Z86L04

Features: `18-Pin DIP and SOIC Packages` 0°C to + 70°C Standard Temperature` 2.0V to 3.9V Operating Range` 14 Input / Output Lines` Five Vectored, Prioritized Interrupts from Five Different Sources` Two On-Board Comparators` Software Enabled Watch-Dog Timer (WDT)`Programmable Interrupt Polarity` T...

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SeekIC No. : 004550369 Detail

Z86L04: Features: `18-Pin DIP and SOIC Packages` 0°C to + 70°C Standard Temperature` 2.0V to 3.9V Operating Range` 14 Input / Output Lines` Five Vectored, Prioritized Interrupts from Five Different Sources`...

floor Price/Ceiling Price

Part Number:
Z86L04
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/11/23

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Product Details

Description



Features:

`18-Pin DIP and SOIC Packages
 
` 0 °C to + 70°C Standard Temperature
 
` 2.0V to 3.9V Operating Range
 
` 14 Input / Output Lines
 
`  Five Vectored, Prioritized Interrupts from Five Different Sources
 
` Two On-Board Comparators
 
` Software Enabled Watch-Dog Timer (WDT)
 
` Programmable Interrupt Polarity
 
` Two Standby Modes: STOP and HALT
 
` Low-Voltage Protection
 
` ROM Mask/OTP Options:
ROM Protect
Auto Latch Disable
Permanent Watch-Dog Timer (WDT)
RC Oscillator
32 kHz Crystal Operation
Low EMI
WDT Clock Source (Z86L04 only)
 
` Two Programmable 8-Bit Counter/Timers with 6-Bit Programmable Prescalers
 
` Power-On Reset (POR) Timer
 
` On-Chip Oscillator that Accepts RC, Crystal, Ceramic Resonator, LC, or External Clock Drive
 
` Clock-Free WDT Reset
 
` Low-Power Consumption (40 mw)
 
` Fast Instruction Pointer (1.5   ms @ 8 MHz)
 
` Fourteen Digital Inputs at CMOS Levels; Schmitt-Triggered



Pinout

  Connection Diagram


Specifications

Parameter Min Max Units
Ambient Temperature under Bias -40 +105 °C
Storage Temperature -65 +150 °C
Voltage on any Pin with Respect to VSS [Note 1] 0.7 +12 V
Voltage on VDD Pin with Respect to VSS 0.3 +7 V
Voltage on Pin 7 with Respect to VSS [Note 2] (Z86C02/L02) 0.7 VDD+1 V
Voltage on Pin 7,8,9,10 with Respect to VSS [Note 2] (Z86E02) 0.7 VDD+1 V
Total Power Dissipation   462 mW
Maximum Allowed Current out of VSS   300 mA
Maximum Allowed Current into VDD   270 mA
Maximum Allowed Current into an Input Pin [Note 3] 600 +600 A
Maximum Allowed Current into an Open-Drain Pin [Note 4] 600 +600 A
Maximum Allowed Output Current Sinked by Any I/O Pin   20 mA
Maximum Allowed Output Current Sourced by Any I/O Pin   20 mA
Maximum Allowed Output Current Sinked by Port 2, Port 0   80 mA
Maximum Allowed Output Current Sourced by Port 2, Port 0   80 mA

Notes:
Stresses greater than those listed under Absolute Maximum Ratings may cause permanent damage to the device. This is a stress rating only; functional operation of  the device at any condition above those indicated in the operational sections of these specifications is not implied.

Exposure to absolute maximum rating conditions for an extended period may affect device reliability.

Total power dissipation should not exceed 462 mW for the package. Power dissipation is calculated as follows:
1. This applies to all pins except where otherwise noted.
2. Maximum current into pin must be ±600mA. There is no input protection diode from pin to VDD.
3. This excludes Pin 6 and Pin 7.
4. Device pin is not at an output Low state.
Total Power dissipation = VDD x [IDD (sum of IOH)] + sum of [(VDD VOH) x IOH] + sum of (V0L x I0L)




Description

Zilog's Z86L04/L08 microcontrollers (MCUs) are members of the Z8 single-chip MCU family, which offer easy software/ hardware system expansion.

For applications of Z86L04/L08 demanding powerful I/O capabilities, the MCU's dedicated input and output lines are grouped into three ports, and are configurable under software control to provide timing, status signals, or parallel I/O.One on-chip counter/timer, with a large number of user-selectable modes, off-load the system of administering realtime tasks such as counting/timing and I/O data communications.Additionally, two on-board comparators process analog signals with a common reference voltage (Figure 1).




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