MT36JSZS1G72PY-1G1A1 Micron Technology Inc, MT36JSZS1G72PY-1G1A1 Datasheet

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MT36JSZS1G72PY-1G1A1

Manufacturer Part Number
MT36JSZS1G72PY-1G1A1
Description
Manufacturer
Micron Technology Inc
Datasheet

Specifications of MT36JSZS1G72PY-1G1A1

Main Category
DRAM Module
Sub-category
DDR3 SDRAM
Module Type
240RDIMM
Device Core Size
72b
Organization
1Gx72
Total Density
8GByte
Maximum Clock Rate
1.066GHz
Operating Supply Voltage (typ)
1.5V
Operating Current
4.32A
Number Of Elements
36
Operating Supply Voltage (max)
1.575V
Operating Supply Voltage (min)
1.425V
Operating Temp Range
0C to 70C
Operating Temperature Classification
Commercial
Pin Count
240
Mounting
Socket
Lead Free Status / RoHS Status
Compliant
DDR3 SDRAM RDIMM
MT36JSZS1G72PY – 8GB
For component data sheets, refer to Micron’s Web site:
Features
• DDR3 functionality and operations supported as
• 240-pin, registered dual in-line memory module
• Fast data transfer rates: PC3-10600, PC3-8500,
• 8GB (1 Gig x 72)
• Full module heat spreader
• V
• V
• Supports ECC error detection and correction
• Nominal and dynamic on-die termination (ODT) for
• Dual rank, using 4Gb TwinDie™ devices
• 8 internal device banks
• Fixed burst chop (BC) of 4 and burst length (BL) of 8
• On-board I
• Gold edge contacts
• Full module heat spreader
• Lead-free
• Fly-by topology
• Terminated control, command, and address bus
Table 1:
PDF: 09005aef832b7b15/Source: 09005aef832b7c05
JSZS36C1Gx72PY.fm - Rev. A 4/08 EN
Speed
Grade
defined in the component data sheet
(RDIMM)
or PC3-6400
data and strobe signals
via the mode register set (MRS)
serial presence-detect (SPD) EEPROM
-1G5
-1G4
-1G3
-1G1
-1G0
-80C
-80B
DD
DDSPD
= 1.5V ±0.075V
= +3.0V to +3.6V
Nomenclature
PC3-10600
PC3-10600
PC3-10600
2
Key Timing Parameters
Industry
PC3-8500
PC3-8500
PC3-6400
PC3-6400
C temperature sensor with integrated
Products and specifications discussed herein are subject to change by Micron without notice.
CL = 10
1333
1333
1333
CL = 9
1333
1333
Data Rate (MT/s)
CL = 8
1333
1066
1066
1066
1066
8GB (x72, ECC, DR) 240-Pin DDR3 SDRAM RDIMM
www.micron.com
1
CL = 7
1066
1066
1066
Figure 1:
Notes: 1. Contact Micron for industrial temperature
Options
• Operating temperature
• Package
• Frequency/CAS latency
PCB height: 30.0mm (1.18in)
– Commercial (0°C ≤ T
– Industrial (–40°C ≤ T
– Lead-free DIMM
– 1.5ns @ CL = 8 (DDR3-1333)
– 1.5ns @ CL = 9 (DDR3-1333)
– 1.5ns @ CL = 10 (DDR3-1333)
– 1.87ns @ CL = 7 (DDR3-1066)
– 1.87ns @ CL = 8 (DDR3-1066)
– 2.5ns @ CL = 5 (DDR3-800)
– 2.5ns @ CL = 6 (DDR3-800)
U1
Micron Technology, Inc., reserves the right to change products or specifications without notice.
2. Not recommended for new designs.
CL = 6
800
800
800
800
800
800
800
module offerings.
U2
240-Pin RDIMM (R/C D)
U3
CL = 5
800
800
U4
A
A
U5
1
≤ +85°C)
≤ +70°C)
13.125
t
(ns)
13.5
12.5
RCD
©2008 Micron Technology, Inc. All rights reserved.
12
15
15
15
U7
U6
2
2
2
2
2
U8
13.125
(ns)
13.5
12.5
t
U9
12
15
15
15
RP
Marking
Features
U10
None
-1G5
-1G4
-1G3
-1G1
-1G0
-80C
-80B
Y
I
50.625
(ns)
49.5
52.5
52.5
t
U11
48
51
50
RC

Related parts for MT36JSZS1G72PY-1G1A1

MT36JSZS1G72PY-1G1A1 Summary of contents

Page 1

... DDR3 SDRAM RDIMM MT36JSZS1G72PY – 8GB For component data sheets, refer to Micron’s Web site: Features • DDR3 functionality and operations supported as defined in the component data sheet • 240-pin, registered dual in-line memory module (RDIMM) • Fast data transfer rates: PC3-10600, PC3-8500, or PC3-6400 • ...

Page 2

... The data sheet for the base device can be found on Micron’s Web site. 2. All part numbers end with a two-place code (not shown) that designates component and PCB revisions. Consult factory for current revision codes. Example: MT36JSZS1G72PY-1G1D1. PDF: 09005aef832b7b15/Source: 09005aef832b7c05 JSZS36C1Gx72PY.fm - Rev. A 4/08 EN ...

Page 3

Pin Assignments and Descriptions Table 4: Pin Assignments 240-Pin DDR3 RDIMM Front Pin Symbol Pin Symbol Pin Symbol Pin Symbol Pin Symbol Pin Symbol Pin Symbol Pin Symbol DQ25 61 REF ...

