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1 A4L4

2 ENGLISH Thank you for choosing Delta s DVP series PLC. The analog input module of DVP4AD-SL series can read/write the data of analog input module by using instructions FROM/TO via DVP SV/EH2-L MPU program. The analog input module receives 16bit digital data of 4 groups from PLC MPU and converts it into 4 points analog input signal either in voltage or in current. Users can select input from voltage or current via wiring. Voltage input range is -1V~1VDC (resolution is 312.5μV). Current input range is -2mA ~ 2mA (resolution is 625nA). EN DVP4AD-SL is an OPEN-TYPE device. It should be installed in a control cabinet free of airborne dust, humidity, electric shock and vibration. To prevent non-maintenance staff from operating DVP4AD-SL, or to prevent an accident from damaging DVP4AD-SL, the control cabinet in which DVP4AD-SL is installed should be equipped with a safeguard. For example, the control cabinet in which DVP4AD-SL is installed can be unlocked with a special tool or key. EN DO NOT connect AC power to any of I/O terminals, otherwise serious damage may occur. Please check all wiring again before DVP4AD-SL is powered up. After DVP4AD-SL is disconnected, Do NOT touch any terminals in a minute. Make sure that the ground terminal on DVP4AD-SL is correctly grounded in order to prevent electromagnetic interference. FR DVP4AD-SL est un module OUVERT. Il doit être installé que dans une enceinte protectrice (boitier, armoire, etc.) saine, dépourvue de poussière, d humidité, de vibrations et hors d atteinte des chocs électriques. La protection doit éviter que les personnes non habilitées à la maintenance puissent accéder à l appareil (par exemple, une clé ou un outil doivent être nécessaire pour ouvrir a protection). FR Ne pas appliquer la tension secteur sur les bornes d entrées/sorties, ou l appareil DVP4AD-SL pourra être endommagé. Merci de vérifier encore une fois le câblage avant la mise sous tension du DVP4AD-SL. Lors de la déconnection de l appareil, ne pas toucher les connecteurs dans la minute suivante. Vérifier que la terre est bien reliée au connecteur de terre afin d éviter toute interférence électromagnétique. Product Profile & Dimension [3.543] 3 DVP-4AD [2.496] [.118] 5 6 [2.362] 33.1 [1.33] Unit: mm [inch] [ Figure 1 ] 1. I/O module connection port 6. Mounting hole of the I/O module 2. Status indicator 7. I/O module connection port (POWER, RUN and ERROR) 3. Model name 8. Mounting slot (35mm) 4. I/O terminals 9. I/O module clip 5. Mounting slot clip 1. DC power input - 1 -

3 I/O Terminal Layout V1 I1 V1- FG V2 I2 V2- FG V3 I3 V3- FG V4 I4 V4- Ch2 Ch3 Ch4 DVP4AD-SL (4AI) FG External Wiring Active-type U IN Voltage input - Shielded cable*1 *5 V1 I1 VI1-25 U IN Current input CH4 - Shielded cable*1 *3 Terminal of power module *4 System grounding Grounding(1 or less) *2 V4 I4 VI4- V 24V 25 DC/DC Converter 15V -15V CH4 [ Figure 2 ] Passive-type U IṈ Voltage input Shielded cable*1 *5 V1 I1 VI1-25 Current input - Shielded cable*1 Terminal of power module *4 System grounding Grounding(1 or less) CH4 *2 V4 I4 VI4- *3 V 24V 25 DC/DC Converter 15V -15V CH4 [ Figure 3 ] Note 1: When performing analog input, please isolate other power wirings. Note 2: When the A/D module is connected to current signals, make sure you short-circuit V and I terminals. Note 3: If the noise is too significant, please connect to the grounding terminal. Note 4: Please connect the terminal on both the power module and A/D module to the system earth point and ground the system contact or connect it to the cover of power distribution cabinet. Note 5: If the ripples at the loaded input terminal are too significant that causes noise interference on the wiring, connect the wiring to.1 ~.47μF 25V capacitor. Electrical Specifications Analog / Digital module Voltage input Current input 24VDC (-15% ~ 2%) / 3.5W Power supply voltage DVPPS1(PS2): input 1-24VAC, output 24VDC/1A(PS2: 2A) - 2 -

