Search Results (1882 CVEs found)

CVE Vendors Products Updated CVSS v3.1
CVE-2025-4569 1 Asus 1 Myasus 2026-04-15 N/A
An insecure sensitive key storage issue was found in MyASUS. potentially allowing unauthorized actor to obtain a token that could be used to communicate with certain services. Refer to the 'Security Update for for MyASUS' section on the ASUS Security Advisory for more information.
CVE-2025-7072 2026-04-15 N/A
The firmware in KAON CG3000TC and CG3000T routers contains hard-coded credentials in clear text (shared across all routers of this model) that an unauthenticated remote attacker could use to execute commands with root privileges. This vulnerability has been fixed in firmware version: 1.00.67 for CG3000TC and 1.00.27 for CG3000T.
CVE-2025-52376 2026-04-15 9.8 Critical
An authentication bypass vulnerability in the /web/um_open_telnet.cgi endpoint in Nexxt Solutions NCM-X1800 Mesh Router firmware UV1.2.7 and below, allowing an attacker to remotely enable the Telnet service without authentication, bypassing security controls. The Telnet server is then accessible with hard-coded credentials, allowing attackers to gain administrative shell access and execute arbitrary commands on the device.
CVE-2014-125121 1 Arraynetworks 2 Vapv, Vxag 2026-04-15 N/A
Array Networks vAPV (version 8.3.2.17) and vxAG (version 9.2.0.34) appliances are affected by a privilege escalation vulnerability caused by a combination of hardcoded SSH credentials (or SSH private key) and insecure permissions on a startup script. The devices ship with a default SSH login or a hardcoded DSA private key, allowing an attacker to authenticate remotely with limited privileges. Once authenticated, an attacker can overwrite the world-writable /ca/bin/monitor.sh script with arbitrary commands. Since this script is executed with elevated privileges through the backend binary, enabling the debug monitor via backend -c "debug monitor on" triggers execution of the attacker's payload as root. This allows full system compromise.
CVE-2025-27255 2026-04-15 8 High
Use of Hard-coded Credentials vulnerability in GE Vernova EnerVista UR Setup allows Privilege Escalation. The local user database is encrypted using an hardcoded password retrievable by an attacker analyzing the application code.
CVE-2025-30122 2026-04-15 9.8 Critical
An issue was discovered on ROADCAM X3 devices. It has a uniform default credential set that cannot be modified by users, making it easy for attackers to gain unauthorized access to multiple devices.
CVE-2025-1393 2026-04-15 9.8 Critical
An unauthenticated remote attacker can use hard-coded credentials to gain full administration privileges on the affected product.
CVE-2025-30125 1 Marbella 1 Kr8s Dashcam 2026-04-15 9.8 Critical
An issue was discovered on Marbella KR8s Dashcam FF 2.0.8 devices. All dashcams were shipped with the same default credentials of 12345678, which creates an insecure-by-default condition. For users who change their passwords, it's limited to 8 characters. These short passwords can be cracked in 8 hours via low-end commercial cloud resources.
CVE-2024-4996 2026-04-15 9.8 Critical
Use of a hard-coded password for a database administrator account created during Wapro ERP installation allows an attacker to retrieve embedded sensitive data stored in the database. The password is same among all Wapro ERP installations. This issue affects Wapro ERP Desktop versions before 8.90.0.
CVE-2025-62777 1 Planex 1 Mzk-dp300n 2026-04-15 N/A
Use of Hard-Coded Credentials issue exists in MZK-DP300N version 1.07 and earlier, which may allow an attacker within the local network to log in to the affected device via Telnet and execute arbitrary commands.
CVE-2025-9696 1 Sunpower 1 Pvs6 2026-04-15 N/A
The SunPower PVS6's BluetoothLE interface is vulnerable due to its use of hardcoded encryption parameters and publicly accessible protocol details. An attacker within Bluetooth range could exploit this vulnerability to gain full access to the device's servicing interface. This access allows the attacker to perform actions such as firmware replacement, disabling power production, modifying grid settings, creating SSH tunnels, altering firewall settings, and manipulating connected devices.
