MCP1631RD-MCC1 Microchip Technology, MCP1631RD-MCC1 Datasheet - Page 258
MCP1631RD-MCC1
Manufacturer Part Number
MCP1631RD-MCC1
Description
REFERENCE DESIGN FOR MCP1631HV
Manufacturer
Microchip Technology
Type
Battery Managementr
Datasheets
1.MCP1631VHVT-330EST.pdf
(34 pages)
2.MCP1631HV-330EST.pdf
(54 pages)
3.MCP1631RD-MCC2.pdf
(20 pages)
4.MCP1631RD-MCC2.pdf
(328 pages)
5.MCP1631RD-MCC1.pdf
(28 pages)
Specifications of MCP1631RD-MCC1
Main Purpose
Power Management, Battery Charger
Embedded
Yes, MCU, 8-Bit
Utilized Ic / Part
MCP1631HV, PIC16F883
Primary Attributes
1 ~ 2 Cell- Li-Ion, 1 ~ 4 Cell- NiCd/NiMH
Secondary Attributes
Status LEDs
Supported Devices
MCP1631HV, PIC16F883 Device Type
Tool / Board Applications
Power Management-Battery Management
Development Tool Type
Reference Design
Input Voltage
5.5 V to 16 V
Product
Power Management Modules
Mcu Supported Families
MCP1631HV/PIC16F883 Family
Silicon Manufacturer
Microchip
Silicon Core Number
MCP1631HV
Kit Application Type
Reference Design
Application Sub Type
Battery Charger
Kit Contents
Board Only
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With/related Products
MCP1631HV, PIC16F883
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
- MCP1631VHVT-330EST PDF datasheet
- MCP1631HV-330EST PDF datasheet #2
- MCP1631RD-MCC2 PDF datasheet #3
- MCP1631RD-MCC2 PDF datasheet #4
- MCP1631RD-MCC1 PDF datasheet #5
- Current page: 258 of 328
- Download datasheet (6Mb)
PIC16F882/883/884/886/887
TABLE 17-2:
DS41291F-page 256
Standard Operating Conditions (unless otherwise stated)
Operating Temperature
OS06
OS07
OS08
OS09*
OS10*
Note 1:
Param
No.
2:
3:
*
† Data in “Typ” column is at 5.0V, 25°C unless otherwise stated. These parameters are for design guidance only
T
T
HF
LF
T
ST
These parameters are characterized but not tested.
and are not tested.
Instruction cycle period (T
based on characterization data for that particular oscillator type under standard operating conditions with the
device executing code. Exceeding these specified limits may result in an unstable oscillator operation and/or
higher than expected current consumption. All devices are tested to operate at “min” values with an external
clock applied to the OSC1 pin. When an external clock input is used, the “max” cycle time limit is “DC” (no clock)
for all devices.
To ensure these oscillator frequency tolerances, V
device as possible. 0.1 μF and 0.01 μF values in parallel are recommended.
By design.
SC
WARM
IOSC
Sym.
OSC
OSC
OSCILLATOR PARAMETERS
Internal Oscillator Switch
when running
Fail-Safe Sample Clock
Period
Internal Calibrated
HFINTOSC Frequency
Internal Uncalibrated
LFINTOSC Frequency
HFINTOSC Oscillator
Wake-up from Sleep
Start-up Time
Characteristic
(1)
-40°C ≤ T
(3)
CY
A
≤ +125°C
) equals four times the input oscillator time base period. All specified values are
(2)
Tolerance
Freq.
±1%
±2%
±5%
—
—
—
—
—
—
DD
Min.
7.92
7.84
7.60
5.5
3.5
15
—
—
3
and V
Typ†
SS
8.0
8.0
8.0
21
31
12
—
7
6
must be capacitively decoupled as close to the
Max.
8.08
8.16
8.40
45
24
14
—
11
2
Units
T
MHz
MHz
MHz
kHz
ms
OSC
μs
μs
μs
© 2009 Microchip Technology Inc.
Slowest clock
LFINTOSC/64
V
2.5V ≤ V
0°C ≤ T
2.0V ≤ V
-40°C ≤ T
-40°C ≤ T
V
V
V
DD
DD
DD
DD
= 3.5V, 25°C
= 2.0V, -40°C to +85°C
= 3.0V, -40°C to +85°C
= 5.0V, -40°C to +85°C
A
Conditions
DD
DD
≤ +85°C
A
A
≤ +85°C (Ind.),
≤ +125°C (Ext.)
≤ 5.5V,
≤ 5.5V,
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