Philips Semiconductors
Product specification
Infrared remote control transmitter RC-5
FEATURES
•
Low voltage requirement
•
Biphase transmission technique
•
Single pin oscillator
•
Test mode facility
GENERAL DESCRIPTION
The SAA3010 is intended as a general purpose (RC-5)
infrared remote control system for use where a low voltage
supply and a large debounce time are expected.
QUICK REFERENCE DATA
PARAMETER
Supply voltage range
Input voltage range (note 1)
Input current
Output voltage range (note 1)
Output current
Operating ambient temperature
range
Note
1. V
DD
+0.5 V must not exceed 9 V.
WARNING
The use of this device must conform with the Philips Standard number URT-0421.
SYMBOL
V
DD
V
I
I
I
V
O
I
O
T
amb
MIN.
2
−0.5
−
−0.5
−
−25
TYP.
−
−
−
−
−
−
MAX.
7
V
DD
+0.5
±10
V
DD
+0.5
±10
85
SAA3010
The device can generate 2048 different commands and
utilizes a keyboard with a single pole switch for each key.
The commands are arranged so that 32 systems can be
addressed, each system containing 64 different
commands. The keyboard interconnection is illustrated by
Fig.3.
The circuit response to legal (one key pressed at a time)
and illegal (more than one key pressed at a time) keyboard
operation is specified in the section “Keyboard operation”.
UNIT
V
V
mA
V
mA
°C
PACKAGE OUTLINES
28-lead DIL plastic; (SOT117); SOT117-1; 1996 September 11.
28-lead mini-pack; plastic (SO28; SOT136A); SOT136-1; 1996 September 11.
June 1989
2
Philips Semiconductors
Product specification
Infrared remote control transmitter RC-5
PINNING
PIN
1
2
3-6
7
MNEMONIC
(1)
X7 (IPU)
SSM (I)
Z0-Z3 (IPU)
MDATA (OP3)
FUNCTION
sense input from key matrix
system mode selection input
sense inputs from key matrix
generated output data
modulated with 1/12 the
oscillator frequency at a 25%
duty factor
generated output information
scan drivers
ground (0 V)
scan drivers
oscillator input
test point 2
test point 1
sense inputs from key matrix
voltage supply
DR3 13
VSS 14
MGE346
SAA3010
handbook, halfpage
X7
SSM
Z0
Z1
Z2
Z3
MDATA
DATA
DR7
1
2
3
4
5
6
7
28 VDD
27 X6
26 X5
25 X4
24 X3
23 X2
22 X1
8
9-13
14
DATA (OP3)
DR7-DR3
(ODN)
V
SS
SAA3010
8
9
21 X0
20 TP1
19 TP2
18 OSC
17 DR0
16 DR1
15 DR2
15-17 DR2-DR0
(ODN)
18
19
20
28
Note
OSC (I)
TP2 (I)
TP1 (I)
V
DD
(I)
DR6 10
DR5 11
DR4 12
21-27 X0-X6 (IPU)
1. (I) = input
(IPU) = input with p-channel pull-up transistor
(ODN) = output with open drain n-channel transistor
(OP3) = output 3-state
Fig.2 Pinning diagram.
June 1989
4