4 Analog / Digital module Voltage input Current input Analog input channel 4 channels / each module Range of analog input ±1V ±5V ±2mA ~ 2mA 4 ~ 2mA Range of digital conversion ±32, ±32, ±32, ~ 32, ~ 32, Hardware Resolution 16 bits 16 bits 16 bits 15 bits 15 bits Input impedance <.5Ω Overall accuracy.3% when in full scale (25 C, 77 F).5% when in full scale within the range of ~ 55 C (32 ~ 131 F) Response time 25μs / each channel Max. output current 1KΩ ~ 2MΩ - Tolerance carried impedance Digital data format Isolation method Series connection to DVP-PLC MPU Operation/storage temperature Vibration/shock immunity Control Register Ω~5Ω 2 s complement of 16 bits, 15 significant bits Optical coupler isolation between digital circuits and analog circuits. No isolation among analog channels. 5VDC between digital circuits and Ground 5VDC between analog circuits and Ground 5VDC between analog circuits and digital circuits 5VDC between 24VDC and Ground Connectable to the left side of MPU, numbered from 1 to 17 according to the position of module from the closest to farthest to MPU. Operation: C~55 C (temp.), 5~95% (humidity), Pollution degree2 Storage: -25 C~7 C (temp.), 5~95% (humidity) International standards: IEC , IEC (TEST Fc)/ IEC & IEC (TEST Ea) CR# Attrib. Register name Explanation # O R Model name Set up by the system: DVP4AD-SL model code = H 44 #1 O R Firmware version Display the current firmware version in hex. Input mode: Default = H. #2 X R/W input mode setting Take for example: #3 X R/W CH2 input mode setting Mode (H ): Voltage input (±1V) Mode 1 (H 1): Current input (±2mA) Mode 2 (H 2): Current input (~2mA) #4 X R/W CH3 input mode setting Mode 3 (H 3): Current input (4~2mA) Mode 4 (H 4): Voltage input (±5V) #5 X R/W CH4 input mode setting Mode 5 (H 5): Voltage input (V~5V) Mode 6 (H 6): Voltage input (1V~5V) Mode -1 (H FFFF): Channel 1 unavailable b15 ~ b12 b11 ~ b8 b7 ~ b4 b3 ~ b CH4 CH3 CH2 #6 X R/W History mode Only average values are recorded. Default = H. Take for example: K: Disable (Default). K1: Single. K2: Auto. K3: Rising Edge Triggered K4: Falling Edge Triggered #7 X R/W History command #8 X R/W sampling range #9 X R/W CH2 sampling range #1 X R/W CH3 sampling range #11 X R/W CH4 sampling range Refer to table of history command for detail. Default = H Set sampling range in ~ CH4: Range = K1 ~ K2 Default = K1

5 CR# Attrib. Register name Explanation #12 X R average input value #13 X R CH2 average input value #14 X R CH3 average input value #15 X R CH4 average input value #16 X R present input value #17 X R CH2 present input value #18 X R CH3 present input value #19 X R CH4 present input value #2 X R/W Set value of upper bound #21 X R/W Set value of CH2 upper bound #22 X R/W Set value of CH3 upper bound #23 X R/W Set value of CH4 upper bound #24 X R/W Set value of lower bound #25 X R/W Set value of CH2 lower bound #26 X R/W Set value of CH3 lower bound #27 X R/W Set value of CH4 lower bound #28 X R/W Adjusted value of #29 X R/W Adjusted value of CH2 #3 X R/W Adjusted value of CH3 #31 X R/W Adjusted value of CH4 Average value of input signals at ~ CH4 Present value of input signals at ~ CH4 Set value of ~CH4 upper bound. Default = K Set value of ~CH4 lower bound. Default = K Set the adjusted value of ~ CH4. Default = K Definition of in DVP4AD-SL: The corresponding voltage (current) input value when the digital input value =. #34 X R/W Adjusted value of #35 X R/W Adjusted value of CH2 #36 X R/W Adjusted value of CH3 #37 X R/W Adjusted value of CH4 #38 X R/W Edge value #39 X R/W CH2 Edge value #4 X R/W CH3 Edge value #41 X R/W CH4 Edge value #42 X R/W #43 X R Error status Function: Return to default setting #44 X R History status #46 X R History timer #47 X R CH2 History timer #48 X R CH3 History timer #49 X R CH4 History timer #1 ~ #199 ~ CH4 history Set the adjusted value in ~ CH4. Default = K16, Definition of in DVP4AD-SL: The corresponding voltage (current) input value when the digital input value = 16,. Default = K b ~ b3: reset ~ CH4 b4 ~ b15: reserved Default = H. Give setting for example: When b is set to 1, all settings are reset to default setting. Register for storing all error status. Refer to table of error status for more information. Default = H. Refer to table of history status for detail. Default = K1 Set history timer in ~ CH4: Range = K1 ~ K32767 Default = K1 Symbols: O means latched. X means not latched. R means can read data by using FROM instruction. W means can write data by using TO instruction. LSB (Least Significant Bit):1. Voltage input: 1 LSB =1V/32,=312.5μV 2. Current input: 1 LSB =2mA/32,=625nA - 4 -

