
MPC5200 Data Sheet, Rev. 4
Electrical and Thermal Characteristics
Freescale Semiconductor8
Input leakage current Vin = 0 or
VDD_IO/VDD_IO_MEM
SDR
(depending on input type
1
)
I
IN
—+10 µAD3.13
Input leakage current SYS_XTAL_IN
Vin = 0 or VDD_IO
I
IN
—+10 µAD3.14
Input leakage current RTC_XTAL_IN
Vin = 0 or VDD_IO
I
IN
—+10 µAD3.15
Input current, pullup resistor PULLUP
VDD_IO
Vin = 0
I
INpu
40 109 µAD3.16
Input current, pullup resistor -
memory I/O buffers
PULLUP_MEM
VDD_IO_MEM
SDR
Vin = 0
I
INpu
41 111 µAD3.17
Input current, pulldown resistor PULLDOWN
VDD_IO
Vin = VDD_IO
I
INpd
36 106 µAD3.18
Output high voltage IOH is driver dependent
2
VDD_IO, VDD_IO_MEM
SDR
V
OH
2.4 — V D3.19
Output high voltage IOH is driver dependent
2
VDD_IO_MEM
DDR
V
OHDDR
1.7 — V D3.20
Output low voltage IOL is driver dependent
2
VDD_IO, VDD_IO_MEM
SDR
V
OL
—0.4VD3.21
Output low voltage IOL is driver dependent
2
VDD_IO_MEM
DDR
V
OLDDR
—0.4VD3.22
DC Injection Current Per Pin
3
I
CS
-1.0 1.0 mA D3.23
Capacitance Vin = 0V, f = 1 MHz C
in
—15pFD3.24
NOTES:
1
Leakage current is measured with output drivers disabled and pull-up/pull-downs inactive.
2
See Tabl e 4 for the typical drive capability of a specific signal pin based on the type of output driver associated with that pin
as listed in Table 52.
3
All injection current is transferred to VDD_IO/VDD_IO_MEM. An external load is required to dissipate this current to maintain
the power supply within the specified voltage range.
Total injection current for all digital input-only and all digital input/output pins must not exceed 10 mA. Exceeding this limit can
cause disruption of normal operation.
Table 4. Drive Capability of MPC5200 Output Pins
Driver Type Supply Voltage I
OH
I
OL
Unit SpecID
DRV4 VDD_IO = 3.3V 4 4 mA D3.25
DRV8 VDD_IO = 3.3V 8 8 mA D3.26
Table 3. DC Electrical Specifications (continued)
Characteristic Condition Symbol Min Max Unit SpecID
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