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NVD · CVE-2026-64604 · In the Linux kernel, the following vulnerability has been resolved: KVM: VMX: Grab vmcs12 on CR8 interception update iff vCPU is in guest mode When updating CR8NVD · CVE-2026-64603 · In the Linux kernel, the following vulnerability has been resolved: platform/x86: intel-hid: Protect ACPI notify handler against recursion Since commit e2ffcda1NVD · CVE-2026-64602 · In the Linux kernel, the following vulnerability has been resolved: iio: adc: spear: Initialize completion before requesting IRQ In the report from Jaeyoung ChuNVD · CVE-2026-64601 · In the Linux kernel, the following vulnerability has been resolved: ALSA: us144mkii: capture_urb_complete: redundant usb_anchor_urb corrupts anchor list on eachCISA KEV · CVE-2026-20349 · Cisco Secure Firewall Adaptive Security Appliance (ASA) and Secure Firewall Threat Defense (FTD) Heap Inspection Vulnerability · Added 2026-08-11 · Due 2026-08-14CISA KEV · CVE-2026-68820 · Microsoft Windows Ancillary Function Driver for WinSock Use-After-Free Vulnerability · Added 2026-08-11 · Due 2026-08-25NVD · CVE-2026-64604 · In the Linux kernel, the following vulnerability has been resolved: KVM: VMX: Grab vmcs12 on CR8 interception update iff vCPU is in guest mode When updating CR8NVD · CVE-2026-64603 · In the Linux kernel, the following vulnerability has been resolved: platform/x86: intel-hid: Protect ACPI notify handler against recursion Since commit e2ffcda1NVD · CVE-2026-64602 · In the Linux kernel, the following vulnerability has been resolved: iio: adc: spear: Initialize completion before requesting IRQ In the report from Jaeyoung ChuNVD · CVE-2026-64601 · In the Linux kernel, the following vulnerability has been resolved: ALSA: us144mkii: capture_urb_complete: redundant usb_anchor_urb corrupts anchor list on eachCISA KEV · CVE-2026-20349 · Cisco Secure Firewall Adaptive Security Appliance (ASA) and Secure Firewall Threat Defense (FTD) Heap Inspection Vulnerability · Added 2026-08-11 · Due 2026-08-14CISA KEV · CVE-2026-68820 · Microsoft Windows Ancillary Function Driver for WinSock Use-After-Free Vulnerability · Added 2026-08-11 · Due 2026-08-25

Vendors · cobham

cobham

· 2 Critical

Total CVEs

27

Critical

2

Products

53

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27

Recent Vulnerabilities

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CVE-2023-44856MEDIUM 6.1

Cross Site Scripting (XSS) vulnerability in Cobham SAILOR VSAT Ku v.164B019, allows a remote attacker to execute arbitrary code via a crafted script to the rstat, sender, and recipients' parameters of the sub_21D24 function in the acu_web file.

CVE-2023-44855MEDIUM 6.5

Cross Site Scripting (XSS) vulnerability in Cobham SAILOR VSAT Ku v.164B019 allows a remote attacker to execute arbitrary code via a crafted script to the rdiag, sender, and recipients parameters of the sub_219C4 function in the acu_web file.

CVE-2023-44857HIGH 8.1

An issue in Cobham SAILOR VSAT Ku v.164B019, allows a remote attacker to execute arbitrary code via a crafted script to the sub_21D24 function in the acu_web component.

CVE-2023-44854MEDIUM 6.1

Cross Site Scripting (XSS) vulnerability in Cobham SAILOR VSAT Ku v.164B019, allows a remote attacker to execute arbitrary code via a crafted script to the c_set_rslog_decode function in the acu_web file.

CVE-2023-44853MEDIUM 4.8

\An issue was discovered in Cobham SAILOR VSAT Ku v.164B019, allows a remote attacker to execute arbitrary code via a crafted script to the sub_219C4 function in the acu_web file.

CVE-2023-44852HIGH 8.2

Cross Site Scripting (XSS) vulnerability in Cobham SAILOR VSAT Ku v.164B019, allows a remote attacker to execute arbitrary code via a crafted script to the c_set_traps_decode function in the acu_web file.

CVE-2019-9534HIGH 7.8

The Cobham EXPLORER 710, firmware version 1.07, does not validate its firmware image. Development scripts left in the firmware can be used to upload a custom firmware image that the device runs. This could allow an unauthenticated, local attacker to upload their own firmware that could be used to intercept or modify traffic, spoof or intercept GPS traffic, exfiltrate private data, hide a backdoor, or cause a denial-of-service.

CVE-2019-9533CRITICAL 9.8

The root password of the Cobham EXPLORER 710 is the same for all versions of firmware up to and including v1.08. This could allow an attacker to reverse-engineer the password from available versions to gain authenticated access to the device.