Page 4

... DQS#[17:0] aligned with read data. Input with write data. Center-aligned with write data. SDA I/O Serial data: SDA is a bidirectional pin used to transfer addresses and data into and out of the temperature sensor/SPD EEPROM on the module on the Output Parity error output: Parity error found on the command and address bus. ...

Page 5

... Termination voltage: Used for control, command, and address ( – No connect: These pins are not connected on the module. NF – No function: Connected within the module, but provides no functionality. PDF: 09005aef832b7b15/Source: 09005aef832b7c05 JSZS36C1Gx72PY.fm - Rev. A 4/08 EN 8GB (x72, ECC, DR) 240-Pin DDR3 SDRAM RDIMM Pin Assignments and Descriptions DD /2). ...

Page 6

Functional Block Diagram Figure 2: Functional Block Diagram V SS RS0# RS1# DQS0 DQS0# DM CS# DQS DQS# DQ0 DQ DQ1 DQ DQ2 DQ DQ3 DQ Vss ZQ DQS1 DQS1# DM CS# DQS DQS# DQ8 DQ DQ9 DQ DQ10 DQ ...

Page 7

... DRAM is connected to a single trace and terminated (rather than a tree structure, where the termination is off the module near the connector). Inherent to fly-by topology, the timing skew between the clock and DQS signals can be easily accounted for by using the write-leveling feature of DDR3 ...

Page 8

... Specification.” Serial Presence-Detect EEPROM Operation DDR3 SDRAM modules incorporate serial presence-detect. The SPD data is stored in a 256-byte EEPROM. The first 128 bytes are programmed by Micron to comply with JEDEC Standard JC-45 “Appendix X: Serial Presence Detect (SPD) for DDR3 SDRAM Modules.” ...

Page 9

... Electrical Specifications Stresses greater than those listed in Table 6 may cause permanent damage to the module. This is a stress rating only, and functional operation of the module at these or any other conditions outside those indicated in each device’s data sheet is not implied. Exposure to absolute maximum rating conditions for extended periods may adversely affect reliability ...

Page 10

... Micron encourages designers to simulate the signal characteristics of the system’s memory bus to ensure adequate signal integrity of the entire memory system. Power Operating voltages are specified at the DRAM, not at the edge connector of the module. Designers must account for any system voltage drops at anticipated power levels to ensure the required supply voltage is maintained. ...

Page 11

I Specifications DD Table 9: DDR3 I Specifications and Conditions – 8GB DD Values are for the MT41J1G4THU DDR3 SDRAM only and are computed from values specified in the 4Gb TwinDie (1Gig x 4) component data sheet Parameter Operating current ...

Page 12

... Notes: 1. Timing and switching specifications for the register listed above are critical for proper oper- ation of the DDR3 SDRAM RDIMMs. These are meant subset of the parameters for the specific device used on the module. PDF: 09005aef832b7b15/Source: 09005aef832b7c05 JSZS36C1Gx72PY.fm - Rev. A 4/08 EN 8GB (x72, ECC, DR) 240-Pin DDR3 SDRAM RDIMM ...

Page 13

... Temperature Sensor with Serial Presence-Detect EEPROM The temperature sensor continuously monitors the module’s temperature and can be read back at any time over the I Table 11: Temperature Sensor with Serial Presence-Detect EEPROM Operating Conditions Parameter/Condition Supply voltage Supply current 3.3V DD Input high voltage: Logic 1; SCL, SDA Input low voltage: Logic 0 ...

Page 14

The compare mode is similar to the interrupt mode, except EVENT# cannot be reset by the user and only returns to the logic HIGH state when the temperature falls below the programmed thresholds. Critical temperature mode triggers EVENT# only when ...

Page 15

Table 13: Temperature Sensor Registers Name Pointer register Capability register Configuration register Alarm temperature upper boundary register Alarm temperature lower boundary register Critical temperature register Temperature register Pointer Register The pointer register selects which of the 16-bit registers is being ...

Page 16

Capability Register The capability register indicates the features and functionality supported by the temper- ature sensor. This register is a read-only register. Table 16: Capability Register (Address: 0x00 RFU RFU 7 6 RFU RFU Table 17: Capability Register ...

Page 17

Table 19: Configuration Register Bit Descriptions Bit Description 0 Event mode 0: Comparator mode 1: Interrupt mode 1 EVENT# polarity 0: Active LOW 1: Active HIGH 2 Critical event only 0: EVENT# trips on alarm or critical temperature event 1: ...

Page 18

Figure 4: Hysteresis Below window bit Above window bit Notes the value set in the alarm temperature lower boundary trip register Hyst is the value set ...

Page 19

Temperature Format The temperature trip point registers and temperature readout register use a “2’s complement” format to enable negative numbers. The least significant bit (LSB) is equal to 0.0625°C or 0.25°C depending on which register is referenced example, ...

Page 20

Temperature Register The temperature register is a read-only register that provides the current temperature detected by the temperature sensor. The LSB for this register is 0.0625°C with a resolu- tion of 0.0625°C. The most significant bit (MSB) is 128°C in ...

Page 21

... R 1.0 (0.039) 0.8 (0.031) TYP 54.68 (2.15) TYP 123.0 (4.84) TYP 1.0 (0.039) R (8X) Back view U14 U15 U17 U18 U19 5.0 (0.197) TYP 71.0 (2.79) 47.0 (1.85) TYP Module with heat spreader U14 U14 U14 U15 U U U17 ...

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