6 CR#7 History command. See the table below. CMD History Command H 1 ~ H 13 ~ CH4 start H 2 ~ H 23 ~ CH4 stop H 4 ~ H 43 Reset history buffers of ~ CH4 H 6 ~ H 63 Read histories of ~ CH4 Note: Please use pulse instruction for executing history commands When the instruction is completed, the CR will be reset to. CR#43: Error status value. See the table below. Bit Error Status Content Value Bit Error Status Content Value b K1 (H 1) Power supply error b1 K2 (H 2) Hardware error b2 K4 (H 4) Mode setting error b3 ~ b7 Reserved b8 K256 (H 1) Conversion error b9 K512 (H 2) CH2 Conversion error b1 K124 (H 4) CH3 Conversion error b11 K248 (H 8) CH4 Conversion error b12 K496 (H 1) b14 K16384 (H 4) Upper / lower bound error CH3 Upper / lower bound error b13 K8192 (H 2) b15 K32768 (H 8) CH2 Upper / lower bound error CH4 Upper / lower bound error Note: Each error status is determined by the corresponding bit and there may be more than 2 errors occurring at the same time. = normal; 1 = error. CR#44: History status. See the table below. b15 b14 b13 b12 b11 b1 b9 b8 b7 b6 b5 b4 b3 b2 b1 b Value Ch4 Ch3 Ch2 Ch1 Ch4 Ch3 Ch2 Ch1 Ch4 Ch3 Ch2 Ch1 Ch4 Ch3 Ch2 Ch1 Not Ready Not Full Empty Stop 1 Ready Full Not Empty Run Note: History Command for reading will be executed only when a set of full 1 records are ready. If there are less than 1 records, Not Ready will be indicated. bit 8 ~ bit11 = 1: History buffer full. bit12 ~ bit15 = 1: History buffer ready. Adjust A/D Conversion Curve Users can adjust the conversion curves according to the actual needs by changing the value (CR#28 ~ CR#31) and value (CR#34 ~ CR#37). : The corresponding voltage/current input value when the digital output value = 16,. : The corresponding voltage/current input value when the digital output value =. Equation for voltage input Mode:.3125mV = 2V/64, = 1V/32, X ( V ) Y ( V ) Y=Digital output, X=Voltage input Equation for voltage input Mode4 / Mode5 / Mode6:.15625mV = 1V/64, = 5V/32, X ( V ) Y ( V ) Y=Digital output, X=Voltage input - 5 -

7 Equation for current input Mode1 / Mode2:.625μA = 4mA/64, = 2mA/32, X ( ma) Y ( ma) Y=Digital output, X=Current input Equation for current input Mode3:.5μA = 16mA/32, Adopt the Equation of current input Mode3, substitute for 192 (12mA) and for 64 (4mA) X ( ma) Y ( ma) Mode : Mode 1: Y=Digital output, X=Current input Digital output 16 Digital output 16-1V 5V -2mA 1mA 1V 2mA Voltage input Current input Mode of CR#2 ~ CR#5-1V ~ 1V, = 5V (16,), = V () Mode 1 of CR#2 ~ CR#5 2mA ~ 2mA, = 1mA (16,), = V () Range of digital conversion -32, ~ 32, Max./Min. range of digital conversion -32,384 ~ 32,384 Mode 2: Mode 3: Digital output 16 Digital output mA 2mA Current input mA 12mA 2mA Current input Mode 2 of CR#2 ~ CR#5 ma ~ 2mA, = 1mA (16,), = ma () Mode 3 of CR#2 ~ CR#5 4mA ~ 2mA, = 12mA (19,2), = 4mA (6,4) Range of digital conversion ~ 32, Max./Min. range of digital conversion -384 ~ 32,

8 Mode 4: 32 Digital output 16-5V 2.5V 5V Voltage input Mode 4 of CR#2 ~ CR#5-5V ~ 5V, = 2.5V (16,), = V () Range of digital conversion -32, ~ 32, Max./Min. range of digital conversion -32,384 ~ 32,384 Mode 5: Mode 6: Digital output 16 Digital output V 5V Voltage input V 3V 5V Voltage input Mode 5 of CR#2 ~ CR#5 V ~ 5V, = 2.5V (16,), = V () Mode 6 of CR#2 ~ CR#5 Range of digital conversion ~ 32, Max./Min. range of digital conversion 1V ~ 5V, = 3V, = 1V -384 ~ 32,

9 繁體中文 感謝您採用台達 DVP 系列產品 DVP4AD-SL 類比信號輸入模組可透過 DVP SV/EH2-L 主機程式以指令 FROM/TO 來讀寫資料 類比信號輸入模組接受來自 PLC 主機的 4 組 16 位元數位資料, 再將數位資料轉換為 4 點類比信號輸入 ( 電壓或電流皆可 ) 模組內具有多個 CR (Control Register) 暫存器, 每個暫存器有 16 bits 使用者可經由配線選擇電壓輸入或電流輸入, 電壓輸入範圍 -1V ~ 1VDC ( 解析度為 312.5uV), 電流輸入範圍 -2mA ~ 2mA ( 解析度為 625nA) 請在使用之前, 詳細閱讀本使用說明書 實施配線前, 務必關閉電源 於輸入電源切斷後, 一分鐘之內, 請勿觸摸內部電路 本機為開放型 (OPEN TYPE) 機殼, 因此使用者使用本機時, 必須將之安裝於具防塵 防潮及免於電擊 / 衝擊意外之外殼配線箱內 另必須具備保護措施 ( 如 : 特殊之工具或鑰匙才可打開 ) 防止非維護人員操作或意外衝擊本體, 造成危險及損壞 交流輸入電源不可連接於輸入 出信號端, 否則可能造成嚴重損壞, 請在上電之前再次確認電源配線, 並請勿在上電時觸摸任何端子 本體上之接地端子務必正確的接地, 可提高產品抗雜訊能力 端子鏍絲扭力為 1.95 kg-cm (1.7 in-lbs), 並請使用 6/75 C 銅導線 產品外觀尺寸與部位介紹 詳細圖示請參閱英文版頁碼 1 之 Figure1, 單位 :mm [inch] 1. I/O 模組連接埠 6. I/O 模組定位孔 2. 電源 錯誤及運行指示燈 7. I/O 模組連接埠 3. 機種型號 8. DIN 軌槽 (35mm) 4. 端子 9. I/O 模組固定扣 5. DIN 軌固定扣 1. 電源輸入口 輸入 輸出端子台配置 請參閱英文版頁碼 1 之端子配置圖, 在此語言版本省略說明 外部配線 主動式 U IN U IN 接至電源模塊之端 電壓輸入 - 電流輸入 - 隔離線 *1 隔離線 *1 *4 系統接地點 *5 接地 ( 接地阻抗 1 以下 ) Ch4 *2 *3 V1 I1 VI1- V4 I4 VI4- V 24V DC/DC 轉換器 15V -15V CH4-8 -

