MAX2511EEI Maxim Integrated Products, MAX2511EEI Datasheet

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MAX2511EEI

Manufacturer Part Number
MAX2511EEI
Description
RF Transceiver IF Txr w/Limitr RSSI
Manufacturer
Maxim Integrated Products
Datasheet

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The MAX2511 is a complete, highly integrated IF trans-
ceiver for applications employing a dual-conversion
architecture. Alternatively, the MAX2511 can be used
as a single-conversion transceiver if the RF operating
frequency ranges from 200MHz to 440MHz.
In a typical application, the receiver downconverts a
high IF/RF (200MHz to 440MHz) to a 10.7MHz low IF
using an image-reject mixer. Functions include an
image-reject downconverter with 34dB of image sup-
pression followed by an IF buffer that can drive an off-
chip IF filter; an on-chip limiting amplifier offering 90dB
of monotonic received-signal-strength indication (RSSI);
and a robust limiter output driver. The transmit image-
reject mixer generates a clean output spectrum to mini-
mize filter requirements. It is followed by a 40dB
variable-gain amplifier that maintains IM3 levels below
-35dBc. Maximum output power is 2dBm. A VCO and
oscillator buffer for driving an external prescaler are
also included.
The MAX2511 operates from a 2.7V to 5.5V supply and
includes flexible power-management control. Supply
current is reduced to 0.1µA in shutdown mode.
For applications using in-phase (I) and quadrature (Q)
baseband architecture for the transmitter, Maxim offers
a corresponding transceiver product: the MAX2510.
The MAX2510 has features similar to those of the
MAX2511, but upconverts I/Q baseband signals using
a quadrature upconverter.
________________________Applications
For free samples & the latest literature: http://www.maxim-ic.com, or phone 1-800-998-8800.
For small orders, phone 408-737-7600 ext. 3468.
Typical Operating Circuit appears at end of data sheet.
19-1209; Rev 0; 10/97
_______________General Description
PWT1900 Wireless Handsets and
Base Stations
PACS, PHS, DECT and Other PCS
Wireless Handsets and Base Stations
400MHz ISM Transceivers
IF Transceivers
Wireless Data Links
________________________________________________________________ Maxim Integrated Products
Low-Voltage IF Transceiver
____________________________Features
__________________Pin Configuration
______________Ordering Information
MAX2511EEI
Single +2.7V to +5.5V Supply
Complete Receive Path:
Limiter with Differential Outputs (adjustable level)
RSSI Function with 90dB Monotonic Dynamic
Range
Complete Transmit Path:
On-Chip Oscillator with Voltage Regulator
and Buffer
Advanced System Power Management
(four modes)
0.1µA Shutdown Supply Current
with Limiter and RSSI
TOP VIEW
PART
200MHz to 440MHz (first IF) to
8MHz to 13MHz (second IF)
8MHz to 13MHz (second IF) to
200MHz to 440MHz (first IF)
OSCOUT
LIMOUT
LIMOUT
LIMIN
TANK
TANK
RSSI
GND
GND
V
V
GC
CZ
CZ
CC
CC
10
11
12
13
14
1
2
3
4
5
6
7
8
9
TEMP. RANGE
-40°C to +85°C
MAX2511
QSOP
25
24
23
19
18
17
16
15
28
27
26
22 RXIN
21
20
VREF
MIXOUT
GND
RXIN
TXOUT
TXOUT
V
GND
V
TXEN
RXEN
TXIN
TXIN
PIN-PACKAGE
28 QSOP
CC
CC
1

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MAX2511EEI Summary of contents

Page 1

... Complete Transmit Path: 8MHz to 13MHz (second IF) to 200MHz to 440MHz (first IF) On-Chip Oscillator with Voltage Regulator and Buffer Advanced System Power Management (four modes) 0.1µA Shutdown Supply Current ______________Ordering Information PART TEMP. RANGE MAX2511EEI -40°C to +85°C __________________Pin Configuration TOP VIEW LIMIN RSSI ...

Page 2

... RXEN, TXEN, GC Input Current ............................................1mA RSSI Voltage...............................................-0. 0.3V) Continuous Power Dissipation (T CC QSOP (derate 11mW/°C above 70°C) ...........................909mW Operating Temperature Range MAX2511EEI ......................................................-40°C to +85°C Junction Temperature ......................................................+150°C - 1.6V 0.3V) Storage Temperature Range .............................-65°C to +165° 0.3V) Lead Temperature (soldering, 10sec) .............................+300° ...

