Trojan. Tinba

Trojan. Tinba

What is Trojan.Tinba infection?

In this short article you will certainly locate regarding the meaning of Trojan.Tinba and its negative impact on your computer system. Such ransomware are a form of malware that is elaborated by online frauds to demand paying the ransom money by a target.

Most of the cases, Trojan.Tinba infection will advise its targets to start funds move for the objective of counteracting the amendments that the Trojan infection has actually presented to the target’s gadget.

Trojan.Tinba Summary

These adjustments can be as follows:

  • Executable code extraction. Cybercriminals often use binary packers to hinder the malicious code from reverse-engineered by malware analysts. A packer is a tool that compresses, encrypts, and modifies a malicious file’s format. Sometimes packers can be used for legitimate ends, for example, to protect a program against cracking or copying.
  • Injection (inter-process);
  • Injection (Process Hollowing);
  • Injection with CreateRemoteThread in a remote process;
  • Creates RWX memory. There is a security trick with memory regions that allows an attacker to fill a buffer with a shellcode and then execute it. Filling a buffer with shellcode isn’t a big deal, it’s just data. The problem arises when the attacker is able to control the instruction pointer (EIP), usually by corrupting a function’s stack frame using a stack-based buffer overflow, and then changing the flow of execution by assigning this pointer to the address of the shellcode.
  • A process attempted to delay the analysis task.;
  • Expresses interest in specific running processes;
  • Repeatedly searches for a not-found process, may want to run with startbrowser=1 option;
  • HTTP traffic contains suspicious features which may be indicative of malware related traffic;
  • Performs some HTTP requests;
  • The binary likely contains encrypted or compressed data. In this case, encryption is a way of hiding virus’ code from antiviruses and virus’ analysts.
  • Executed a process and injected code into it, probably while unpacking;
  • Code injection with CreateRemoteThread in a remote process;
  • Tries to unhook or modify Windows functions monitored by Cuckoo;
  • A system process is generating network traffic likely as a result of process injection;
  • Installs itself for autorun at Windows startup.

    There is simple tactic using the Windows startup folder located at:
    C:\Users\[user-name]\AppData\Roaming\Microsoft\Windows\StartMenu\Programs\Startup Shortcut links (.lnk extension) placed in this folder will cause Windows to launch the application each time [user-name] logs into Windows.

    The registry run keys perform the same action, and can be located in different locations:

    • HKEY_LOCAL_MACHINE\Software\Microsoft\Windows\CurrentVersion\Run
    • HKEY_CURRENT_USER\Software\Microsoft\Windows\CurrentVersion\Run
    • HKEY_LOCAL_MACHINE\Software\Microsoft\Windows\CurrentVersion\RunOnce
    • HKEY_CURRENT_USER\Software\Microsoft\Windows\CurrentVersion\RunOnce
  • Creates a hidden or system file. The malware adds the hidden attribute to every file and folder on your system, so it appears as if everything has been deleted from your hard drive.
  • Creates a slightly modified copy of itself;
  • Anomalous binary characteristics. This is a way of hiding virus’ code from antiviruses and virus’ analysts.
  • Ciphering the documents situated on the sufferer’s hard drive — so the victim can no more utilize the data;
  • Preventing regular accessibility to the target’s workstation;
z.whorecord.xyzRansomware-FDW!6DAB7FC57CDF
ynefefyopqvu.comRansomware-FDW!6DAB7FC57CDF
tsxuvvebctem.comRansomware-FDW!6DAB7FC57CDF
a.tomx.xyzRansomware-FDW!6DAB7FC57CDF

Trojan.Tinba

The most common channels whereby Trojan.Tinba Ransomware are infused are:

  • By methods of phishing e-mails. Email phishing is a cyber attack that uses disguised email as a goal is to trick the recipient into believing that the message is something they want or need — a request from their bank, for instance, or a note from someone in their company — and to click a link for download a malware.
  • As a consequence of customer ending up on a source that holds a malicious software program;

As soon as the Trojan is effectively infused, it will either cipher the information on the target’s computer or avoid the gadget from operating in an appropriate way – while likewise positioning a ransom money note that states the demand for the sufferers to impact the settlement for the purpose of decrypting the documents or restoring the documents system back to the preliminary problem. In the majority of instances, the ransom note will come up when the customer reboots the PC after the system has currently been damaged.

Trojan.Tinba distribution networks.

In different corners of the world, Trojan.Tinba grows by leaps and also bounds. Nonetheless, the ransom money notes and techniques of obtaining the ransom money amount may differ depending on certain neighborhood (regional) settings. The ransom notes as well as methods of obtaining the ransom amount might vary depending on particular neighborhood (regional) settings.

For instance:

    Faulty alerts concerning unlicensed software.

    In particular locations, the Trojans often wrongfully report having actually identified some unlicensed applications made it possible for on the target’s tool. The alert then requires the individual to pay the ransom.

    Faulty statements regarding unlawful material.

    In countries where software program piracy is less prominent, this approach is not as effective for the cyber scams. Additionally, the Trojan.Tinba popup alert might falsely claim to be deriving from a law enforcement institution and will certainly report having located youngster porn or various other illegal data on the gadget.

