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PDF ATA5276 Data sheet ( Hoja de datos )

Número de pieza ATA5276
Descripción TRANSMITTER IC
Fabricantes ATMEL Corporation 
Logotipo ATMEL Corporation Logotipo



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Features
Antenna Driver Stage with Adjustable Antenna Peak Current for up to 1.5A
Frequency Tuning Range from 100 kHz to 150 kHz
Automatic Antenna Peak Current Regulation
Self-tuning Oscillator for Antenna Resonant Frequency Adaptation
Capable of Driving a High-Q Antenna
Integrated 5V Regulator for External Load up to 10 mA
Bi-directional Single Wire Interface for Microcontroller or ECU
LF Baud Rates up to 4 kbaud and Amplitude Shift Keying (ASK) Modulation
Low Power Standby Mode < 50 µA
Antenna Driver Diagnosis: Peak Current, Antenna Frequency and Battery Voltage
Monitoring
Power Supply Range 8V to 24V Direct Battery Input
Load Dump Protection
Operation at Temperature –40°C to +105°C
EMI and ESD According to Automotive Requirements
Highly Integrated, Fewer External Components Required
Overtemperature Protection
125 kHz
Transmitter IC
for TPM
ATA5276
Applications
Tire Pressure Measurement (TPM)
Wake-Up Systems
Auditing/Tracking Systems
www.DataSheet4LUo.cocmalization/Security Systems
Benefits
Self Tuning Capability to Antenna Resonance Frequency
Adjustable Antenna Peak Current Value
Highest Integration Level for Embedded Automotive Systems
Power Saving/Low Current Consumption for Wake-Up Systems
1. Description
The ATA5276 is an integrated 1.5A peak current BCDMOS antenna driver IC dedi-
cated as a 125 kHz wake-up channel transmitter for TPM applications.
It includes the full functionality to generate a magnetic LF field in conjunction with an
antenna coil to transmit data and power to a receiver. The transmission can be con-
trolled via a one wire I/O-interface by an external unit.
The smart power IC is delivered in a QFN20 power package with heat slug.
4909C–AUTO–01/07

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ATA5276 pdf
ATA5276
Figure 4-3. STBY After DIO = L
STBY
TOUT_L
DIO
t
t
4.3 Transmission Mode
4.3.1
ASK Modulation
For the transmission of a wake-up signal or data to a receiver, the ATA5276 generates a
antenna resonance synchronized signal at the antenna driver output (DRV pin). A connected LC
antenna radiates a magnetic field. For the data transmission the field can be 100% amplitude
modulated by the DIO interface input. If a low level signal is applied at the DIO pin, the driver
generates a square wave signal DRV for the antenna. If a high level signal is applied at the DIO
pin the driver is stopped and switched to ground. In this way ASK modulated data can be trans-
mitted (see Figure 4-4).
Figure 4-4. Data Transmission
DIO
DRV
COIL
4.3.2
Anti-bouncing Filter in Transmission Mode
The DIO input signal is delayed for a anti-bouncing time.
The driver is switched on after a delay time of TDL (typically 64 µs) if the DIO is pulled to a low
level continuously. The driver is switched-off after a delay time of TDH if the DIO is pulled to high
level.
The TDH time depends on the antenna resonance frequency, suppressing short disturbance
pulses from the DIO line.
Figure 4-5. Anti-bouncing
TD_L
TD_H
4909C–AUTO–01/07
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ATA5276 arduino
8. Noise and Surge Immunity
Parameter
Conducted interferences
Note: 1. Test pulse 5: Vsmax = 45V
Test Conditions
ISO 7637-1
ATA5276
Value
Level 4(1)
9. Electrical Characteristics(1)
No. Parameters
Test Conditions
Pin
Symbol
Min.
Typ.
Max.
Unit
1 Power Supply
1.1 Main supply voltage
I(VCC) = 10 mA,
including load and line
regulation
VCC
VCC
4.7 5.0 5.3
V
1.2 Supply current
1.3 Standby current
1.4
Power-on-reset
threshold voltage
without antenna load
Pin DVCC = 13.5V,
Tamb = 90°C
DVCC
DVCC
VCC
ISUPP
ISTBY
VPOR
2 10 20 mA
20 35 60 µA
3.5 4 4.5 V
1.5
Load dump protection
voltage
DVCC
VBATLD
29
31
35
V
1.6
Under voltage
detection
1.7 Thermal shut down
DVCC
VBATUV
6.0
6.5
7.0
TSD
150 165 180
V
oC
1.8
Protection debounce
filter
TDEB
10 15 25 µs
2 Half-bridge Driver Stage
2.1
Coil driver resistance
low side driver
DRV,
DVSS
RDSONL
0.3 0.7
2.2
Coil driver resistance
high side driver
DVCC,
DRV
RDSONH
0.3 0.7
10% to 90% slope
time,
2.3
Driver output rise time
0% = DVSS,
100% = DVCC
DVCC = 12V
(smooth edges)
DRV
TDRV,RISE
50
100 150
ns
10% to 90% slope
time,
2.4
Driver output fall time
0% = DVSS,
100% = DVCC
DVCC = 12V
(smooth edges)
DRV
TDRV,FALL
50
100 150
ns
*) Type means: A = 100% tested, B = 100% correlation tested, C = Characterized on samples, D = Design parameter
Notes:
1. 8V < V(DVCC) < 24V; –40° C < ϑamb < 105° C, unless otherwise specified; all values refer to GND
2. Definition of DCDRV see “Application Hints” on page 14
3. IVDIO,stby = 7.5 µA at Tamb = 90°C
Type*
A
A
B
A
A
A
B
A
A
A
D
D
4909C–AUTO–01/07
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