CVE-2025-9380 1 Fnkvision 1 Y215 Cctv Camera 2026-04-15 7.8 High
A vulnerability was identified in FNKvision Y215 CCTV Camera 10.194.120.40. Affected by this issue is some unknown functionality of the file /etc/passwd of the component Firmware. Such manipulation leads to hard-coded credentials. Local access is required to approach this attack. The exploit is publicly available and might be used. The vendor was contacted early about this disclosure but did not respond in any way.
CVE-2025-8857 2026-04-15 9.8 Critical
Clinic Image System developed by Changing contains hard-coded Credentials, allowing unauthenticated remote attackers to log into the system using administrator credentials embedded in the source code.
CVE-2025-30118 2026-04-15 7.5 High
An issue was discovered on the Audi Universal Traffic Recorder 2.88. It has Susceptibility to denial of service. It uses the same default credentials for all devices and does not implement proper multi-device authentication, allowing attackers to deny the owner access by occupying the only available connection. The SSID remains broadcast at all times, increasing exposure to potential attacks.
CVE-2025-59107 1 Dormakaba 1 Access Manager 2026-04-15 N/A
Dormakaba provides the software FWServiceTool to update the firmware version of the Access Managers via the network. The firmware in some instances is provided in an encrypted ZIP file. Within this tool, the password used to decrypt the ZIP and extract the firmware is set statically and can be extracted. This password was valid for multiple observed firmware versions.
CVE-2025-57602 1 Aikaan 1 Iot Management Platform 2026-04-15 9.8 Critical
Insufficient hardening of the proxyuser account in the AiKaan IoT management platform, combined with the use of a shared, hardcoded SSH private key, allows remote attackers to authenticate to the cloud controller, gain interactive shell access, and pivot into other connected IoT devices. This can lead to remote code execution, information disclosure, and privilege escalation across customer environments.
CVE-2025-57601 1 Aikaan 1 Cloud Controller 2026-04-15 9.8 Critical
AiKaan Cloud Controller uses a single hardcoded SSH private key and the username `proxyuser` for remote terminal access to all managed IoT/edge devices. When an administrator initiates "Open Remote Terminal" from the AiKaan dashboard, the controller sends this same static private key to the target device. The device then uses it to establish a reverse SSH tunnel to a remote access server, enabling browser-based SSH access for the administrator. Because the same `proxyuser` account and SSH key are reused across all customer environments: - An attacker who obtains the key (e.g., by intercepting it in transit, extracting it from the remote access server, or from a compromised admin account) can impersonate any managed device. - They can establish unauthorized reverse SSH tunnels and interact with devices without the owner's consent. This is a design flaw in the authentication model: compromise of a single key compromises the trust boundary between the controller and devices.
CVE-2025-57578 1 H3c 1 Magic 2026-04-15 8 High
An issue in H3C Magic M Device M2V100R006 allows a remote attacker to execute arbitrary code via the default password
CVE-2025-55279 2026-04-15 N/A
This vulnerability exists in ZKTeco WL20 due to hard-coded private key stored in plaintext within the device firmware. An attacker with physical access could exploit this vulnerability by extracting the firmware and analyzing the binary data to retrieve private key stored in the firmware of the targeted device. Successful exploitation of this vulnerability could allow the attacker to perform unauthorized decryption of sensitive data and Man-in-the-Middle (MitM) attacks on the targeted device.
CVE-2025-54465 2026-04-15 N/A
This vulnerability exists in ZKTeco WL20 due to hard-coded MQTT credentials and endpoints stored in plaintext within the device firmware. An attacker with physical access could exploit this vulnerability by extracting the firmware and analyzing the binary data to retrieve the hard-coded MQTT credentials and endpoints from the targeted device. Successful exploitation of this vulnerability could allow the attacker to gain unauthorized access to the MQTT broker and manipulate the communications of the targeted device.