MT48H4M16LFB4-75 Micron Technology Inc, MT48H4M16LFB4-75 Datasheet - Page 7

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MT48H4M16LFB4-75

Manufacturer Part Number
MT48H4M16LFB4-75
Description
Manufacturer
Micron Technology Inc
Type
SDRAMr
Datasheet

Specifications of MT48H4M16LFB4-75

Organization
4Mx16
Density
64Mb
Address Bus
14b
Maximum Clock Rate
133MHz
Operating Supply Voltage (typ)
1.8V
Package Type
VFBGA
Operating Temp Range
0C to 70C
Operating Supply Voltage (max)
1.9V
Operating Supply Voltage (min)
1.7V
Supply Current
50mA
Pin Count
54
Mounting
Surface Mount
Operating Temperature Classification
Commercial
Lead Free Status / Rohs Status
Compliant

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Table 3:
PDF: 09005aef8237ed98, Source: 09005aef8237ed68
64mb_x16_Mobile SDRAM_Y24L_2.fm - Rev. B 10/06 EN
H7, H8, J8, J7, J3, J2, H3,
A8, B9, B8, C9, C8, D9,
D8, E9, E1, D2, D1, C2,
H2, H1, G3, H9, G2
54-Ball VFBGA
A7, B3, C7, D3
A3, B7, C3, D7
C1, B2, B1, A2
A9, E7, J9
A1, E3, J1
F7, F8, F9
G7, G8
E2, G1
E8, F1
G9
F2
F3
Ball Descriptions
CAS#, RAS#,
DQ0–DQ15
BA0, BA1
Symbol
A0–A11
LDQM,
UDQM
V
V
WE#
CKE
CLK
V
CS#
V
NC
DD
SS
DD
SS
Q
Q
Supply DQ power: Provide isolated power to DQs for improved noise immunity.
Supply DQ ground: Provide isolated ground to DQs for improved noise immunity.
Supply Core power supply.
Supply Ground.
Input
Input
Input
Input
Input
Input
Input
Type
I/O
Clock: CLK is driven by the system clock. All SDRAM input signals are
sampled on the positive edge of CLK. CLK also increments the internal
burst counter and controls the output registers.
Clock enable: CKE activates (HIGH) and deactivates (LOW) the CLK signal.
Deactivating the clock provides PRECHARGE POWER-DOWN and SELF
REFRESH operation (all banks idle), ACTIVE POWER-DOWN (row active in
any bank), DEEP POWER DOWN (all banks idle), or CLOCK SUSPEND
operation (burst/access in progress). CKE is synchronous except after the
device enters power-down and self refresh modes, where CKE becomes
asynchronous until after exiting the same mode. The input buffers,
including CLK, are disabled during power-down and self refresh modes,
providing low standby power. CKE may be tied HIGH.
Chip select: CS# enables (registered LOW) and disables (registered HIGH)
the command decoder. All commands are masked when CS# is registered
HIGH. CS# provides for external bank selection on systems with multiple
banks. CS# is considered part of the command code.
Command inputs: CAS#, RAS#, and WE# (along with CS#) define the
command being entered.
Input/Output Mask: DQM is sampled HIGH and is an input mask signal for
write accesses and an output enable signal for read accesses. Input data is
masked during a WRITE cycle. The output buffers are placed in a High-Z
state (two-clock latency) when during a READ cycle. LDQM corresponds to
DQ0–DQ7, UDQM corresponds to DQ8–DQ15. LDQM and UDQM are
considered same state when referenced as DQM.
Bank address input(s): BA0 and BA1 define to which bank the ACTIVE,
READ, WRITE or PRECHARGE command is being applied. These pins also
select between the mode register and the extended mode register.
Address inputs: A0–A11 are sampled during the ACTIVE command (row-
address A0–A11) and READ/WRITE command (column-address A0–A7;
with A10 defining auto precharge) to select one location out of the
memory array in the respective bank. A10 is sampled during a
PRECHARGE command to determine if all banks are to be precharged
(A10 HIGH) or bank selected by BA0, BA1. The address inputs also provide
the op-code during a LOAD MODE REGISTER command.
Data Input/Output: Data bus.
These could be left unconnected, but it is recommended they be
connected to V
in future designs.
7
SS
. G1 is a no connect for this part but may be used as A12
Micron Technology, Inc., reserves the right to change products or specifications without notice.
64Mb: 4 Meg x 16 Mobile SDRAM
Description
©2006 Micron Technology, Inc. All rights reserved.

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