10 被動式 U IṈ 電壓輸入 隔離線 *1 *5 V1 I1 VI1-25 電流輸入 - 隔離線 *1 CH4 *2 V4 I4 VI4-25 CH4 *3 接至電源模塊之端 *4 系統接地點 接地 ( 接地阻抗 1 以下 ) V 24V DC/DC 轉換器 15V -15V 註 1: 類比輸入請與其他電源線隔離 註 2: 如果連接電流訊號時,V 及 I 端子請務必短路 註 3: 如果雜訊過大, 請將 FG 及接地端子連接 註 4: 請將電源模組之端及 AD 模擬量信號輸入模塊之端連接到系統接地點, 再將系統接點作第三種接地或接到配電箱之機殼上 註 5: 如果輸入電壓有漣波造成配線受雜訊干擾時, 請連接.1 ~.47μF 25V 之電容 規格 類比 / 數位模組電壓輸入電流輸入 電源電壓 類比訊號輸入通道 24VDC (-15% ~ 2%) / 3.5W DVPPS1(PS2): 輸入 1-24VAC, 輸出 24VDC/1A (PS2: 2A) 4 通道 / 台 類比輸出範圍 ±1V ±5V ±2mA ~ 2mA 4 ~ 2mA 數位資料範圍 ±32, ±32, ±32, ~ 32, ~ 32, 解析度 16 bits 16 bits 16 bits 15 bits 15 bits 輸入阻抗 <.5Ω 總和精密度 回應時間.3% 在 (25 C, 77 F) 範圍內滿刻度時.5% 在 ( ~ 55 C, 32 ~ 131 F) 範圍內滿刻度時 25μs 通道數 最大輸出電流 1KΩ ~ 2MΩ - 容許負載阻抗 - Ω~5Ω 數位資料格式 16 位二補數, 有效位 15 bits 隔離方式 與 DVP-PLC 主機連接說明 操作 / 儲存環境 類比電路與數位電路之間, 透過光耦隔離, 類比通道間未隔離數位電路與接地之間 :5VDC 類比電路與接地之間 :5VDC 類比電路與數位電路之間 :5VDC 24VDC 與接地之間 :5VDC 連接於主機左側, 模組編號以靠近主機之順序自動編號由 1 到 17 操作 : C ~ 55 C ( 溫度 ),5 ~ 95% ( 濕度 ), 污染等級 2 儲存 :-25 C ~ 7 C ( 溫度 ),5 ~ 95%( 濕度 ) - 9 -

11 類比 / 數位模組電壓輸入電流輸入 耐振動 / 衝擊 國際標準規範 IEC , IEC (TEST Fc)/IEC & IEC (TEST Ea) 控制暫存器 CR CR# 屬性 暫存器名稱 說明 # O R 機種型號 系統內定,DVP4AD-SL 機種代碼 = H 44 #1 O R 韌體版本 16 進制, 顯示目前韌體版本 輸出模式設定 : 出廠設定值 H 以 說明 : #2 X R/W 輸入模式設定 模式 (H ): 電壓輸入 (±1V) #3 X R/W CH2 輸入模式設定 模式 1 (H 1): 電流輸入 (±2mA) 模式 2 (H 2): 電流輸入 (ma ~ 2mA) #4 X R/W CH3 輸入模式設定 模式 3 (H 3): 電流輸入 (4mA ~ 2mA) 模式 4 (H 4): 電壓輸入 (±5V) #5 X R/W CH4 輸入模式設定 模式 5 (H 5): 電壓輸入 (V ~ 5V) 模式 6 (H 6): 電壓輸入 (1V ~ 5V) 模式 -1 (H FFFF): 關閉不使用 b15 ~ b12 b11 ~ b8 b7 ~ b4 b3 ~ b CH4 CH3 CH2 #6 X R/W 歷史記錄模式 歷史記錄以平均值為記錄值 出廠設定值 H 以 說明 : K: 無效 ( 預設 ) K1 單一模式 K2 自動模式 K3: 上緣觸發 K4: 下緣觸發 #7 X R/W 歷史記錄指令 請參照歷史記錄指令表, 出廠設定值 H #8 X R/W 平均次數設定 #9 X R/W CH2 平均次數設定 #1 X R/W CH3 平均次數設定 #11 X R/W CH4 平均次數設定 #12 X R 輸入信號平均值 #13 X R CH2 輸入信號平均值 #14 X R CH3 輸入信號平均值 #15 X R CH4 輸入信號平均值 #16 X R 輸入信號現在值 #17 X R CH2 輸入信號現在值 #18 X R CH3 輸入信號現在值 #19 X R CH4 輸入信號現在值 #2 X R/W 上限設定值 #21 X R/W CH2 上限設定值 #22 X R/W CH3 上限設定值 #23 X R/W CH4 上限設定值 #24 X R/W 下限設定值 #25 X R/W CH2 下限設定值 #26 X R/W CH3 下限設定值 #27 X R/W CH4 下限設定值 通道 ~ CH4 訊號的平均次數設定 : 設定範圍 K1 ~ K2 出廠設定值 K1 通道 ~ CH4 輸入信號平均值顯示通道 ~ CH4 輸入信號現在值顯示 ~ CH4 上限值設定, 出廠設定值 K32767 ~ CH4 下限值設定, 出廠設定值 K-32768

