Ordering number : ENA1211A
LC87F2924B
Overview
CMOS IC
FROM 26K byte, RAM 768 byte on-chip
8-bit 1-chip Microcontroller
The SANYO LC87F2924B is an 8-bit microcomputer that, centered around a CPU running at a minimum bus cycle time
of 83.3ns, integrates on a single chip a number of hardware features such as 26K-byte flash ROM (onboard
programmable), 768-byte RAM, an on-chip debugger, sophisticated 16-bit timers/counters (may be divided into 8-bit
timers), a 16-bit timer/counter (may be divided into 8-bit timers/counters or 8-bit PWMs), four 8-bit timers with a
prescaler, a base timer serving as a time-of-day clock, day and time counter, a high-speed clock counter, a synchronous
SIO interface (with automatic block transmission/reception capabilities), an asynchronous/synchronous SIO interface, a
UART interface (full duplex), an 8-bit 13-channel AD converter, two 12-bit PWM channels, a system clock frequency
divider, frequency variable RC oscillation circuit, and a 26-source 10-vector interrupt feature.
Features
Flash ROM
•
On-board-programming with wide range, 3.0 to 5.5V, of voltage source.
•
Block-erasable in 128-byte units
•
Writable in 2-byte units
•
26624
×
8 bits
RAM
•
768
×
9 bits
Minimum Bus Cycle
•
83.3ns (12MHz)
VDD=3.0 to 5.5V
•
125ns (8MHz)
VDD=2.5 to 5.5V
•
250ns (4MHz)
VDD=2.2 to 5.5V
Note: The bus cycle time here refers to the ROM read speed.
* This product is licensed from Silicon Storage Technology, Inc. (USA), and manufactured and sold by
SANYO Semiconductor Co., Ltd.
Any and all SANYO Semiconductor Co.,Ltd. products described or contained herein are, with regard to
"standard application", intended for the use as general electronics equipment (home appliances, AV equipment,
communication device, office equipment, industrial equipment etc.). The products mentioned herein shall not be
intended for use for any "special application" (medical equipment whose purpose is to sustain life, aerospace
instrument, nuclear control device, burning appliances, transportation machine, traffic signal system, safety
equipment etc.) that shall require extremely high level of reliability and can directly threaten human lives in case
of failure or malfunction of the product or may cause harm to human bodies, nor shall they grant any guarantee
thereof. If you should intend to use our products for applications outside the standard applications of our
customer who is considering such use and/or outside the scope of our intended standard applications, please
consult with us prior to the intended use. If there is no consultation or inquiry before the intended use, our
customer shall be solely responsible for the use.
Specifications of any and all SANYO Semiconductor Co.,Ltd. products described or contained herein stipulate
the performance, characteristics, and functions of the described products in the independent state, and are not
guarantees of the performance, characteristics, and functions of the described products as mounted in the
customer
'
s products or equipment. To verify symptoms and states that cannot be evaluated in an independent
device, the customer should always evaluate and test devices mounted in the customer
'
s products or
equipment.
Ver.1.02a
O0709HKIM 20090918-S00004 No.A1211-1/28
LC87F2924B
Minimum Instruction Cycle Time
•
250ns (12MHz)
VDD=3.0 to 5.5V
•
375ns (8MHz)
VDD=2.5 to 5.5V
•
750ns (4MHz)
VDD=2.2 to 5.5V
Ports
•
Normal withstand voltage I/O ports
Ports whose I/O direction can be designated in 1-bit units
•
Normal withstand voltage input port
•
Reset pins
•
Power pins
59 (P0n, P1n, P2n, P30 to P33, P70 to P73, P80 to P86,
PBn, PCn, PWM2, PWM3, CF2, XT2)
(Ports P30 to P33 are available in FLGA68K(6.0×6.0) package only.)
2 (CF1, XT1)
1 (RES)
6 (VSS1 to 3, VDD1 to 3)
Timers
•
Timer 0: 16-bit timer/counter with two capture registers.
Mode 0: 8-bit timer with an 8-bit programmable prescaler (with two 8-bit capture register)
×
2 channels
Mode 1: 8-bit timer with an 8-bit programmable prescaler (with two 8-bit capture register)
+ 8-bit counter (with an 8-bit capture register)
Mode 2: 16-bit timer with an 8-bit programmable prescaler (with two 16-bit capture register)
Mode 3: 16-bit counter (with two 16-bit capture register)
•
Timer 1: 16-bit timer/counter that supports PWM/toggle outputs
Mode 0: 8-bit timer with an 8-bit prescaler (with toggle outputs)
+ 8-bit timer/counter with an 8-bit prescaler (with toggle outputs)
Mode 1: 8-bit PWM with an 8-bit prescaler
×
2 channels
Mode 2: 16-bit timer/counter with an 8-bit prescaler (with toggle outputs)
(toggle outputs also possible from the lower-order 8 bits)
Mode 3: 16-bit timer with an 8-bit prescaler (with toggle outputs)
(The lower-order 8 bits can be used as PWM.)
