Changes for page Wipe Boot Template erstellen
Last modified by Sabrina V. on 2026/10/07 08:13
From version 5.1
edited by Sabrina V.
on 2026/10/07 08:13
on 2026/10/07 08:13
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To version 3.2
edited by Sabrina V.
on 2026/07/28 08:23
on 2026/07/28 08:23
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Summary
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... ... @@ -6,18 +6,18 @@ 6 6 A Wipe Boot Template is used, for example, to securely reset devices before reuse, return, or disposal and to reliably remove old data. Automated execution ensures that the deletion process can be executed consistently on all devices without requiring manual steps. 7 7 8 8 {{aagon.versionierungsbox}} 9 -Starting with acmpversion 6.10, you can choose wipe methods to determine how data should be deleted and create an interactive wipe boot template.9 +Starting with ACMP version 6.10, you can choose wipe methods to determine how data should be deleted and create an interactive wipe boot template. 10 10 {{/aagon.versionierungsbox}} 11 11 12 12 To delete entire hard drives using a Wipe Boot Template, follow these steps: 13 13 14 -~1. In acmp, navigate to //OS Deployment > Boot Templates//.14 +~1. In ACMP, navigate to //OS Deployment > Boot Templates//. 15 15 16 16 2. Choose the folder where the boot template should be created. 17 17 18 18 3. Click the //Add// button on the ribbon bar and select the //Add Wipe Boot Template// option from the drop-down menu. 19 19 20 -[[Add the Wipe Boot Template>>image:1779430057746-678.png ||data-cmp-info="10"]]20 +[[Add the Wipe Boot Template>>image:1779430057746-678.png]] 21 21 22 22 4.A wizard will open where you can specify the output directory, the name of the new boot template, a description (if applicable), and the Boot Image itself, which will be used as the environment for the wipe process. 23 23 You can also choose whether the wipe should be performed as an interactive boot template. ... ... @@ -26,13 +26,13 @@ 26 26 An interactive boot template is used to boot Clients into a boot environment via a physical boot medium, rather than booting over the network (PXE). The boot medium contains a Boot Image, which is provided, for example, on a USB drive or as an ISO file. Unlike an automated or wipe boot template, the actions after startup are not executed in a full manner. Instead, administrators can interactively select and confirm which steps should be executed during the boot process, such as starting deployments. 27 27 {{/aagon.infobox}} 28 28 29 -[[Select the Boot Image>>image:Wipe Boot Template_610.png ||data-cmp-info="10"]]29 +[[Select the Boot Image>>image:Wipe Boot Template_610.png]] 30 30 31 31 5. Click //Next//. 32 32 33 33 6. On the next page, configure the template. 34 34 35 -[[Specify the wipe methods>>image:Wipe Boot Template anlegen_Seite2.png ||data-cmp-info="10"]]35 +[[Specify the wipe methods>>image:Wipe Boot Template anlegen_Seite2.png]] 36 36 37 37 Use the checkboxes to select whether you want to delete all drives or individual drives. 38 38 ... ... @@ -52,12 +52,12 @@ 52 52 53 53 This method is intended for traditional magnetic hard drives (HDDs). It involves selectively overwriting specific data areas of the disk to prevent data recovery. 54 54 55 -The selected method is automatically applied in acmpdepending on the detected storage device type. This ensures that both SSDs and HDDs are deleted using an appropriate and secure method.55 +The selected method is automatically applied in ACMP depending on the detected storage device type. This ensures that both SSDs and HDDs are deleted using an appropriate and secure method. 56 56 57 57 As a final option, you can decommission the client once the disk deletion has been successfully completed. If applicable, specify the reason for decommissioning. 