MCIMX535DVV1C Freescale Semiconductor, MCIMX535DVV1C Datasheet - Page 42

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MCIMX535DVV1C

Manufacturer Part Number
MCIMX535DVV1C
Description
IMX53 REV 2.1 COMM
Manufacturer
Freescale Semiconductor
Datasheets

Specifications of MCIMX535DVV1C

Rohs Compliant
YES
Core Size
32bit
Program Memory Size
288KB
Cpu Speed
1GHz
Digital Ic Case Style
BGA
No. Of Pins
529
Supply Voltage Range
1.25V To 1.35V
Operating Temperature Range
-20°C To +85°C
Msl
MSL 3 - 168 Hours
Embedded Interface Type
I2C, SPI, UART
Lead Free Status / Rohs Status
Supplier Unconfirmed

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Electrical Characteristics
Table 24
Table 25
42
1
2
3
2
3
4
AC input logic high
AC input logic low
AC differential input high voltage
AC differential input low voltage
Input AC differential cross point voltage
Over/undershoot peak
Over/undershoot area (above OVDD
or below OVSS)
Single output slew rate
Skew between pad rise/fall asymmetry +
skew caused by SSN
AC input logic high
AC input logic low
AC differential input voltage
Input AC differential cross point voltage
Note that the JEDEC LPDDR2 specification (JESD209_2B) supersedes any specification in this document.
Vid(ac) specifies the input differential voltage |Vtr – Vcp| required for switching, where Vtr is the “true” input signal and Vcp is
the “complementary” input signal. The Minimum value is equal to Vih(ac) – Vil(ac).
The typical value of Vix(ac) is expected to be about 0.5 * OVDD. and Vix(ac) is expected to track variation of OVDD. Vix(ac)
indicates the voltage at which differential input signal must cross.
Vid(ac) specifies the input differential voltage |Vtr – Vcp| required for switching, where Vtr is the “true” input signal and Vcp is
the “complementary” input signal. The Minimum value is equal to Vih(ac) – Vil(ac).
The typical value of Vix(ac) is expected to be about 0.5 * OVDD. and Vix(ac) is expected to track variation of OVDD. Vix(ac)
indicates the voltage at which differential input signal must cross.
The typical value of Vox(ac) is expected to be about 0.5 * OVDD and Vox(ac) is expected to track variation in OVDD. Vox(ac)
indicates the voltage at which differential output signal must cross.
shows the AC parameters for LPDDR2 I/O operating in LPDDR2 mode.
shows the AC parameters for LPDDR2 I/O operating in DDR3 mode.
Parameter
Parameter
i.MX53xD Applications Processors for Consumer Products, Rev. 3
2
Table 24. LPDDR2 I/O LPDDR2 mode AC Characteristics
Table 25. LPDDR2 I/O DDR3 mode AC Characteristics
2
3
3
Vidh(ac)
Symbol
Vidl(ac)
Vih(ac)
Vix(ac)
Vil(ac)
Vpeak
Varea
Symbol Test Condition
t
Vih(ac)
Vid(ac)
Vix(ac)
SKD
Vil(ac)
tsr
impedance= 60Ohm
Relative to OVDD/2
Drive impedance=
Test Condition
50Ohm to Vref.
50Ohm to Vref.
40Ohm +-30%
5pF load.Drive
clk=266MHz
clk=400MHz
5pF load.
266MHz
+-30%
Vref + 0.175
Vref
0.35
Min
Vref + 0.22
0
0.15
-0.12
0.44
Min
1.5
0
1
Typ
1
1
Typ
Vref
Freescale Semiconductor
Vref + 0.15
OVDD
Max
Vref – 0.22
0.175
OVDD
Max
0.44
0.12
0.35
0.2
0.1
0.6
3.5
2.5
Unit
V
V
V
V
V*ns
V/ns
Unit
ns
V
V
V
V
V
V

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