•
Timer 4: 8-bit timer with a 6-bit prescaler
•
Timer 5: 8-bit timer with a 6-bit prescaler
•
Timer 6: 8-bit timer with a 6-bit prescaler (with toggle output)
•
Timer 7: 8-bit timer with a 6-bit prescaler (with toggle output)
•
Base timer
1) The clock is selectable from the subclock (32.768kHz crystal oscillation), system clock, and timer 0 prescaler
output.
2) Interrupts are programmable in 5 different time schemes
Day and Time Counter
1) With a base timer, it can be used as 65535days + 23hours + 59minutes + 59seconds counter.
2) Interrupts are programmable in 4 different time schemes (day, hour, minute or second).
High-speed Clock Counter
1) Can count clocks with a maximum clock rate of 20MHz (at a main clock of 10MHz)
2) Can generate output real-time
SIO
•
SIO0: 8-bit synchronous serial interface
1) LSB first/MSB first mode selectable
2) Built-in 8-bit baudrate generator (maximum transfer clock cycle=4/3 tCYC)
3) Automatic continuous data transmission (1 to 256 bits, specifiable in 1-bit units, suspension and resumption of
data transmission possible in 1-byte units)
•
SIO1: 8-bit asynchronous/synchronous serial interface
Mode 0: Synchronous 8-bit serial I/O (2- or 3-wire configuration, 2 to 512 tCYC transfer clocks)
Mode 1: Asynchronous serial I/O (half-duplex, 8-data bits, 1-stop bit, 8 to 2048 tCYC baudrates)
Mode 2: Bus mode 1 (start bit, 8-data bits, 2 to 512 tCYC transfer clocks)
Mode 3: Bus mode 2 (start detect, 8-data bits, stop detect)
No.A1211-2/28
LC87F2924B
UART
•
Full duplex
•
7/8/9 bit data bits selectable
•
1 stop bit (2-bit in continuous data transmission)
•
Built-in baudrate generator
AD Converter: 8 bits
×
13 channels
PWM: Multifrequency 12-bit PWM
×
2 channels
Remote Control Receiver Circuit (sharing pins with P73, INT3, and T0IN)
•
Noise rejection function (noise filter time constant selectable from 1 tCYC, 32 tCYC, and 128 tCYC)
Watchdog Timer
•
External RC watchdog timer
•
Interrupt and reset signals selectable
Clock Output Function
1) Outputs clock with a frequency 1/1, 1/2, 1/4, 1/8, 1/16, 1/32, 1/64 of the source clock of the system clock
2) Outputs clock of the subclock
Interrupts
•
26 sources, 10 vector addresses
1) Provides three levels (low (L), high (H), and highest (X)) of multiplex interrupt control. Any interrupt requests
of the level equal to or lower than the current interrupt are not accepted.
2) When interrupt requests to two or more vector addresses occur at the same time, the interrupt of the highest level
takes precedence over the other interrupts. For interrupts of the same level, the interrupt into the smallest vector
address takes precedence.
No.
1
2
3
4
5
6
7
8
9
10
Vector Address
00003H
0000BH
00013H
0001BH
00023H
0002BH
00033H
0003BH
00043H
0004BH
Level
X or L
X or L
H or L
H or L
H or L
H or L
H or L
H or L
H or L
H or L
INT0
INT1
INT2/T0L/INT4
INT3/INT5/ BT0/BT1/DHMSC
T0H/INT6
T1L/T1H/INT7
SIO0/UART1 receive
SIO1/UART1 transmit
ADC/T6/T7
Port 0/T4/T5/PWM2, PWM3
Interrupt Source
•
Priority levels X > H > L
•
Of interrupts of the same level, the one with the smallest vector address takes precedence.
•
IFLG (List of interrupt source flag function)
1) Shows a list of interrupt source flags that caused a branching to a particular vector address (shown in the table
above).
Subroutine Stack Levels: 384 levels (the stack is allocated in RAM)
High-speed Multiplication/Division Instructions
•
16 bits
×
8 bits
(5 tCYC execution time)
•
24 bits
×
16 bits
(12 tCYC execution time)
•
16 bits
÷
8 bits
(8 tCYC execution time)
•
24 bits
÷
16 bits
(12 tCYC execution time)
No.A1211-3/28
LC87F2924B
Oscillation Circuits
•
RC oscillation circuit (internal):
For system clock
•
CF oscillation circuit:
For system clock, with internal Rf
•
Crystal oscillation circuit:
For low-speed system clock, with internal Rf
•
Frequency variable RC oscillation circuit (internal): For system clock
1) Adjustable in ±4% (typ) step from a selected center frequency.