58 58 59 59 {{aagon.infobox}} 60 -A decommissioned Client is stored as a “Retired Client” in acmp.60 +A decommissioned Client is stored as a “Retired Client” in ACMP. 61 61 {{/aagon.infobox}} 62 62 63 63 {{aagon.infobox}} ... ... @@ -96,7 +96,7 @@ 96 96 97 97 Different wipe methods are used depending on the storage medium. Some methods overwrite data multiple times, while others utilize special functions of modern SSDs. The goal is to prevent data recovery—even with specialized software—as much as possible. 98 98 99 -The choice of wipe method determines how data is deleted from the respective storage medium. Since SSDs behave technically differently than traditional hard drives (HDDs), acmpoffers different erasure methods:99 +The choice of wipe method determines how data is deleted from the respective storage medium. Since SSDs behave technically differently than traditional hard drives (HDDs), ACMP offers different erasure methods: 100 100 101 101 **SSD** 102 102 ... ... @@ -112,9 +112,9 @@ 112 112 113 113 This method is intended for traditional magnetic hard drives (HDDs). It involves selectively overwriting specific data areas of the hard drive to prevent data recovery. 114 114 115 -a cmp automatically selects the appropriate wipe method based on the detected storage device type. This ensures that both SSDs and HDDs are deleted using a suitable and secure method.115 +ACMP automatically selects the appropriate wipe method based on the detected storage device type. This ensures that both SSDs and HDDs are deleted using a suitable and secure method. 116 116 117 -The following table provides an overview of the standards supported by acmpfor the delete process:117 +The following table provides an overview of the standards supported by ACMP for the delete process: 118 118 119 119 {{aagon.infobox}} 120 120 All items under the SSD option with more than 7 passes have already been filtered out. However, the items under HDD may include options with more than 7 wipe passes. ... ... @@ -129,8 +129,8 @@ 129 129 1. Overwrite with a random character 130 130 131 131 After that, “verification should take place” 132 -)))|(% style="width:209px" %)[[image:forbidden.svg||alt="(Minus)" data-cmp-info="10"]]133 -|AR_380_19|US Army AR 380-19|(% style="width:119px" %)3|[[image:https://extranet.aagon.com/s/24ys4x/9012/1ca6q62/_/images/icons/emoticons/check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:209px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]132 +)))|(% style="width:209px" %)[[image:forbidden.svg||alt="(Minus)"]] 133 +|AR_380_19|US Army AR 380-19|(% style="width:119px" %)3|[[image:https://extranet.aagon.com/s/24ys4x/9012/1ca6q62/_/images/icons/emoticons/check.svg||alt="(Haken)"]]|(% style="width:209px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 134 134 |CSEC_ITSG_06|Canadian CSEC ITSG-06|(% style="width:119px" %)3|(% style="width:616px" %)((( 135 135 * CSEC= Communication Security Establishment Canada 136 136 * 3-Fach-Wipe ... ... @@ -139,7 +139,7 @@ 139 139 *1. Überschreiben mit random Bitmuster 140 140 * Letzter Durchgang wird verifiziert 141 141 * sehr ähnlich zu DOD_5220_22_M 142 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]142 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 143 143 |DOD_5200_28_STD|US DoD 5200.28-STD|(% style="width:119px" %)7|(% style="width:616px" %)((( 144 144 * DoD steht für Department of Defense, dem US-Verteidigungsministerium 145 145 * 1985 ... ... @@ -151,7 +151,7 @@ 151 151 *1. Überschreiben mit 0x55 152 152 *1. Überschreiben mit 0xAA 153 153 *1. Überschreiben mit random Character 154 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]154 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 155 155 |DOD_5220_22_M|US DoD 5220.22-M|(% style="width:119px" %)3|(% style="width:616px" %)((( 156 156 * DoD steht für Department of Defense, dem US-Verteidigungsministerium 157 157 * 1995 ... ... @@ -160,7 +160,7 @@ 160 160 *1. Überschreiben Komplement zu 1., z.B. 0xFF 161 161 *1. Überschreiben mit "cryptographically secure pseudo-random sequence" 162 162 * Verifikation von allen Durchgängen 163 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]163 