    Trojan.Tinba popup alert may wrongly declare to be deriving from a legislation enforcement institution and will certainly report having located child porn or other unlawful data on the device. The alert will in a similar way contain a requirement for the individual to pay the ransom.

Technical details

File Info:

crc32: 20A5B4E7md5: 6dab7fc57cdfd1416ef35c172d1950b9name: upload_filesha1: e60e69f2a5512ec7e5edd8fbd1187e77a4db25b6sha256: 63b95c275e3edfa65be07e326a203c94cb1b6bee07c4ac93f7701ecdf646e143sha512: 93a14dbef4ba2943fc9339f07ff725911fe0d4205c3e0ad71e22c41c671a39a0ed2dece6592e9ed763f8726c0b70447d6e1441a52163ee08d040e911a6151233ssdeep: 1536:BTwcrL3XLGJj9XP6kcP8/k8WHIYU5KPIGNfipR0CGqPfCtV0gR1PeeHgxLHi:5wcrTLGz6VnHInCIGBORa4fCtVPRpGitype: PE32 executable (GUI) Intel 80386 system file, for MS Windows

Version Info:

LegalCopyright: Copyright xa9 2001-2014 PGWARE LLCInternalName: SuperRamFileVersion: 6.0.0.0CompanyName: PGWARE LLCLegalTrademarks: ProductName: SuperRamProductVersion: 6.0.0.0FileDescription: SuperRamOriginalFilename: SUPERRAM.EXETranslation: 0x0409 0x04b0

Trojan.Tinba also known as:

GridinSoftTrojan.Ransom.Gen
BkavW32.AIDetectVM.malware2
Elasticmalicious (high confidence)
DrWebTrojan.PWS.Tinba.148
MicroWorld-eScanGen:Variant.Ulise.39193
FireEyeGeneric.mg.6dab7fc57cdfd141
CAT-QuickHealTrojan.Generic.B4
McAfeeRansomware-FDW!6DAB7FC57CDF
MalwarebytesTrojan.Tinba
ZillyaTrojan.Kryptik.Win32.737286
SangforMalware
K7AntiVirusTrojan ( 00560ce21 )
K7GWTrojan ( 00560ce21 )
Cybereasonmalicious.57cdfd
InvinceaML/PE-A + Troj/Agent-BEGU
BitDefenderThetaGen:NN.ZexaF.34570.iy0@am@Fbini
CyrenW32/S-70a403cd!Eldorado
SymantecML.Attribute.HighConfidence
TrendMicro-HouseCallTrojan.Win32.TINBA.SMTHA
AvastWin32:Malware-gen
ClamAVWin.Packer.MalwareCrypter-6620810-1
KasperskyHEUR:Trojan.Win32.Tinba.pef
BitDefenderGen:Variant.Ulise.39193
NANO-AntivirusTrojan.Win32.Tinba.dsruxe
RisingTrojan.Kryptik!8.8 (TFE:1:sdIO4kC6m4)
Ad-AwareGen:Variant.Ulise.39193
EmsisoftGen:Variant.Ulise.39193 (B)
ComodoTrojWare.Win32.Tinba.DJEF@7t8y9y
F-Secure
VIPRETrojan.Win32.Generic!BT
TrendMicroTrojan.Win32.TINBA.SMTHA
McAfee-GW-EditionRansomware-FDW!6DAB7FC57CDF
SophosTroj/Agent-BEGU
SentinelOneDFI – Malicious PE
GDataGen:Variant.Ulise.39193
JiangminTrojan.Generic.dvyaq
AviraTR/AD.Tinba.rulsh
MAXmalware (ai score=88)
Antiy-AVLTrojan/Win32.TSGeneric
ArcabitTrojan.Ulise.D9919
ZoneAlarmHEUR:Trojan.Win32.Tinba.pef
MicrosoftTrojan:Win32/CryptInject.VDS!MTB
CynetMalicious ()
AhnLab-V3Trojan/Win32.Tinba.C1327738
Acronissuspicious
VBA32TrojanPSW.Tinba
ALYacGen:Variant.Ulise.39193
TACHYONTrojan/W32.Agent.132608.US
CylanceUnsafe
APEXMalicious
ESET-NOD32a variant of Win32/Kryptik.DJEV
TencentMalware.Win32.Gencirc.10b9d5d0
YandexTrojan.Kryptik!dW4G84krGJ4
IkarusTrojan.Win32.Rovnix
eGambitUnsafe.AI_Score_64%
FortinetW32/Kryptik.DJEV!tr
AVGWin32:Malware-gen
PandaTrj/Genetic.gen
CrowdStrikewin/malicious_confidence_80% (D)
Qihoo-360HEUR/QVM10.1.A3A3.Malware.Gen
Sarah Jenkins
Author

Sarah Jenkins

Sarah Jenkins is a veteran tech journalist with over 12 years of experience covering artificial intelligence, mobile innovations, and digital ethics. Her insights have appeared in leading technology publications worldwide.