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 MN103004K , MN103016K
Type Command ROM (x64-bit) x Data RAM (x32-bit) x Package (Old Package) Minimum Instruction Execution Time Interrupts Timer Counter
MN103004K 256 K-byte 10 K-byte QFP208-P-2828F *Pb free , FLGA239-C-1313 (QFP208-P-2828A) 25 ns (at 2.7 V to 3.6 V, 40 MHz) * RESET * IRQ x 8 * NMI * Timer x 22 * Input capture x 14 * PWM x 4 * SIF x 16 * DMAC x 4 * WDT * A/D * System error Timer counter 0 to 3: 32-bit x 1 (interval timer, event count, toggle output, interrupt, A/D conversion trigger) Clock source ********************* IOCLK; IOCLK/8; IOCLK/32; external clock input; underflow of timer counter Interrupt source **************** underflow of timer counter 0, 1, 2, 3 Timer counter 4 to 7: 32-bit x 1 (interval timer, event count, toggle output, interrupt, clock source for serial I/F, generation of timer synchronous output timing) Clock source ********************* IOCLK; IOCLK/8; IOCLK/32; external clock input; underflow of timer counter Interrupt source **************** underflow of timer counter 4, 5, 6, 7 Timer counter 8 to B: 32-bit x 1 (interval timer, event count, toggle output, interrupt, clock source for serial I/F, generation of timer synchronous output timing) Clock source ********************* IOCLK; IOCLK/8; IOCLK/32; external clock input; underflow of timer counter Interrupt source **************** underflow of timer counter 8, 9, A, B *: each of timer counters 0 to 3, 4 to 7, and 8 to B can be changed to an 8-, 16-, or 24-bit timer counter. Timer counter 10 to 13: 16-bit x 4 (interval timer, event count, toggle output, interrupt, DMA start) Clock source ********************* IOCLK; IOCLK/8; IOCLK/32; external clock input; underflow of timer counter 0, 1, 2 Interrupt source **************** underflow of timer counter 10, 11, 12, 13 Timer counter 14, 15: 16-bit x 2 (interval timer, event count, toggle output, PMW output, interrupt, input capture (2 lines), one-shot output, external trigger start, generation of timer synchronous output timing, DMA start) Clock source ********************* IOCLK; IOCLK/8; external clock input (2 lines); underflow of timer counter 0, 1; 2-phase encode Interrupt source **************** overflow of timer 14, 15; underflow of timer 14, 15; coincidence of compare register with binary counter or at capture Watchdog timer: 16- to 25-bit x 1 MN103016K 256 K-byte 10 K-byte FLGA239-C-1313
DMA Controller
Number of channels: 2 Unit of transfer: 8/16/32 bits Max. Transfer cycles: 65535 Staring factor: external interrupt, timer factor, PNM factor, serial transmission/reception factor, A/D conversion finish, software factor Transfer method: 2-bus cycle transfer Adressing modes: fixed, increment, decrement Transfer modes: word transfer, burst transfer, intermittent transfer
194
MAF00004BEM
MN103004K , MN103016K
Serial Interface
Serial 0, 1: 7-, 8-bit x 2 (clock synchronous mode, start-stop synchronous mode, I2C mode) Serial 2: 7-, 8-bit x 1 (start-stop synchronous mode) Serial 3 to 7: 7-, 8-bit x 5 (clock synchronous mode) Clock source ********************* (clock synchronous mode, start-stop synchronous mode) IOCLK; underflow of timer counter; external clock (I2C mode) IOCLK; underflow of timer counter
I/O Pins A/D Inputs PWM ICR OCR
I/O Input
155 16
* Common use : 137 * Common use : 16
10-bit x 16-ch. 12-, 14-bit resolution x 4-ch. (dedicated), 16-bit resolution x 2-ch. (common with timer) 28-bit x 13-ch. + 16-bit x 4-ch. (common with timer) 16-bit x 4-ch. (common with timer) 4-bit (synchronous output) x 2-ch.
Timer Synchronous Output Electrical Characteristics
Supply current
Limit Parameter Symbol Condition min VDDH, VDDB, VDD, PVDD, AVDD = 3.0 V Operating supply current VI = VDDH (VDDB) or VSS IDD1 At internal = 40 MHz Output open VDDH, VDDB, VDD, PVDD, AVDD = 3.6 V VI = VDDH (VDDB) or VSS Supply current at stopping IDD4 fosc = oscillation stopped Output open (Ta = -20C to +85C) *FLGA239-C-1313 Limit Parameter Resolution A/D conversion absolute error VREF+ = 3.0 V A/D conversion relative error A/D conversion clock = 5 MHz A/D conversion time 2.8 Symbol Condition min typ max 10 7 5 Bits LSB LSB s Unit 150* A 150 mA typ max Unit
A/D conversion performance
(Ta = -20C to +85C, AVDD = 3.0 V, AVSS = 0 V)
See the next page for pin assignment and support tool.
