MC13190FC Freescale Semiconductor, MC13190FC Datasheet

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MC13190FC

Manufacturer Part Number
MC13190FC
Description
Manufacturer
Freescale Semiconductor
Datasheet

Specifications of MC13190FC

Operating Temperature (min)
0C
Operating Temperature Classification
Commercial
Lead Free Status / Rohs Status
Compliant

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MC13190FCR2
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Advance Information
MC13190/D
Rev. 0, 10/2002
2.4 GHz Short-Range,
Low-Power Transceiver
This document contains information on a pre-production product. Specifications and Pre-production information
herein are subject to change without notice. © Motorola, Inc., 2002. All rights reserved.
The MC13190 is a Short-Range, Low-Power 2.4 GHz ISM band single chip radio. Together
with an appropriate microprocessor or DSP for a Baseband Controller, it provides cost
effective solutions for short-range (up to 10 meters), battery-powered data links.
Applications include remote control, wire replacement, wireless streaming audio, and
wireless game control. The receiver includes a low noise amplifier (LNA), AM demodulator,
band pass filter and limiting IF. The transmitter includes modulation control, baseband
filtering and AM modulator. An on-chip PLL/VCO derives the RF frequency from a fixed
256 multiplication of the reference frequency. The device is fabricated using Motorola's RF
BiCMOS process and is housed in a 32 lead QFN package with backside ground.
Typical Receiver Sensitivity: -71 dBm for 2x10
Typical Output Power = 4.8 dBm
Fully Differential RF Input and Output
MC13190FC
Device
-4
MC13190
Bit Error Rate (BER)
Ordering Information
Package Information
(QFN-32, 5x5 mm)
Plastic Package
Case 1311
Device Marking
13190
Package
QFN-32

Related parts for MC13190FC

MC13190FC Summary of contents

Page 1

... This document contains information on a pre-production product. Specifications and Pre-production information herein are subject to change without notice. © Motorola, Inc., 2002. All rights reserved. MC13190 Package Information Plastic Package Case 1311 (QFN-32, 5x5 mm) Ordering Information Device Device Marking Package MC13190FC 13190 QFN-32 -4 Bit Error Rate (BER) ...

Page 2

Electrical Specifications DEMOD_BYPASS LNA_SW LNA_IN_P LNA LNA_IN_N LNA_SW LPF 1/256 MOD_OUT_P MOD_OUT_N Modulator 1 Electrical Specifications Rating Supply Voltage Signal and Control IC Contacts Demodulator Supply Voltage CW Input Power Gnd IC Contacts Voltage Capacitance Load at RX_DATA Storage Temperature ...

Page 3

Table 2. Recommended Operating Conditions Characteristic Supply Voltage Digital Supply Signal and Control Pins Demodulator Supply Voltage (no LNA input signal) Input Operating Frequency Maximum Input Power into LNA_IN Differential Load Impedance for Transmitter (MOD_OUT) Differential Source Impendance for Receiver ...

Page 4

Electrical Specifications 25°C, RF Receiver Frequency = 2.442 GHz, 60% AM, Bit Rate = 5.0 Mbps Manchester coded unless otherwise noted.) Characteristic Low Noise Amplifier and Am Demodulator Current Consumption Active ...

Page 5

Table 5. Transmit Section ( 25°C, RF Transmit Frequency = 2.442 GHz, 60% AM, Bit Rate = 5.0 Mbps Manchester coded unless otherwise noted.) Characteristic AM Modulator Current Consumption Active Disabled AM Modulation ...

Page 6

Contact Connections 2 Contact Connections Table 7. Control Contact Definitions Contact RX_EN Enables LNA, Demod and Limiter TX_EN Enables TX Filter, Modulation Control, PA/Modulator PLL_EN Enables Frequency Synthesizer and VCO TRIM_EN Enables VCO Trimming LNA_SW Switches LNA Inputs to Ground ...

Page 7

Application Information 3.1 Introduction The MC13190 is a 2.4 GHz transceiver that takes advantage of AM modulation to provide wide-band data capability with simple, low-cost circuitry. The transmit and receive baseband filters are designed for 5 Mbps Manchester encoded ...