Page 3

AC ELECTRICAL CHARACTERISTICS = +3.0V, RXEN = TXEN = low, 0.01µF across CZ and CZ, MIXOUT tied to VREF through 165 (MAX2511 test fixture TXIN, TXIN tied to VREF through 50 resistor, TXOUT and TXOUT loaded with 100 ...

Page 4

Low-Voltage IF Transceiver with Limiter and RSSI AC ELECTRICAL CHARACTERISTICS (continued) = +3.0V, RXEN = TXEN = low, 0.01µF across CZ and CZ, MIXOUT tied to VREF through 165 (MAX2511 test fixture TXIN, TXIN tied to VREF through ...

Page 5

Operating Characteristics = +3.0V, 0.01µF across CZ and CZ, MIXOUT tied to VREF through 165 resistor, TXIN, TXIN tied to VREF (MAX2511 test fixture through 50 resistor, TXOUT and TXOUT loaded with 100 differential, GC open, LIMOUT, ...

Page 6

Low-Voltage IF Transceiver with Limiter and RSSI ____________________________Typical Operating Characteristics (continued) = +3.0V, 0.01µF across CZ and CZ, MIXOUT tied to VREF through 165 resistor, TXIN, TXIN tied to (MAX2511 test fixture VREF through 50 resistor, TXOUT and ...

Page 7

Operating Characteristics (continued) = +3.0V, 0.01µF across CZ and CZ, MIXOUT tied to VREF through 165 resistor, TXIN, TXIN tied to (MAX2511 test fixture VREF through 50 resistor, TXOUT and TXOUT loaded with 100 differential, GC open, ...

Page 8

Low-Voltage IF Transceiver with Limiter and RSSI ____________________________Typical Operating Characteristics (continued) = +3.0V, 0.01µF across CZ and CZ, MIXOUT tied to VREF through 165 resistor, TXIN, TXIN tied to (MAX2511 test fixture VREF through 50 resistor, TXOUT and ...

Page 9

Description PIN NAME Limiter Input. Connect a 330Ω (typ) resistor to VREF for DC bias, as shown in the Typical Operating 1 LIMIN Circuit. CZ, CZ Offset-Correction Capacitor pins. Connect a 0.01µF capacitor between CZ and CZ ...

Page 10

Low-Voltage IF Transceiver with Limiter and RSSI RECEIVE IMAGE-REJECT MIXER RXIN RXIN TANK 0° 90° TANK LO PHASE SHIFTER OSCOUT PA VGA TXOUT TXOUT Figure 1. Functional Diagram _______________Detailed Description The following sections describe each of the blocks shown in ...

Page 11

MIXOUT pin, which can drive a shunt- terminated bandpass filter over a large dynamic range. MIXOUT can drive a shunt-terminated 330 load) to more than 2Vp-p over ...

Page 12

Low-Voltage IF Transceiver with Limiter and RSSI as possible for lowest phase noise. The tank’s PC board layout is also critical to good performance (consult the Layout Issues section for more information). The OSCOUT pin buffers the internal oscillator signal ...

Page 13

In half-duplex or TDD applications, the number of exter- nal filters can be minimized by combining transmit and receive filter paths (Figure 5). The 10.7MHz filter that is usually connected to the TXIN, TXIN ports can be the same filter ...

Page 14

Low-Voltage IF Transceiver with Limiter and RSSI Figure 3. Oscillator Tank Schematic Figure 4. Overdriving the On-Chip Oscillator Table 2. Recommended Values for L1 f (MHz) LO 200 to 300 300 to 400 400 to 500 14 ______________________________________________________________________________________ TANK C2 ...

Page 15

ONE PORT FILTER (LC OR TRANSFORMER-C) 165 0.1 F MIXOUT MATCH MATCH C MATCH 425MHz C MATCH BPF Figure 5. Filter Sharing ______________________________________________________________________________________ Low-Voltage IF Transceiver with Limiter and RSSI TWO-PORT FILTER VREF LIMIN ...

Page 16

Low-Voltage IF Transceiver with Limiter and RSSI ___________________________________________________Typical Operating Circuit V CC 47nF L CHOKE C BLOCK Tx R* OUTPUT C BLOCK C MATCH Rx L MATCH INPUT C MATCH 47nF 47nF 100pF 0.01 F* 330 ...

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