MC33690DWE Freescale Semiconductor, MC33690DWE Datasheet - Page 14

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MC33690DWE

Manufacturer Part Number
MC33690DWE
Description
IC STAND ALONE TAG READER 20SOIC
Manufacturer
Freescale Semiconductor
Datasheet

Specifications of MC33690DWE

Rf Type
Read / Write
Frequency
125kHz
Features
Wide Supply Voltage Range
Package / Case
20-SOIC (0.300", 7.50mm Width)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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Voltage Regulator
12
Typical values reflect average measurements at 6V ≤ V
13
Typical values reflect average measurements at 6V ≤ V
14
1.11 Total Output Current
1.1 Output Voltage (5.5V ≤ V
1.3 Total Output Current
1.5 Load Regulation
1.9 Output Voltage (5.5V ≤ V
1.6 Load Regulation
1.4 Line Regulation (6V ≤ V
9.1
9.2
Voltage Regulator
Low-Voltage Reset
Operating mode current
Standby mode current
Parameter
Parameter
SUP
SUP
SUP
≤ 16V)
≤ 40V)
≤ 40V)
MC33690 Standalone Tag Reader Circuit, Rev. 5
Table 6. Voltage Regulator Specifications
Table 5. Supply Current Specifications
V
V
Symbol
Symbol
V
LoadReg1
LoadReg2
V
V
I
I
I
I
LineReg
SUP1
SUP2
VDD1
VDD2
VDD1
VDD2
Pins VSUP and VDD
With external MOS transistor,1
MOS transistor (see
SUP
decoupling capacitor between
SUP
The stability is ensured with a
With external MOS transistor,
VT < 1.8V and BVDSS > 40V
The current capability can be
VDD and VSS: C
choosing this component are
using an external N channel
The main characteristics for
No current sunk from VDD
Drivers TD1/2 switched off
increased up to 150mA by
transistor, 1 to 50mA I
Circuit in configuration C
Pin VSUP
transistor, I
to 150mA I
Without external MOS
Without external MOS
≤ 16V, V
≤ 16V, V
Test Conditions
and Comments
Test Conditions
Tx forced to low
and Comments
with ESR ≤ 3Ω.
I
OUT
I
OUT
change
≤ 150mA
SS
SS
= 1mA
OUT
OUT
= 0V, T
= 0V, T
OUT
≤ 50mA
change
Figure
≥ 10μF
J
J
OUT
= –40°C to +125°C, unless otherwise noted
= –40°C to +125°C, unless otherwise noted
1).
Min
4.75
Min
4.7
Typ
300
1.5
Typ
5.0
5.0
20
65
Freescale Semiconductor
Max
500
Max
5.25
2.5
150
150
5.3
50
60
Unit Type
Unit Type
mA
μA
mA
mV
mA
mV
mV
V
V

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