Vulnerabilidades
Resumen — últimos 7 días
Vulnerabilidades nuevas2860▼ 165 respecto a la semana anterior
Críticas / altas1382▲ 50 respecto a la semana anterior
Nueva explotación activa (KEV)5▼ 3 respecto a la semana anterior
Sin puntuar (sin CVSS)272▼ 254 respecto a la semana anterior
13 resultados, ordenados por fecha de publicación (más recientes primero)
| CVE | Estado | Severidad | EPSS | Explotación activa | Tecnologías afectadas | Publicada ▼ | Modificada | Descripción |
|---|---|---|---|---|---|---|---|---|
| Analizada | Crítica (9.8) | 3.8% | — | Iptime N104s-r1 FirmwareIptime N104v FirmwareIptime N1E FirmwareIptime N1plus Firmware+159 | 20/1/2026 | 17/6/2026 | A command injection vulnerability exists in the upnp_relay() function in multiple ipTIME router models because the controlURL value used to pass port-forwarding information to an upper router is passed to system() without proper validation or sanitization, allowing OS command injection. | |
| Analizada | Media (6.5) | 0.13% | — | Gotenna Mesh FirmwareGotenna | 1/5/2025 | 17/6/2026 | An issue was discovered on goTenna Mesh devices with app 5.5.3 and firmware 1.1.12. It uses a custom implementation of encryption without any additional integrity checking mechanisms. This leaves messages malleable to an attacker that can access the message. | |
| Analizada | Alta (8.8) | 0.19% | — | Gotenna Mesh FirmwareGotenna | 1/5/2025 | 17/6/2026 | An issue was discovered on goTenna v1 devices with app 5.5.3 and firmware 0.25.5. The verification token used for sending SMS through a goTenna server is hardcoded in the app. | |
| Analizada | Alta (8.8) | 0.19% | — | Gotenna Mesh FirmwareGotenna | 1/5/2025 | 17/6/2026 | An issue was discovered on goTenna Mesh devices with app 5.5.3 and firmware 1.1.12. The verification token used for sending SMS through a goTenna server is hardcoded in the app. | |
| Analizada | Media (6.5) | 0.17% | — | Gotenna Mesh FirmwareGotenna | 1/5/2025 | 17/6/2026 | An issue was discovered on goTenna v1 devices with app 5.5.3 and firmware 0.25.5. A command channel includes the next hop. which can be intercepted and used to break frequency hopping. | |
| Analizada | Media (5.5) | 0.15% | — | Gotenna Mesh FirmwareGotenna | 1/5/2025 | 17/6/2026 | An issue was discovered on goTenna v1 devices with app 5.5.3 and firmware 0.25.5. All packets sent over RF are also sent over UART with USB Shell, allowing someone with local access to gain information about the protocol and intercept sensitive data. | |
| Analizada | Media (6.5) | 0.23% | — | Gotenna Mesh FirmwareGotenna | 1/5/2025 | 17/6/2026 | An issue was discovered on goTenna v1 devices with app 5.5.3 and firmware 0.25.5. The app there makes it possible to inject any custom message (into existing v1 networks) with any GID and Callsign via a software defined radio. This can be exploited if the device is being used in an unencrypted environment or if the… | |
| Analizada | Media (6.5) | 0.16% | — | Gotenna Mesh FirmwareGotenna | 1/5/2025 | 17/6/2026 | An issue was discovered on goTenna Mesh devices with app 5.5.3 and firmware 1.1.12. By default, a GID is the user's phone number unless they specifically opt out. A phone number is very sensitive information because it can be tied back to individuals. The app does not encrypt the GID in messages. | |
| Analizada | Media (6.5) | 0.09% | — | Gotenna Mesh FirmwareGotenna | 1/5/2025 | 17/6/2026 | An issue was discovered on goTenna v1 devices with app 5.5.3 and firmware 0.25.5. The app uses a custom implementation of encryption without any additional integrity checking mechanisms. This leaves messages malleable to an attacker that can access the message. | |
| Analizada | Media (6.5) | 0.16% | — | Gotenna Mesh FirmwareGotenna | 1/5/2025 | 17/6/2026 | An issue was discovered on goTenna v1 devices with app 5.5.3 and firmware 0.25.5. By default, the GID is the user's phone number unless they specifically opt out. A phone number is very sensitive information because it can be tied back to individuals. The app does not encrypt the GID in messages. | |
| Modificada | Alta (7.5) | 11% | — | Netcommwireless Nf20 FirmwareNetcommwireless Nf20mesh FirmwareNetcommwireless Nl1902 Firmware | 11/1/2023 | 17/6/2026 | Authentication bypass in Netcomm router models NF20MESH, NF20, and NL1902 allows an unauthenticated user to access content. In order to serve static content, the application performs a check for the existence of specific characters in the URL (.css, .png etc). If it exists, it performs a "fake login" to give the… | |
| Modificada | Crítica (9.8) | 7.2% | — | Netcommwireless Nf20 FirmwareNetcommwireless Nf20mesh FirmwareNetcommwireless Nl1902 Firmware | 11/1/2023 | 17/6/2026 | On Netcomm router models NF20MESH, NF20, and NL1902 a stack based buffer overflow affects the sessionKey parameter. By providing a specific number of bytes, the instruction pointer is able to be overwritten on the stack and crashes the application at a known location. | |
| Modificada | Alta (8.8) | 35% | — | Intelbras Wifiber 120ac Inmesh Firmware | 25/12/2022 | 17/6/2026 | Intelbras WiFiber 120AC inMesh before 1-1-220826 allows command injection by authenticated users, as demonstrated by the /boaform/formPing6 and /boaform/formTracert URIs for ping and traceroute. |