12 CR# 屬性暫存器名稱說明 #28 X R/W 微調 值 #29 X R/W CH2 微調 值 #3 X R/W CH3 微調 值 #31 X R/W CH4 微調 值 #34 X R/W 微調 值 #35 X R/W CH2 微調 值 #36 X R/W CH3 微調 值 #37 X R/W CH4 微調 值 #38 X R 端點值 #39 X R CH2 端點值 #4 X R CH3 端點值 #41 X R CH4 端點值 #42 X R/W 恢復出廠設定 #43 X R 錯誤狀態 通道 ~ CH4 訊號的 設定, 出廠設定值 K 定義 : 當數位輸入值為 時的電壓 ( 電流 ) 輸入值 通道 ~ CH4 訊號的 設定, 出廠設定值 K16, 定義 : 當數位輸入值為 16, 時的電壓 ( 電流 ) 輸入值 出廠設定值 K b ~ b3: 對應設定 ~ CH4 b4 ~ b15: 保留出廠值 H, 以 設定來說明 : b 設定為 1 時, 所有設定值將回復為出廠設定值 儲存所有錯誤狀態的資料暫存器, 請參照錯誤資訊表, 預設值為 H #44 X R 歷史記錄功能狀態請參照歷史記錄功能狀態表, 預設值為 K1 #46 X R 歷史記錄時間 #47 X R CH2 歷史記錄時間 #48 X R CH3 歷史記錄時間 #49 X R CH4 歷史記錄時間 #1 ~ #199 ~ CH4 歷史記錄 通道 ~ CH4 的歷史記錄時間設定 : 設定範圍 K1 ~ K32767 出廠設定值 K1 符號定義 :O 表示為保持型 X 表示為非保持型 R 表示為可使用 FROM 指令讀取資料 W 表示為可使用 TO 指令寫入資料 最低有效位值 (LSB):1. 電壓輸出 :1 LSB =1V/32,=312.5μV 2. 電流輸出 :1 LSB =2mA/32,=625nA CR#7 歷史記錄指令表 : CMD 歷史記錄指令 H 1 ~ H 13 ~ CH4 開始 H 2 ~ H 23 ~ CH4 停止 H 4 ~ H 43 清除 ~ CH4 歷史緩衝區 H 6 ~ H 63 讀取 ~ CH4 歷史記錄 註 : 歷史記錄指令, 請使用脈波執行型指令 當指令完成後, 該 CR 會被清為 CR#43 錯誤狀態表 : Bit 內容值 錯誤狀態 Bit 內容值 錯誤狀態 b K1 (H 1) 電源異常 b1 K2 (H 2) 硬體故障 b2 K4 (H 4) 模式設定錯誤 b3 ~ b7 保留

13 數位輸出 數位輸出 Bit 內容值錯誤狀態 Bit 內容值錯誤狀態 b8 K256 (H 1) 轉換錯誤 b9 K512 (H 2) CH2 轉換錯誤 b1 K124 (H 4) CH3 轉換錯誤 b11 K248 (H 8) CH4 轉換錯誤 b12 b14 K496 (H 1) K16384 (H 4) 下限值設定錯誤 CH3 上下限值設定錯誤 b13 b15 K8192 (H 2) CH2 上下限值設定錯誤 K32768 (H 8) CH4 上下限值設定錯誤 註 : 每個錯誤狀態由相對應之位元決定, 有可能會同時產生兩個以上之錯誤狀態, 代表正常無錯誤,1 代表有錯誤狀態產生 CR#44 歷史記錄功能狀態表 : 設定 值 b15 b14 b13 b12 b11 b1 b9 b8 b7 b6 b5 b4 b3 b2 b1 b Ch4 Ch3 Ch2 Ch1 Ch4 Ch3 Ch2 Ch1 Ch4 Ch3 Ch2 Ch1 Ch4 Ch3 Ch2 Ch1 未完成讀取未滿載未使用停止 1 完成讀取滿載已使用執行 註 : 每次讀取需有 1 筆, 如記錄未滿 1 筆,b12 ~ b15 設定值將由 1 變更為 bit 8 ~ bit11: 歷史記錄緩衝區滿載 bit12 ~ bit15: 完成歷史記錄緩衝區讀取 調整 A/D 轉換特性曲線 使用者可依實際應用需要來調整轉換特性曲線, 調整時以改變 值 (CR#28 ~ CR#31) 及 值 (CR#34 ~ CR#37) 來進行 定義 : 當數位輸出值為 16, 時的電壓 ( 電流 ) 輸入值 定義 : 當數位輸出值為 時的電壓 ( 電流 ) 輸入值 詳細公式請參閱英文版頁碼 6 之定義, 在此語言版本省略說明 模式 : 模式 1: -1V V 1V -16 電壓輸入 -32-2mA mA 2mA -16 電流輸入 -32 模式 (CR#2 ~ CR#5) -1V ~ 1V, = 5V (16,), = V () 模式 1 (CR#2 ~ CR#5) -2mA ~ 2mA, = 1mA (16,), = V () 數位資料範圍 -32, ~ 32, 數位資料範圍極限值 -32,384 ~ 32,