CVE-2019-9532HIGH 7.8

The web application portal of the Cobham EXPLORER 710, firmware version 1.07, sends the login password in cleartext. This could allow an unauthenticated, local attacker to intercept the password and gain access to the portal.

CVE-2019-9531CRITICAL 9.8

The web application portal of the Cobham EXPLORER 710, firmware version 1.07, allows unauthenticated access to port 5454. This could allow an unauthenticated, remote attacker to connect to this port via Telnet and execute 86 Attention (AT) commands, including some that provide unauthenticated, shell-like access to the device.

CVE-2019-9530MEDIUM 5.5

The web root directory of the Cobham EXPLORER 710, firmware version 1.07, has no access restrictions on downloading and reading all files. This could allow an unauthenticated, local attacker connected to the device to access and download any file found in the web root directory.

CVE-2019-9529MEDIUM 5.5

The web application portal of the Cobham EXPLORER 710, firmware version 1.07, has no authentication by default. This could allow an unauthenticated, local attacker connected to the device to access the portal and to make any change to the device.

CVE-2019-16320MEDIUM 5.3

Cobham Sea Tel v170 224521 through v194 225444 devices allow attackers to obtain potentially sensitive information, such as a vessel's latitude and longitude, via the public SNMP community.

CVE-2018-19394

Cobham Satcom Sailor 800 and 900 devices contained persistent XSS, which required administrative access to exploit. The vulnerability was exploitable by acquiring a copy of the device's configuration file, inserting an XSS payload into a relevant field (e.g., Satellite name), and then restoring the malicious configuration file.

CVE-2018-19393

Cobham Satcom Sailor 800 and 900 devices contained a vulnerability that allowed for arbitrary writing of content to the system's configuration file. This was exploitable via multiple attack vectors depending on the device's configuration. Further analysis also indicated this vulnerability could be leveraged to achieve a Denial of Service (DoS) condition, where the device would require a factory reset to return to normal operation.

CVE-2018-19392

Cobham Satcom Sailor 250 and 500 devices before 1.25 contained an unauthenticated password reset vulnerability. This could allow modification of any user account's password (including the default "admin" account), without prior knowledge of their password. All that is required is knowledge of the username and attack vector (/index.lua?pageID=Administration usernameAdmChange, passwordAdmChange1, and passwordAdmChange2 fields).

CVE-2018-19391

Cobham Satcom Sailor 250 and 500 devices before 1.25 contained persistent XSS, which could be exploited by an unauthenticated threat actor via the /index.lua?pageID=Phone%20book name field.

CVE-2018-5728

Cobham Sea Tel 121 build 222701 devices allow remote attackers to obtain potentially sensitive information via a /cgi-bin/getSysStatus request, as demonstrated by the Latitude/Longitude of the ship, or satellite details.

CVE-2018-5267

Cobham Sea Tel 121 build 222701 devices allow remote attackers to bypass authentication via a direct request to MenuDealerGx.html, MenuDealer.html, MenuEuNCGx.html, MenuEuNC.html, MenuSysGx.html, or MenuSys.html.

CVE-2018-5266

Cobham Sea Tel 121 build 222701 devices allow remote attackers to obtain potentially sensitive information about valid usernames by reading the loginName lines at the js/userLogin.js URI. NOTE: default passwords for the standard usernames are listed in the product's documentation: Dealer with password seatel3, SysAdmin with password seatel2, and User with password seatel1.

CVE-2018-5071

Persistent XSS exists in the web server on Cobham Sea Tel 116 build 222429 satellite communication system devices: remote attackers can inject malicious JavaScript code using the device's TELNET shell built-in commands, as demonstrated by the "set ship name" command. This is similar to a Cross Protocol Injection with SNMP.

CVE-2014-2942

Cobham Aviator 700D and 700E satellite terminals use an improper algorithm for PIN codes, which makes it easier for attackers to obtain a privileged terminal session by calculating the superuser code, and then leveraging physical access or terminal access to enter this code.

CVE-2014-2964

Cobham Aviator 700D and 700E satellite terminals have hardcoded passwords for the (1) debug, (2) prod, (3) do160, and (4) flrp programs, which allows physically proximate attackers to gain privileges by sending a password over a serial line.

CVE-2014-2941

Cobham Sailor 6000 satellite terminals have hardcoded Tbus 2 credentials, which allows remote attackers to obtain access via a TBUS2 command. NOTE: the vendor reportedly states "there is no possibility to exploit another user's credentials.

CVE-2014-2940

Cobham Sailor 900 and 6000 satellite terminals with firmware 1.08 MFHF and 2.11 VHF have hardcoded credentials for the administrator account, which allows attackers to obtain administrative control by leveraging physical access or terminal access.