Global Standards for the Microelectronics Industry
Standards & Documents Search
Title | Document # |
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High Bandwidth Memory (HBM4) DRAM |
JESD270-4 | Apr 2025 |
The HBM4 DRAM is tightly coupled to the host compute die with a distributed interface. The interface is divided into independent channels. Each channel is completely independent of one another. Channels are not necessarily synchronous to each other. The HBM4 DRAM uses a wide-interface architecture to achieve high-speed, low power operation. Each channel interface maintains a 64 bit data bus operating at double data rate (DDR). The JESD271-4 HBM4 Bump Matrix Spreadsheet will be available in early May. Patents(): There are several patent notifications claims in the JEDEC patent letter spreadsheet file for HBM. I do not know if any of these are going to be asserted against this HBM4 specification but this list is included in the BoD ballot content for reference. Free download. Registration or login required. |
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High Bandwidth Memory (HBM3) DRAM |
JESD238B.01 | Apr 2025 |
The HBM3 DRAM is tightly coupled to the host compute die with a distributed interface. The interface is divided into independent channels. Each channel is completely independent of one another. Channels are not necessarily synchronous to each other. The HBM3 DRAM uses a wide-interface architecture to achieve high-speed, low power operation. Each channel interface maintains a 64 bit data bus operating at double data rate (DDR). Patents(): A complete list of Assurance/Disclosure Forms is available to JEDEC members in the Members Area. Non-members can obtain individual Assurance/Disclosure Forms on request from the JEDEC office. Free download. Registration or login required. |
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DICTIONARY OF TERMS FOR SOLID-STATE TECHNOLOGY, 7th Edition |
JESD88G | Mar 2025 |
This reference for technical writers and educators, manufacturers, and buyers and users of discrete solid state devices is now available. It should aid the technical committees of JEDEC in the avoidance of multiple definitions and reduce the proliferation of redundant definitions. The long-term goal is to include definitions from all JEDEC publications and standards. Each of the approximately two thousand entries is referenced to its source publication, and an annex listing the names of the source publications and their releases dates is included. All entries were reviewed for punctuation, grammar, and clarity, as well as accuracy, and reworded if such was considered warranted. The purpose of this dictionary is to promote the uniform use of terms, definitions, abbreviations, and symbols throughout the solid state industry Committee(s): JC-10 Free download. Registration or login required. |
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Graphics Double Data Rate 7 SGRAM Standard (GDDR7) |
JESD239B | Feb 2025 |
This standard defines the Graphics Double Data Rate 7 (GDDR7) Synchronous Graphics Random Access Memory (SGRAM) specification, including features, functionality, package, and pin assignments.
Free download. Registration or login required. |
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Part Model Thermal Guidelines for Electronic-Device Packages – XML Requirements |
JEP30-T100B.01 | Feb 2025 |
This standard establishes the requirements for exchanging part data between part manufacturers and their customers for electrical and electronic products. This standard applies to all forms of electronic parts. It forms part of the Part Model XML Schema, which covers the parental structure for the electrical, physical, thermal, assembly process classification data along with materials and substances that may be present in the supplied product or sub-products. This Guideline specifically focuses on the "Thermal" subsection of the Part Model. For more information visit the main JEP30 webpage. Committee(s): JC-11, JC-11.2, JC-15 Free download. Registration or login required. |
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Part Model Guidelines for Electronic-Device Packages – XML Requirements |
JEP30F | Feb 2025 |
This standard establishes the requirements for exchanging part data between part manufacturers and their customers for electrical and electronic products. This standard applies to all forms of electronic parts. It covers several sub-sections such as electrical, physical, thermal, assembly process classification data along with materials and substances that may be present in the supplied product or sub-products. This Guideline specifically focuses on the parental structure, under which several sub-section listed above, can be contained and linked together within the Part Model parent structure. For more information visit the main JEP30 webpage. Free download. Registration or login required. |
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Part Model Electrical Guidelines for Electronic-Device Packages – XML Requirements |
JEP30-E100G | Feb 2025 |
This standard establishes the requirements for exchanging part data between part manufacturers and their customers for electrical and electronic products. This standard applies to all forms of electronic parts. It forms part of the Part Model XML Schema, which covers the parental structure for the electrical, physical, Electrical, assembly process classification data along with materials and substances that may be present in the supplied product or subproducts. This Guideline specifically focuses on the “Electrical” sub-section of the Part Model. For more information visit the main JEP30 webpage. Committee(s): JC-11, JC-11.2, JC-16 Free download. Registration or login required. |
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Part Model Supply Chain Guidelines for Electronic-Device Packages – XML Requirements |
JEP30-S100A.02 | Feb 2025 |
This standard establishes the requirements for exchanging part data between part manufacturers and their customers for electrical and electronic products. This standard applies to all forms of electronic parts. It forms part of the Part Model XML Schema, which covers the parental structure for the electrical, physical, supply chain, assembly process classification data along with materials and substances that may be present in the supplied product or sub-products. This Guideline specifically focuses on the SupplyChain sub-section of the Part Model. For more information visit the main JEP30 webpage. Committee(s): JC-11, JC-11.2, JC-14.4 Free download. Registration or login required. |
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Low Power Double Data Rate Interface for Non-Volatile Memory (LPDDR4X-NVM) Standard |
JESD326-4 | Nov 2024 |