Page 8

Application Information PLL_EN TRIM_EN Figure 4. Recommended Timing During Trim Mode The PLL is enabled, a delay of 10 µs is observed for the VCO and the PLL to settle, and then trimming is begun. Trimming continues until TRIM_EN is ...

Page 9

Figure 6. Transmit/Receive Timing Sequence MOTOROLA MC13190 Advance Information Application Information 9 ...

Page 10

Application Information 3.4 Basic Transceiver Circuit Figure 7 shows the basic transceiver evaluation board circuit schematic with reference oscillator and Figure 8 shows the optional external LNAs. Figures 9 and 10 show the evaluation board printed circuit board layout details. ...

Page 11

A To Optional LNA #1 B 2.7 V C21 2 C33 Jumper Q1 C4 TX_EN Figure 7. Transceiver Application Circuit Schematic MOTOROLA J5 RF_IN C19 L12 C20 L10 2.7 V C17 TX_EN C32 ...

Page 12

Application Information Optional LNA #1 C23 C24 L13 Q2 Reference C1, C6, C11, C16, C18, C21, C33, C35, C36, C37 C2 C3 C4, C23, C27 C5 C7, C8 C9, C34 C10, C13, C14, C29 C12, C15 C17 ...

Page 13

Table 8. Bill of Materials (Continued) Reference L10, L12 Q1 Q2 R5, R9, R13, R14 R6, R12 R7, R11 R16, R17, R18 R8, R10, R15, R19, R20 R21 T1 MOTOROLA Value 1.8 ...

Page 14

Application Information Figure 9. Transceiver Circuit PCB Topside (Active Dielectric = 10 mil FR4, Total Board Thickness = 0.062”) 14 2.0" MC13190 Advance Information MOTOROLA ...

Page 15

Figure 10. Transceiver Circuit PCB Bottom Side (Active Dielectric = 10 mil FR4, Total Board Thickness = 0.062”) 3.5 Baseband Interface Referring again to Figure 1, the Simplified Block Diagram, the baseband interface is accomplished through the Logic Interface block. ...

Page 16

Application Information produces a high output and F2 produces a low output. This recovered data stream is feed to the receive data input of the MCU. FSK, rather than ASK, was chosen to keep the baseband limiter compressed and reduce ...

Page 17

Protocol Considerations 3.6.1 Manchester Encoding As mentioned earlier, the MC13190 has been designed for use with protocols that employ Manchester encoding. The basic principle of this coding technique is that each data bit is encoded as a transition as ...

Page 18

Application Information MC13190 makes it susceptible to frequency selective fading through the “notching” of the carrier causing performance degradation in the envelope detector. These effects cannot be avoided so must be dealt with in protocol design. Sufficient margin must be ...

Page 19

Device Characterization Information Table 9. Broadband Differential Scattering Parameters f (GHz) Mag 0.5 0.866 1.0 0.830 1.5 0.655 2.0 0.440 2.5 0.340 3.0 0.478 3.5 0.640 4.0 0.756 4.5 0.831 5.0 0.879 5.5 0.910 MOTOROLA LNA RX Mode ∠ ...

Page 20

Packaging 4 Packaging PIN 1 INDEX AREA 3.25 2. 3.25 2.95 0 0.5 32X 0.3 VIEW M-M 0.065 32X 0.015 ...

Page 21

MOTOROLA NOTES MC13190 Advance Information 21 ...

Page 22

HOW TO REACH US: USA/EUROPE/LOCATIONS NOT LISTED: Motorola Literature Distribution; P.O. Box 5405, Denver, Colorado 80217 1-303-675-2140 or 1-800-441-2447 JAPAN: Motorola Japan Ltd.; SPS, Technical Information Center, 3-20-1, Minami-Azabu Minato-ku, Tokyo 106-8573 Japan 81-3-3440-3569 ASIA/PACIFIC: Motorola Semiconductors H.K. Ltd.; Silicon ...

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