying landscapes—from high-density Caribbean tourist corridors to dense, UNESCO-protected jungle canopies—cellular propagation fluctuates wildly.

To help you manage remote work, station transfers, and transit communications, here is a detailed operational breakdown of cellular performance across each major railway segment.


1. Tramo 5: Cancún Airport – Playa del Carmen – Tulum

Running parallel to Highway 307, Tramo 5 offers the most robust cellular infrastructure on the entire network. Dense tower clustering supports high-bandwidth activities including 4K streaming and high-definition video conferencing. However, physical station hubs (especially Estación Playa del Carmen and Tulum Aeropuerto) suffer severe RF congestion during peak tourist turnover hours.

Using MollySIM on this corridor allows your device to bypass congested primary frequencies by automatically jumping between local commercial bands, ensuring uninterrupted rideshare hails and hotel check-in messaging.


2. Tramos 3 & 4: Mérida Teya – Izamal – Chichén Itzá – Valladolid

The flat topography of Yucatán state allows radio masts to broadcast over wide geographic radii with minimal geographic obstruction. Signal degradation along this segment primarily occurs due to train speed: rapid handoffs between distant macro-towers can trigger 5- to 10-second data stalls during high-speed transit between Izamal and Valladolid. Signal strength briefly drops to 3G or low-band LTE when bypassing agricultural easements near archaeological buffer zones, making this stretch ideal for low-overhead tasks like email sync and document editing.


3. Tramo 7: Bacalar – Chetumal Aeropuerto – Xpujil (Calakmul Biosphere Fringe)

Tramo 7 represents the most challenging connectivity corridor on the eastern loop. Once the train departs the municipal radius of Chetumal and heads west toward Xpujil, infrastructure yields to thick jungle canopy. Physical single-carrier SIMs (such as tourist SIM cards locked solely to Telcel or Movistar) routinely drop into sustained "No Service" blackouts lasting 30 to 60 minutes.

Because MollySIM dynamically arbitrates between available carrier backhauls, it latches onto intermittent rural transceivers that single-network cards miss. When signal drops below standard LTE thresholds, MollySIM's 384 kbps Fair Use Policy (FUP) maintains the minimum operational throughput required to refresh map coordinates, authenticate digital tokens, and send text updates.


4. Tramo 1: Escárcega – El Triunfo – Palenque

Connecting southern Campeche to the rainforest terminals of Palenque, Tramo 1 cuts through remote river valleys and hilly terrain. Dense foliage combined with thermal rail-car window tinting creates notable signal attenuation. Expect strong LTE reception near the major transport node of Escárcega and inside Palenque Station, punctuated by intermittent connectivity dropouts along the intermediate agricultural stretches.


Tren Maya Corridor Connectivity Matrix

Tramo / CorridorDominant CoverageHigh-Speed Data AvailabilityPrimary Dead Zones
Tramo 5 (Cancún – Tulum)5G / 4G LTEHigh (Streaming / Video Calls)Brief congestion at station gates
Tramos 3 & 4 (Mérida – Valladolid)4G LTEModerate to High (Web browsing, Email)Tower handoffs between rural towns
Tramo 7 (Bacalar – Xpujil)Intermittent 4G / 3GLow (Messaging / Static Navigation)Deep Calakmul Biosphere perimeter
Tramo 1 (Escárcega – Palenque)Rural 4G / 3GLow to Moderate (Messaging, Maps)Usumacinta river basin crossings

Pre-Departure Protocol: Essential Offline Caching Steps

To prevent travel disruptions caused by jungle dead zones, complete the following data caching steps prior to boarding at major transit hubs (Cancún Aeropuerto, Mérida Teya, or Campeche):

  1. Download Offline Google Maps: Download offline map rectangles covering the entire Yucatán Peninsula, southern Campeche, and northern Chiapas. This preserves turn-by-turn walking and driving navigation around remote stations even when cellular towers drop offline.
  2. Cache Digital Boarding Passes: Save your official Tren Maya PDF tickets and QR boarding passes directly into Apple Wallet, Google Wallet, or local device storage. Station validation scanners do not rely on local guest connectivity, but retrieving an un-cached ticket from a cloud server while sitting at a remote platform will fail.
  3. Pre-load Digital Translation Packages: Download offline Spanish language packs in Google Translate or Apple Translate to ensure you can communicate with onboard conductors and station staff without an active data link.
  4. Arm Active Background Synchronization: Ensure your MollySIM data plan is active before boarding. With its resilient multi-carrier failover and continuous 384 kbps baseline bandwidth, essential banking apps, Apple Pay tokens, and encrypted messaging protocols will automatically sync whenever the train skirts within range of regional towers.

