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 NJM2295A
FM IF IC FOR REMOTE KEYLESS ENTRY SYSTEM
GENERAL DESCRIPTION The NJM2295A is FM IF IC for the remote keyless entry system (RKE). It includes almost all functions of IF blocks, from the 1st. Mixer to the wave shaving circuit. Exclusively designed NJM2295A is suited not only for the RKE, but for other FM signal receivers. PACKAGE OUTLINE
NJM2295AV
FEATURES Low Operating Current Low Operating Voltage Local Oscillation Frequency Mixer Active Frequency IF Frequency 1st. Mixer Included RSSI Circuit Included FSK Wave Shaping Circuit Bipolar Technology Package Outline
5mA typ. at V+=5V +2.7V to 7.0V 50 to 350MHz to 450MHz IF=10.7MHz
SSOP20
BLOCK DIAGRAM
Ver.2003-12-09
-1-
NJM2295A
ABSOLUTE MAXIMUM RATINGS
PARAMETER Supply Voltage Power Dissipation Operating Temperature Range Storage Temperature Range SYMBOL V
+
(Ta=25C)
RATINGS 9.0 300 -40 to +85 -40 to +125 UNIT V mW C C
PD Topr Tstg
ELECTRICAL CHARACTERS
PARAMETER Supply Voltage No signal Operating Current Battery saving Operating Current Mixer Gain 1 Mixer Gain 2 Mixer Sept Point Mixer Input Resistance Mixer Input Capacity Mixer Output Resistance If amplifier Input Resistance Signal to Noise Ratio 1 Signal to Noise Ratio 2 Signal to Noise Ratio 3 -3dB limiting sensitivity Demodulated Output Level AM Rejection Ratio Duty ratio of Wave Shaped Output RSSI Output Voltage 1 RSSI Output Voltage 2 RSSI Output Voltage 3 RSSI Output Resistance Quick Charge / discharge current Low Level Output Voltage of FSK-OUT High Level Leak Current of FSK-OUT Terminal SYMBOL V
+
(V+=5.0V, Ta=25C, fmod=1kHz, fmix=320MHz, fIF=10.7MHz, fdev=10kHz)
TEST CONDITION MIN. 2.7 RL=No Connect. 320MHz Gain - 450MHz Gain 13.5 f=320MHz f=320kHz Mixer Input, VIN=80dBVEMF IF input, VIN=80dBVEMF IF input, VIN=35dBVEMF Mixer Input IF input, VIN=60dBVEMF IF input, VIN=80dBVEMF, AM=30% IF input, VIN=60dBVEMF IF input, VIN=20dBVEMF IF input, VIN=60dBVEMF IF input, VIN=100dBVEMF 80 40 0.35 0.7 1.30 35 IL=100A TYP. 5.0 18.5 1 103 1 2 330 330 60 60 25 22 150 50 50 0.55 1.00 1.75 48 70 0.1 MAX. 7.0 7.5 10 22.5 3 27 60 0.70 1.3 2.15 120 0.4 2 UNIT V mA A dB dB dBVEMF k pF dB dB dB dBVEMF mVrms dB % V V V k A V A
ICCq ICCS Gmix1 Gmix2 IP RinM CinM ROM RinIF S / N1 S / N2 S / N3 Slim Vod AMR DR RSSI1 RSSI2 RSSI3 RSSIR Ich VfskL IfskH
-2-
Ver.2003-12-09
NJM2295A
APPLICATION CIRCUIT
Ver.2003-12-09
-3-
NJM2295A
TERMINAL FUNCTION
PIN No. SYMBOL FUNCTION EQUIVALENT CIRCUIT
1
OSC IN
SAW is oscillation input terminal.
2
OSC OUT
Oscillation Output Terminal.
19
MIX IN
Mixer input terminal. Input impedance : Parallel resistance : 1k Parallel capacity : 2pF
4
MIX OUT
Output terminal for mixer. Output resistance is 330 at typical.
6
IF IN
Limiter input terminal. Input resistance is 330 at typical.
7
DEC
Decoupling terminal for bias.
-4-
Ver.2003-12-09
NJM2295A
TERMINAL FUNCTION
PIN No. SYMBOL FUNCTION EQUIVALENT CIRCUIT
9
LIM OUT
Output terminal for limiter amplifier. Typical input impedance is 300 ohms.
10
QUAD IN
Input terminal of a quadrature detection circuit. Connect with a ceramic discriminator.
14
RSSI OUT
RSSI output terminal.
11
AF OUT
Demodulated siganl output.
12
LPF IN
Input terminal of a low pass filter. This terminal is biased from the AF-OUT terminal (11pin) through an external RC filter.
Ver.2003-12-09
-5-
NJM2295A
TERMINAL FUNCTION
PIN No. SYMBOL FUNCTION EQUIVALENT CIRCUIT
13
LPF OUT
Output terminal of a low pass filter.
8
FSK REF
Reference input terminal of a wave shaping comparator. Connected with an external capacitor.
17
FSK OUT
Output terminal of a wave shaping circuit. The Wave shaped signal inverted for the LPF output comes out.
15
BS
Control terminal of a battery saving circuit. H : This circuit is ON. L : This circuit is OFF.
16
CHARGE
Control terminal of a quick charge / discharge circuit. H : This circuit is ON. L : This circuit is OFF.
5 3 20 18
V1 GND1 V2 GND2
+
+
On and ;after IF supply voltage. On and after IF ground. Supply voltage for mixer and OSC. Ground for mixer and OSC
-
[CAUTION] The specifications on this databook are only given for information , without any guarantee as regards either mistakes or omissions. The application circuits in this databook are described only to show representative usages of the product and not intended for the guarantee or permission of any right including the industrial rights.
-6-
Ver.2003-12-09


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