14 數位輸出 數位輸出數位輸-384 1V 位輸出 模式 2 模式 mA 2mA 電流輸入 mA 12mA 2mA 電流輸入 模式 2 (CR#2 ~ CR#5) ma ~ 2mA, = 1mA (16,), = ma () 模式 3 (CR#2 ~ CR#5) 4mA ~ 2mA, = 12mA (19,2), = 4mA (6,4) 數位資料範圍 ~ 32, 數位資料範圍極限值 -384 ~ 32,384 模式 4 32 Digital output 16-5V 2.5V 5V Voltage input 模式 4 (CR#2 ~ CR#5) -5V ~ 5V, = 2.5V (16,), = V () 數位資料範圍 -32, ~ 32, 數位資料範圍極限值 -32,384 ~ 32,384 模式 5 模式 電壓輸入數2.5V 5V 32 出16 3V 5V 電壓輸入 模式 5 (CR#2 ~ CR#5) V ~ 5V, = 2.5V (16,), = V () 模式 6 (CR#2 ~ CR#5) 1V ~ 5V, = 3V, = 1V 數位資料範圍 ~ 32, 數位資料範圍極限值 -384 ~ 32,

15 简体中文 感谢您采用台达 DVP 系列产品 DVP4AD-SL 模拟量信号输入模块可透过 DVP SV/EH2-L 主机程序以指令 FROM/TO 来读写数据 模拟量信号输入模块接受来自 PLC 主机的 4 组 16 位数字数据, 再将数字数据转换为 4 点模拟量信号输入 ( 电压或电流皆可 ) 模块内具有多个 CR (Control Register) 寄存器, 每个寄存器有 16 bits 使用者可经由配线选择电压输入或电流输入, 电压输入范围 -1V ~ 1VDC ( 分辨率为 312.5uV), 电流输入范围 -2mA ~ 2mA ( 分辨率为 625nA) 请在使用之前, 详细阅读本使用说明书 实施配线前, 务必关闭电源 于输入电源切断后, 一分钟之内, 请勿触摸内部电路 本机为开放型 (OPEN TYPE) 机壳, 因此使用者使用本机时, 必须将其安装于具防尘 防潮及免于电击 / 冲击意外的外壳配线箱内 另必须具备保护措施 ( 如 : 特殊的工具或钥匙才可打开 ) 防止非维护人员操作或意外冲击本体, 造成危险及损坏 交流输入电源不可连接于输入 / 出信号端, 否则可能造成严重损坏, 请在上电之前再次确认电源配线 请勿在上电时触摸任何端子 本体上的接地端子务必正确的接地, 可提高产品抗干扰能力 端子镙丝扭力为 1.95 kg-cm (1.7 in-lbs), 并请使用 6/75 C 铜导线 產品外觀尺寸與部位介紹 详细图示请参阅英文版页码 1 之 Figure1, 单位 :mm [inch] 1. I/O 模块连接口 6. I/O 模块定位孔 2. 电源 错误及运行指示灯 7. I/O 模块连接口 3. 机种型号 8. DIN 轨槽 (35mm) 4. 端子 9. I/O 模块固定扣 5. DIN 轨固定扣 1. 电源输入口 輸入 輸出端子台配置 请参阅英文版页码 1 之端子配置图, 在此语言版本省略说明 外部配線 主动式 U IN U IN 电压输入 - 电流输入 - 隔离线 *1 隔离线 *1 *5 Ch4 *2 *3 V1 I1 VI1- V4 I4 VI CH4 接至电源模组之端 *4 系统接地点 V 24V DC/DC 转换器 15V -15V 接地 ( 接地阻抗 1 以下 )