The MollySIM Advantage: Multi-Carrier Switching & The 384kbps Safety Net

Navigating the 1,554-kilometer Tren Maya circuit exposes smart devices to a constantly shifting patchwork of radio access networks (RAN). In urban zones like Cancún and Mérida, multiple cellular carriers offer dense multi-band coverage. However, as the train enters the dense canopy of the Calakmul Biosphere Reserve or traverses the rural state line between Campeche and Tabasco, base transceiver stations (BTS) become sparse and carrier-exclusive.

Standard physical travel SIMs and basic single-network digital profiles tether your device to an exclusive local operator. If your provider contracts solely with AT&T Mexico and you enter a stretch of jungle where only Telcel operates a low-band B28 (700 MHz) tower, your device falls into an immediate hard outage ("No Service").

Dynamic Over-the-Air Multi-Carrier Failover

The technical architecture powering the MollySIM travel eSIM mitigates rural dead zones through non-steering, dynamic network negotiation. Rather than enforcing an artificial carrier preference profile (PLMN priority lists) that forces your phone to cling to an unusable single-bar connection, MollySIM allows your smartphone baseband modem to dynamically query and latch onto the strongest local carrier frequency—instantly transitioning between Telcel and AT&T Mexico.

`` [ Tren Maya Transit ] │ ├── Entering Tulum / Valladolid (High Band) ──► Latches to AT&T Mexico 4G/5G │ └── Entering Xpujil / Calakmul (Low Band) ──► Auto-switches to Telcel B28 (700MHz) ``

This automated handoff takes place in the background without requiring device reboots, manual APN adjustments, or flight mode cycling, preserving your data session as the locomotive moves between regional coverage zones.


The 384 kbps Safety Net: The Critical Difference in Transit

A catastrophic point of failure for travelers using conventional international eSIMs occurs when the purchased high-speed bucket runs out mid-journey. Most providers implement a punitive Fair Usage Policy (FUP) throttle that drops transmission speeds to 64 kbps or 128 kbps.

At 64–128 kbps, modern encrypted mobile applications fail completely: SSL/TLS handshakes timeout, mapping API requests abort, and ride-hailing interfaces crash.

MollySIM structures its Fair Usage Policy with a continuous 384 kbps baseline bandwidth—a data rate up to three times faster than typical competitors. This baseline ensures that even if you exhaust your premium high-speed allocation while traveling through a remote Mayan jungle section, critical travel utilities remain online and functional.

Real-Time Travel Function64 kbps (Standard eSIM)128 kbps (Budget eSIM)384 kbps (MollySIM FUP)
Google Maps Vector Routing❌ Connection Timeout⚠️ Partial / Text Only✅ Fully Functional (Live Navigation)
WhatsApp / Signal Messaging⚠️ Text Delayed✅ Text Only✅ Text & Crystal-Clear Voice Calls
Uber / DiDi Ride Dispatching❌ Map Engine Fails❌ Driver Pin Drops Fail✅ Responsive (Full Ride Lifecycle)
Digital QR / Pass Validation❌ SSL Handshake Error⚠️ Slow (15–30s delay)✅ Instant Cloud Ticket Retrieval
Apple Pay / Google Wallet Sync❌ Token Fetch Timeout⚠️ Intermittent Drops✅ Instant Server-Side Tokenization

At 384 kbps, the network preserves adequate throughput to execute UDP-based voice compression protocols (such as WhatsApp's Opus codec at 16–24 kbps) and TCP API data payloads for essential navigation tools. If you disembark at an isolated terminal like Boca del Cerro or Palenque without a cached map or active high-speed balance, the 384 kbps safety threshold allows you to reroute logistics, communicate with local transport operators, and validate reservations without encountering a complete digital blackout.

2026 Practical Setup, Device Compatibility, & Power Optimization Guide

Deploying an eSIM for the Tren Maya requires precise configuration before your train pulls out of stations like Cancún Aeropuerto or Mérida Teya. Remote rail corridors cut through dense limestone karst and jungle canopy, making real-time troubleshooting difficult without an active connection. Follow this technical blueprint to configure your device, preserve battery life, and maintain network handshakes across the Yucatán Peninsula.