MAF00004BEM
195
Pin Assignment
P80/ICR0 P81/ICR1 P82/ICR2 P83/ICR3 P84/ICR4 VDD P85/ICR5 P86/ICR6 P87/ICR7 P90/ICR8 P91/ICR9 VSS P92/ICR10 P93/ICR11 P94/ICR12 P95 PA0/PWM0 PA1/PWM1 PA2/PWM2 PA3/PWM3 PB0/SY0OT0 VDDH PB1/SY0OT1 PB2/SY0OT2 PB3/SY0OT3 PB4/SY1OT0 PB5/SY1OT1 PB6/SY1OT2 PB7/SY1OT3 PC0 PC1 VSS PC2 PC3 PC4 PC5 PC6 PC7 PD0 PD1 VDD PE0/IRQ0 PE1/IRQ1 PE2/IRQ2 PE3/IRQ3 PE4/IRQ4 PE5/IRQ5 PE6/IRQ6 PE7/IRQ7 VSS NMIRQ PF0/ADTRG
(
) : Old Package
P77/TM15IOB P76/TM15IOA P75/TM14IOB VSS P74/TM14IOA P73/TM13IO P72/TM12IO P71/TM11IO P70/TM10IO VDD P67/TM7IO P66/TM6IO P65/TM5IO P64/TM4IO P63/TM3IO VSS P62/TM2IO P61/TM1IO P60/TM0IO P55/SBT7 P54/SBO7 P53/SBI7 VDDH P52/SBT6 P51/SBO6 P50/SBI6 P41/BG VDD2 (VPP) * P40/BR VSS P35/SBT5 P34/SBO5 P33/SBI5 P32/SBT4 P31/SBO4 VDD P30/SBI4 P25/SBT3 P24/SBO3 P23/SBI3 P22/SBT2 VSS P21/SBO2 P20/SBI2 P15/SBT1 P14/SBO1 P13/SBI1 P12/SBT0 VDDH P11/SBO0 P10/SBI0 P00/WDOVF
157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208
156 155 154 153 152 151 150 149 148 147 146 145 144 143 142 141 140 139 138 137 136 135 134 133 132 131 130 129 128 127 126 125 124 123 122 121 120 119 118 117 116 115 114 113 112 111 110 109 108 107 106 105
104 103 102 101 100 99 98 97 96 95 94 93 92 91 90 89 88 87 86 85 84 83 82 81 80 79 78 77 76 75 74 73 72 71 70 69 68 67 66 65 64 63 62 61 60 59 58 57 56 55 54 53
MN103004K
AVDD VREFH PG0/AN0 PG1/AN1 PG2/AN2 PG3/AN3 PG4/AN4 PG5/AN5 PG6/AN6 PG7/AN7 PH0/AN8 PH1/AN9 PH2/AN10 PH3/AN11 PH4/AN12 PH5/AN13 PH6/AN14 PH7/AN15 AVSS PI0 PI1 PI2 VDDH PI3 PI4 PI5 PI6 PI7 VSS PJ0/DWE PJ1/DCAS0 PJ2/DCAS1 PJ3/CAS PJ4 VDD PK0/CS0 PK1/CS1/RAS1 PK2/CS2/RAS2 PK3/CS3 PK4/SYSCLK VDDH OSCO OSCI PK5/EXMOD0 PK6/EXMOD1 VSS PK7/FRQS RST MMOD0 MMOD1 PVSS PVDD
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52
196
PR7/D15 PR6/D14 PR5/D13 PR4/D12 VSS PR3/D11 PR2/D10 PR1/D9 PR0/D8 PQ7/D7 PQ6/D6 PQ5/D5 PQ4/D4 VDDH PQ3/D3 PQ2/D2 PQ1/D1/RWSEL PQ0/D0/AS PP1/A25 PP0/A24 PO7/A23 VSS PO6/A22 PO5/A21 PO4/A20 PO3/A19 PO2/A18/DSYSCLK PO1/A17/DRWSEL PO0/A16/DAS VDDB PN7/A15/ADM15 PN6/A14/ADM14 PN5/A13/ADM13 PN4/A12/ADM12 PN3/A11/ADM11 PN2/A10/ADM10 PN1/A9/ADM9 PN0/A8/ADM8 VSS PM7/A7/ADM7 PM6/A6/ADM6 PM5/A5/ADM5 PM4/A4/ADM4 PM3/A3/ADM3 PM2/A2/ADM2 PM1/A1/ADM1 PM0/A0/ADM0 VDDB PL3/DK PL2/RE PL1/WE1 PL0/WE0
* MN103004K:VDD2,MN1030F04K:VPP
QFP208-P-2828F *Pb free (QFP208-P-2828A)
MAF00004BEM
MN103004K, MN103016K
Pin Assignment (Continue)
Perspective
N.D.