16 被动式 U IṈ 电压输入 隔离线 *1 *5 V1 I1 VI1-25 电流输入 - 隔离线 *1 CH4 *2 V4 I4 VI4-25 CH4 *3 接至电源模 组之 端 *4 系统接地点 接地 ( 接地阻抗 1 以下 ) V 24V DC/DC 转换器 15V -15V 注 1: 模拟量输入请与其它电源线隔离 注 2: 如果连接电流讯号时,V 及 I 端子请务必短路 注 3: 如果干扰过大, 请将 及接地端子连接 注 4: 请将电源模块的端及 AD 模拟量输入模块的端连接到系统接地点, 再将系统接点作第三种接地或接到配电箱的机壳上 注 5: 如果输入电压有涟波造成配线受干扰干扰时, 请连接.1 ~.47μF 25V 的电容 規格 模拟量 / 数字量模块电压输入电流输入 电源电压 模拟量讯号输入信道 4 通道 / 台 24VDC (-15% ~ 2%) / 3.5W DVPPS1(PS2): 输入 1-24VAC, 输出 24VDC/1A (PS2: 2A) 模拟量输出范围 ±1V ±5V ±2mA ~ 2mA 4 ~ 2mA 数字数据范围 ±32, ±32, ±32, ~ 32, ~ 32, 分辨率 16 bits 16 bits 16 bits 15 bits 15 bits 输入阻抗 <.5Ω 总和精密度 响应时间.3% 在 (25 C, 77 F) 范围内满刻度时.5% 在 ( ~ 55 C, 32 ~ 131 F) 范围内满刻度时 25μs 通道数 最大输出电流 1KΩ ~ 2MΩ - 容许负载阻抗 - Ω~5Ω 数字数据格式 16 位二补码, 有效位 15 bits 隔离方式 与 DVP-PLC 主机连接说明 操作 / 储存环境 模拟量电路与数字量电路之间, 透过光耦隔离, 模拟通道间未隔离数字量电路与接地之间 :5VDC 模拟量电路与接地之间 :5VDC 模拟量电路与数字量电路之间 :5VDC 24VDC 与接地之间 :5VDC 连接于主机左侧, 模块编号以靠近主机之顺序自动编号由 1 到 17 操作 : C ~ 55 C ( 温度 ),5 ~ 95% ( 湿度 ), 污染等级 2 储存 :-25 C ~ 7 C ( 温度 ),5 ~ 95%( 湿度 )

17 模拟量 / 数字量模块电压输入电流输入 耐振动 / 冲击 国际标准规范 IEC , IEC (TEST Fc)/IEC & IEC (TEST Ea) 控制寄存器 CR CR# 属性 寄存器名称 说明 # O R 机种型号 系统内定,DVP4AD-SL 机种代码 = H 44 #1 O R 韧体版本 16 进制, 显示目前韧体版本 输出模式设定 : 出厂设定值 H 以 说明 : #2 X R/W 输入模式设定 模式 (H ): 电压输入 (±1V) #3 X R/W CH2 输入模式设定 模式 1 (H 1): 电流输入 (±2mA) 模式 2 (H 2): 电流输入 (ma ~ 2mA) #4 X R/W CH3 输入模式设定 模式 3 (H 3): 电流输入 (4mA ~ 2mA) 模式 4 (H 4): 电压输入 (±5V) #5 X R/W CH4 输入模式设定 模式 5 (H 5): 电压输入 (V ~ 5V) 模式 6 (H 6): 电压输入 (1V ~ 5V) 模式 -1 (H FFFF): 关闭不使用 b15 ~ b12 b11 ~ b8 b7 ~ b4 b3 ~ b CH4 CH3 CH2 #6 X R/W 历史记录模式 历史记录以平均值为记录值 出厂设定值 H 以 说明 : K: 无效 ( 预设 ) K1 单一模式 K2 自动模式 K3: 上缘触发 K4: 下缘触发 #7 X R/W 历史记录指令 请参照历史记录指令表, 出厂设定值 H #8 X R/W 平均次数设定 #9 X R/W CH2 平均次数设定 #1 X R/W CH3 平均次数设定 #11 X R/W CH4 平均次数设定 #12 X R 输入信号平均值 #13 X R CH2 输入信号平均值 #14 X R CH3 输入信号平均值 #15 X R CH4 输入信号平均值 #16 X R 输入信号现在值 #17 X R CH2 输入信号现在值 #18 X R CH3 输入信号现在值 #19 X R CH4 输入信号现在值 #2 X R/W 上限设定值 #21 X R/W CH2 上限设定值 #22 X R/W CH3 上限设定值 #23 X R/W CH4 上限设定值 #24 X R/W 下限设定值 #25 X R/W CH2 下限设定值 #26 X R/W CH3 下限设定值 #27 X R/W CH4 下限设定值 信道 ~ CH4 讯号的平均次数设定 : 设定范围 K1 ~ K2 出厂设定值 K1 信道 ~ CH4 输入信号平均值显示信道 ~ CH4 输入信号现在值显示 ~ CH4 上限值设定, 出厂设定值 K32767 ~ CH4 下限值设定, 出厂设定值 K-32768