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 164 164 |DOD_5220_22_M_E|US DoD 5220.22-M (E)|(% style="width:119px" %)3|(% style="width:616px" %)((( 165 165 * DoD steht für Department of Defense, dem US-Verteidigungsministerium 166 166 * 3-Fach-Wipe ... ... @@ -167,7 +167,7 @@ 167 167 *1. Überschreiben mit 0xF1 168 168 *1. Überschreiben mit Komplement von 1 (0x0E) 169 169 *1. Überschreiben mit random Character 170 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]170 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 171 171 |DOD_5220_22_M_ECE|US DoD 5220.22-M (ECE)|(% style="width:119px" %)7|(% style="width:616px" %)((( 172 172 * DoD steht für Department of Defense, dem US-Verteidigungsministerium 173 173 * 2001 ... ... @@ -178,18 +178,18 @@ 178 178 4. Überschreiben mit random Character 179 179 180 180 5. bis 7. DOD_5220_22_M_E 181 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]182 -|GOST_R_50739_95_1|Russian GOST R 50739-95 (1 pass)|(% style="width:119px" %)1|(% style="width:616px" %)Überschreiben mit random Byte|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]181 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 182 +|GOST_R_50739_95_1|Russian GOST R 50739-95 (1 pass)|(% style="width:119px" %)1|(% style="width:616px" %)Überschreiben mit random Byte|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 183 183 |GOST_R_50739_95_2|Russian GOST R 50739-95 (2 passes)|(% style="width:119px" %)2|(% style="width:616px" %)((( 184 184 * 2-Fach-Wipe 185 185 *1. Überschreiben mit 0x00 186 186 *1. Überschreiben mit random Byte 187 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]187 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 188 188 |HMG_IS5_B|British HMG IS5 (Baseline)|(% style="width:119px" %)2|(% style="width:616px" %)((( 189 189 * 190 190 *1. Überschreiben mit 0x00 191 191 *1. Überschreiben mit pseudo random Bitmuster 192 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]192 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 193 193 |HMG_IS5_E|British HMG IS5 (Enhanced)|(% style="width:119px" %)3|(% style="width:616px" %)((( 194 194 * 195 195 *1. Überschreiben mit 0x00 ... ... @@ -196,11 +196,11 @@ 196 196 *1. Überschreiben mit 0xFF 197 197 *1. Überschreiben mit "cryptographically secure pseudo-random sequence" 198 198 * Verifikation aller Durchgänge 199 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]199 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 200 200 |ISM_6_2_92|Australian ISM 6.2.92|(% style="width:119px" %)1|(% style="width:616px" %)((( 201 201 * australisch 202 202 * Überschreiben mt random Bitmuster 203 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]203 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 204 204 |NAVSO_P_5239_26_MFM|US Navy NAVSO P-5239-26 (MFM)|(% style="width:119px" %)3|(% style="width:616px" %)((( 205 205 * 3-Fach-Wipe 206 206 *1. Überschreiben 0x01 ... ... @@ -207,7 +207,7 @@ 207 207 *1. Überschreiben mit 0x7FFFFFFF (32-Bit mit führender 0, dann nur noch 1) 208 208 *1. Überschreiben mit unterschiedlichen random Bitmuster 209 209 * Verifikation 210 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]210 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 211 211 |NAVSO_P_5239_26_RLL|US Navy NAVSO P-5239-26 (RLL)|(% style="width:119px" %)3|(% style="width:616px" %)((( 212 212 * 3-Fach-Wipe 213 213 *1. Überschreiben mit 0x01 ... ... @@ -214,7 +214,7 @@ 214 214 *1. Überschreiben mit 0x27FFFFFF 215 215 *1. Überschreiben mit unterschiedlichen random Bitmustern 216 216 * Verifikation 217 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]217 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 218 218 |NCSC_TG_025|US NCSC-TG-025|(% style="width:119px" %)3|(% style="width:616px" %)((( 219 219 * 3-Fach-Wipe 220 220 *1. Überschreiben mit 0x00 ... ... @@ -221,15 +221,15 @@ 221 221 *1. Überschreiben mit 0xFF 222 222 *1. Überschreiben mit random Character 223 223 * Verifikation nach jedem Schritt 224 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]224 