This standard defines the Low Power Double Data Rate interface for Non-Volatile Memory (LPDDR4XNVM) Standard. This standard describes features, functionalities, AC and DC characteristics, packages, and ball/signal assignments. The purpose of this specification is to define the minimum set of requirements for a JEDEC compliant 16 bit single channel LPDDR4X-NVM device. LPDDR4X-NVM density ranges from 128Mb through 32Gb. Free download. Registration or login required. |
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Temperature Range and Measurement Standards for Components and Modules |
JESD402-1B | Sep 2024 |
This document specifies standard temperature ranges that may be used, by way of referencing JESD402-1, in other standards, specifications, and datasheets when defining temperature related specifications. Committee(s): JC-42 Free download. Registration or login required. |
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DDR5 SDRAMRelease Number: Version 1.31 |
JESD79-5C.01 | Jul 2024 |
Version 1.31 This standard defines the DDR5 SDRAM specification, including features, functionalities, AC and DC characteristics, packages, and ball/signal assignments. The purpose of this Standard is to define the minimum set of requirements for JEDEC compliant 8 Gb through 32 Gb for x4, x8, and x16 DDR5 SDRAM devices. This standard was created based on the DDR4 standards (JESD79-4) and some aspects of the DDR, DDR2, DDR3, and LPDDR4 standards (JESD79, JESD79-2, JESD79-3, and JESD209-4). Available for purchase: $423.00 Add to Cart Paying JEDEC Members may login for free access. |
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Low Power Double Data Rate 4 (LPDDR4) |
JESD209-4E | Jun 2024 |
This document defines the LPDDR4 standard, including features, functionalities, AC and DC characteristics, packages, and ball/signal assignments. The purpose of this specification is to define the minimum set of requirements for a JEDEC compliant 16 bit per channel SDRAM device with either one or two channels. LPDDR4 dual channel device density ranges from 2 Gb through 32 Gb and single channel density ranges from 1 Gb through 16 Gb. Available for purchase: $374.00 Add to Cart Paying JEDEC Members may login for free access. |
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DDR5 Registering Clock Driver Definition (DDR5RCD04) |
JESD82-514.01 | Jun 2024 |
This document defines standard specifications of DC interface parameters, switching parameters, and test loading for definition of the DDR5 Registering Clock Driver (RCD) with parity for driving address and control nets on DDR5 RDIMM applications. The DDR5RCD04 Device ID is DID = 0x0054. Free download. Registration or login required. |
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DDR5 Clock Driver Definition (DDR5CKD01)Release Number: Version 1.1 |
JESD82-531A.01 | Feb 2024 |
This document defines standard specifications of DC interface parameters, switching parameters, and test loading for definition of the DDR5 Clock Driver (CKD) for re-driving the DCK for CUDIMM, CSODIMM and CAMM applications. The DDR5CKD01 Device ID is DID = 0x0531. (5 = DDR5, Free download. Registration or login required. |
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ECXML Guidelines for Electronic Thermal System Level Models – XML Requirements |
JEP181A | Nov 2023 |
This publication establishes the requirements for the exchange of electronic thermal system level simulation models between supplier and end user in a single neutral file format. Committee(s): JC-15 Free download. Registration or login required. |
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LOW POWER DOUBLE DATA RATE (LPDDR) 5/5X |
JESD209-5C | Jul 2023 |
This document defines the LPDDR5/LPDDR5X standard, including features, functionalities, AC and DC characteristics, packages, and ball/signal assignments. The purpose of this specification is to define the minimum set of requirements for a JEDEC compliant x16 one channel SDRAM device and x8 one channel SDRAM device. LPDDR5/LPDDR5X device density ranges from 2 Gb through 32 Gb. This document was created using aspects of the following standards: DDR2 (JESD79-2), DDR3 (JESD79-3), DDR4 (JESD79-4), LPDDR (JESD209), LPDDR2 (JESD209-2), LPDDR3 (JESD209-3), and LPDDR4 (JESD209-4). Available for purchase: $459.00 Add to Cart Paying JEDEC Members may login for free access. |
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Graphics Double Data Rate (GDDR6) SGRAM Standard |
JESD250D | May 2023 |
This document defines the Graphics Double Data Rate 6 (GDDR6) Synchronous Graphics Random Access Memory (SGRAM) specification, including features, functionality, package, and pin assignments. The purpose of this Standard is to define the minimum set of requirements for 8 Gb through 16 Gb x16 dual channel GDDR6 SGRAM devices. System designs based on the required aspects of this standard will be supported by all GDDR6 SGRAM vendors providing compatible devices. Some aspects of the GDDR6 standard such as AC timings and capacitance values were not standardized. Some features are optional and therefore may vary among vendors. In all cases, vendor data sheets should be consulted for specifics. This document was created based on some aspects of the GDDR5 Standard (JESD212). Committee(s): JC-42.3C Free download. Registration or login required. |
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Graphics Double Data (GDDR4) SGRAM StandardRelease Number: 16 |
SDRAM3.11.5.8 R16.01 | Mar 2023 |
Item 1600.41, Terminology Update This document defines the Graphics Double Data Rate 4 (GDDR4) Synchronous Graphics Random Access Memory (SGRAM) standard, including features, functionality, package, and pin assignments. This scope may be expanded in future to also include other higher density devices. Committee(s): JC-42.3 JESD21-C Solid State Memory Documents Main Page Free download. Registration or login required. |
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GRAPHICS DOUBLE DATA RATE (GDDR5X) SGRAM STANDARD |
JESD232A.01 | Mar 2023 |
Terminology update. This standard defines the Graphics Double Data This standard defines the GDDR5X SGRAM memory standard, including features, device operation, electrical characteristics, timings, signal pin assignments, and package Committee(s): JC-42.3, JC-42.3C Free download. Registration or login required. |
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COMPACT THERMAL MODEL OVERVIEW |
JESD15-1.01 | Mar 2023 |
Terminology update. This document should be used in conjunction with the parent document, and is intended to function as an overview to support the effective use of Compact Thermal Model (CTM) methodologies as specified in the companion methods documents. Free download. Registration or login required. |