18 CR# 属性寄存器名称说明 #28 X R/W 微调 值 #29 X R/W CH2 微调 值 #3 X R/W CH3 微调 值 #31 X R/W CH4 微调 值 #34 X R/W 微调 值 #35 X R/W CH2 微调 值 #36 X R/W CH3 微调 值 #37 X R/W CH4 微调 值 #38 X R 端点值 #39 X R CH2 端点值 #4 X R CH3 端点值 #41 X R CH4 端点值 #42 X R/W 恢复出厂设定 #43 X R 错误状态 信道 ~ CH4 讯号的 设定, 出厂设定值 K 定义 : 当数字输入值为 时的电压 ( 电流 ) 输入值 信道 ~ CH4 讯号的 设定, 出厂设定值 K16, 定义 : 当数字输入值为 16, 时的电压 ( 电流 ) 输入值 出厂设定值 K b ~ b3: 对应设定 ~ CH4 b4 ~ b15: 保留出厂值 H, 以 设定来说明 : b 设定为 1 时, 所有设定值将回复为出厂设定值 储存所有错误状态的数据缓存器, 请参照错误信息表, 默认值为 H #44 X R 历史记录功能状态请参照历史记录功能状态表, 出厂设定值 K1 #46 X R 历史记录时间 #47 X R CH2 历史记录时间 #48 X R CH3 历史记录时间 #49 X R CH4 历史记录时间 #1 ~ #199 ~ CH4 历史记录 信道 ~ CH4 的历史记录时间设定 : 设定范围 K1 ~ K32767 出厂设定值 K1 符号定义 :O 表示为保持型 X 表示为非保持型 R 表示为可使用 FROM 指令读取数据 W 表示为可使用 TO 指令写入数据 最低有效位值 (LSB):1. 电压输出 :1 LSB =1V/32,=312.5μV 2. 电流输出 :1 LSB =2mA/32,=625nA CR#7 历史记录指令表 : CMD 历史记录指令 H 1 ~ H 13 ~ CH4 开始 H 2 ~ H 23 ~ CH4 停止 H 4 ~ H 43 清除 ~ CH4 历史缓冲区 H 6 ~ H 63 读取 ~ CH4 历史记录 注 : 历史记录指令, 请使用脉波执行型指令 当指令完成后, 该 CR 会被清为 CR#43 错误状态表 : Bit 内容值错误状态 Bit 内容值错误状态 b K1 (H 1) 电源异常 b1 K2 (H 2) 硬件故障 b2 K4 (H 4) 模式设定错误 b3 ~ b7 保留

19 数字输出 数字输 Bit 内容值错误状态 Bit 内容值错误状态 b8 K256 (H 1) 转换错误 b9 K512 (H 2) CH2 转换错误 b1 K124 (H 4) CH3 转换错误 b11 K248 (H 8) CH4 转换错误 b12 K496 (H 1) b14 K16384 (H 4) 下限值设定错误 CH3 上下限值设定错误 b13 b15 K8192 (H 2) K32768 (H 8) CH2 上下限值设定错误 CH4 上下限值设定错误 注 : 每个错误状态由相对应之位决定, 有可能会同时产生两个以上之错误状态, 代表正常无错误,1 代表有错误状态产生 CR#44 历史记录功能状态表 : 设定 b15 b14 b13 b12 b11 b1 b9 b8 b7 b6 b5 b4 b3 b2 b1 b 值 Ch4 Ch3 Ch2 Ch1 Ch4 Ch3 Ch2 Ch1 Ch4 Ch3 Ch2 Ch1 Ch4 Ch3 Ch2 Ch1 未完成读取未满载未使用停止 1 完成读取满载已使用执行 注 : 每次读取需有 1 笔, 如记录未满 1 笔,b12 ~ b15 设定值将由 1 变更为 bit 8 ~ bit11: 历史记录缓冲区状态 bit12 ~ bit15: 历史记录缓冲区读取状态 調整 A/D 轉換特性曲線 使用者可依实际应用需要来调整转换特性曲线, 调整时以改变 值 (CR#28 ~ CR#31) 及 值 (CR#34 ~ CR#37) 来进行 定义 : 当数字量输出值为 16, 时的电压 ( 电流 ) 输入值 定义 : 当数字量输出值为 时的电压 ( 电流 ) 输入值 详细公式请参阅英文版页码 6 之定义, 在此语言版本省略说明 模式 : 模式 1: -1V V 1V -16 电压输入 -32 出 mA 1mA 2mA -16 电流输入 -32 模式 (CR#2 ~ CR#5) -1V ~ 1V, = 5V (16,), = V () 模式 1 (CR#2 ~ CR#5) -2mA ~ 2mA, = 1mA (16,), = V () 数字量数据范围 -32, ~ 32, 数字量数据范围极限值 -32,384 ~ 32,

20 数字输 数字输数字输出 数字输出字输出电压输入数 模式 2: 模式 3: 出 mA 2mA 电流输入 出 mA 12mA 2mA 电流输入 模式 2 (CR#2 ~ CR#5) ma ~ 2mA, = 1mA (16,), = ma () 模式 3 (CR#2 ~ CR#5) 4mA ~ 2mA, = 12mA (19,2), = 4mA (6,4) 数字量数据范围 ~ 32, 数字量数据范围极限值 -384 ~ 32,384 模式 4: -5V V 5V -16 电压输入 -32 模式 4 (CR#2 ~ CR#5) -5V ~ 5V, = 2.5V (16,), = V () 数字量数据范围 -32, ~ 32, 数字量数据范围极限值 -32,384 ~ 32,384 模式 5: 模式 6: V 5V 电压输入 V 3V 5V 模式 5 (CR#2 ~ CR#5) V ~ 5V, = 2.5V (16,), = V () 模式 6 (CR#2 ~ CR#5) 1V ~ 5V, = 3V, = 1V 数字量数据范围 ~ 32, 数字量数据范围极限值 -384 ~ 32,

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