MC13158FTB Freescale Semiconductor, Inc, MC13158FTB Datasheet

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MC13158FTB

Manufacturer Part Number
MC13158FTB
Description
Manufacturer
Freescale Semiconductor, Inc
Datasheet

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Wideband FM IF Subsystem
performance data and analog applications. Excellent high frequency
performance is achieved, with low cost, through the use of Motorola’s
MOSAIC 1.5
grounded collector VCO transistor that may be used with a fundamental or
overtone crystal in single channel operation or with a PLL in multi–channel
operation. The mixer is useful to 500 MHz and may be used in a balanced
differential or single ended configuration. The IF amplifier is split to
accommodate two low cost cascaded filters. RSSI output is derived by
summing the output of both IF sections. A precision data shaper has an Off
function to shut the output off to save current. An enable control is provided
to power down the IC for power management in battery operated
applications.
portable laptop computers and other battery operated radio systems which
utilize GFSK, FSK or FM modulation.
MOTOROLA ANALOG IC DEVICE DATA
The MC13158 is a wideband IF subsystem that is designed for high
Applications include DECT, wideband wireless data links for personal and
Designed for DECT Applications
1.8 to 6.0 Vdc Operating Voltage
Low Power Consumption in Active and Standby Mode
Greater than 600 kHz Detector Bandwidth
Data Slicer with Special Off Function
Enable Function for Power Down of Battery Operated Systems
RSSI Dynamic Range of 80 dB Minimum
Low External Component Count
RF bipolar process. The MC13158 has an on–board
IF Dec1
IF Dec2
Mix Out
IF Out
Lim In
V CC1
V CC2
IF In
1
2
3
4
5
6
7
8
Dec1
Mix
Lim
This device contains 234 active transistors.
In2
32
9
IF Amp
Representative Block Diagram
Dec2
Mix
Lim
In1
31
10
LIM
Amp
N/C
N/C
30
11
Emit
Osc
Lim
Out
29
12
MC13158
5.0 p
Slicer
Data
Quad
Base
Osc
28
13
N/C
N/C
27
14
V EE1
Gain
Det
26
15
Bias
Enable
V EE2
25
16
MC13158FTB
Motorola, Inc. 1996
AND DIGITAL APPLICATIONS
Device
SUBSYSTEM FOR DECT
24
23
22
21
20
19
18
17
ORDERING INFORMATION
RSSI
RSSI Buf
DS Gnd
DS Out
DS In2
DS “off”
DS In1
Det Out
WIDEBAND FM IF
1
MC13158
32
PLASTIC PACKAGE
SEMICONDUCTOR
TECHNICAL DATA
Order this document by MC13158/D
Temperature Range
T A = – 40 to +85 C
FTB SUFFIX
(Thin QFP)
CASE 873
Operating
TQFP–32
Package
Rev 1
1

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MC13158FTB Summary of contents

Page 1

... Low External Component Count Mix Out 1 V CC1 Dec1 4 IF Dec2 5 IF Out 6 V CC2 7 Lim In 8 MOTOROLA ANALOG IC DEVICE DATA AND DIGITAL APPLICATIONS MC13158FTB Representative Block Diagram Mix Mix Osc Osc N/C N/C V EE1 Enable In2 In1 Emit Base ...

Page 2

MAXIMUM RATINGS Rating Power Supply Voltage Junction Temperature Storage Temperature Range NOTE: 1. Devices should not be operated at or outside these values. The “Recommended Operating Conditions” provide for actual device operation. RECOMMENDED OPERATING CONDITIONS Rating Power Supply Voltage T ...

Page 3

AC ELECTRICAL CHARACTERISTICS (continued) Characteristic IF AMPLIFIER SECTION IF RSSI Slope See Figure 8 IF Gain f = 10.7 MHz See Figure 7 Input Impedance Output Impedance LIMITING AMPLIFIER SECTION Limiter RSSI Slope See Figure 9 Limiter Gain f = ...

Page 4

Typical Performance Over Temperature Figure 2. Total Supply Current versus Ambient Temperature, Supply Voltage 6.4 6.2 6.0 5.8 5.6 5.4 5.2 5.0 4.8 – AMBIENT TEMPERATURE ( C) Figure 4. Data ...

Page 5

Performance Over Temperature Figure 8. IF Amp RSSI Output Current versus Ambient Temperature, IF Input Level 10 9.0 8.0 7 3.0 Vdc 6 10.7 MHz 5.0 4.0 3.0 2.0 – 40 – ...

