Dell Inspiron 15 3511 Statement of Volatility
Summary
Statement of volatility for the Dell Inspiron 15 3511 laptop detailing all volatile and non-volatile memory components on the system board. Non-volatile elements include Panel EEDID EEPROM (128 bytes), System BIOS UC5/UC6 with embedded controller and Video BIOS, 512-byte System memory SPD EEPROM on SODIMMs, and 256-byte RTC CMOS. DDR4 system memory via two SODIMM connectors is volatile. Discrete graphics configurations use 2GB GDDR6 on VRAM1/VRAM2.
Page 1 Text Content
Statement of Volatility – Inspiron 15 3511 CAUTION: A CAUTION indicates either potential damage to hardware or loss of data and tells you how to avoid the problem. The Inspiron 15 3511 contains both volatile and non-volatile components. Volatile components lose their data immediately after power is removed from the component. Non-volatile components continue to retain their data even after power is removed from the component. The following Non-volatile components are present on the Inspiron 15 3511 system board. Table 1. List of Non-Volatile Components on System Board
Remedial Action
Reference User Accessible
Description Volatility Description (Action necessary to
Designator for external data
prevent loss of data)
Panel EEDID Part of panel Non Volatile memory, 128bytes. No Part of panel assembly EEPROM assembly
System BIOS UC5, UC6 Non Volatile memory, System BIOS, No N/A
embedded controller and Video BIOS for basic boot operation, PSA (on board diags), PXE diags.
System Two SODIMM Volatile memory in OFF state Yes Power off system Memory – connectors: DDR4 memory
NOTE: See state definitions later in text.
JDIMM1,2 present One to Two modules must be populated.
System On System Non Volatile memory 512 Bytes. No N/A memory SPD memory
EEPROM SODIMM(s)
Stores memory manufacturer data and
JDIMM1,2
timing information for correct operation of
present
system memory.
RTC CMOS – UC1 Non Volatile memory, 256 Bytes. No Remove the onboard BBRAM
(battery Stores CMOS information. coin cell
backed up)
battery
Video memory No
For UMA Volatile memory in off state. UMA uses
– frame buffer
platform: using main system memory size allocated out of system DDR4 main memory.
Discrete graphics system uses 2 GB GDDR6.
For DSC platform: VRAM1, VRAM2
Hard drive(s) User Yes Low level format
SSD (solid
replaceable
State flash drive). various sizes in GB
CAUTION: All other components on the system board lose data if power is removed from the system. Primary power loss (unplugging the power cord and removing the battery) destroys all user data on the memory (DDR4, 2400/2667 MHz). Secondary power loss (removing the on-board coin-cell battery) destroys system data on the system configuration and time-of-day information. In addition, to clarify memory volatility and data retention in situations where the system is put in different ACPI power states the following is provided (those ACPI power states are S0, S1, S3, S4 and S5): S0 state is the working state where the dynamic RAM is maintained and is read/write by the processor. S1 state is a low wake-up latency sleeping state. In this state, no system context is lost (CPU or chip set) and hardware maintains all system contexts. S3 is called “suspend to RAM” state or stand-by mode. In this state the dynamic RAM is maintained. Dell systems will be able to go to S3 if the OS and the peripherals used in the system supports S3 state. Win10 support S3 state. S4 is called “suspend to disk” state or “hibernate” mode. There is no power. In this state, the dynamic RAM is not maintained. If the system has been commanded to enter S4, the OS will write the system context to a non-volatile storage file and leave appropriate context markers. When the system is coming back to the working state, a restore file from the nonvolatile
Page Summary Contents For Dell Inspiron 15 3511 Statement of Volatility
Manual Details
| Brand | Dell |
|---|---|
| Pages | 2 |
| File Size | 139.55 KB |
| Published | June 15, 2026 |
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Frequently Asked Questions
What happens if I lose primary power?
Primary power loss, like unplugging the cord or removing the battery, destroys all user data on the memory (DDR4).
What is the difference between Suspend to RAM and Hibernate mode?
Suspend to RAM (S3) maintains dynamic RAM. Hibernate (S4) writes the system context to a non-volatile storage file with no power.
Which components do not lose data when power is removed?
Non-volatile components include EEDID, System BIOS, SPD memory, and RTC CMOS (coin cell).
How many DDR4 modules must be populated on the system board?
One to two modules must be populated in the JDIMM1,2 slots for correct operation.