Step-by-Step eSIM Provisioning (iOS & Android)

For seamless network access, install your digital profile over a secure Wi-Fi connection at your hotel or the airport prior to boarding.

`` [Connect to Wi-Fi] ➔ [Scan eSIM QR Code / Add Cellular Plan] ➔ [Label: "MollySIM - Mexico"] ➔ [Set as Primary Data Line] ➔ [Turn ON Data Roaming] ➔ [Verify APN Profile] ``

Apple iOS Configuration

  1. Navigate to Settings > Cellular (or Mobile Service) > Add eSIM.
  2. Select Use QR Code and scan the activation voucher provided by MollySIM.
  3. Label the new profile clearly (e.g., MollySIM Mexico).
  4. Set your Default Voice Line to your primary home SIM (to continue receiving banking 2FA SMS), but set Cellular Data exclusively to your MollySIM profile.
  5. Toggle Allow Cellular Data Switching to OFF to avoid accidental roaming charges from your home carrier.
  6. Tap your MollySIM profile, enter Cellular Data Network, and verify the APN matches the automated setup string. Toggle Data Roaming to ON.

Android Configuration (Samsung Galaxy / Google Pixel / Motorola)

  1. Go to Settings > Network & internet (or Connections) > SIMs > Add SIM > Download a SIM.
  2. Scan your activation QR code and confirm the profile download to your device's eUICC chip.
  3. Under the SIM Manager, set MollySIM as the preferred SIM for Mobile data.
  4. Tap the MollySIM entry, ensure Mobile data is enabled, and switch Roaming to ON.
  5. Under Access Point Names (APN), confirm the APN profile is active. If auto-configuration fails, tap Add, enter the APN parameters detailed in your confirmation email, and select Save.

Dual-SIM Strategy: Protecting Home 2FA While Avoiding Roaming Fees

Setting / FeaturePrimary Home Carrier SIMMollySIM Travel ProfilePurpose & Technical Impact
Mobile Data❌ OFF✅ ONDirects all data traffic through the Mexican regional routing core.
Data Roaming❌ OFF✅ ONBlocks catastrophic home carrier daily pass charges ($10–$15/day).
Voice / SMS Line✅ ON➖ Optional / Data OnlyPreserves incoming OTP banking codes without activating data triggers.
Wi-Fi Calling✅ ON (IMS over Cellular)Allows free calling to your home country using MollySIM's cellular data stream.

Remote Rail Optimization: Calakmul & Jungle Transits

When passing through environmentally protected zones between Escárcega, Xpujil, and Chetumal, cellular infrastructure relies on sparse base transceiver stations (BTS). Apply these adjustments to ensure continuous connectivity and device stability:

``` JUNGLE SIGNAL DEGRADATION WORKFLOW

[Entering Tramo 7 (Calakmul)] │ ▼ [Switch Network Mode to LTE / 4G Only] ──► (Stops battery-draining 5G hunting) │ ▼ [Signal Drops Out?] ├─► YES: Go to Settings > Manual Network Selection > Choose "Telcel" or "Altán" └─► NO: Maintain baseline operations (MollySIM 384 kbps FUP safety net) ```

1. Manual Network Selection Strategy

Modern multi-IMSI travel eSIMs like MollySIM connect dynamically to local tier-1 partner networks (such as Telcel, Movistar, and AT&T Mexico). In deep canopy sectors where the train skirts the Calakmul Biosphere Reserve, auto-switching algorithms may get trapped in an endless PLMN (Public Land Mobile Network) search loop.

2. Cellular Modem Power Optimization

When cellular signals drop below -110 dBm RSRP (Reference Signal Received Power), your smartphone's RF transceiver boosts its power amplifier output to maximum wattage to maintain tower contact, rapidly draining your battery and causing the device to heat up.

3. Emergency Offline Contingency Protocols

Even with advanced multi-network roaming profiles, physical topography can cause temporary line-of-sight signal cutoffs between rail cuttings.

Instant QR Delivery • Native 5G • 384kbps FUP Protection

🇺🇸 United States High-Speed Travel eSIM & SIM Plans

Instant QR code activation, hotspot enabled, with guaranteed 384kbps fallback speed to keep Maps & Digital Wallets active.

View United States Plans & Pricing ➔T-Mobile US SIM ➔