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What is T5754?

This electronic component, produced by the manufacturer "ATMEL Corporation", performs the same function as "UHF ASK/FSK TRANSMITTER".


T5754 Datasheet PDF - ATMEL Corporation

Part Number T5754
Description UHF ASK/FSK TRANSMITTER
Manufacturers ATMEL Corporation 
Logo ATMEL Corporation Logo 


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Features
Integrated PLL Loop Filter
ESD Protection (4 kV HBM/200 V MM; Except Pin 2: 4 kV HBM/100 V MM) also at
ANT1/ANT2
High Output Power (7.5 dBm) with Low Supply Current (9.0 mA)
Modulation Scheme ASK/ FSK
– FSK Modulation is Achieved by Connecting an Additional Capacitor Between the
XTAL Load Capacitor and the Open Drain Output of the Modulating Microcontroller
Easy to Design-in Due to Excellent Isolation of the PLL from the PA and Power Supply
Single Li-cell for Power Supply
Supply Voltage 2.0 V to 4.0 V in the Temperature Range of -40° C to 85° C/125° C
Package TSSOP8L
Single-ended Antenna Output with High Efficient Power Amplifier
CLK Output for Clocking the Microcontroller
One-chip Solution with Minimum External Circuitry
125° C Operation for Tire Pressure Systems
UHF ASK/FSK
Transmitter
T5754
Description
The T5754 is a PLL transmitter IC which has been developed for the demands of RF
low-cost transmission systems at data rates up to 32 kBaud. The transmitting
frequency range is 429 MHz to 439 MHz. It can be used in both FSK and ASK
systems.
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Figure 1. System Block Diagram
1 Li cell
Encoder
Keys ATARx9x
UHF ASK/FSK
Remote control transmitter
UHF ASK/FSK
Remote control receiver
T5754
PLL
U3741B/
U3745B/
T5743/
T5744
Demod.
Control
XTO
VCO
Antenna Antenna
IF Amp
PLL
XTO
1...3
Power
amp.
LNA
VCO
Rev. 4511F–RKE–07/04

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T5754 equivalent
T5754
Output Matching and Power
Setting
The output power is set by the load impedance of the antenna. The maximum output
power is achieved with a load impedance of ZLoad,opt = (166 + j223) . There must be a
low resistive path to VS to deliver the DC current.
The delivered current pulse of the power amplifier is 9 mA and the maximum output
power is delivered to a resistive load of 465 if the 1.0 pF output capacitance of the
power amplifier is compensated by the load impedance.
An optimum load impedance of:
ZLoad = 465 || j/(2 × π 1.0 pF) = (166 + j223) thus results for the maximum output
power of 7.5 dBm.
The load impedance is defined as the impedance seen from the T5754’s ANT1, ANT2
into the matching network. Do not confuse this large signal load impedance with a small
signal input impedance delivered as input characteristic of RF amplifiers and measured
from the application into the IC instead of from the IC into the application for a power
amplifier.
Less output power is achieved by lowering the real parallel part of 465 where the
parallel imaginary part should be kept constant.
Output power measurement can be done with the circuit of Figure 5. Note that the com-
ponent values must be changed to compensate the individual board parasitics until the
T5754 has the right load impedance ZLoad,opt = (166 + j223) . Also the damping of the
cable used to measure the output power must be calibrated out.
Figure 5. Output Power Measurement
VS
ANT1
ANT2
C1 = 1n
L1 = 33n
ZLopt
C2 = 2.2p
~
Z = 50
Power
meter
Rin
50
Application Circuit
For the supply-voltage blocking capacitor C3 a value of 68 nF/X7R is recommended
(see Figure 6 on page 6 and Figure 7 on page 7). C1 and C2 are used to match the loop
antenna to the power amplifier where C1 typically is 8.2 pF/NP0 and C2 is 6 pF/NP0
(10 pF + 15 pF in series); for C2 two capacitors in series should be used to achieve a
better tolerance value and to have the possibility to realize the ZLoad,opt by using stan-
dard valued capacitors.
C1 forms together with the pins of T5754 and the PCB board wires a series resonance
loop that suppresses the 1st harmonic, hence the position of C1 on the PCB is important.
Normally the best suppression is achieved when C1 is placed as close as possible to the
Pins ANT1 and ANT2.
The loop antenna should not exceed a width of 1.5 mm, otherwise the Q-factor of the
loop antenna is too high.
L1 ([50 nH to 100 nH) can be printed on PCB. C4 should be selected that the XTO runs
on the load resonance frequency of the crystal. Normally, a value of 12 pF results for a
15 pF load-capacitance crystal.
4511F–RKE–07/04
5


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Featured Datasheets

Part NumberDescriptionMFRS
T5750The function is UHF ASK/FSK Transmitter. ATMEL CorporationATMEL Corporation
T5753The function is UHF ASK/FSK TRANSMITTER. ATMEL CorporationATMEL Corporation
T5754The function is UHF ASK/FSK TRANSMITTER. ATMEL CorporationATMEL Corporation

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