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 225 225 |NIST_800_88_1R|NIST 800-88 (1 pass random)|(% style="width:119px" %)1|(% style="width:616px" %)((( 226 226 * NIST steht für National Institute of Standard 227 227 * Überschreibt alle adressierbaren Speicherplätze einmal mit zufälligen Bitmustern 228 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]228 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 229 229 |NIST_800_88_1Z|NIST 800-88 (1 pass zeros)|(% style="width:119px" %)1|(% style="width:616px" %)((( 230 230 * NIST steht für National Institute of Standard 231 231 * Überschreibt alle adressierbaren Speicherplätze mit Nullen 232 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]232 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 233 233 |NIST_800_88_3|((( 234 234 NIST 800-88 (3 passes) 235 235 ... ... @@ -241,7 +241,7 @@ 241 241 *1. Überschreiben mit 0xFF 242 242 *1. Überschreiben mit pseudo-random String 243 243 * am Ende verifizieren 244 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]244 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 245 245 |NSA_130_1|US NSA 130-1|(% style="width:119px" %)3|(% style="width:616px" %)((( 246 246 3-Fach-Wipe 247 247 ... ... @@ -248,19 +248,19 @@ 248 248 1.und 2. Überschreiben mit random Wert 249 249 250 250 3. Überschreiben mit 0xAA 251 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]251 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 252 252 |NZSIT_402|New Zealand NZSIT 402|(% style="width:119px" %)1|(% style="width:616px" %)((( 253 253 * Überschreibt jeden Sektor mit einem random Byte 254 254 * danach wird verifiziert 255 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]255 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 256 256 |PFITZNER_7|Pfitzner 7-pass|(% style="width:119px" %)7|(% style="width:616px" %)((( 257 257 * Roy-Pfitzner-Methode 258 258 * 7-Fach-Wipe mit random Byte 259 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]259 +)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]] 260 260 |PFITZNER_33|Pfitzner 33-pass|(% style="width:119px" %)33|(% style="width:616px" %)((( 261 261 * Roy-Pfitzner-Methode 262 262 * 33-Fach-Wipe mit random Bitmustern 263 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]263 +)))|(% style="width:209px" %)[[image:https://extranet.aagon.com/s/24ys4x/9012/1ca6q62/_/images/icons/emoticons/check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:https://extranet.aagon.com/s/24ys4x/9012/1ca6q62/_/images/icons/emoticons/forbidden.svg||alt="(Minus)" height="16" width="16"]] 264 264 |RCMP_TSSIT_OPS_II|Canadian RCMP TSSIT OPS-II|(% style="width:119px" %)7|(% style="width:616px" %)((( 265 265 * Royal Canadian Mounted Police: Technical Security Standards for Information Technology 266 266 * 7-Fach-Wipe, oft wie folgt implementiert ... ... @@ -271,7 +271,7 @@ 271 271 *1. Überschreiben mit 0x00 272 272 *1. Überschreiben mit 0xFF 273 273 *1. Überschreiben mit random Bitmuster 274 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]274 +)))|(% style="width:209px" %)[[image:https://extranet.aagon.com/s/24ys4x/9012/1ca6q62/_/images/icons/emoticons/check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:https://extranet.aagon.com/s/24ys4x/9012/1ca6q62/_/images/icons/emoticons/forbidden.svg||alt="(Minus)" height="16" width="16"]] 275 275 |SCHNEIER|Bruce Schneier|(% style="width:119px" %)7|(% style="width:616px" %)((( 276 276 * Bruce-Schneider-Methode 277 277 * 7-Fach-Wipe: ... ... @@ -278,7 +278,7 @@ 278 278 *1. Überschreiben mit 0x00 279 279 *1. Überschreiben mit Komplement von 1 (also 0xFF) 280 280 *1. - 7. Überschreibe alle adressierbaren Speicherplätze mit pseudo-random Bitmustern 281 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]281 +)))|(% style="width:209px" %)[[image:https://extranet.aagon.com/s/24ys4x/9012/1ca6q62/_/images/icons/emoticons/check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:https://extranet.aagon.com/s/24ys4x/9012/1ca6q62/_/images/icons/emoticons/forbidden.svg||alt="(Minus)" height="16" width="16"]] 