N.D.
PE7, IRQ7
NMIRQ
PE1, IRQ1 PE3, IRQ3 PE4, IRQ4 PE2, IRQ2 PE0, IRQ0 PH3, AN11
PD0
PC4
PC1
PB1, SY0OT1 PB3, SY0OT3 PB5, SY1OT1
PA2, PWM2 PA0, PWM0 PB0, SY0OT0 PA1, PWM1
P94, ICR12 P92, ICR10
P91, ICR9 P85, ICR5
P84, ICR4 P82, ICR2 P87, ICR7
P80, ICR0
T
N.D. N.D.
N.D. AVDD
N.D.
N.D. PF0, ADTRG
PE5, IRQ5
VDD
PC2
PB7, SY1OT3
R
N.D. P77, TM15IOB N.D. N.D. P76, TM15IOA
VSS
PC6
PC5
VSS
VSS
VDD
P N M L K J H G F E D C
N.D. PG2, AN2 PG3, AN3 PG7, AN7 PH7, AN15 PG0, AN0 PG5, AN5 PH1, AN9 PH5, AN13
N.D.
VREFH
PE6, IRQ6 PG4, AN4 PG6, AN6
PD1
PC3
PB6, SY1OT2 PB2, SY0OT2
VDDH
P90, ICR8 P86, ICR6 P67, TM7IO P60, TM0IO
P83, ICR3 P81, ICR1 P63, TM3IO P54, SBO7 P41, BG P35, SBT5 P33, SBI5 P21, SBO2 PR1, D9 PQ7, D7 PR3, D11 PR0, D8 PR2, D10
P74, P75, P73, TM14IOA TM14IOB TM13IO P70, TM10IO P65, TM5IO P62, TM2IO P72, TM12IO
VSS
PG1, AN1 PH2, AN10 PH6, AN14
PC7
PC0
PA3, PWM3
P95
VDD
P71, TM11IO P64, TM4IO P53, SBI7 P50, SBI6
PH0, AN8 PH4, AN12
PB4, SY1OT0
N.D.
N.D.
P93, ICR11
VSS
P66, TM6IO P61, TM1IO P52, SBT6 VDD2 (VPP)
AVSS
PI0
N.D.
N.D.
N.D.
N.D.
P55, SBT7 P51, SBO6 P40, BR P32, SBT4 P15, SBT1 P20, SBI2
* C1 has no electrode (pin). * N.D. has an electrode (pin) but N.C. is not guaranteed. Please design so as not to cause short circuit with other wiring on the user board. * Each of VDD, VDDB, VDDH
PI2
PI3
PI4
VDDH
PI1 N.D. N.D. N.D. N.D. N.D. N.D.
VDDH
PJ0, DWE PK2, CS2, RAS2 OSCO
PI7
VSS PK1, CS1, RAS1 VDDH
PI5
PI6 N.D. N.D. N.D. N.D. N.D. N.D. P31, SBO4 P24, SBO3 PQ2, D2 PQ5, D5
P34, SBO5 P30, SBI4 P22, SBT2 P13, SBI1 P10, SBI0 PR4, D12 PR5, D13
VSS
PK0, CS0 PK4, SYSCLK
VDD
PJ4
PJ2, DCAS1 PJ1, DCAS0 PN1, A9, ADM9 PN0, A8, ADM8 PM6, A6, ADM6 PM5, A5, ADM5 PM7, A7, ADM7
VDD
N.D.
N.D.
N.D.