Page 6

General The MC13158 is a low power single conversion wideband FM receiver incorporating a split IF. This device is designated for use as the backend in digital FM systems such as Digital European Cordless Telephone (DECT) and wideband data links ...

Page 7

The recovered data signal from the quadrature detector can be DC coupled to the data slicer DS IN1 (Pin 18). In the application circuit shown in Figure 1 it will be centered at 2 and allowed to swing ...

Page 8

PIN FUNCTION DESCRIPTION (continued) Pin Symbol Internal Equivalent Circuit 7 V CC2 7 V CC2 10 330 330 Li Lim 8 Lim Dec2 In 9 Lim Dec1 Dec1 16 10 Lim V EE2 8 Dec2 Lim In 11,14, N/C 27 ...

Page 9

PIN FUNCTION DESCRIPTION (continued) Pin Symbol Internal Equivalent Circuit 19 DS “off” CC2 CC2 21 DS Out 22 DS Gnd 16 V EE2 In1 V CC2 20 DS In2 DS In1 EE2 ...

Page 10

PIN FUNCTION DESCRIPTION (continued) Pin Symbol Internal Equivalent Circuit 25 Enable 2 V CC1 25 Enable 26 V EE1 26 V EE1 2 V CC1 26 V EE1 28 Osc Base 2 V CC1 29 Osc Emitter 28 Osc Base ...

Page 11

Evaluation PC Board The evaluation PCB is very versatile and is intended to be used across the entire useful frequency range of this device. The center section of the board provides an area for attaching all SMT components to the ...

Page 12

SMA (1) RF Input Saw 112 MHz Filter Mixer (2) LCR Filter 100 n 1 680 p 150 2 330 nH 100 n 3 100 n 1 100 n 1 330 nH 6 100 n 150 ...

Page 13

Figure 13. Circuit Side Component Placement MC13158 + 1µ MOTOROLA ANALOG IC DEVICE DATA MC13158 100n 100n 10n 100n 1n MC13158FB 1n 100n 100n 100n 1n 1n 100p ...

Page 14

Figure 14. Ground Side Component Placement V EE 10.7 P CERAMIC FILTER 10.7 P CERAMIC FILTER RF INPUT 14 MC13158 V CC QUAD COIL 1.5 µH 10.7 S CERAMIC FILTER 10.7 S CERAMIC FILTER XTAL 122.7 MHz SAW FILTER 0.68 ...

Page 15

Input Matching/Components It is desirable to use a SAW filter before the mixer to provide additional selectivity and adjacent channel rejection wideband system the primary sensitivity of the receiver backend may be achieved before the last mixer. Bandpass ...

Page 16

Figure 16. System Block Diagram for Noise Analysis 112 MHz LNA Noise Source NF1 = 2.7 dB 100 8 Input 100 p 100 nH VHF Applications The on–chip ...

Page 17

KMFC545) with a 3.0 dB bandwidth of maximum insertion loss of 5.0 dB. The application PC board is laid out to accommodate this filter pair (a filter pair is used at both locations of the split IF). However, even using ...

Page 18

The internal resistance, Rint at the quadrature tank Pin 13 is approximately 13 kΩ and is considered in determining the external resistance, Rext which is calculated from + ((R )(Rint)) (Rint – Rext + T T Thus, choose ...

Page 19

RSSI In Figure 22, the RSSI versus RF Input Level shows the linear response of RSSI over range but it has extended capability over 80 dB from – 80 dBm to +10 dBm. The RSSI is measured ...

Page 20

Figure 25. S+N+D, N+D, N versus Input Signal Level (without preamp) 10 S+N 3.0 Vdc –10 f dev = 125 kHz f mod = 1.0 kHz – 112 MHz IF 3.0 dB ...

Page 21

MC13158 MOTOROLA ANALOG IC DEVICE DATA MC13158 Figure 29. Circuit Side View V CC 3.8 21 ...

Page 22

V EE 10.7 P CERAMIC FILTER 10.7 P CERAMIC FILTER RF INPUT 22 MC13158 Figure 30. Ground Side View V CC QUAD COIL 10.7 S CERAMIC FILTER 10.7 S CERAMIC FILTER XTAL SAW FILTER LO MC13158 MOTOROLA ANALOG IC DEVICE ...

Page 23

–A– L DETAIL –D– A 0.20 (0.008 0.05 (0.002) A–B S 0.20 (0.008 –C– H SEATING G PLANE –H– DATUM PLANE K X DETAIL C MOTOROLA ANALOG IC ...

Page 24

Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of ...

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