282 282 |VSITR|German VSITR|(% style="width:119px" %)7|(% style="width:616px" %)((( 283 283 * deutscher Standard; (VS=Verschlusssachen; IT=Informationstechnik; R=Richtlinie) 284 284 * 1998 bis 2009, inzwischen abgelöst ... ... @@ -285,21 +285,21 @@ 285 285 * Richtlinien zum Geheimschutz von Verschlusssachen beim Einsatz von Informationstechnik 286 286 * 7-Fach-Wipe mit festen Mustern: 0x00, 0xFF abwechselnd und am Ende 0xAA (Wikipedia) 287 287 * "7 sequental passes, consistently filling it with the specific patterns" 288 -)))|(% style="width:209px" %)[[image:check.svg||alt="(Haken)" data-cmp-info="10"]]|(% style="width:212px" %)[[image:forbidden.svg||alt="(Minus)"data-cmp-info="10"height="16" width="16"]]288 +)))|(% style="width:209px" %)[[image:https://extranet.aagon.com/s/24ys4x/9012/1ca6q62/_/images/icons/emoticons/check.svg||alt="(Haken)"]]|(% style="width:212px" %)[[image:https://extranet.aagon.com/s/24ys4x/9012/1ca6q62/_/images/icons/emoticons/forbidden.svg||alt="(Minus)" height="16" width="16"]] 289 289 |SSD_SANITIZE|SSD Sanitize|(% style="width:119px" %)n.A.|(% style="width:616px" %)((( 290 290 * Sanitize, säubern 291 291 * Nur für NVMe 292 292 * Factory Reset und löschen der Daten 293 293 * Nicht von allen SSDs unterstützt 294 -)))|(% style="width:209px" %)[[image:forbidden.svg||alt="(Minus)" data-cmp-info="10"height="16" width="16"]]|(% style="width:212px" %)[[image:check.svg||alt="(Haken)"data-cmp-info="10"]]295 -|Sanitize + Crypto| |(% style="width:119px" %) |(% style="width:616px" %) |(% style="width:209px" %)[[image:forbidden.svg||alt="(Minus)" data-cmp-info="10"height="16" width="16"]]|(% style="width:212px" %)[[image:check.svg||alt="(Haken)"data-cmp-info="10"]]294 +)))|(% style="width:209px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]]|(% style="width:212px" %)[[image:check.svg||alt="(Haken)"]] 295 +|Sanitize + Crypto| |(% style="width:119px" %) |(% style="width:616px" %) |(% style="width:209px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]]|(% style="width:212px" %)[[image:check.svg||alt="(Haken)"]] 296 296 |SSD_SE| |(% style="width:119px" %)n.A.|(% style="width:616px" %)((( 297 297 * Secure Erase, schnelles Löschen 298 298 * Factory Reset 299 299 * zurücksetzen aller Flash-Zellen auf Zustand "1": unprogrammiert 300 300 * kein Löschen/Überschreiben nur die Zuordnungstabelle leeren 301 -)))|(% style="width:209px" %)[[image:forbidden.svg||alt="(Minus)" data-cmp-info="10"height="16" width="16"]]|(% style="width:212px" %)[[image:check.svg||alt="(Haken)"data-cmp-info="10"]]302 -|Secure Erase + Crypto| |(% style="width:119px" %) |(% style="width:616px" %) |(% style="width:209px" %)[[image:forbidden.svg||alt="(Minus)" data-cmp-info="10"height="16" width="16"]]|(% style="width:212px" %)[[image:check.svg||alt="(Haken)"data-cmp-info="10"]]303 -|TRIM|SSD Trim|(% style="width:119px" %)n.A.|(% style="width:616px" %)"SSD Trim is a hardware command to safely wipe solid state drives. It’s universal and can be applied to almost all SSD drives SATA/NVMe."|(% style="width:209px" %)[[image:forbidden.svg||alt="(Minus)" data-cmp-info="10"height="16" width="16"]]|(% style="width:212px" %)[[image:check.svg||alt="(Haken)"data-cmp-info="10"]]301 +)))|(% style="width:209px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]]|(% style="width:212px" %)[[image:check.svg||alt="(Haken)"]] 302 +|Secure Erase + Crypto| |(% style="width:119px" %) |(% style="width:616px" %) |(% style="width:209px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]]|(% style="width:212px" %)[[image:check.svg||alt="(Haken)"]] 303 +|TRIM|SSD Trim|(% style="width:119px" %)n.A.|(% style="width:616px" %)"SSD Trim is a hardware command to safely wipe solid state drives. It’s universal and can be applied to almost all SSD drives SATA/NVMe."|(% style="width:209px" %)[[image:forbidden.svg||alt="(Minus)" height="16" width="16"]]|(% style="width:212px" %)[[image:check.svg||alt="(Haken)"]] 304 304 305 305