N.D. PO5, A21 PP0, A24 PQ0, D0, AS PQ3, D3 PP1, A25 PQ1, D1, RWSEL
P25, SBT3
PK3, CS3
PJ3, CAS
PN5, A13, ADM13 N.D. PN3, A11, ADM11 PN4, A12, ADM12 VSS PN6, A14, ADM14 PO0, A16, DAS PO7, A23 PN7, A15, ADM15 VDDB
N.D. PO2, A18, DSYSCLK PO3, A19
P23, SBI3 P14, SBO1 P11, SBO0
VSS
OSCI
VSS
PK7, FRQS
PK6, PK5, EXMOD1 EXMOD0 PM4, A4, ADM4 PM2, A2, ADM2 PM1, A1, ADM1 PM3, A3, ADM3
P12, SBT0 P00, WDOVF
and VSS has multiple electrodes (pins). Pins having the same name are internally shorted. *H2:MN103004K(VDD2),
MMOD1
RST
MMOD0
PVSS
VDDH
PVDD N.D.
PL1, WE1 PL2, RE PL0, WE0
PL3, DK PM0, A0, ADM0 VDDB
VSS
VDDH
PR6, D14
N.D.
N.D.
N.D.
PO6, A22 PO4, A20
PQ6, D6 PQ4, D4
B
N.D. PR7, D15 N.D. N.D.
N.D.
N.D.
PO1, PN2, A10, A17, ADM10 DRWSEL
VSS
A
N.D. N.D.
MN103016K (VDD2), MN1030F04K (VPP)
16
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
FLGA239-C-1313
Support Tool
In-circuit Emulator On-board Development Tools Flash Memory Built-in Type
PX-ICE103004-QFP208-P-2828A Not applicable to FLGA239-C-1313. PX-ODB103S-O CSIDE-MN10300 (Computex Co., Ltd, product) Type Command ROM (x 64-bit) Data RAM (x 32-bit) Minimum instruction execution time Package (Old Package) MN1030F04K 256 K-byte 12 K-byte 25 ns (at 3.0 V to 3.6 V, 40 MHz) QFP208-P-2828F *Pb free, FLGA239-C-1313 (QFP208-P-2828A)
MAF00004BEM
197
Request for your special attention and precautions in using the technical information and semiconductors described in this material
(1) An export permit needs to be obtained from the competent authorities of the Japanese Government if any of the products or technologies described in this material and controlled under the "Foreign Exchange and Foreign Trade Law" is to be exported or taken out of Japan. (2) The technical information described in this material is limited to showing representative characteristics and applied circuit examples of the products. It does not constitute the warranting of industrial property, the granting of relative rights, or the granting of any license. (3) The products described in this material are intended to be used for standard applications or general electronic equipment (such as office equipment, communications equipment, measuring instruments and household appliances). Consult our sales staff in advance for information on the following applications: * Special applications (such as for airplanes, aerospace, automobiles, traffic control equipment, combustion equipment, life support systems and safety devices) in which exceptional quality and reliability are required, or if the failure or malfunction of the products may directly jeopardize life or harm the human body. * Any applications other than the standard applications intended. (4) The products and product specifications described in this material are subject to change without notice for reasons of modification and/or improvement. At the final stage of your design, purchasing, or use of the products, therefore, ask for the most up-to-date Product Standards in advance to make sure that the latest specifications satisfy your requirements. (5) When designing your equipment, comply with the guaranteed values, in particular those of maximum rating, the range of operating power supply voltage and heat radiation characteristics. Otherwise, we will not be liable for any defect which may arise later in your equipment. Even when the products are used within the guaranteed values, redundant design is recommended, so that such equipment may not violate relevant laws or regulations because of the function of our products. (6) When using products for which dry packing is required, observe the conditions (including shelf life and after-unpacking standby time) agreed upon when specification sheets are individually exchanged. (7) No part of this material may be reprinted or reproduced by any means without written permission from our company.
Please read the following notes before using the datasheets
A. These materials are intended as a reference to assist customers with the selection of Panasonic semiconductor products best suited to their applications. Due to modification or other reasons, any information contained in this material, such as available product types, technical data, and so on, is subject to change without notice. Customers are advised to contact our semiconductor sales office and obtain the latest information before starting precise technical research and/or purchasing activities. B. Panasonic is endeavoring to continually improve the quality and reliability of these materials but there is always the possibility that further rectifications will be required in the future. Therefore, Panasonic will not assume any liability for any damages arising from any errors etc. that may appear in this material. C. These materials are solely intended for a customer's individual use. Therefore, without the prior written approval of Panasonic, any other use such as reproducing, selling, or distributing this material to a third party, via the Internet or in any other way, is prohibited.
2001 MAR


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