2) Measures oscillation clock using a input signal from XT1 as a reference.
System Clock Divider Function
•
Can run on low current.
•
The minimum instruction cycle selectable from 300ns, 600ns, 1.2μs, 2.4μs, 4.8μs, 9.6μs, 19.2μs, 38.4μs,
and 76.8μs (at a main clock rate of 10MHz).
Standby Function
•
HALT mode: Halts instruction execution while allowing the peripheral circuits to continue operation.
1) Oscillation is not halted automatically.
2) There are three ways of resetting the HALT mode.
(1) Setting the reset pin to the low level
(2) System resetting by watchdog timer
(3) Occurrence of an interrupt
•
HOLD mode: Suspends instruction execution and the operation of the peripheral circuits.
1) The CF, RC, X’tal, and frequency variable RC oscillators automatically stop operation.
2) There are four ways of resetting the HOLD mode.
(1) Setting the reset pin to the low level.
(2) System resetting by watchdog timer
(3) Having an interrupt source established at either INT0, INT1, INT2, INT4, INT5, INT6, or INT7
* INT0 and INT1 HOLD mode reset is available only when level detection is set.
(4) Having an interrupt source established at port 0
•
X'tal HOLD mode: Suspends instruction execution and the operation of the peripheral circuits except the base timer.
1) The CF, RC, and frequency variable RC oscillators automatically stop operation.
2) The state of crystal oscillation established when the X'tal HOLD mode is entered is retained.
3) There are six ways of resetting the X'tal HOLD mode.
(1) Setting the reset pin to the low level
(2) System resetting by watchdog timer
(3) Having an interrupt source established at either INT0, INT1, INT2, INT4, INT5, INT6, or INT7
* INT0 and INT1 HOLD mode reset is available only when level detection is set.
(4) Having an interrupt source established at port 0
(5) Having an interrupt source established in the base timer circuit
(6) Having an interrupt source established in the day and time counter circuit
On-chip Debugger
•
Supports software debugging with the IC mounted on the target board (LC87D2932A).
LC87F2924B has an On-chip debugger but its function is limited.
Package Form
•
QIP64E (14
×
14):
•
TQFP64J (7
×
7):
•
FLGA68K (6.0
×
6.0):
•
FLGA64 (5.0
×
5.0):
Lead-free type
Lead-free type
Lead-free type
Lead-free type
Development Tools
•
On-chip debugger: TCB87- TypeB + LC87D2932A
No.A1211-4/28
LC87F2924B
Programming Boards
Package
QIP64E (14×14)
TQFP64J (7×7)
FLGA68K (6.0×6.0)
FLGA64 (5.0×5.0)
W87F50256Q
W87F58256TQ7
W87F58256FL6 * This board is Built To Order. It may take about a month to deliver.
W87F59256FL5 * This board is Built To Order. It may take about a month to deliver.
Programming boards
Flash ROM Programmer
Maker
Flash Support Group, Inc.
(FSG)
Flash Support Group, Inc.
(FSG)
+
SANYO
(Note 1)
Single/Gang
SANYO
Programmer
In-circuit/Gang
Programmer
In-circuit Programmer
Single Programmer
Model
AF9708
AF9709/AF9709B/AF9709C
(Including Ando Electric Co., Ltd. models)
AF9101/AF9103(Main body)
(FSG models)
SIB87(Inter Face Driver)
(SANYO model)
SKK/SKK Type B
(SANYO FWS)
SKK-DBG Type B
(SANYO FWS)
Application Version
1.04 or later
Chip Data Version
2.11 or later
LC87F2924
(Note 2)
LC87F2924B
Rev 02.82 or later
LC87F2924B
Supported version
Device
Note1: On-board-programmer from FSG (AF9101/AF9103) and serial interface driver from SANYO (SIB87) together
can give a PC-less, standalone on-board-programming capabilities.
Note2: It needs a special programming devices and applications depending on the use of programming environment.
Please ask FSG or SANYO for the information.
Package Dimensions
unit : mm (typ)
3159A
17.2
14.0
48
49
33
32
Package Dimensions
unit : mm (typ)
3289
9.0
0.8
7.0
48
49
33
32
7.0
14.0
17.2
64
17
1
0.4
0.16
16
0.125
64
1
0.8
(1.0)
(2.7)
17
16
0.35
0.15
(0.5)
3.0max
1.2max
0.1
0.1
(1.0)
SANYO : QIP64E(14X14)
SANYO : TQFP64J(7X7)
9.0
No.A1211-5/28
0.5